Claims
- 1. A fluid treatment system for collecting substances carried by a fluid, said system comprising:
a. a first filter having an upstream side and a downstream side, said first filter having a first filter particle collection size rating, said upstream side of said first filter being in fluid communication with a source of fluid, said source of fluid carrying a fluid, said fluid carrying at least one substance to be collected by said system, said first filter adapted so that said fluid from said source of fluid is divided into a first portion passing through said first filter forming a first filter filtrate and leaving a first filter reject on said upstream side of said first filter, and a second portion forming a reject recirculation stream; b. means for directing and controlling said reject recirculation stream, said reject recirculation stream carrying said first filter reject; and c. a second filter in fluid communication with said first filter and said reject recirculation stream so that said second filter receives said first filter reject and forms a second filter reject, said second filter reject containing said at least one substance to be collected, said second filter having a second filter upstream side and a second filter downstream side, said second filter having a second filter particle collection size rating that is no smaller than said first filter particle collection size rating.
- 2. The system as recited in claim 1, wherein said first filter is selected from a group consisting of a sintered metal filter, a nanofilter, an ultrafiltration membrane, and a microfilter.
- 3. The system as recited in claim 1, wherein said first filter is a backflushable dead-end filter.
- 4. The system as recited in claim 1, wherein said second filter is selected from a group consisting of a microfilter, a fine particle filter, and a sintered metal filter.
- 5. The system as recited in claim 1, further comprising at least one means for precipitating dissolved species carried by said fluid from said source of fluid for collection by said second filter as said second filter reject, said at least one precipitating means being attached upstream of said first filter.
- 6. The system as recited in claim 1, said system further comprising means connected to said second filter downstream side for receiving a filtrate from said second filter downstream side and directing said filtrate to said upstream side of said first filter.
- 7. The system as recited in claim 1, wherein said downstream side of said first filter is in fluid communication with a filtering device selected from a group consisting of an ion exchange polisher and a reverse osmosis unit.
- 8. The system as recited in claim 1, wherein said second filter particle collection size rating is larger than said first filter particle collection size rating.
- 9. The system as recited in claim 1, further comprising a sequential step fluid filtering system, wherein said sequential step fluid filtering system comprises:
a. an initial filter; b. an intermediate filter; and c. a final filter, wherein said initial filter initially processes said first filter filtrate to collect said at least one substance to be collected as an initial filter reject and wherein the intermediate filter then processes said first filter filtrate and said initial filter reject and forms an intermediate filter reject and wherein said final filter then processes said first filter filtrate and said intermediate filter reject.
- 10. The system as recited in claim 1, further comprising a sequential step fluid filtering system in fluid communication with said downstream side of said first filter, wherein said sequential step fluid filtering system comprises:
a. an initial filter receiving said first filter filtrate, said initial filter having a downstream side and an upstream side, said initial filter adapted so that said first filter filtrate is divided into a third portion passing through said initial filter forming an initial filter filtrate and leaving an initial filter reject on said upstream side of said initial filter, and a fourth portion forming an initial filter reject recirculation stream, said initial filter having an initial filter particle collection size rating, said third portion and said fourth portion being a part of said first portion; b. an initial filter reject recirculation loop in fluid communication with said initial filter, said initial filter reject recirculation loop used for carrying said initial filter reject recirculation stream, said initial filter reject recirculation stream carrying said initial filter reject for further processing by the filtering system; c. means for controlling said initial filter reject recirculation stream through said initial filter reject recirculation loop and for recycling said initial filter reject recirculation stream back to said upstream side of said initial filter; d. an intermediate filter reject recirculation loop in fluid communication with said initial filter reject recirculation loop, said intermediate filter reject recirculation loop used for carrying an intermediate filter reject recirculation stream, said intermediate filter reject recirculation stream carrying a fifth portion of said fluid from said source of fluid for further processing by the filtering system, said fifth portion being a part of said fourth portion; e. means for controlling said intermediate filter reject recirculation stream through said intermediate filter reject recirculation loop; f. an intermediate filter in fluid communication with said intermediate filter reject recirculation loop, said intermediate filter having an intermediate filter downstream side and an intermediate filter upstream side, said intermediate filter adapted so that said intermediate filter reject recirculation stream is divided into a sixth portion passing through said intermediate filter forming an intermediate filter filtrate and leaving an intermediate filter reject on said intermediate filter upstream side, and a seventh portion carried by said intermediate filter reject recirculation stream for further processing by the filtering system, said sixth portion and said seventh portion being a part of said fifth portion, said intermediate filter having an intermediate filter particle collection size rating, said intermediate filter filtrate being directed to said initial filter reject recirculation loop and recycled to said upstream side of said initial filter; g. a final filter substance collection and recycling conduit in fluid communication with said intermediate filter reject recirculation loop, said final filter substance collection and recycling conduit used for carrying a substance collection stream, said substance collection stream carrying an eighth portion of said fluid from said source of fluid for further processing by the filtering system, said eighth portion being a part of said seventh portion; h. means for controlling said substance collection stream through said final filter substance collection and recycling conduit; i. a final filter in fluid communication with said final filter substance collection and recycling conduit, said final filter having a final filter downstream side and a final filter upstream side, said final filter having a final filter particle collection size rating, said final filter adapted for processing said substance collection stream so that a final filter filtrate passes through said final filter leaving a final filter reject on said final filter upstream side, said final filter reject containing said at least one substance to be collected, wherein the reject is formed by said substance collection stream controlling means maintaining the flux of said substance collection stream through said final filter low enough so that said substance collection stream just passes through said final filter and forms a cake of said at least one substance to be collected on said final filter upstream side, and wherein said means for controlling said initial filter reject recirculation stream through said initial filter reject recirculation loop recycles a portion of said initial filter reject recirculation stream and directs another portion of said initial filter reject recirculation stream carrying said initial filter reject from said initial filter to said intermediate filter reject recirculation loop wherein said means for controlling said intermediate filter reject recirculation stream through said intermediate filter reject recirculation loop directs said intermediate filter reject recirculation stream carrying said initial filter reject to said intermediate filter and then a portion of said intermediate filter reject recirculation stream to said final filter substance collection and recycling conduit wherein said means for controlling said substance collection stream directs said substance collection stream to said final filter and recycles said final filter filtrate to said intermediate filter reject recirculation loop upstream of said intermediate filter for further processing by the filtering system; and j. means for precipitating dissolved species from said fluid from said source of fluid for collection by said final filter as said final filter reject, said precipitating means being in fluid communication with said intermediate filter reject recirculation loop upstream of said intermediate filter.
