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Enzymatic extraction of activated sludge extracellular polymers and implications on bioflocculation

机译:酶法提取活性污泥细胞外聚合物及其对生物絮凝的影响

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This study examines enzyme hydrolysis, a mild, effective, but a rarely used method of extracellular polymer extraction, in removing polymers from mixed culture activated sludge flocs. Two carbohydrate specific enzymes (α-amylase and cellulase) and a protein specific enzyme (proteinase) are used during the study. First, the kinetic aspect is investigated, then enzyme dose optimization is carried out on laboratory grown activated sludge samples cultured at solids retention times (SRT) of 4 and 20 days. A more commonly used cation exchange resin (CER) extraction technique is also employed for comparison purposes. Results indicate that the extraction of extracellular polymers by enzymes is a rather quick process reaching equilibrium within only a few hours. As the doses of enzymes are increased, the extracted polymer quantities increase up to a certain dose, beyond which not much extraction is observed. The method does not cause any significant cell lysis as measured by the viable cell counts. Carbohydrate-hydrolyzing enzymes extract small amount of proteins along with the carbohydrates and protein-hydrolyzing enzyme extracts some carbohydrates together with the proteins, indicating that proteins and carbohydrates exist bound to each other in the extracellular polymer network of sludge. Enzyme extraction generally gives a lower estimate of polymers compared to the CER method, but correctly detects the trends in the polymer quantity.
机译:这项研究检查了一种酶水解方法,它是一种温和,有效但很少使用的细胞外聚合物提取方法,可以从混合培养的活性污泥絮凝物中去除聚合物。在研究过程中使用了两种碳水化合物特异性酶(α-淀粉酶和纤维素酶)和一种蛋白特异性酶(蛋白酶)。首先,研究动力学方面,然后对在4和20天的固体保留时间(SRT)下培养的实验室生长的活性污泥样品进行酶剂量优化。为了比较,还采用了更常用的阳离子交换树脂(CER)提取技术。结果表明,通过酶提取胞外聚合物是一个相当快的过程,仅需几个小时即可达到平衡。随着酶剂量的增加,提取的聚合物量增加到一定剂量,超过此剂量则观察不到很多提取。如通过活细胞计数所测量,该方法不会引起任何明显的细胞裂解。碳水化合物水解酶与碳水化合物一起提取少量蛋白质,而蛋白质水解酶与蛋白质一起提取一些碳水化合物,表明蛋白质和碳水化合物在污泥的细胞外聚合物网络中相互结合存在。与CER方法相比,酶提取通常对聚合物的估算值较低,但可以正确检测出聚合物数量的趋势。

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