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首页> 外文期刊>Environmental Science: Water Research & Technology >Synergistic effect of combined colloidal and organic fouling in membrane distillation: Measurements and mechanisms
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Synergistic effect of combined colloidal and organic fouling in membrane distillation: Measurements and mechanisms

机译:