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Chitosan/β -Cyclodextrin Composite Membranes for Chiral Resolution of Amino Acids

机译:壳聚糖/β-环糊精复合膜的手性拆分氨基酸

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Semi-IPN (interpenetrating networks)-structured chitosan/β -cyclodextrin (CS/CD) composite membranes were prepared to investigate the influence of β -cyclodextrin on permselectivity and permeate flux of CS composite membranes in the enantiomer separation of tryptophan (Trp) racemate. Diffusion selectivity, sorption selectivity, and overall permselectivity of the composite membranes toward Trp racemate were investigated in detail. Diffusion selectivity, compared with sorption selectivity, was found to be preponderant in the enantiomer separation process. With the increase of β -cyclodextrin polymer (β -CDP) content within the CS/CD composite membrane, the permselectivity decreased considerably due to relatively lower complexation selectivity of β -CDP that reduced both the diffusion selectivity and the overall permselectivity. Therefore, the more the β -CDP content within the membrane, the lower the permselectivity of the membrane; On the other hand, permeate flux was found to increase significantly as a result of the facilitated Trp mass transport through β -CDP within the membrane.e, themore tthe β
机译:制备半IPN(互穿网络)结构的壳聚糖/β-环糊精(CS / CD)复合膜,以研究β-环糊精对色氨酸(Trp)外消旋体对映体分离中CS复合膜的渗透选择性和渗透通量的影响。 。详细研究了复合膜对Trp外消旋物的扩散选择性,吸附选择性和总渗透选择性。发现与吸附选择性相比,扩散选择性在对映异构体分离过程中占优势。随着CS / CD复合膜中β-环糊精聚合物(β-CDP)含量的增加,由于β-CDP的相对较低的络合选择性降低了扩散选择性和总体渗透选择性,因此渗透选择性显着降低。因此,膜内的β-CDP含量越多,膜的渗透选择性越低。另一方面,由于通过膜内的β-CDP促进了Trp质量传递,因此发现渗透通量显着增加。

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