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Electrically Switched ion Exchange for The Removal of potassium to Enhance Water Recycle Opportunities

机译:电开关离子交换,用于去除钾,提高水循环利用机会

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Electrically switched ion exchange, an electrochemical separation technique, is beign developed at the Pacific Northwest National Laboratory for ion separations in industrial process and waste streams. ESIX provides an alternative separation method to conventional ion exchange technology. WHile ESIX is being developed for general ion separations[1,2], this paper focuses on the selective removal of potassium cations. Nickel hexacyanoferrate, an ESIX material, is shown to be selective for potassium over sodium with a separation factor of 24. In addition ,NIHCF has bee nstabilized to over 15,000 cycles in a solution of electrostaic precipitator catech. To accurately model the impact of potassium and chloride buildup due to increased recycle of mill effluent streams, new simulation tools have bee nintegrated into winGEMS. Siumlation is then used ot evaluate recycle strategies and how new technoliges like ESIX impact potassium nad chloride levels throughout the mill. The Kraft recovery funace simulation model has been enhanced to handle potassium and chloride compounds. Results fro ma full mill simulation show that using ESIX to treat the precipitator catch fro mthe recovery boiler can lower the potassijm levels in "as fired" black liquor by 35
机译:太平洋西北国家实验室开发了电交换离子交换(一种电化学分离技术),用于工业过程和废物流中的离子分离。 ESIX提供了一种替代常规离子交换技术的分离方法。虽然ESIX正在开发用于一般的离子分离[1,2],但本文着重于选择性去除钾阳离子。 ESIX材料六氰合铁酸镍对钾具有选择性,分离系数为24。此外,NIHCF在电除尘器catech溶液中已稳定超过15,000个循环。为了准确地模拟由于工厂废水流再循环增加而导致的钾和氯化物积聚的影响,已将新的模拟工具集成到winGEMS中。然后使用硫磺化来评估回收策略,以及像ESIX这样的新技术如何影响整个工厂中的氯化钠和氯化钠水平。 Kraft回收菌模拟模型已得到增强,可以处理钾和氯化物。全厂模拟的结果表明,使用ESIX处理回收锅炉的除尘器捕集剂可以将“烧制”黑液中的钾含量降低35%。

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