- 11. The system as recited in claim 1, further comprising a substance collection flow path, said substance collection flow path carrying a fluid stream containing said first filter reject through said second filter at a low flux.
- 12. The system as recited in claim 1, further comprising means for backflushing said first filter.
- 13. The system as recited in claim 1, wherein said second filter is capable of withstanding pressures in the range of about 760 mm Hg vacuum to about 1000 psig.
- 14. The system as recited in claim 1, further comprising a multi-purpose container, said multi-purpose container used as a combination processing enclosure, transport container, and disposal container, allowing for direct processing to remove excess fluids from said at least one substance to be collected by said second filter and from said second filter while said second filter is still attached to the system.
- 15. The system as recited in claim 1, wherein said at least one substance to be collected is at least one radioactive material.
- 16. The system as recited in claim 1, wherein said at least one substance to be collected is at least one hazardous material.
- 17. The system as recited in claim 1, wherein said at least one substance to be collected is at least one macromolecule.
- 18. The system as recited in claim 1, wherein said at least one substance to be collected is at least one impurity.
- 19. The system as recited in claim 1, wherein said at least one substance to be collected is at least one useful material.
- 20. The system as recited in claim 1, wherein said at least one substance to be collected can be recovered without the need for thermal processing.
- 21. The system as recited in claim 1, wherein said second filter can be disposed without the need for thermal processing.
- 22. The system as recited in claim 10, wherein said initial filter filtrate does not require additional processing prior to being released to the environment.
- 23. The system as recited in claims 10, wherein said initial filter filtrate does not require additional processing prior to being reused.
- 24. The system as recited in claim 10, further comprising a means for concentrating said at least one substance carried by said fluid, wherein said concentrating means is selected from a group consisting of an evaporator and a centrifuge.
- 25. The system as recited in claim 10, wherein said precipitating means introduces a chemical precipitating agent to said first filter filtrate.
- 26. The system as recited in claim 10, further comprising a means for introducing an agglomeration agent, said means being in fluid communication with said intermediate filter reject recirculation loop.
- 27. The system as recited in claim 10, wherein said initial filter particle collection size rating is smaller than said intermediate filter particle collection size rating.
- 28. The system as recited in claim 10, wherein said final filter particle collection size rating is no smaller than said intermediate filter particle collection size rating.
- 29. The system as recited in claim 10, further comprising means for backflushing said initial filter and said intermediate filter.
- 30. The system as recited in claim 10, wherein said final filter is capable of withstanding pressures in the range of about 760 mm Hg vacuum to about 1000 psig.
- 31. The system as recited in claim 10, wherein said final filter is capable of undergoing post-collection processing to remove excess fluid while said final filter is still attached to the filtering system.
- 32. The system as recited in claim 10, wherein said final filter is capable of undergoing post-collection processing to solidify said final filter reject while said final filter is still attached to the filtering system.
- 33. The system as recited in claim 10, further comprising means in contact with said final filter for solidifying said at least one substance to be collected within said final filter.
- 34. The system as recited in claim 10, further comprising a multi-purpose container, said multi-purpose container used for carrying said final filter, said multi-purpose container providing the filtering system with a combination processing enclosure, transport container, and disposal container, for said final filter, said multi-purpose container providing an enclosure for the final filter while said final filter is still attached to the filtering system for the collection of said at least one substance to be collected and for the post-collection processing of said at least one substance to be collected.
- 35. The system as recited in claim 10, wherein said final filter can be pressurized above atmospheric pressure while collecting said at least one substance to be collected.
- 36. The system as recited in claim 10, wherein a portion of said initial filter reject recirculating stream bypasses said intermediate filter during each cycle through said initial filter reject recirculation loop and is recycled to said upstream side of said initial filter, said initial filter reject recirculating stream having a high enough velocity to carry said initial filter reject away from said upstream side of said initial filter, wherein another portion of said initial filter reject recirculation stream that does not bypass said intermediate filter is directed to said intermediate filter reject recirculation stream.
- 37. The system as recited in claim 10, wherein said at least one substance to be collected can be recovered without the need for thermal processing.
- 38. The system as recited in claim 10, wherein said second filter and said final filter can be disposed without the need for thermal processing.
- 39. The system as recited in claim 10, wherein said final filter can be pressurized above atmospheric pressure during the removal of excess fluid from said final filter.
- 40. The system as recited in claim 10, wherein said at least one substance to be collected is at least one radioactive material.
- 41. The system as recited in claim 10, wherein said at least one substance to be collected is at least one hazardous material.
- 42. The system as recited in claim 10, wherein said at least one substance to be collected is at least one macromolecule.
- 43. The system as recited in claim 10, wherein said at least one substance to be collected is at least one impurity.
- 44. The system as recited in claim 10, wherein said at least one substance to be collected is at least one useful material.
- 45. The system as recited in claim 18, wherein said at least one impurity is at least one gas borne substance.
- 46. The system as recited in claim 19, wherein said at least one useful material is at least one precious metal.
- 47. The system as recited in claim 19, wherein said at least one useful material is at least one type of ceramic material.
- 48. The system as recited in claim 19, wherein said at least one useful material is at least one pharmaceutical product.
- 49. The system as recited in claim 19, wherein said at least one useful material is at least one biologically based material, said at least one biologically based material being recoverable without thermal processing.
- 50. The system as recited in claim 26, wherein said agglomeration agent is selected from a group consisting of polyelectrolytes and coagulants.
- 51. The system as recited in claim 28, wherein said final filter particle collection size rating is larger than said intermediate filter particle collection size rating.
- 52. The system as recited in claim 33, wherein said solidifying means further comprises a source of electrical resistance heating.
