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Integrated Membrane Desalination Systems with Membrane Crystallization Units for Resource Recovery: A New Approach for Mining from the Sea

机译:具有膜结晶装置的集成膜脱盐系统,用于资源回收:从海上开采的新方法

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The mining industry is facing problems of clean production in terms of mineral processing, pollution, water consumption, and renewable energy. An interesting outlook can be to combine the mining industry with membrane-based desalination in the logic of mining from the sea. In fact, several of the drawbacks found in both mining and desalination can be minimized or overcome, which includes hindering mineral depletion, water production instead of water consumption, smart usage of brine instead of disposal, and low energy consumption, etc. Recently, membrane crystallization (MCr) has been developed to recover minerals from highly concentrated solutions. This study suggests MCr for the treatment of nanofiltration (NF) retentate and reverse osmosis (RO) brine leaving membrane-based desalination system. Thermodynamic modeling has been carried out to predict at which water recovery factor and which amount of minerals can be recovered. Theoretical results deviate only 2.09% from experimental results. Multivalent components such as barium, strontium, and magnesium are easier to recover from NF retentate with respect to RO brine. KCl and NiCl 2 might be recovered from both NF retentate and RO brine, whereas lithium can only be recovered from RO brine. Moreover, copper and manganese compounds might also be recovered from desalination brine in perspectives.
机译:采矿业在矿物加工,污染,水消耗和可再生能源方面面临清洁生产的问题。一个有趣的前景可能是将采矿业与基于膜的海水淡化相结合,以进行海上采矿。实际上,在采矿和海水淡化中发现的一些缺点可以被最小化或克服,包括阻碍矿物耗竭,用水代替水消耗,明智地使用盐水代替处置以及能耗低等。最近,膜已经开发出结晶(MCr)来从高浓度溶液中回收矿物。这项研究表明,MCr可用于处理基于膜的脱盐系统的纳滤(NF)截留液和反渗透(RO)盐水。已经进行了热力学建模,以预测可回收的水回收因子和矿物质的量。理论结果与实验结果仅相差2.09%。相对于RO盐水,钡,锶和镁等多价成分更容易从NF截留物中回收。可以从NF截留液和RO盐水中回收KCl和NiCl 2,而只能从RO盐水中回收锂。此外,从角度来看,铜和锰化合物也可以从淡化盐水中回收。

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