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Circulatory osmotic desalination driven by a mild temperature gradient based on lower critical solution temperature (LCST) phase transition materials

机译:基于较低的临界溶液温度(LCST)相变材料的温和温度梯度驱动循环渗透淡化

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摘要

Abrupt changes in effective concentration and osmotic pressure of lower critical solution temperature (LCST) mixtures facilitate the design of a continuous desalination method driven by a mild temperature gradient. We propose a prototype desalination system by circulating LCST mixtures between low and high temperature (low T and high T) units. Water molecules could be drawn from a high-salt solution to the LCST mixture through a semipermeable membrane at a temperature lower than the phase transition temperature, at which the effective osmotic pressure of the LCST mixture is higher than the high-salt solution. After transfer of water to the high T unit where the LCST mixture is phase-separated, the water-rich phase could release the drawn water into a well-diluted solution through the second membrane due to the significant decrease in effective concentration. The solute-rich phase could be recovered in the low T unit via a circulation process. The molar mass, phase transition temperature, and aqueous solubility of the LCST solute could be tuneable for the circulatory osmotic desalination system in which drawing, transfer, release of water, and the separation and recovery of the solutes could proceed simultaneously. Development of a practical desalination system that draws water molecules directly from seawater and produces low-salt water with high purity by mild temperature gradients, possibly induced by sunlight or waste heat, could be attainable by a careful design of the molecular structure and combination of the circulatory desalination systems based on low- and high-molar-mass LCST draw solutes.
机译:较低的临界溶液温度(LCST)混合物的有效浓度和渗透压的突然变化有助于设计由温和的温度梯度驱动的连续脱盐方法。我们提出了一种通过在低温和高温(低T和高T)装置之间循环LCST混合物的脱盐系统原型。可以在低于相变温度的温度下通过半透膜将水分子从高盐溶液中吸到LCST混合物中,在该温度下,LCST混合物的有效渗透压高于高盐溶液。在将水转移到高T单元(其中LCST混合物进行相分离)之后,由于有效浓度的显着降低,富含水的相可能会通过第二个膜将抽出的水释放到稀释良好的溶液中。富溶质相可通过循环过程在低T单元中回收。 LCST溶质的摩尔质量,相变温度和水溶解度可用于循环渗透淡化系统,在该系统中吸水,转移,释放水以及溶质的分离和回收可同时进行。通过精心设计分子结构并结合适当的分子结构,可以开发出一种实用的淡化系统,该系统可以直接从海水中吸收水分子并通过温和的温度梯度(可能是由阳光或废热引起的)产生高纯度的低盐水。基于低摩尔质量和高摩尔质量LCST的循环淡化系统吸收溶质。

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