- 53. The system as recited in claim 33, further comprising a multi-purpose container, said multi-purpose container dimensioned and used for carrying said final filter, said multi-purpose container providing the filtering system with a combination processing enclosure, transport container, and disposal container, for said final filter, said multi-purpose container providing an enclosure for the final filter while said final filter is still attached to the filtering system for the collection of said at least one substance to be collected and for the post-collection processing of said at least one substance to be collected.
- 54. The system as recited in claim 43, wherein said at least one impurity is at least one gas borne substance.
- 55. The system as recited in claim 44, wherein said at least one useful material is at least one precious metal.
- 56. The system as recited in claim 44, wherein said at least one useful material is at least one type of ceramic material.
- 57. The system as recited in claim 44, wherein said at least one useful material is at least one pharmaceutical product.
- 58. The system as recited in claim 44, wherein said at least one useful material is at least one biologically based material, said at least one biologically based material being recoverable without thermal processing.
- 59. The system as recited in claim 33, wherein said solidifying means further comprises a source of microwave energy.
- 60. The system as recited in claim 33, wherein said solidifying means further comprises electrodes inserted into said final filter and said at least one substance to be collected.
- 61. The system as recited in claim 53, wherein said multi-purpose container further comprises said means in contact with said final filter for solidifying said at least one substance to be collected.
- 62. A system for backflushing filtration elements, said system comprising:
a. a backflushing fluid; b. means for introducing said backflushing fluid through a filtration element, said filtration element having an upstream side and an upstream surface, said filtration element having a downstream side and a downstream surface, said upstream surface used for receiving a fluid carrying substances and filtering such substances from said fluid and providing a filtrate on said downstream side, said introducing means causing said backflushing fluid to travel through said filtration element in a reverse flow direction from said downstream side to said upstream side of said filtration element; c. means for creating and controlling a recirculating flow of fluid across said upstream surface of said filtration element; and d. means for introducing at least one cleaning agent into said recirculating flow of fluid.
- 63. The system as recited in claim 62, wherein the velocity of said recirculating flow of fluid is of sufficient magnitude to minimize the laminar flow layer along said upstream surface of said filtration element.
- 64. The system as recited in claim 62, wherein said backflushing fluid further comprises at least one cleaning agent.
- 65. The system as recited in claim 62, wherein said at least one cleaning agent is a chemical cleaning agent.
- 66. The system as recited in claim 62, wherein said at least one cleaning agent is a mechanical cleaning agent.
- 67. The system as recited in claim 62, further comprising means for creating ultrasonic sound waves and controlling the use of said ultrasonic sound waves to clean said filtration element.
- 68. The system as recited in claim 62, wherein said at least one cleaning agent is a bacterial cleaning agent.
- 69. A method for processing fluid through use of a sequential filtering system, said method comprising the steps of:
a. providing a sequentially filtering system for collecting substances carried by a fluid, said system comprising:
i a first filter; ii means for directing and controlling a reject recirculation stream in fluid communication with said first filter; and iii a second filter in fluid communication with said first filter and said reject recirculation stream; b. directing a fluid carrying at least one substance to be collected from a fluid source toward a first filter having a downstream side surface and a downstream side, and having an upstream side surface and an upstream side, and having a first filter particle collection size rating, so that said first filter divides said fluid into a filtrate on said downstream side of said first filter and a first filter reject on said upstream side of said first filter, said first filter reject containing said at least one substance to be collected; c. forming said reject recirculation stream on said upstream side of said first filter to carry said first filter reject; and d. directing said reject recirculation stream toward said second filter having a second filter particle collection size rating no smaller than said first filter particle collection size rating.
- 70. The method as recited in claim 69, further comprising the steps of:
a. forming a substance collection fluid stream through said second filter, said substance collection fluid stream carrying a portion of said reject recirculation stream and said first filter reject; and b. maintaining the flux of said substance collection fluid stream low enough to permit removal of said at least one substance to be collected by said second filter.
- 71. The method as recited in claim 70, further comprising the step of injecting precipitating agents into said fluid on said upstream side of said first filter.
- 72. The method as recited in claim 71, further comprising the step of backflushing said first filter.
- 73. The method as recited in claim 72, wherein said backflushing step further comprises the step of dislodging particles of said at least one substance to be collected from said first filter, wherein said dislodging step uses a means for creating and directing ultrasonic sound waves to said first filter.
- 74. The method as recited in claim 73, wherein said backflushing step further comprises the steps of:
a. directing a reverse flow stream of a backflushing fluid through said first filter, wherein said reverse flow stream goes through said first filter from said downstream side of said first filter to said upstream side of said first filter; and b. directing said reject recirculation stream across said upstream side surface of said first filter.
- 75. The method as recited in claim 74, further comprising the step of introducing at least one cleaning agent into said backflushing fluid.
- 76. The method as recited in claim 74, further comprising the step of introducing at least one cleaning agent into said reject recirculation stream.
- 77. The method as recited in claim 76, wherein said at least one cleaning agent is at least one mechanical cleaning agent.
- 78. The method as recited in claim 76, wherein said at least one cleaning agent is at least one chemical cleaning agent.
- 79. A sequential step fluid treatment system for use in line with a source of fluid, said system comprising:
a. an initial filter; b. an intermediate filter; and c. a final filter, wherein said initial filter receives a fluid carrying at least one substance to be collected from a source of fluid and initially processes said fluid to collect said at least one substance to be collected as an initial filter reject and wherein the intermediate filter then further processes said fluid and said initial filter reject and forms an intermediate filter reject and wherein said final filter then finally processes said fluid and said intermediate filter reject and forms a final filter reject, said final filter reject containing said at least one substance to be collected.
