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Food polymer pullulan-K-carrageenan composite membrane performed smart function both on mass transfer and molecular size recognition

机译:食品聚合物支链淀粉-K-角叉菜胶复合膜在传质和分子大小识别上均具有智能功能

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Biopolymer pullulan (P) can be cross-linked easily by glutaraldehyde, and additive κ-carra-geenan (κC) completes an attractive combination for increasing tensile strength sufficiently for practical use. In this study, the K-carrageenan mass fraction (F_C) was defined as F_C = (κC[g]/ (P[g] + κC[g])) and was set at 0.33, 0.50, 0.66, and 0.83. Composite membranes were successfully prepared in our experiment F_C ranges by the casting method. The maximum stress and strain, water content, mass-transfer characteristics, and pure water permeability were demonstrated to be a function of the added cross-linker glutaraldehyde. Increasing the mass fraction of K-carrageenan enhanced the maximum stress and the maximum strain at break, suggesting that pullulan imparts flexibility and the K-carrageenan imparts stiffness to the composite membranes. The mass-transfer characteristics were analysed based on changes in the effective diffusion coefficient in the composite membranes. Some water-soluble marker components were employed to estimate the size of the mass-transfer channel in the composite membranes. The reference molecular size was from 60 to 826Da, indicating Urea, Methyl Orange, Indigo Carmine, Bordeaux S, and Brilliant Blue. The effective diffusion coefficient was dramatically changed by a factor of 26,000 for F_C 0.66, even though the molecular weight of the reference only changed by a factor of 14. The F_C value significantly controls not only the mechanical strength but also the molecular size recognition of the membrane. A large dependence on the molecular size was achieved by specific polymer frame-works using the excellent combination of pullulan and κ-carrageenan.
机译:生物聚合物支链淀粉(P)可以通过戊二醛容易地交联,添加剂κ-卡拉兰基(κC)完成了一种引人注目的组合,可充分提高拉伸强度以供实际使用。在这项研究中,将K-角叉菜胶质量分数(F_C)定义为F_C =(κC[g] /(P [g] +κC[g])),并将其设置为0.33、0.50、0.66和0.83。通过流延法成功地在我们的实验F_C范围内制备了复合膜。已证明最大应力和应变,水含量,传质特性和纯净水渗透性是所添加的交联剂戊二醛的函数。增加K-角叉菜胶的质量分数可增加最大应力和最大断裂应变,表明支链淀粉赋予柔韧性,而K-角叉菜胶赋予复合膜刚度。基于复合膜中有效扩散系数的变化分析了传质特性。一些水溶性标记物组分用于估计复合膜中传质通道的大小。参考分子大小为60至826Da,指示尿素,甲基橙,靛蓝胭脂红,波尔多S和亮蓝。即使参比的分子量仅变化了14倍,对于F_C 0.66,有效扩散系数却发生了26,000倍的显着变化。F_C值不仅显着控制了机械强度,而且还控制了聚合物的分子大小识别。膜。通过使用支链淀粉和κ-角叉菜胶的优异组合,通过特定的聚合物框架,对分子大小有很大的依赖性。

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