Claims
- 1. A method for determining the concentration of hydrogen ion, organic anionic species and anionic species selected from the group consisting of OH−, CO3═, HS−, ClO3−, SO4═, S2O3═, polysulphide and peroxide in an aqueous sample solution, said method comprising subjecting said solution to near infrared radiation at a wavelength region of wave numbers selected from about 7,000 to 14,000 cm−1 through a solution path length of at least 3 mm to obtain spectral data for said solution; obtaining comparative spectral data for said anionic species at known concentrations in aqueous solutions; and correlating by multivariate calibration the relationships between said spectral data of said sample solution and said comparative spectral data to determine said concentration of said anionic species in said sample solution.
- 2. A method as defined in claim 1 wherein said anionic species is selected from the group consisting of OH−, CO3═ and HS−.
- 3. A method as defined in claim 2 where said solution contains at least two of said anionic species.
- 4. A method as defined in claim 1 wherein said wavenumbers are selected from about 7,000 to 12,000 cm−1.
- 5. A method as defined in claim 1 wherein said spectral data is transmittance spectra obtained by transmittance spectrophotometry.
- 6. A method as defined in claim 5 wherein said transmittance spectra is obtained by the reflectance of transmitted radiation with a reflectance cell.
- 7. A method as defined in claim 5 wherein said transmittance spectra is obtained from a direct coupled or a fibre-optic transmission probe.
- 8. A method as defined in claim 1 wherein said relationships between said spectral data of said sample and said comparative spectral data are obtained with a partial-least-squares multivariate calibration.
- 9. A method as defined in claim 1 wherein said path length is selected from 3-20 mm.
- 10. A method as defined in claim 9, wherein said path length is selected from 5-12 mm.
- 11. A method as defined in claim 1 wherein said solution contains at least two of said anionic species.
- 12. A method as defined in claim 1 wherein said solution contains at least two of said anionic species and said organic species.
- 13. A method as defined in claim 11 wherein said solution contains OH− and said organic species.
- 14. A method as defined in claim 1 wherein said solution contains OH−, CO3═ and HS− anionic species.
- 15. A method as defined in claim 1 for determining the concentration of said anionic species selected from SO4═ and S2O3═.
- 16. A method as defined in claim 1 for determining the concentration of said polysulfide.
- 17. A method as defined in claim 1 for determining the concentration of said peroxide.
- 18. A method as defined in claim 1 for determining the concentration of said ClO3−.
- 19. A method for determining the concentration of hydrogen ion as defined in claim 1.
- 20. A method as defined in any one of claims 15-19 wherein said solution further comprises at least two of said anionic species selected from OH−, CO3═ and HS−.
- 21. A method as defined in claim 1 wherein said solution contains Cl−.
- 22. A method as defined in claim 1 wherein said aqueous sample solution is a pulp liquor selected from the group consisting of black liquor, white liquor and green liquor.
- 23. A method for controlling the operation of individual unit operations within a cellulosic pulp manufacturing process, which method comprises the steps of:
subjecting samples of process liquors to near infrared radiation at a wavelength region of wavenumbers from about 7,000 to 14,000 cm−1 to produce measurements of said liquor; recording the spectrum of different mixture solutions of synthetic and process liquors having known concentration parameters; correlating by multivariate calibration the relationships between the spectra of the process liquor samples and the different mixture solutions of known concentration parameters so as to simultaneously determine concentration parameters in the process liquor samples; and adjusting the individual unit operations of the cellulosic pulp manufacturing process as required by controlling at least one process parameter to bring the final product of said unit operation to a desired value, wherein said final product is determined in part by concentration parameters in said process liquors, as determined by the near infrared measurement of said concentration parameters.
- 24. A method as defined in claim 23 wherein said wavenumbers are selected from about 7,000 to 12,000 cm.
- 25. A method as defined in claim 24 wherein said controlled unit operation is a recovery process, wherein (i) residual cooking liquor from a digester is concentrated through a series of evaporators so as to produce strong black liquor, (ii) the strong black liquor is burned in a recovery furnace, (iii) the resulting smelt from the recovery furnace is fed to a smelt-dissolving tank to form green liquor, (iv) the green liquor is passed through a green liquor clarifier and made to enter a slaker, and (v) calcium oxide is added to the green liquor in the slaker so as to form a suspension which proceeds through a causticizer to a white liquor clarifier and subsequently fed to the digester.
- 26. A method as defined in claim 23, wherein said controlled unit operation is a pulp digestion process and wherein (i) wood chips and white liquor are fed into a digestion vessel, (ii) the wood chips are cooked at the elevated temperature and pressure for a desired length of time, (iii) the cooking liquor is withdrawn from various locations within the digestion vessel during the cooking period and optionally returned after subsequent heating with a heat exchanger, (iv) the resulting digested wood chips are discharged into a blow tank, and (v) the residual weak black cooking liquor is optionally returned to said digestion vessel.
- 27. A method as defined in claim 23, wherein said controlled unit operation is a brown-stock washing process and wherein (i) digested pulp from a blow tank is fed through a series of washing steps, (ii) the filtrate from each of the washing stages is separated from the pulp and optionally returned to another washing stage, and (iii) the cleaned pulp leaves the brown-stock washing process and enters a process selected from screening and/or bleaching process.
- 28. A method as defined in claim 23, wherein the near infrared measurements for determining the concentration parameters are carried out in the presence of dissolved sodium chloride.
- 29. A method as defined in claim 23, wherein the near infrared measurements for determining the concentration parameters are carried out in the presence of suspended solids.
- 30. A method as defined in claim 23, wherein the near infrared measurements for determining the concentration parameters are carried out in the presence of gaseous bubbles.
- 31. Apparatus for determining the concentration of hydrogen ion and an anionic species selected from the group consisting of OH−, CO3═, ClO3−, SO4═, S2O3═, polysulfide, peroxide and HS− in an aqueous solution, said apparatus comprising sample means for providing said sample with a solution path length of not less than 3 mm; Fourier transform near infrared means for subjecting said solution over said path length to near infrared radiation at a wavelength region of wavenumbers selected from about 7,000 to 14,000 cm−1; and spectral recordal means for recording spectral data of said radiation after subjecting said solution to said radiation.
- 32. Apparatus as defined in claim 30 wherein said anionic species is selected for OH−, CO3═ and HS−.
- 33. Apparatus as defined in claim 31 comprising near infrared means for subjecting said solution over said pathlength to said near infrared radiation at a wavelength region of wavenumbers selected from about 7,000 to 12,000 cm−1.
- 34. Apparatus as defined in claim 31 wherein said sample means is a sample cell having a path length selected from 3-20 mm.
- 35. Apparatus as defined in claim 31 wherein said sample means comprises a conduit having a path length selected from 3-20 mm.
- 36. Apparatus as defined in claim 34 wherein said cell has a path length selected from 5-12 mm.
- 37. Apparatus as defined in claim 31, wherein said spectral recordal means comprises means for recording the radiation transmittal spectrum of said solution.
RELATED APPLICATION
[0001] This is a continuation-in-part application of Ser. No. 09/190,850, filed Nov. 12, 1998.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09190850 |
Nov 1998 |
US |
Child |
09996734 |
Nov 2001 |
US |