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Membrane separation processes: Optical resolution of lysine and asparagine amino acids

机译:膜分离过程:赖氨酸和天冬酰胺氨基酸的光学拆分

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Enantioselective thin film composite polymer membranes were prepared by interfacial co-polymerization of l-arginine with trimesoyl chloride in-situ on polysulfone ultrafiltration membrane. The chemical compositions of composite membranes were determined by attenuated total reflection Fourier transform infrared (ATR-FTIR) spectroscopy. Membranes are characterized by using Scanning Electron Microscopy (SEM) and Atomic Force Microscopy (AFM). The optical resolution of α-amino acids was performed in pressure driven separation mode. The performances of membranes were compared in terms of flux, permselectivity, enantioselectivity and separation factor. The composite membranes exhibited 64-78% separation of amino acids. The membrane permeated D-enantiomers preferentially such that enantiomeric excesses of ~92% for α-enantiomer of lysine in permeates were achieved. The corresponding separation factors (a) were in the range of 4-21. As an immediate application, this study would help us design more efficient, nature-inspired selective chiral membranes that are able to separate enantiomers of chiral species.
机译:对映选择性薄膜复合聚合物膜的制备是通过在聚砜超滤膜上进行1-精氨酸与均苯三甲酰氯的界面共聚而制备的。通过衰减全反射傅立叶变换红外光谱(ATR-FTIR)光谱确定复合膜的化学成分。膜的特征在于使用扫描电子显微镜(SEM)和原子力显微镜(AFM)。 α-氨基酸的光学拆分在压力驱动的分离模式下进行。从通量,渗透选择性,对映选择性和分离因子方面比较了膜的性能。复合膜表现出64-78%的氨基酸分离。所述膜优先渗透D-对映体,从而使渗透物中赖氨酸的α-对映体的对映体过量达到〜92%。相应的分离系数(a)在4至21的范围内。作为一项直接应用,这项研究将帮助我们设计更有效的,受自然启发的选择性手性膜,该膜能够分离手性物种的对映异构体。

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