首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Desalination of spent ion-exchange resin regeneration solutions by suspension freeze crystallization
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Desalination of spent ion-exchange resin regeneration solutions by suspension freeze crystallization

机译:通过悬浮冷冻结晶脱落离子交换树脂再生溶液的脱盐

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摘要

The aim of this work is to evaluate the desalination of spent ion-exchange resin regeneration solutions by freeze suspension crystallization. The main steps used during freezing experiments are solution cooling followed by seeding to start the nucleation and then sweating in order to increase the purity of the obtained ice crystals. The study has shown that the purity of the ice crystals is highly dependent on the operating conditions. The obtained results have shown that seeding, an increase in stirring speed and a diminution in crystal growth rate lead to higher yields by decreasing the value of total dissolved solids (S-i) of ice crystals from 6.34 to 2.59 g/L without a significant effect on the recovered mass (from 220.97 to 202.23 g, respectively). Moreover, adding the sweating step at the end of the process has led to increase the ice purity by melting the impure areas until reaching an S-i value of about 0.63 g/L after 5 h of sweating (with a loss of mass of about 13.6%). The effect of the solution salinity was also evaluated and the results showed that freezing process performance decreases with increasing the salinity of spent ion-exchange resin regeneration solutions.
机译:这项工作的目的是通过冷冻悬浮液结晶评估废离子交换树脂再生溶液的脱盐。在冷冻实验期间使用的主要步骤是溶液冷却,然后进行播种以开始成核,然后出汗以增加所得冰晶的纯度。该研究表明,冰晶的纯度高度依赖于操作条件。得到的结果表明,播种,搅拌速度的增加和晶体生长速率的减少通过将冰晶的总溶解固体(Si)从6.34-2.59g / L降低而导致更高的产率而没有显着影响回收的质量(分别为220.97至202.23g)。此外,在该过程结束时添加出汗步骤导致通过熔化纯度的纯度来增加冰纯度直至在5小时的汗液后达到约0.63g / L的Si值(损失约为13.6% )。还评估了溶液盐度的作用,结果表明,冷冻工艺性能随着废离子交换树脂再生溶液的盐度而降低。

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