- 80. A sequentially filtered fluid treatment system for use in line with a source of fluid, said system comprising:
a. an initial filter receiving a fluid from a source of fluid, said fluid carrying at least one substance to be collected, said initial filter having a downstream side and an upstream side, said initial filter adapted so that said fluid is divided into a first portion passing through said initial filter forming an initial filter filtrate and leaving an initial filter reject containing said at least one substance to be collected on said upstream side of said initial filter, and a second portion forming an initial reject recirculation stream, said initial filter having an initial filter particle collection size rating; b. an initial reject recirculation loop in fluid communication with said initial filter, said initial reject recirculation loop used for carrying said initial reject recirculation stream, said initial reject recirculation stream carrying said initial filter reject for further processing by the system; c. means for controlling said initial reject recirculation stream through said initial reject recirculation loop and for recycling said initial reject recirculation stream back to said upstream side of said initial filter; d. an intermediate reject recirculation loop in fluid communication with said initial reject recirculation loop, said intermediate reject recirculation loop used for carrying an intermediate reject recirculation stream, said intermediate reject recirculation stream carrying a third portion of said fluid for further processing by the system, said third portion being a part of said second portion; e. means for controlling said intermediate reject recirculation stream through said intermediate reject recirculation loop; f. an intermediate filter in fluid communication with said intermediate reject recirculation loop, said intermediate filter having an intermediate filter downstream side and an intermediate filter upstream side, said intermediate filter adapted so that said intermediate reject recirculation stream is divided into a fourth portion of said fluid passing through said intermediate filter as an intermediate filter filtrate leaving an intermediate filter reject on said intermediate filter upstream side and a fifth portion of said fluid carrying said intermediate filter reject and carried as part of said intermediate reject recirculation stream for further processing by the system, said fourth portion and said fifth portion being a part of said third portion, said intermediate filter having an intermediate filter particle collection size rating, said intermediate filter filtrate being directed to said initial reject recirculation loop and recycled to said upstream side of said initial filter; g. a final filter substance collection and recycling conduit in fluid communication with said intermediate reject recirculation loop, said final filter substance collection and recycling conduit used for carrying a substance collection stream, said substance collection stream carrying a sixth portion of said fluid for further processing by the system, said sixth portion being a part of said fifth portion; h. means for controlling said substance collection stream through said final filter substance collection and recycling conduit; i. a final filter in fluid communication with said final filter substance collection and recycling conduit, said final filter having a final filter downstream side and a final filter upstream side, said final filter having a final filter particle collection size rating, said final filter adapted so that said substance collection stream is processed so that a final filter filtrate passes through said final filter leaving a final filter reject on said final filter upstream side, said final filter reject containing said at least one substance to be collected, wherein the reject is formed by said substance collection stream controlling means maintaining the flux of said substance collection stream through said final filter low enough so that said substance collection stream just passes through said final filter and forms a cake of said at least one substance to be collected particles on said final filter upstream side, and wherein said means for controlling said initial reject recirculation stream through said initial reject recirculation loop recycles a portion of said initial reject recirculation stream and directs another portion of said initial reject recirculation stream carrying said initial filter reject from said initial filter to said intermediate reject recirculation loop wherein said means for controlling said intermediate reject recirculation stream through said intermediate reject recirculation loop directs said intermediate reject recirculation stream carrying said initial filter reject to said intermediate filter wherein said intermediate reject recirculation stream carries said intermediate filter reject and a portion of said fluid to said final filter substance collection and recycling conduit wherein said means for controlling said substance collection stream directs said substance collection stream to said final filter for collection of said at least one substance to be collected and recycles said final filter filtrate to said intermediate reject recirculation loop upstream of said intermediate filter for further processing by the system; and j. means for precipitating dissolved species from said fluid for collection by said final filter as said final filter reject, said precipitating means being in fluid communication with said intermediate reject recirculation loop upstream of said intermediate filter.
- 81. The system as recited in claim 80, wherein said final filter has a particle collection size rating no smaller than the particle collection size rating of said intermediate filter, said final filter primarily providing mechanical filtration, whereby, due to repeated recycling of said initial reject recirculation stream and said intermediate reject recirculation stream, and the passing of said substance collection stream through said final filter, about 100% of said fluid from said source of fluid passes through said initial filter and about 100% of said at least one substance to be collected is collected by said final filter as said final filter reject.
- 82. The system as recited in claim 80, wherein said initial filter is a reverse osmosis membrane.
- 83. The system as recited in claim 80, wherein said initial filter is a nanofilter.
- 84. The system as recited in claim 80, wherein said intermediate filter is an ultrafiltration membrane.
- 85. The system as recited in claim 80, wherein said intermediate filter is a nanofilter.
- 86. The system as recited in claim 80, wherein said final filter is a microfilter.
- 87. The system as recited in claim 80, wherein said final filter is a fine particle filter.
- 88. The system as recited in claim 80, wherein said final filter is a roughing filter.
- 89. The system as recited in claim 80, wherein said final filter is pre-seeded with a substance collection catalyst.
- 90. The system as recited in claim 80, wherein said final filter is pre-coated with a filter cake catalyst.
- 91. The system as recited in claim 80, further comprising a means for concentrating dissolved species from said initial reject recirculation stream for collection by said final filter as said final filter reject.
- 92. The system as recited in claim 81, wherein said final filter particle collection size rating is larger than said intermediate filter particle collection size rating.
- 93. The system as recited in claim 91, wherein said concentrating means further comprises a concentrating device selected from a group consisting of an evaporator, and a centrifuge, said concentrating device having an inlet connection attached to said initial reject recirculation loop upstream of said intermediate filter for receiving a portion of said initial reject recirculation stream and for forming a distillate/centrate and a concentrate, said concentrating device having a first outlet connection attached to said intermediate reject recirculation loop upstream of said intermediate filter, said concentrating device having a second outlet connection attached to the intermediate filter downstream side so that said distillate/centrate is directed downstream of said intermediate filter downstream side and recycled back to the upstream side of said initial filter through said initial reject recirculation loop.
