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Electrodialysis reversal desalination: optimal voltage application rate, linear velocity, and mean ion residence time for maximal ion removal rate

机译:电渗析逆法脱盐:最佳电压施加速率,线速度和平均离子停留时间,以实现最大离子去除率

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摘要

Optimal voltage application rate, linear velocity, and mean ion residence time (MIRTd) in dilute stream were searched for electrodialysis reversal desalination by using two different feed waters containing TDS 3330 and 7190 mg/L NaCl. Two sets of literature data were used in the analyses. First, the relation among demineralization degree, voltage application rate, and MIRTd were derived from theory. Then, the findings were analyzed from the first set of literature data and validated with the second set of data. The analyses show that the maximal demineralization degree does not appear at the highest voltage application alone and that demineralization degree increases with the increasing voltage application rate to a certain critical value only. The maximal demineralization degree occurs at the combination of lower voltage application and longer MIRTd or vice versa. Data show the maximal demineralization degree does not always present the maximal ion removal rate per effective area of cell pairs per power. Therefore, both the maximal demineralization degree and maximal ion removal rate per effective area of cell pair per power were used to gauge optimal voltage application, linear velocity, and MIRTd. Optimal voltage application, linear velocity, and MIRTd were found to be 45-70 V, 15.1-12.3 cm/s, and 2.3-2.7 min for feed water 3330-7190 mg/L NaCl in Aquamite I membrane stack with Mark I spacer in 135 different operational conditions.
机译:通过使用两种含TDS 3330和7190 mg / L NaCl的不同进水,搜索稀流中的最佳电压施加速率,线速度和平均离子停留时间(MIRTd)以进行电渗析逆法脱盐。分析中使用了两组文献数据。首先,从理论上得出脱矿度,电压施加率和MIRTd之间的关系。然后,从第一组文献数据中分析发现,并用第二组数据进行验证。分析表明,最大的软化程度不会仅在最高电压施加时出现,并且软化程度仅随着电压施加率的增加而增加,直至达到某个临界值。最大的脱盐度出现在较低的电压施加和较长的MIRTd的组合中,反之亦然。数据显示最大脱盐度并不总是代表每功率细胞对有效面积的最大离子去除率。因此,最大脱矿度和每个功率对中每对电池有效面积的最大离子去除率均用于评估最佳电压施加,线速度和MIRTd。发现在Aquamite I膜叠中使用Mark I间隔物的进水3330-7190 mg / L NaCl的最佳电压施加,线速度和MIRTd为45-70 V,15.1-12.3 cm / s和2.3-2.7分钟135种不同的运行条件。

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