AbstractReverse draw solute diffusion not only reduces the water flux in forward osmosis (FO), but als'/> Preparation and assessment of carboxylate polyelectrolyte as draw solute for forward osmosis
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Preparation and assessment of carboxylate polyelectrolyte as draw solute for forward osmosis

机译:羧酸盐聚电解质的制备及评价为前渗透溶质

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AbstractReverse draw solute diffusion not only reduces the water flux in forward osmosis (FO), but also contaminates the feed solution and eventually increases the regeneration cost of draw solution. In the present study, a new polyelectrolyte was synthesized as FO draw solute to address this problem. Acrylic acid and sodium p-styrenesulfonate monomers with hydrophilic group were used to fabricate carboxylate polyelectrolyte through free radical polymerization reaction. Results demonstrated that the osmotic pressure of carboxylate polyelectrolyte solution had a good linear relationship with concentration, and the viscosity of 0.18?g/mL solution was less than 5.4?cP. Active layer facing draw solution produced the initial water flux of 11.77 LMH and active layer facing feed solution yielded the initial water flux of 6.68 LMH when the concentration of draw solution was 0.18?g/mL. The reverse solute flux was around 1 gMH, and specific reverse solute flux of 0.18?g/mL carboxylate polyelectrolyte draw solution was 0.11?g/L which was much lower than that of traditional inorganic salts. Finally, diluted draw solution was regenerated via ultrafiltration, and the recovery efficiency of 94.78% was achieved. So, carboxylate polyelectrolyte can be suitable draw solute for FO.]]>
机译:<![CDATA [<摘要ID =“ABS1”语言=“EN”OUTPORMEDIUM =“全部”> <标题>抽象 反向绘制溶质扩散不仅减少了水通量前渗透(FO),还污染饲料溶液,最终增加了绘制溶液的再生成本。在本研究中,合成了一种新的聚电解质,因为溶于溶质以解决这个问题。使用自由基聚合反应,使用具有亲水基团的丙烯酸和对苯乙烯磺酰磺酸钠单体来制造羧酸盐聚电解质。结果表明,羧酸盐聚电解质溶液的渗透压与浓度有良好的线性关系,粘度为0.18Ω·克/ ml溶液小于5.4〜4℃。面向绘制溶液的有源层产生11.77LMH的初始水通量,并且有源层面向进料溶液产生6.68 LMH的初始水通量,当填充溶液的浓度为0.18Ω·克/ mL时。反向溶质通量约为1mg,羧酸盐羧酸盐的特异性反向溶质通量为0.11Ω·克/升,其远低于传统无机盐的0.11μlΩ·克隆。最后,通过超滤再生稀释的拉伸溶液,达到94.78%的回收效率。所以,羧酸盐聚电解质可以是合适的吸引溶质。 ]]>

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