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A Bifunctional Zwitterion That Serves as Both a Membrane Modifier and a Draw Solute for Forward Osmosis Wastewater Treatment

机译:双官能两性末端,用作膜改性剂和用于前渗透废水处理的溶液溶质

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摘要

Producing clean water and simultaneously recovering valuable compounds are a big challenge in wastewater treatment. Here we designed a bifunctional zwitterion of (1-(3-aminopropyl)imidazole) propanesulfonate (APIS) for membrane modification and being a draw solute as well for water production and protein enrichment via forward osmosis (FO). Immobilized to the membrane surface by a fast amidation reaction, APIS endows the membrane with favorable properties benefiting the FO process. The APIS-modified sulfonated poly(ether sulfone) (APIS-sPES) membrane produces a water flux 101% higher than that of the nascent membrane (from 9.3 to 18.7 LMH) with 0.5 M NaCl as the draw solution. The APIS-sPES membrane also exhibits higher fouling resistance with a much smaller decline in water permeation and stronger renewability with the flux restored to 88% of the original value compared to a 59% recovery rate of the nascent membrane after 20-h experiments against a 200 ppm ovalbumin solution. APIS produces a fair good water flux coupled with negligible reverse diffusion when used as a draw solute and can be readily regenerated via pH regulation. Unlike the conventional NaCl draw solute, APIS does not contaminate or damage protein structure. The APIS-sPES membrane and APIS draw solute prove a perfect match in protein-containing wastewater treatment and protein enrichment.
机译:生产清水并同时回收有价值的化合物是废水处理中的一个大挑战。在这里,我们设计了一种(1-(3-氨基丙基)咪唑)丙二磺酸盐(API)的双官能两性硫酸丙酯(API),以及通过前渗透(FO)的水生产和蛋白质富集的溶液。通过快速酰胺化反应将其固定在膜表面上,API赋予膜具有有利的性质,使FO工艺有益于FO方法。 APIS改性的磺化聚(醚砜)(API-SPES)膜产生的水通量高于加入膜(从9.3-18.7 LMH)的水助焊剂,其中0.5M NaCl为拉伸溶液。 API-SPES膜还表现出更高的污垢抗性,水渗透的下降较小,可再生能力恢复为原始值的88%,而20-H实验后的新生膜的恢复率为59% 200ppm卵蛋白溶液。当用作汲取溶质时,API产生具有可忽略的反扩散的公平良好的水通量,并且可以通过pH调节容易地再生。与常规NaCl汲取溶质不同,API不污染或损伤蛋白质结构。 APIS-SPES膜和API吸引溶质在含蛋白质废水处理和蛋白质富集中的完美匹配。

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