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    WANG Yan, FENG Tianming, CHU Youqun, MA Chun'an. Evaluation of Effect of Electrolytic Conditions on Content of Br- in Catholyte Solution of Electrolysis Synthesis of Tetramethyl Phosphorus Hydroxide by Ion Chromatography[J]. PHYSICAL TESTING AND CHEMICAL ANALYSIS PART B:CHEMICAL ANALYSIS, 2018, 54(3): 308-311. DOI: 10.11973/lhjy-hx201803013
    Citation: WANG Yan, FENG Tianming, CHU Youqun, MA Chun'an. Evaluation of Effect of Electrolytic Conditions on Content of Br- in Catholyte Solution of Electrolysis Synthesis of Tetramethyl Phosphorus Hydroxide by Ion Chromatography[J]. PHYSICAL TESTING AND CHEMICAL ANALYSIS PART B:CHEMICAL ANALYSIS, 2018, 54(3): 308-311. DOI: 10.11973/lhjy-hx201803013

    Evaluation of Effect of Electrolytic Conditions on Content of Br- in Catholyte Solution of Electrolysis Synthesis of Tetramethyl Phosphorus Hydroxide by Ion Chromatography

    • Ion chromatography was applied to the determination of trace Br- in catholyte solution of electrolysis synthesis of tetramethyl phosphorus hydroxide from tetramethyl phosphorus bromide. The chromatography work conditons were as follow:IonPac AS11-HC separation column, clolumn temperature of 30℃, 30 mmol·L-1 KOH solution as eluent,flow rate of 1.0 mL·min-1, suppressor current of 75 mA. The linearity range of Br- was 1.00-10.00 mg·L-1, with detection limit (3s/k) of 0.028 5 mg·L-1. Values of recovery obtained by standard addition method were in the range of 96.2%-111%, RSD (n=7) was less than 1.0%. The effects of different commercial membranes, electrolytic time, current density on Br- content in catholyte solution were investigated. The results showed that, when JCM-Ⅱ homogeneous cation exchange membrane was used to separate the anode and cathode of the electrolytic cell, the current density was 60 mA·cm-2 and the power was 60% of the theoretical power, Br- content in the cathode solution was less.
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