- 94. A method for processing fluid to collect substances carried by said fluid, said method comprising the steps of:
a. providing a sequentially filtered fluid treatment system for collecting at least one substance to be collected carried by a fluid from a source of fluid, said system comprising:
i an initial filter; ii an initial filter reject recirculation loop in fluid communication with said initial filter, said initial filter reject recirculation loop used for carrying an initial filter reject recirculation stream; iii means for controlling said initial filter reject recirculation stream through said initial filter reject recirculation loop and for recycling said initial filter reject recirculation stream back to said initial filter; iv at least one intermediate filter reject recirculation loop in fluid communication with said initial filter reject recirculation loop, each said at least one intermediate filter reject recirculation loop used for carrying at least one intermediate filter reject recirculation stream; v means for controlling each said intermediate filter reject recirculation stream through each said intermediate filter reject recirculation loop; vi at least one intermediate filter in fluid communication with each said intermediate filter reject recirculation loop; vii at least one final filter substance collection and recycling conduit, each said at least one final filter substance collection and recycling conduit in fluid communication with at least one of said at least one intermediate filter reject recirculation loop, each said at least one final filter substance collection and recycling conduit used for carrying at least one substance collection stream; viii means for controlling each said at least one substance collection stream through each said at least one final filter substance collection and recycling conduit; ix at least one final filter in fluid communication with one of said at least one final filter substance collection and recycling conduit; and x means for precipitating dissolved species of said at least one substance to be collected from said fluid from said source of fluid for collection by each said at least one final filter as said final filter reject, said precipitating means being in fluid communication with at least one of said at least one intermediate filter reject recirculation loop; b. directing said fluid from said source of fluid carrying said at least one substance to be collected toward said initial filter having an upstream side and a downstream side and having an initial filter particle collection size rating so that said initial filter divides said fluid into an initial filter filtrate on said downstream side of said initial filter and an initial filter reject on an upstream side surface on said upstream side of said initial filter, said initial filter reject containing said at least one substance to be collected; c. forming said initial filter reject recirculation stream on said upstream side of said initial filter to carry said initial filter reject for further processing by the system; d. directing said initial filter reject recirculation stream toward said at least one intermediate filter, each said at least one intermediate filter having an upstream side and a downstream side and having a particle collection size rating no smaller than said initial filter particle collection size rating so that each said at least one intermediate filter divides said fluid into a filtrate on said downstream side of each said at least one intermediate filter and an intermediate filter reject on an upstream side surface on said upstream side of each said at least one intermediate filter, each said at least one intermediate filter reject containing said at least one substance to be collected; e. forming said at least one intermediate filter reject recirculation stream on said upstream side of each said at least one intermediate filter to carry each said intermediate filter reject for further processing by the system; and f. directing a portion of each said at least one intermediate filter reject recirculation stream toward a different said at least one final filter so that each said at least one final filter divides a different said at least one intermediate filter reject recirculation stream fluid into a filtrate on a downstream side of each said at least one final filter and a final filter reject on an upstream side surface of each said at least one final filter, each said at least one final filter reject containing said at least one substance to be collected, each said at least one final filter having a particle collection size rating no smaller than each said at least one intermediate filter particle collection size rating.
- 95. The method as recited in claim 94, wherein each said at least one final filter particle collection size rating is larger than each said at least one intermediate filter particle collection size rating.
- 96. The method as recited in claim 94, further comprising the step of backflushing said initial filter and each said at least one intermediate filter.
- 97. The method as recited in claim 94, wherein said at least one intermediate filter is at least two intermediate filters and wherein said at least one final filter is at least two final filters and wherein said at least one substance to be collected is at least two substances to be collected and wherein said at least one intermediate filter reject recirculation stream is at least two intermediate filter reject recirculation streams and wherein at least two different precipitating agents is injected into each of said at least two intermediate filter reject recirculation streams for the purpose of separately collecting in said at least two final filters said at least two different substances to be collected.
- 98. The method as recited in claim 94, further comprising the steps of:
a. forming said at least one substance collection fluid stream across each of said at least one final filter, each of said at least one substance collection fluid streams carrying a portion of at least one of said intermediate filter reject recirculation streams; b. maintaining the flux of each of said at least one substance collection fluid streams low enough to permit removal by said at least one final filter of a portion of said at least one substance to be collected with each pass; c. recycling repeatedly said initial filter reject recirculation stream between said initial filter and said at least one intermediate filter, and said at least one intermediate filter reject recirculation stream between said at least one intermediate filter and said at least one final filter as said at least one substance collection stream through each of said at least one final filter, so that about 100% of said fluid passes through said initial filter and about 100% of said at least one substance to be collected is collected by said at least one final filter as said final filter reject on said at least one final filter without the need to drain said reject; and d. harvesting each said final filter reject collected by each of said at least one final filter.
- 99. The method as recited in claim 96, wherein said backflushing step further comprises the steps of:
a. directing a reverse flow stream of a backflushing fluid through said initial filter; b. directing a reverse flow stream of a backflushing fluid through said at least one intermediate filter being backflushed; c. directing said initial filter reject recirculation stream across said upstream side surface of said initial filter during backflushing; and d. directing at least one of each said at least one intermediate filter reject recirculation stream across said upstream side surface of said at least one intermediate filter being backflushed.
- 100. The method as recited in claim 98, wherein said harvesting step further comprises the steps of:
a. removing fluids from each said at least one final filter while each said at least one final filter is still attached to said system; and b. disposing of each said at least one final filter and said at least one substance collected by each said at least one final filter by enclosing each said at least one final filter in at least one multi-purpose container and transporting said at least one multi-purpose container to an approved disposal site.
- 101. The method as recited in claim 98, wherein said harvesting step further comprises the steps of:
a. removing fluids from each said at least one final filter while each said at least one final filter is still attached to said system; and b. processing each said at least one final filter to recover said at least one substance to be collected.
- 102. The method as recited in claim 98, wherein said harvesting step for each said at least one final filter being processed for harvesting further comprises the steps of:
a. isolating said substance collection stream to said final filter being processed for harvesting by isolating an inlet conduit in fluid communication with the system; b. pressurizing said final filter from a source of pressurized gas; c. removing fluid from said final filter while said final filter is still attached to the system by having said pressurized gas push fluid carried by said final filter out of said final filter through an outlet conduit in fluid communication with the system until gas begins to enter said outlet conduit; d. placing a secondary fluid removal flow path in service and isolating said outlet conduit of said final filter so that fluid remaining in said final filter is directed out of said final filter and into said secondary fluid removal flow path while said final filter is still attached to said system; and e. processing said at least one substance collected by said final filter.
