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Adsorption of the uremic toxin p-cresol onto hemodialysis membranes and microporous adsorbent zeolite silicalite

机译:尿毒症对对甲酚在血液透析膜和微孔吸附分子筛硅沸石上的吸附

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摘要

para-Cresol CH(3)C(6)H(4)OH is a protein-bound solute which is not eliminated efficiently by hemodialysis systems. In this study, we present adsorption of p-cresol as a complementary process to hemodialysis. The kinetics and isotherms of adsorption onto cellulose-based membranes (cellulose diacetate and triacetate), synthetic membranes (polyamide, polysulfone, polyacrylonitrile and polymethylmethacrylate) and microporous zeolite silicalite (MFI), have been evaluated in static conditions. The results indicate that p-cresol has a low affinity to all membranes but polysulfone and polyamide and that the times to reach equilibrium conditions are slow. In contrast, equilibration time on silicalite is fast (2min to eliminate 90%) while adsorption levels are high (maximum adsorption about 106mgg(-1)). Adsorption onto microporous adsorbents could be a novel way to eliminate uremic toxins from blood.
机译:对甲酚CH(3)C(6)H(4)OH是一种结合蛋白的溶质,血液透析系统无法有效消除。在这项研究中,我们提出对甲酚的吸附作为血液透析的补充过程。已经在静态条件下评估了在纤维素基膜(二乙酸纤维素和三乙酸纤维素),合成膜(聚酰胺,聚砜,聚丙烯腈和聚甲基丙烯酸甲酯)和微孔沸石硅沸石(MFI)上吸附的动力学和等温线。结果表明对甲酚对除聚砜和聚酰胺外的所有膜均具有低亲和力,并且达到平衡条件的时间很慢。相反,在硅沸石上的平衡时间很快(2分钟即可消除90%),而吸附水平却很高(最大吸附量约为106mgg(-1))。吸附到微孔吸附剂上可能是消除血液中尿毒症毒素的新方法。

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