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Biopolymer-induced calcium phosphate scaling in membrane-based water treatment systems: Langmuir model films studies

机译:基于膜的水处理系统中生物聚合物引起的磷酸钙垢:Langmuir模型膜研究

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摘要

Biofouling and scaling on reverse osmosis (RO) or nanofiltration (NF) membranes during desalination of secondary and tertiary effluents pose an obstacle that limits the reuse of wastewater. In this study we explored the mineral scaling induced by biopolymers originated from bacterial biofilms: bovine serum albumin (BSA), fibrinogen, lysozyme and alginic acid, as well as an extracts of extracellular polymeric substances (EPS) from bio-fouled RO membranes from wastewater treatment facility. Mineralization studies were performed on Langmuir films of the biopolymers deposited at the interface of a solution simulating RO desalination of secondary-treated wastewater effluents. All studied biopolymers and EPS induced heterogeneous mineralization of mainly calcium phosphate. Using IR spectroscopy coupled with systematic quantitative analysis of the surface pressure versus molecular-area isotherms, we determined the mineralization tendencies of the biopolymers to be in the order of: fibrinogen > lysozyme > BSA > alginic acid. The biopolymers and EPS studied here were found to be accelerators of calcium-phosphate mineralization. This study demonstrates the utilization of Langmuir surface-pressure area isotherms and a model solution in quantitatively assessing the mineralization tendencies of various molecular components of EPS in context of membrane-based water treatment systems.
机译:在二级和三级废水脱盐期间,反渗透(RO)或纳滤(NF)膜上的生物污染和结垢成为限制废水回用的障碍。在这项研究中,我们探索了由细菌生物膜产生的生物聚合物引起的矿物结垢:牛血清白蛋白(BSA),纤维蛋白原,溶菌酶和藻酸,以及废水中生物污染的反渗透膜中的细胞外聚合物提取物(EPS)治疗设施。对沉积在模拟二次处理废水的RO脱盐溶液界面处的生物聚合物的Langmuir膜进行了矿化研究。所有研究的生物聚合物和EPS均引起了主要是磷酸钙的异质矿化。使用红外光谱结合对表面压力与分子区域等温线的系统定量分析,我们确定了生物聚合物的矿化趋势为:纤维蛋白原>溶菌酶> BSA>海藻酸。发现此处研究的生物聚合物和EPS是磷酸钙矿化的促进剂。这项研究表明,在基于膜的水处理系统的背景下,Langmuir表面压力等温线等温线和模型解决方案可用于定量评估EPS各种分子成分的矿化趋势。

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