首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Recovery of Na2SO4·10H2O from a reverse osmosis retentate by eutectic freeze crystallisation technology
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Recovery of Na2SO4·10H2O from a reverse osmosis retentate by eutectic freeze crystallisation technology

机译:共晶冷冻结晶技术从反渗透渗余物中回收Na2SO4·10H2O

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摘要

The increasing amount of waste water and effluent from South Africa's mining industry forms a growing problem, which processing requires sustainable solutions in which both the water and the dissolved component can be reused. Eutectic freeze crystallisation (EFC) has been identified as a key technology that is not only energy efficient, but also produces ice and salt products of high quality. Unlike reverse osmosis membrane systems, EFC can treat both dilute and concentrated systems minimising waste water volumes. In this paper it is shown that freeze and eutectic freeze crystallisation can be used for the processing of a reverse osmosis retentate stream containing 4% NaSO4 and a number of impurities (F, Cl, K, Li, Mg, Ca, NO3 and NH4), producing both pure water and NaSO4·10H2O crystals. The influence of the impurities on the eutectic point and on the crystal structure of mirabilite was investigated using EFC technology investigated for a pure binary system, for a synthetic reverse osmosis retentate as well as for a concentrated NaCl system. In addition, investigations into the recovery and purity of mirabilite for these streams were conducted.
机译:南非采矿业不断增加的废水和流出物构成了一个日益严重的问题,该过程需要可持续的解决方案,在这些解决方案中,水和溶解的成分均可重复使用。共晶冷冻结晶(EFC)已被确认为一项关键技术,不仅节能,而且还可以生产高质量的冰和盐产品。与反渗透膜系统不同,EFC可以处理稀释和浓缩系统,从而最大程度地减少废水量。本文表明冷冻和共晶冷冻结晶可用于反渗透截留物流,该物流含有4%NaSO4和许多杂质(F,Cl,K,Li,Mg,Ca,NO3和NH4) ,同时生产纯净水和NaSO4·10H2O晶体。使用EFC技术对纯二元体系,合成反渗透渗余液以及浓NaCl体系进行了研究,研究了杂质对共晶点和芒硝晶体结构的影响。此外,还对这些流中芒硝的回收率和纯度进行了调查。

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