In-line .sub.ph and .sub.pion controller

B - Operations – Transporting – 01 – J

Patent

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341/1.1

B01J 47/14 (2006.01) G05D 21/02 (2006.01)

Patent

CA 1116719

Abstract of the Disclosure The location of a number larger than two of pH or pIon sensors for ionic composition control are distributed over the cross-sectional area of the process line. Each individual sensor signal is digitized and converted to its antilogarithm and these antilogarithms are averaged to a control signal in the form of a binary word, for a binary reagent dispensing system. Reagent from this system is transported by a carrier liquid and dispensed from orifices distributed over the cross-section of the process line, down- stream of the sensors. Upstream of the sensors, a backmixing passive mixer homogenizes the process stream; downstream of the reagent orifices a non-backmixing passive mixer homogenizes process liquid plus reagent. This control section of the process line may be followed by a second, identical section dispensing diluted reagent, while its averaged control signal may also be fed back to the data processor processing the control signal of the first sections in order to optimize first section dispenser control. The data processors also multiply the composition signal with process stream flow rate as measured by a flowmeter, and shut off the system if flow rate drops below a minimum. A final section containing only distributed sensors followed by a backmixing static mixer for final homo- genization may replace or follow the second control section; averaged signal is used for the feedback optimization of the control by the preceding section, and for final monitoring of the adjusted process.

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