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Desalination Pervaporation Using Modified Zwitterionic Poly(Arylene Ether Sulfone) Membranes

机译:使用改性两性离子聚(芳烃醚砜)膜进行海水淡化渗透汽化

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摘要

Freshwater is becoming more and more scarce, and the need to make use of other water resources is critical. Although processes such as Sea Water Reverse Osmosis (SWRO) exist, these processes are not without drawbacks, such as a brine with a high salt concentration being a byproduct of SWRO. Pervaporation is a potential solution to this problem, however the membranes used in these processes are prone to fouling and the high salt conditions are difficult to work around. Incorporating zwitterions into the polymeric backbone of these membranes has proven to be an effective way to increase fouling resistance. In this work, sulfobetaine – based zwitterions were incorporated into the backbone of poly(arylene ether sulfone) to synthesize sulfobetaine – modified poly(arylene ether sulfone) (SB-PAES) membranes, which were then tested in a cross-flow pervaporation apparatus to analyze salt rejection. SB-PAES membranes were cast with two different methods to create a consistent casting protocol. It was determined that casting solutions with a lower weight percent in petri dishes was optimal, but still needs more exploration. The SB-PAES membranes were tested with feed solutions of pure water and salt solutions with concentrations of 1 g/L, 5 g/L, and 10 g/L. Both 50% and 25% charge SB-PAES membranes were tested. The 50% charge membranes showed good flux and salt rejection over 99.9% for a 10 g/L feed solution, while the 25% charge membranes showed less flux and salt rejection around 85% for a feed solution of 10 g/L.
机译:淡水越来越稀缺,利用其他水资源的需求至关重要。虽然存在海水反渗透(SWRO)等工艺,但这些工艺并非没有缺点,例如高盐浓度的盐水是SWRO的副产品。渗透汽化是解决这个问题的潜在方法,但是这些过程中使用的膜容易结垢,并且高盐条件很难解决。将两性离子掺入这些膜的聚合物主链中已被证明是提高抗污性的有效方法。在这项工作中,将磺基甜菜碱基两性离子掺入聚亚芳基醚砜的主链中,以合成磺基甜菜碱改性聚亚芳基醚砜(SB-PAES)膜,然后在错流渗透汽化装置中对其进行测试以分析脱盐率。SB-PAES膜采用两种不同的方法浇铸,以创建一致的浇注方案。确定在培养皿中具有较低重量百分比的铸造溶液是最佳的,但仍需要更多的探索。SB-PAES膜采用浓度为1 g/L、5 g/L和10 g/L的纯水和盐溶液的进料溶液进行测试。测试了50%和25%电荷的SB-PAES膜。50%电荷膜在99%以上表现出良好的通量和脱盐性能。10 g/L 进料溶液的通量和脱盐率较低,而 10 g/L 进料溶液的通量和脱盐率较低,约为 85%。

著录项

  • 作者

    Martin, Adam.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Chemical engineering.;Polymer chemistry.
  • 学位
  • 年度 2022
  • 页码 24
  • 总页数 24
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Chemical engineering.; Polymer chemistry.;

    机译:化学工程。;高分子化学。;
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