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首页> 外文期刊>Journal of Membrane Science >Fouling of a nanofiltration membrane by a beta-lactoglobulin tryptic hydrolysate: impact on the membrane sieving and electrostatic properties
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Fouling of a nanofiltration membrane by a beta-lactoglobulin tryptic hydrolysate: impact on the membrane sieving and electrostatic properties

机译:β-乳球蛋白胰蛋白酶解产物对纳滤膜的污染:对膜筛分和静电性能的影响

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摘要

The present work was undertaken in order to characterize the impact of fouling by a beta-LG tryptic hydrolysate on the retention characteristics of a "loose" NF membrane. The influence of some physico-chemical (feed concentration, pH) as well as operating parameters (transmembrane pressure, feed velocity) on the ability of the G- 10 membrane (Osmonics, Minnetonka, MN) with a molecular weight cut-off (MWCO) of 2500 g mol(-1) to fractionate acid, neutral and basic peptides was first evaluated using a screening NF procedure. Preliminary electrolyte retention (NaCl, Na2SO4, CaCl2) measurements had shown that this NF membrane seems to exhibit Dorman exclusion mechanism typical of a negatively charged membrane. Complete retention of acid peptides was observed with the G- 10 membrane at both pH 5 and 9. Separation between neutral and basic peptides was also achievable at pH 9 as compared to pH 5 due to the electrostatic repulsion of the neutral peptides that acquire a net negative at pH 9. The fractionation between neutral and basic peptides was optimal when the transmembrane pressure was raised to intermediate or higher values. The effect of fouling in these selected NF optimal conditions on the sieving and electrostatic properties of the G- 10 was further studied by test solute retention methods. It was shown that an important hydraulic resistance due to fouling developed during NF of a 0. 1 % beta-LG hydrolysate solution. At pH 5 and 9, the resulting sieving property of the G- 10 membrane clearly depend on this fouled peptidic layer. Furthermore, the net negative charge of the membrane seemed to be reduced only after fouling at pH 9. It was thus suggested that the composition of the peptide layer interacting with the G- 10 membrane and causing fouling is pH-dependent. (c) 2005 Elsevier B.V. All rights reserved.
机译:进行本工作是为了表征β-LG胰蛋白酶水解产物结垢对“松散” NF膜保留特性的影响。一些理化性质(进料浓度,pH)以及操作参数(跨膜压力,进料速度)对分子量截断值(MWCO)的G-10膜(Osmonics,Minnetonka,MN)的能力的影响首先使用筛选NF程序评估2500 g mol(-1)分离出酸性,中性和碱性肽)。初步的电解质保留(NaCl,Na2SO4,CaCl2)测量表明,这种NF膜似乎表现出典型的带负电荷膜的Dorman排斥机理。在pH 5和9下,使用G-10膜都可以观察到酸性肽的完全保留。与pH 5相比,由于pH值为9的中性肽的静电排斥,中性肽和碱性肽也可以实现分离pH值为9时呈负值。当跨膜压力升至中等或更高值时,中性和碱性肽之间的分馏是最佳的。通过测试溶质保留方法,进一步研究了在这些选定的NF最佳条件下结垢对G-10筛分和静电性能的影响。结果表明,由于在NF过程中0.1%的β-LG水解产物溶液的结垢而产生了重要的水力阻力。在pH 5和9下,所得的G-10膜筛分性能显然取决于该污垢的肽层。此外,膜的净负电荷似乎仅在pH 9结垢后才减少。因此表明,与G-10膜相互作用并引起结垢的肽层的组成是pH依赖性的。 (c)2005 Elsevier B.V.保留所有权利。

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