- 103. The method as recited in claim 98, wherein said initial filter filtrate does not require additional processing prior to being released to the environment.
- 104. The method as recited in claims 98, wherein said initial filter filtrate does not require additional processing prior to being reused.
- 105. The method as recited in claim 98, wherein said at least one substance to be collected is at least one radioactive material.
- 106. The method as recited in claim 98, wherein said at least one substance to be collected is at least one hazardous material.
- 107. The method as recited in claim 98, wherein said at least one substance to be collected is at least one macromolecule.
- 108. The method as recited in claim 98, wherein said at least one substance to be collected is at least one impurity.
- 109. The method as recited in claim 98, wherein said at least one substance to be collected is at least one useful material.
- 110. The method as recited in claim 98, wherein said at least one substance to be collected can be recovered without thermal processing.
- 111. The method as recited in claim 98, wherein said at least one final filter can be disposed of without thermal processing.
- 112. The method as recited in claim 98, further comprising the step of precipitating dissolved species from said fluid from said source of fluid.
- 113. The method as recited in claim 98, further comprising the step of concentrating dissolved species from said fluid, wherein said concentrating step further comprises the steps of:
a. directing said initial filter reject recirculation stream to at least one concentrating device selected from a group consisting of an evaporator and a centrifuge, each said at least one concentrating device being in fluid communication with said initial filter reject recirculation stream upstream of said at least one intermediate filter for receiving said initial filter reject recirculation stream fluid and for forming a distillate/centrate and a concentrate; b. directing said concentrate to said upstream side of any of said at least one intermediate filter; and c. directing said distillate/centrate downstream of said downstream side of at least one of said at least one intermediate filter.
- 114. The method as recited in claim 99, wherein said backflushing step further comprises the step of dislodging particles of said at least one substance to be collected from said initial filter using a means for creating and directing ultrasonic sound waves.
- 115. The method as recited in claim 99, further comprising the step of introducing at least one cleaning agent into said backflushing fluid.
- 116. The method as recited in claim 99, further comprising the step of introducing at least one cleaning agent into said initial filter reject recirculation stream and into at least one of said at least one intermediate filter reject recirculation stream.
- 117. The method as recited in claim 100, wherein said harvesting step further comprises the step of solidifying said at least one substance to be collected prior to disposing of said at least one final filter and said at least one substance collected by said at least one final filter.
- 118. The method as recited in claim 108, wherein said at least one impurity is at least one gas borne substance.
- 119. The method as recited in claim 109, wherein said at least one useful material is at least one precious metal.
- 120. The method as recited in claim 109, wherein said at least one useful material is at least one type of ceramic material.
- 121. The method as recited in claim 109, wherein said at least one useful material is at least one pharmaceutical product.
- 122. The method as recited in claim 109, wherein said at least one useful material is at least one biologically based material, said at least one biologically based material being recoverable without the need for thermal processing.
- 123. The method as recited in claim 112, wherein said precipitating step further comprises the step of injecting at least one chemical precipitating agent into at least one of said at least one intermediate reject recirculation stream.
- 124. The method as recited in claim 115, wherein said at least one cleaning agent is at least one chemical cleaning agent.
- 125. The method as recited in claim 115, wherein said at least one cleaning agent is at least one bacterial cleaning agent.
- 126. The method as recited in claim 116, wherein said at least one cleaning agent is at least one mechanical cleaning agent.
- 127. The method as recited in claim 116, wherein said at least one cleaning agent is selected from a group consisting of a chemical cleaning agent and a bacterial cleaning agent.
- 128. The method as recited in claim 126, wherein said at least one mechanical cleaning agent is a granulated material.
- 129. The method as recited in claim 126, wherein said at least one mechanical cleaning agent is an inert material.
- 130. A fluid treatment system for collecting substances carried by a fluid, said system comprising:
a. a first filter having an upstream side and a downstream side, said first filter having a first filter particle collection size rating, said upstream side of said first filter being in fluid communication with a source of fluid, said source of fluid carrying a fluid, said fluid carrying at least one substance to be collected by the system, said first filter adapted so that said fluid from said source of fluid is divided into a first portion passing through said first filter forming a first filter filtrate (or permeate) and leaving a first filter reject on said upstream side of said first filter, and a second portion forming a reject recirculation stream; b. means for creating and controlling said reject recirculation stream, said reject recirculation stream carrying said first filter reject; and c. a second filter in fluid communication with said first filter and said reject recirculation stream so that said second filter receives said first filter reject and forms a second filter reject, said second filter reject containing said at least one substance to be collected, said second filter having a second filter upstream side and a second filter downstream side, said second filter having a second filter particle collection size rating that is smaller than said first filter particle collection size rating.
