首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Effect of acid-base solutions used in acid-base compartments for simultaneous recovery of lithium and boron from aqueous solution using bipolar membrane electrodialysis (BMED)
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Effect of acid-base solutions used in acid-base compartments for simultaneous recovery of lithium and boron from aqueous solution using bipolar membrane electrodialysis (BMED)

机译:酸碱隔室中酸碱溶液的影响通过双极膜电渗析(BMED)与水溶液同时恢复锂和硼

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摘要

Application of bipolar membrane electrodialysis (BMED) for simultaneous separation and recovery of lithium and boron from aqueous solution was investigated using Astom Acilyzer EX3B model ED device. In the laboratory scale experiments performed, effects of acid and base solutions types and their concentrations employed in acid and base compartments, electrical potential applied on process efficiency were investigated. The results showed that separations and recoveries of both boron and lithium were effective when 0.05 M HCl and 0.05 M NaOH solutions have been used in acid and base compartments, respectively. The percent separations of boron and lithium were 86.9% and 94.7%, respectively, while their respective recoveries were 50% and 62% at 30 V. The maximum separation and recovery values for boron and lithium were obtained when a 30 V of electrical potential was applied. With optimal initial acid and base concentrations (0.05 M) used in acid and base compartments, the specific power consumption (SPC) was calculated as 7.9 kWh/m(3) at 30 V.
机译:使用ASTOM ACILYZER EX3B模型ED装置研究了双极膜电渗析(BMED)与水溶液中锂和硼的同时分离和恢复。在实验室规模实验中,研究了酸和基础溶液类型的影响及其在酸和基室中使用的浓度,应用于工艺效率的电势。结果表明,当分别用于酸和基室中使用0.05M HCl和0.05M NaOH溶液时,硼和锂的分离和回收率分别是有效的。硼和锂的分离百分比分别为86.9%和94.7%,而它们各自的回收率分别为50%,62%在30 V.当电位30V的电位时,获得硼和锂的最大分离和回收值应用。对于酸和基室中使用的最佳初始酸和基浓度(0.05μm),特定功耗(SPC)在30 V时计算为7.9千瓦时/ m(3)。

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