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APPLICATION NOTE Solution Details Measurement system 2-wire inductive conductivity system Sensor ISC40G(J)-GG-T1-X Flow-through holder ISC40FF(J)-PJ Analyzer FLXA21-D-P-S-AA-C5-NN-A-N-LA-N Dedicated distributor for transmitter PH201G-A*B Installation Diagram Utilities FLXA21 inductive conductivity analyzer Power supply voltage: 17 – 40 V DC (from distributor) Power consumption: 0.9 VA maximum PH201G distributor Power supply: 100 V: 20 to130 V DC/80 to 138 V AC, 47 to 63 Hz 220 V: 120 to 340 V DC/138 to 264 V AC, 47 to 63 Hz Power consumption: 24 V DC: approx. 200 mA 100 V AC: approx. 7 VA 220 V AC: approx. 11 VA Notes Sampling should be done in the supernatant liquid in a salt dissolver. The supernatant liquid is collected in a settling tank and then the supernatant liquid of the tank is transported to a measurement tank where the sensor is installed. ISC40G(J) inductive conductivity sensor Solid Salt PH201G distributor 1 to 5 V DC output Electrolyzer (Secondary Purification) FLXA21 2-wire inductive conductivity analyzer Salt dissolver Purification System Field Data 1. Process conditions (salt dissolver) 2. FLXA21 setting parameters (Relationship between conductivity and concentration is based on the linear approximation of S = 16.3x that is obtained by actual measurement using SC72 Personal Conductivity Meter.) · NaCl temperature compensation table is used · Reference temperature setting: 25 °C · Output setting: 293 to 489 mS/cm Output (%) Concentration (%) Conductivity (mS/cm) 0 18 293 50 24 391 100 30 489 Temperature: Pressure: Sample: NaCl concentration control range: 200 to 360 g/L Approx. 65 °C Atmospheric pressure Supersaturated brine 18.1 to 30 wt%* * Depends on user’s actual data of specific gravity. AN 10D01E01-01E http://www.yokogawa.com/an/index.htm All Rights Reserved, Copyright © 2006, Yokogawa Electric Corporation 3rd Ed: Jan.2011 (YK)PDF Image | Supersaturated NaCl Sol Salt Dissolvers Electrolysis Plants
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