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Preparation, characterization and performance evaluation of chiral selective composite membranes

机译:手性选择性复合膜的制备,表征及性能评价

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摘要

Composite membranes prepared by the interfacial polymerization of L-arginine and piperazine with trimesoyl chloride in situ on microporous polysulfone membrane are reported. The chiral selective layer of composite membranes was characterized by variable angle attenuated total reflectance Fourier transform infrared spectroscopy (ATR-FTIR) and scanning electron microscopy. The enantioselective performance of membranes was examined and correlated with the composition of selective layer through optical resolution of racemic arginine in reverse osmosis mode. The effects of reverse osmosis process parameters such as trans-membrane pressure, permeation time and concentration of feed on the performance of the membranes were also determined. The observation indicated that membranes having chiral environment performed enantiomeric separation by permeating D-arginine preferentially over 89% enantiomeric excess. The membranes without chiral environment (Ml and M4) though exhibited separation of arginine did not perform enantiomeric separation. The trans-membrane pressure and concentration of feed solution have noticeable effects on enantioseparation. Higher enantiomeric excess resulted from dilute feed and at low trans-membrane pressure. The membranes prepared from L-arginine (2%) and trimesoyl chloride (1 %) solutions exhibited highest enantiomeric excess (89%). The enantioselectivity of membranes was independent of time. The separation factor (a) for D-arginine achieved as high as ~17.
机译:报道了通过L-精氨酸和哌嗪与间苯三甲酰氯在微孔聚砜膜上原位界面聚合制备的复合膜。复合膜的手性选择性层的特征在于可变角衰减全反射傅里叶变换红外光谱(ATR-FTIR)和扫描电子显微镜。通过外消旋精氨酸在反渗透模式下的光学拆分,研究了膜的对映选择性性能,并将其与选择性层的组成相关。还确定了反渗透工艺参数,例如跨膜压力,渗透时间和进料浓度对膜性能的影响。观察表明,具有手性环境的膜通过优先渗透D-精氨酸超过89%的对映体过量而进行对映体分离。没有手性环境的膜(M1和M4)尽管表现出精氨酸的分离,但没有进行对映体分离。跨膜压力和进料溶液浓度对对映体分离有显着影响。稀进料和低跨膜压力导致较高的对映体过量。由L-精氨酸(2%)和均苯三甲酰氯(1%)溶液制备的膜表现出最高的对映体过量(89%)。膜的对映选择性与时间无关。 D-精氨酸的分离系数(a)高达〜17。

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