- 131. The system as recited in claim 130, further comprising a sequential step fluid filtering system in fluid communication with said downstream side of said first filter, wherein said sequential step fluid filtering system comprises:
a. an initial filter receiving said first filter filtrate (or permeate), said initial filter having a downstream side and an upstream side, said initial filter adapted so that said first filter filtrate (or permeate) is divided into a third portion of said fluid from said fluid source passing through said initial filter forming an initial filter filtrate and leaving an initial filter reject on said upstream side of said initial filter, and a fourth portion of said fluid from said fluid source forming an initial reject recirculation stream, said initial filter having an initial filter particle collection size rating, said third portion and said fourth portion being a part of said second portion; b. an initial reject recirculation loop in fluid communication with said initial filter, said initial reject recirculation loop used for carrying said initial reject recirculation stream, said initial reject recirculation stream carrying said initial filter reject for further processing by the filtering system; c. means for controlling said initial reject recirculation stream through said initial reject recirculation loop and for recycling said initial reject recirculation stream back to the upstream side of said initial filter; d. an intermediate reject recirculation loop in fluid communication with said initial reject recirculation loop, said intermediate reject recirculation loop used for carrying an intermediate reject recirculation stream, said intermediate reject recirculation stream carrying a fifth portion of said fluid from said source of fluid for further processing by the filtering system, said fifth portion being a part of said fourth portion; e. means for controlling said intermediate reject recirculation stream through said intermediate reject recirculation loop; f. an intermediate filter in fluid communication with said intermediate reject recirculation loop, said intermediate filter having an intermediate filter downstream side and an intermediate filter upstream side, said intermediate filter adapted so that said intermediate reject recirculation stream is divided into a sixth portion of said fluid from said fluid source passing through said intermediate filter forming an intermediate filter filtrate and leaving an intermediate filter reject on said intermediate filter upstream side, and a seventh portion of said fluid from said fluid source carried by said intermediate reject recirculation stream for further processing by the filtering system, said sixth portion and said seventh portion being a part of said fifth portion, said intermediate filter having an intermediate filter particle collection size rating, said intermediate filter filtrate being directed to said initial reject recirculation loop and recycled to said upstream side of said initial filter; g. a final filter substance collection and recycling conduit in fluid communication with said intermediate reject recirculation loop, said final filter substance collection and recycling conduit used for carrying a substance collection stream, said substance collection stream carrying an eighth portion of said fluid from said fluid source for further processing by the system, said eighth portion being a part of said seventh portion; h. means for controlling said substance collection stream through said final filter substance collection and recycling conduit; i. a final filter in fluid communication with said final filter substance collection and recycling conduit, said final filter having a final filter downstream side and a final filter upstream side, said final filter having a final filter particle collection size rating, said final filter adapted so that said substance collection stream is processed so that a final filter filtrate passes through said final filter leaving a final filter reject on said final filter upstream side, said final filter reject containing said at least one substance to be collected, wherein the reject is formed by said substance collection stream controlling means maintaining the flux of said substance collection stream through said final filter low enough so that said substance collection stream just passes through said final filter and forms a cake of said at least one substance to be collected on said final filter upstream side, wherein said means for controlling said initial reject recirculation stream through said initial reject recirculation loop directs said initial filter reject from said initial filter to said intermediate reject recirculation loop and wherein said means for controlling said intermediate reject recirculation stream through said intermediate reject recirculation loop directs said intermediate reject recirculation stream carrying initial filter reject to said intermediate filter and then to said final filter substance collection and recycling conduit wherein said means for controlling said substance collection stream directs said substance collection stream to said final filter and recycles said final filter filtrate to said intermediate reject recirculation loop upstream of said intermediate filter for further processing by the filtering system, and wherein said final filter particle collection size rating is smaller than said intermediate filter particle collection size rating and initial filter particle collection size rating; and j. means for precipitating dissolved species from said fluid from said source of fluid for collection by said final filter as said final filter reject, said precipitating means being attached to said intermediate reject recirculation loop.
- 132. A sequential step fluid filtering system for collecting substances carried by a fluid, said system comprising:
a. an initial filter having an upstream side and an upstream surface and having a downstream side and a downstream surface, said initial filter having an initial filter particle collection size rating; b. means for directing and controlling an initial filter reject recirculation stream in fluid communication with said initial filter for carrying said initial filter reject from said upstream surface of said initial filter; c. a final filter in fluid communication with said initial filter having an upstream side and an upstream surface and having a downstream side and a downstream surface, said final filter having a final filter particle collection size rating; and d. means in contact with said final filter for solidifying said at least one substance to be collected, wherein said initial filter initially processes a fluid from a source of fluid carrying at least one substance to be collected, said at least one substance to be collected becoming an initial filter reject on said upstream surface of said initial filter and wherein said means for directing and controlling said initial filter reject recirculation stream directs said initial filter reject to said final filter so that said final filter sequentially processes and collects said initial filter reject on said upstream surface of said final filter and wherein, after collection of said at least one substance to be collected, said solidifying means is used to solidify said at least one substance to be collected within said final filter.
- 133. The system as recited in claim 132, wherein said solidifying means further comprises electrical resistance heating.
- 134. The system as recited in claim 132, wherein said solidifying means further comprises a source of microwave energy.
- 135. The system as recited in claim 132, further comprising a multi-purpose container, said multi-purpose container used as a combination processing enclosure, transport container, and disposal container, allowing for direct processing to remove excess fluids from said at least one substance collected by said final filter and from said final filter while said final filter is still attached to the system, said multi-purpose container dimensioned to carry said final filter while said final filter is still attached to the system.
- 136. The system as recited in claim 135, wherein said multi-purpose container further comprises said means in contact with said final filter for solidifying said at least one substance to be collected.
- 137. A method for by-passing nucleation while processing a fluid containing at least one substance for collection, said method comprising the steps of:
a. providing a sequentially filtered fluid treatment system for collecting substances carried by a fluid, said system comprising:
i a reagent holding tank having means for mixing its contents; ii means for directing and controlling a reagent fluid stream in a recycle loop, said recycle loop in fluid communication with said reagent holding tank; iii a first filter in fluid communication with said recycle loop and said reagent holding tank; and iv a second filter in fluid communication with said first filter and said recycle loop; b. concentrating seed particles in said reagent fluid stream; c. recirculating said reagent fluid stream in said recycle loop; d. directing a fluid carrying at least one substance to be collected from a fluid source toward a first filter having a downstream side surface and a downstream side, and having an upstream side surface and an upstream side, and having a first filter particle collection size rating, so that said at least one substance to be collected interacts with said reagent fluid stream and forms stable particles and said first filter divides said fluid carrying at least one substance to be collected into a filtrate on said downstream side of said first filter and a first filter reject on said upstream side of said first filter, said first filter reject containing said stable particles of said at least one substance to be collected; e. directing a combination stream of fluid containing at least said reagent fluid stream, said fluid carrying at least one substance to be collected, said first filter reject and said stable particles, all of which are recirculating in said recycle loop, toward a second filter having a particle collection size rating no smaller than said first filter particle collection size rating.
- 138. The method as recited in claim 137, further comprising the steps of:
a. forming a substance collection fluid stream through said second filter, said substance collection fluid stream carrying a portion of said combination stream of fluid recirculating in said recycle loop; and b. maintaining the flux of said substance collection fluid stream low enough to permit removal of said at least one substance to be collected by said second filter.
