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Modeling of protein and phenolic compound removal from aqueous solutions by electrocoagulation

机译:用电凝血溶液和酚类化合物的模拟

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摘要

Electrocoagulation is a technique basically applied in water and wastewater treatment, but which has a number of potential applications in polymer, protein, drug, and vaccine delivery. In this work, we correlate the current applied between the electrodes to the removal of phenolic compounds or protein from aqueous solutions, but the principle can also be applied to other biological compounds such as plant pigments and sugars. Simple and time-dependent models were developed based on the complex formation between these biological substances and the aluminium hydroxide gel phase. The models developed represent a good agreement with experimental data (R(2) as high as 0.992). Besides construction of the models, the effect of pH on the efficiency of removal of proteins and phenolic compounds was evaluated. It was found that this parameter has significant effect on the efficiency of the electrocoagulation and the maximal removal efficiency for bovine serum albumin and phenolic compound catechin was observed at pH 8.0. (C) 2009 American Institute of Chemical Engineers Biotechnol. Prog., 26: 186-191, 2010
机译:电凝是一种基本上应用于水和废水处理中的技术,但其具有聚合物,蛋白质,药物和疫苗递送的许多潜在应用。在这项工作中,我们将电极与水溶液中除去酚类化合物或蛋白质之间施加的电流相关,但是原理也可以应用于其他生物化合物,如植物颜料和糖。基于这些生物物质与氢氧化铝凝胶相之间的复杂形成,开发了简单和时间依赖模型。该模型与实验数据(R(2)高达0.992)表示良好的一致性。除了模型的结构之外,评价pH对蛋白质和酚类化合物去除效率的影响。发现该参数对电凝的效率显着影响,并且在pH8.0下观察到牛血清白蛋白和酚类化合物儿茶素的最大去除效率。 (c)2009年美国化学工程师学院Biotechnol。 Prog。,26:186-191,2010

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