This invention belongs to the field of water treatment technology, specifically related to a kind of the modular integrated water-purifying device.
Although large urban water plant ensures the good quality of life for urban and rural areas and provides production water supply through the dense spider web of underground pipes, many problems exist in its huge water distribution system: (1) long-distance and large-diameter pipes incurs very high investment; (2) The pipeline head loss is huge, resulting in high energy consumption in pumping station as well as increasing daily operating costs; (3) The problems such as pipelines leakage, burst pipes, water supply break and etc. lead to many potential safety hazard and high maintenance workload; (4) Secondary pollution is severe in the pipe and it's hard to guarantee the water quality and meanwhile incurring the increasing disinfectant dosage.
Therefore, it is become a key issue for the water industry' that how to solve the above problems in order to provide reliable drinking water for the areas with ample water resource and without building vast water pipe network system.
The aim of the invention is to provide a modular integrated water-purifying device.
The water-purifying device of the invention presented the following some significant advantages: 1) compact structure without netting pipe among each unit; 2) covering a small area, shallow tanks and low costing; 3) short producing period, low dose consuming and easy to manage; 4) the effluent quality meeting the national drinking water quality standards.
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This invention provides a modular integrated water-purifying device, including the reaction tank 3, sedimentation tank 7 and filtration tank 11, wherein:
The inlet pump 1 is connected to the upper side of the reaction tank 3 through a pipe and a valve, and the variable grid impeller 4 is equipped within the reaction tank 3;
The same-flow oblique boards 8 is sit in the middle of sedimentation tank 7, and is connected by a forced water-collecting pipe 6 to the water collector 9 below. Purified water is discharged from the purified water outlet tube 10, and another end of purified water outlet tube 10 is connected to the end of the sedimentation water collector 9.
The traveling mud-suction machine 12 is equipped at the top of the filter tank 11 which can move back and forth at the top of the filter tank 11. The blanket-like wedge filters 16 are fixed vertically inside the filter tank 11. The mud-suction pump 13 is fixed in the bottom of the traveling mud-suction machine 12. The one side of mud-suction pipe 14 is connected to the mud-suction pump 13, and the other side of mud-suction pipe 14 is linked to the blanket-like wedge filters 16. The water-collecting main pipe 17 lies at the bottom of the filter tank 11. The effluent weir 15 is fixed vertically within the filter tank 11. Purified water outlet 18 lies at the bottom of the side of the filter bank 11.
In this invention, the other end of the outlet tube 10 is inserted in the hole of the division plate 33.
In this invention, the pipes connecting to the purified water outlet 18 is equipped with a disinfectant-dosing equipment 19.
In this invention, the water-suction tube equipped with coagulant-dosing equipment 2 is connected to the other end of the inlet pump 1.
In this invention, the other end of the pipe connecting to the purified water outlet 18 is inserted into the clean water tank 22.
In this invention, the variable grid impeller 4 is connected to frequency-changing motor 25.
In this invention, the forced water-collecting pipe 6 is connected with the forced water outlet pipe 31 to the forced water outlet 29, which is sit at the top of the sedimentation tank 7.
In this invention, the blanket-like wedge filters 16 are fixed in the filter frame 38 in the form of plug-in structure, and the filter frame 38 lies inside the filter tank 11. The traveling mud-suction machine 12 is connected to driving motor 35. The mud-suction pump 13 is connected by the mud-suction main piper 34 to the mud-suction pipe 14. The mud-suction pump 13 is connected by the gross mud-suction piper 36 to the mud-discharge pipe 37.
The improvement and innovativeness points of the invention are as follows:
1). Injecting coagulant into the water-suction pipe of the inlet pump and enhancing the mixing by high-speed rotation of the pump impeller can reduce the dosage of pharmaceutical; 2). The tangential water inleting together with tangential spurring promoted by the pump helps lessen power consumption of the mixer, 3). Using a variable grid impeller and the frequency-changing motor ensures the best work state; 4). Employing the variable grid impeller (see
The above series of improvements in the invention can shortens the coagulation reaction time to less than 15 minutes from more than 20 minutes in traditional reaction.
Among the various sedimentation technologies, the oblique board (tube) sedimentation can achieve the highest settling efficiency, of which the same-flow gets the better settling results compared to the other forms. This invention adopts a same-flow oblique boards (see
The principal innovation of the invention is as follows:
(1) Omitting the water-inlet distribution area which has occupied large part of total water volume. In conventional oblique board (tube) settling design, regardless of the form of the same-flow or reverse flow, a water-inlet distribution area is needed in order to distribute evenly the settling water. So, the traditional water-inlet distribution area in height is about 1.0 m, this invention increasing the total pond height (see
(2) Using straight board instead of mud sliding ramp not only saves the material of oblique boards, but also greatly simplifies the processing and installation.
