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Non-organic solvent prepared nanofiltration composite membrane from natural product tannic acid (TA) and cyclohexane-1,4-diamine (CHD)

机译:来自天然产物单宁酸(TA)和环己烷-1,4-二胺(CHD)的非有机溶剂制备的纳米过滤复合膜

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摘要

Conventional nanofiltration membrane fabrication generally includes the usage of toxic organic solvent that poses threats to the environment and public health. Herein, we explored preparing nanofiltration membrane through a non-organic solvent method utilizing the highly reactive natural product, tannic acid (TA), along with cyclohexane-1,4-diamine (CHD). Fabrication process was carried out through sequential immersion of a polyethersulfone (PES) support in two aqueous monomer phases. The absence of a solvent interface facilitated the diffusion and mixing of the two monomers, and the highly reactive quinone derivative of TA enabled the rapid film formation via Michael addition and Schiff base formation. Membrane performance was optimized through investigation of fabrication parameters. The TA-CHD membrane exhibited a negatively charged surface, with a molecular weight cut-off (MWCO) of 600 Da. The membrane prepared at optimal conditions showed approximate 97% and 50.7% rejections towards Na2SO4 and NaCl, with a water flux at approximate 35 L m(-2) h(-1) (10 bar). Fouling behaviour of the TA-CHD membrane was studied and a chemical cleaning test under two extreme pH was performed to demonstrate the chemical stability. The proposed non-organic solvent method here provides an eco-friendly way to utilize the potential of polyphenol natural products in water purification membrane preparation.
机译:常规的纳滤膜制造通常包括使用对环境和公共卫生威胁的有毒有机溶剂。在此,我们通过利用高反应性天然产物,单宁酸(TA)以及环己烷-1,4-二胺(CHD),通过非有机溶剂方法探索用非有机溶剂方法制备纳滤膜。通过在两个含水单体相中依次浸渍聚醚砜(PES)载体的顺序浸渍进行制造过程。没有溶剂界面促进了两种单体的扩散和混合,TA的高反应性醌衍生物通过Michael加成和Schiff Base形成使得快速膜形成。通过调查制造参数来优化膜性能。 TA-CHD膜表现出负电荷的表面,分子量截止(MWCO)为600Da。在最佳条件下制备的膜显示出朝向Na 2 SO 4和NaCl的抑制率近似为97%和50.7%,在近似35Lm(-2)H(-1)(10巴)下的水通量。研究了TA-CHD膜的污垢行为,并进行了两个极端pH下的化学清洁试验以证明化学稳定性。该提出的非有机溶剂方法在这里提供了一种生态友好的方式来利用水净化膜制备中的多酚天然产物的潜力。

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