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Higher Acid Recovery Efficiency of Novel Functionalized Inorganic/Organic Composite Anion Exchange Membranes from Acidic Wastewater

机译:新型官能化无机/有机复合阴离子交换膜的酸性废水较高的酸度恢复效率

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摘要

In this work, the synthesis of a series of the functionalized inorganic/organic composite anion exchange membranes (AEMs) was carried out by employing the varying amount of inorganic filler consist of N-(trimethoxysilylpropyl)-N,N,N-trimethylammonium chloride (TMSP-TMA+Cl−) into the quaternized poly (2, 6-dimethyl-1, 4-phenylene oxide) (QPPO) matrix for acid recovery via diffusion dialysis (DD) process. Fourier transform infrared (FTIR) spectroscopy clearly demonstrated the fabrication of the functionalized inorganic/organic composite AEMs and the subsequent membrane characteristic measurements such as ion exchange capacity (IEC), linear swelling ratio (LSR), and water uptake (WR) gave us the optimum loading condition of the filler without undesirable filler particle aggregation. These composite AEMs exhibited IEC of 2.18 to 2.29 meq/g, LSR of 13.33 to 18.52%, and WR of 46.11 to 81.66% with sufficient thermal, chemical, and mechanical stability. The diffusion dialysis (DD) test for acid recovery from artificial acid wastewater of HCl/FeCl2 showed high acid DD coefficient (UH+) (0.022 to 0.025 m/h) and high separation factor (S) (139-260) compared with the commercial membrane. Furthermore, the developed AEMs was acceptably stable (weight loss < 20%) in the acid wastewater at 60 °C as an accelerated severe condition for 2 weeks. These results clearly indicated that the developed AEMs have sufficient potential for acid recovery application by DD process.
机译:在这项工作中,通过采用不同量的无机填料来进行一系列官能化无机/有机复合阴离子交换膜(AEM)的合成,由N-(三甲氧基甲硅烷基丙基)-N,N,N-三甲基氯化铵( TMSP-TMA + CL-)进入季铵化聚(2,6-二甲基-1,4-亚苯基氧化物)(QPPO)基质,用于通过扩散透析(DD)方法进行酸回收率。傅里叶变换红外(FTIR)光谱清楚地证明了官能化无机/有机复合AEM的制造和随后的膜特性测量,例如离子交换能力(IEC),线性溶胀比(LSR),以及水摄取(WR)给了我们没有不希望的填料颗粒聚集的填料的最佳加载条件。这些复合AEMS将IEC的IEC显示为2.18至2.29 meq / g,LSR为13.33至18.52%,WR为46.11至81.66%,具有足够的热,化学和机械稳定性。从HCl / FECL2的人造酸废水中酸回收的扩散透析(DD)试验显示出高酸DD系数(UH +)(0.022至0.025 m / h)和高分子与商业人士相比的高分离因子(139-260)膜。此外,在酸废水中在60℃下可接受稳定(重量损失<20%)作为加速严重条件2周。这些结果清楚地表明,发达的AEMS通过DD工艺具有足够的酸度恢复施用潜力。

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