(3) Installing of the adjustable forced water outlet pipe (see
(4) The water-collecting system, as the key part for the effect of water purifying, has been improved significantly (see
For thousands of years, drinking water filtration technology has been constrained mainly by two major bottlenecks: {circle around (1)} The dominant filter materials still is quartz sand, anthracite or other dispersed particulates, which makes the filter tank heavy and bulky; {circle around (2)} The huge anti-flushing system needs a complicated washing equipment (including storage tanks, pumps, flushing pipes, valves, drainage channels, etc.). To solve the above drawbacks, this invention device is mainly innovated upon to set up a simple and efficient filtration process as following:
(1) The shortcomings of conventional filter material such as quartz sand, anthracite or other dispersed particulates are the large depth of filter layer and support layer (usually more than 110 cm); filter tank per square meter requires one ton or more filter materials; the screening for effective diameter particulates is troublesome because of selecting out of a large number of substrates; it is difficult to flip, clean and transport the conventional filter material after the failure. The filtering layer thickness in this invention device is only about 2.0 cm by using blanket-like fiber as a filter material rather than using conventional quartz sand, anthracite or other dispersed particles; the weight per square meter is only 2-3 kg for the light fiber filter material; other advantages for the device includes strong strength, non-toxic, and corrosion resistant and low price. More over, the density and thickness of the fiber filter material can be selected according to different requirements for effluent water quality.
(2) This invention device adopts top-down filtration flow direction, expanding the filtration area greatly. The filter area for the conventional filter tank is determined by the surface area of the filter, that is, how much of its surface area, how much of its filter area (see
(3) This invention device use mud-suction pump to achieve the backwashing of the filter tank (see
(4) The backwash of this invention device is only a uniform velocity process of linear sweeping wash, which leading a very small backwash water consumption and even inhaling wash. Meanwhile, there's no need to pause influent or keep separate washing water, thus effluent should not be completely stopped.
(5) The plug-in structure between the blanket-like wedge filter and fixed frame makes reparation or replacement of filter pieces very convenient. Operators will avoid suffering of the carrying and flipping filter material in the process of routine repairs and maintenance for the filter.
The present invention can be explained in detail by the following examples, but not limited to these.
As shown in
Coagulation process mainly react in the reaction tank 3. During upgrading by the inlet pump 1, the raw water mixes fully with the coagulants by high-speed rotation of the pump impeller, and then flows into the sedimentation tank 7. Due to working of the sedimentation tank 7, the most of sludge comes into the sludge bucket 5 sitting at the bottom of the sedimentation tank 7. At the same time, the water after passing sedimentation tank 7, flows into the water collector 9 via the same-flow oblique boards 8, and then the clear water intercepted by the blanket-like wedge filters 16, flows out of the device by gravity. At last, the clear water turns into drinking water on the role disinfectant from the disinfectant-dosing equipment 19.
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The process of this invention device is as following:
Raw water is elevated by the inlet pump 1 through the intake of the river. The coagulant is injected in the inlet pump 1, strongly agitated by the water pump impeller, and the mixed stage does not complete until the water flow entering into reaction tank 3. Under the action of the variable grid impeller 4, the water flow is reacted completely from top to bottom, so floc colloid could be formed in the process of crash. After water flow into the sedimentation tank 7, the water and sludge are separated into the filtration tank 11. Clear water is collected by the sedimentation water collector 9, and gathered in the purified water outlet tube 10, and spilled in the filtration tank 11. Sludge is glided into the mud bucket 5 by the same-flow oblique boards, at in the mud bucket 5 where water and sludge are separated further. Separating water in the sludge hopper flow into the filtration tank 11 through the forced water-collecting pipe 6. Sludge in the mud bucket 5 is compelled and gathered and discharged regularly.
Because of the resistance of the effluent weir 15, water level in the filtration tank 11 is gradually elevated to the blanket-like wedge filters 16. Water filter through the filtered plates from inner to outer, and the unremoved little floc is retained and adsorbed in the filter layer. After collecting by the water-collecting main pipe 17, clear water spill out of effluent weir 15 and flow into the clear water basin with the addition of disinfectant through the purified water outlet 18. With the filter process, the retention of pollutant increase, so the resistance of filtration increase, either, which elevate the water level in the filtration tank 11. Filter material need to be flushed after the water level reach the set height. This moment, the sludge-adsorbing pump 13 start to operate and the traveling mud-suction machine 12 begin to run to drive the mud-suction pipe 14 which adhered on the filter plates moving slowly. Back flushing water go through the filter plates from inner to outer, taken by the sludge-adsorbing pump 13 together with the sludge adsorbed on the plates.
When the traveling mud-suction machine 12 move a single journey or round trip along the filter plate, the linear sweeping and washing task of all filter plates is completed. The sludge-adsorbing pump 13 and the traveling mud-suction machine 12 stop subsequently. The water and sludge are discharged from the sludge channel through the mud-suction main pipe 34.
During the overall process, the back flush water is from the filtered clear water, without the supplement of other water source. At the same time, the raw influent and clear water need not suspend, but the amount of the effluent decreased.
Number | Date | Country | Kind |
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200910200627.0 | Dec 2009 | CN | national |