- 139. The method as recited in claim 138, further comprising the step of solidifying said at least one substance to be collected within said second filter.
- 140. The method as recited in claim 139, wherein said solidifying step further comprises means for solidifying said at least one substance to be collected, said means selected from a group consisting of electrical resistance heating, and microwave energy heating.
- 141. A method for processing fluid, said method comprising the steps of:
a. directing a fluid carrying at least one substance to be collected from a fluid source first toward a first filter having a downstream side surface and a downstream side and having an upstream side surface and an upstream side and having a first filter particle collection size rating so that said first filter divides said fluid into a filtrate on said downstream side of said first filter and a first filter reject on said upstream side of said first filter, said first filter reject containing said at least one substance to be collected; b. forming a reject recirculation stream on said upstream side of said first filter to carry said first filter reject; and c. directing said reject recirculation stream secondly toward a second filter having a particle collection size rating no smaller than said first filter particle collection size rating. d. forming a substance collection fluid stream through said second filter, said substance collection fluid stream carrying a portion of said reject recirculation stream and said first filter reject; and e. maintaining the flux of said substance collection fluid stream low enough to permit removal of said at least one substance to be collected by said second filter.
- 142. The method as recited in claim 141, further comprising the step of injecting precipitating agents into said fluid on said upstream side of said first filter.
- 143. A method for sequentially filtering fluid to collect substances carried by said fluid, said method comprising the steps of:
a. directing a fluid carrying at least one substance to be collected from a fluid source toward an initial filter having an upstream side and a downstream side and having an initial filter particle collection size rating so that said initial filter divides said fluid into an initial filter filtrate on said downstream side of said initial filter and an initial filter reject on an upstream side surface on said upstream side of said initial filter, said initial filter reject containing said at least one substance to be collected; b. forming a reject recirculation stream on said upstream side of said initial filter to carry said initial filter reject for further processing by the system; c. directing said reject recirculation stream toward at least one intermediate filter having an upstream side and a downstream side and having a particle collection size rating no smaller than said initial filter particle collection size rating so that said at least one intermediate filter divides said fluid into a filtrate on said downstream side of each of said at least one intermediate filter and an intermediate filter reject on an upstream side surface on said upstream side of each of said at least one intermediate filter, said intermediate filter reject containing said at least one substance to be collected; d. forming an intermediate reject recirculation stream on said upstream side of each of said at least one intermediate filter to carry said intermediate filter reject for further processing by the system; and e. directing a portion of each said intermediate reject recirculation stream toward at least one final filter so that each of said at least one final filter divides said fluid into a filtrate on a downstream side of each of said at least one final filter and a final filter reject on an upstream side surface of each of said at least one final filter, each said final filter reject containing said at least one substance to be collected, said at least one final filter having a particle collection size rating no smaller than said at least one intermediate filter particle collection size rating.
- 144. The method as recited in claim 143, wherein said final filter particle collection size rating is larger than said intermediate filter particle collection size rating.
- 145. The method as recited in claim 143, further comprising the steps of:
a. forming a substance collection fluid stream across each of said at least one final filter, each of said substance collection fluid streams carrying a portion of at least one of said intermediate reject recirculation streams; b. maintaining the flux of each of said substance collection fluid streams low enough to permit removal by said at least one final filter of a portion of said at least one substance to be collected with each pass; c. recycling repeatedly said reject recirculation stream between said initial filter and said at least one intermediate filter, and said at least one intermediate reject recirculation stream between said at least one intermediate filter and said at least one final filter as said substance collection stream through each of said at least one final filter, so that about 100% of said fluid passes through said initial filter and about 100% of said at least one substance to be collected is collected by said at least one final filter as said final filter reject on said at least one final filter without the need to drain said reject; and d. harvesting said final filter reject collected by each of said final filters.
- 146. The method as recited in claim 145, wherein said harvesting step further comprises the steps of:
a. removing fluids from said final filter while said final filter is still attached to said system; and b. disposing of said final filter by sealing said final filter in a multi-purpose container and transporting said multi-purpose container to an approved disposal site.
- 147. The method as recited in claim 146, wherein said harvesting step further comprises the steps of:
a. removing fluids from said final filter while said final filter is still attached to said system; and b. processing said final filter to recover said at least one substance to be collected.
- 148. The method as recited in claim 147, wherein said harvesting step for each of said at least one final filter being processed for harvesting further comprises the steps of:
a. isolating said substance collection stream to said final filter being processed for harvesting by isolating an inlet conduit in fluid communication with the system; b. pressurizing said final filter from a source of pressurized gas; c. removing fluid from said final filter while said final filter is still attached to the system by having said pressurized gas push fluid carried by said final filter out of said final filter through an outlet conduit in fluid communication with the system; d. placing a secondary fluid removal flow path in service and isolating said outlet conduit of said final filter so that fluid remaining in said final filter is directed out of said final filter and into said secondary fluid removal flow path while said final filter is still attached to said system; and e. processing said at least one substance collected by said final filter.
- 149. The method as recited in claim 143, wherein said at least one substance to be collected is selected from a group consisting of radioactive materials, hazardous materials, macromolecules, air borne impurities, ceramic materials, pharmaceutical products, precious metals, semi-precious metals, and biologically based compounds.
- 150. The method as recited in claim 143, wherein said at least one substance to be collected can be harvested without the need for thermal processing.
- 151. The method as recited in claim 143, wherein said at least one final filter can be disposed of without the need for thermal processing.
- 152. The system as recited in claim 64, wherein said at least one cleaning agent is a bacterial cleaning agent.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation-in-part of Applicant's pending US patent application, which was filed on Apr. 26, 2002, and which is a national stage filing of PCT application serial number PCT/US00/41663, filed Oct. 27, 2000, which claimed the benefit of the filing of US provisional patent application serial 60/161853, filed on Oct. 27, 1999. Applicants claim the priority date benefits of these applications.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60161853 |
Oct 1999 |
US |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
PCT/US00/41663 |
Oct 2000 |
US |
Child |
10154693 |
May 2002 |
US |