Claims
- 1. A method for measuring osmotic pressure of a solution comprising the steps of:
(a) placing a sample of a solution into a sample cell above a membrane supported in the sample cell; (b) sealing the sample in the sample cell; (c) introducing gas at an elevated pressure to the sample cell to drive a quantity of dialyzate through the membrane and into a transparent dialyzate exit tube adapted to receive the dialyzate which passes through the membrane; and (d) varying the elevated pressure of the gas to yield a substantially stationary dialyzate meniscus in the transparent dialyzate exit tube.
- 2. A method as recited in claim 1 further comprising the step of:
reading the pressure gauge showing the elevated pressure of the gas that yielded the substantially stationary dialyzate meniscus, the elevated pressure of the gas being substantially equivalent to the osmotic pressure of the sample.
- 3. A method as recited in claim 1 further comprising the step of:
reducing the elevated pressure of the gas to minimize the volume of dialyzate in the dialyzate exit tube prior to said varying step.
- 4. A method as recited in claim 1 further comprising the step of:
maintaining the sample in the sample cell at a predetermined temperature.
- 5. A method as recited in claim 1 further comprising the step of:
continually stirring the sample in the sample cell.
- 6. A method as recited in claim 2 further comprising the step of:
performing a hydrostatic pressure correction based on the height of the solution in the sample cell in the height of the dialyzate in the dialyzate exit tube.
- 7. A method for measuring osmotic pressure of a solution comprising the steps of:
(a) placing a sample of a solution into a sample cell, the sample cell including therein a membrane supported on a meandering dialyzate cell; (b) sealing the sample in the sample cell; (c) introducing gas at an elevated pressure to the sample cell to drive a quantity of dialyzate through the membrane and the meandering dialyzate cell to enter a dialyzate exit tube extending from the sample cell and obtaining a stationary dialyzate meniscus in the dialyzate exit tube; (d) measuring the difference in elevation of the sample in the sample cell and the meniscus in point to the dialyzate exit tube; (e) reading a final pressure on the pressure gauge showing the elevated pressure of the gas that yielded the stationary dialyzate meniscus; and (f) calculating the osmotic pressure from the final pressure and the difference in elevation.
- 8. A method as recited in claim 2 further comprising the step of:
(a) opening the sample cell and adding additional sample solution thereto; (b) weighing the sample cell with the additional sample solution therein; and (c) repeating steps (b) through (d) of claim 1.
- 9. A method as recited in claim 7 further comprising the step of:
(a) opening the sample cell and adding additional sample solution thereto; (b) weighing the sample cell with the additional sample solution therein; and (c) repeating steps (b) through (f) of claim 7.
- 10. A method as recited in claim 1 further comprising the step of:
collecting the dialyzate passing through the membrane in a dialyzate collector and flowing the dialyzate therefrom to the transparent dialyzate exit tube.
- 11. A method as recited in claim 1 further comprising the step of:
collecting the dialyzate passing through the membrane in a meandering dialyzate cell and flowing the dialyzate therefrom to the transparent dialyzate exit tube.
- 12. A method as recited in claim 2 further comprising the step of:
reading the pressure gauge at predetermined intervals after repeating said varying step to determine the change in osmotic pressure of the solution as a function of time.
- 13. A method as recited in claim 11 further comprising the step of:
changing the temperature as a function of time during said reading step.
- 14. A method for measuring osmotic pressure of a solution comprising the steps of:
(a) placing a sample of a solution into a sample cell above a membrane supported in the sample cell; (b) sealing the sample in the sample cell; (c) introducing gas at an elevated pressure to the sample cell to generate a dialyzate by allowing a portion of the solution to dialyze through the membrane; and (d) varying the elevated pressure of the gas until equilibrium is achieved and no more dialyzate passes the membrane.
- 15. An apparatus for measuring osmotic pressure of a solution comprising:
(a) a sample cell for receiving a sample of a solution, said sample cell including a chamber with a meandering dialyzate cell therein and a membrane supported in said sample cell; (b) a removable lid sealingly engagable with said sample cell; (c) a gas inlet port through which gas at an elevated pressure is delivered to said sample cell to cause a portion of a sample solution in said sample cell to dialyze through said membrane and enter a transparent dialyzate exit tube; (d) an inlet conduit connected to said gas inlet port, said inlet line also being connected to a source of pressurized gas; (e) a pressure regulator connected to said inlet conduit between said source of pressurized gas and said gas inlet port; and (f) a pressure gauge connected to said inlet conduit between said pressure regulator and said gas inlet port.
- 16. An apparatus as recited in claim 15 further comprising:
means for maintaining the sample in the sample cell at a predetermined temperature.
- 17. An apparatus as recited in claim 15 further comprising:
a magnetically driven stirring blade in said sample cell above said membrane.
- 18. An apparatus as recited in claim 15 further comprising:
a rotating stirring blade in said sample cell above said membrane.
- 19. An apparatus as recited in claim 15 further comprising:
a heater for maintaining the sample in the sample cell at a predetermined temperature.
- 20. An apparatus as recited in claim 15 further comprising:
a dialyzate collector positioned beneath said membrane.
- 21. An apparatus as recited in claim 15 wherein:
said dialyzate collector is a meandering dialyzate cell.
- 22. An apparatus as recited in claim 20 wherein:
said transparent dialyzate exit tube receives dialyzate from said dialyzate collector.
- 23. An apparatus as recited in claim 15 wherein:
said sample cell includes a transparent chamber body and a base plate which is detachable from and re-engagable to said chamber body.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] The present application is related to U.S. Application Ser. No. (Docket No 80378), filed Herewith, by Dr. David C. Boris, and entitled, “METHOD FOR MEASURING CHANGES IN OSMOTIC PRESSURE,” and to U.S. Application Ser. No. (Docket No. 80379), filed Herewith, by Dr. David C. Boris, and entitled, “METHOD FOR DETERMINING THE CONCENTRATION OF A SOLUTION HAVING A PREDETERMINED OSMOTIC PRESSURE AND/OR GENERATING A SOLUTION WITH A PREDETERMINED OSMOTIC PRESSURE.”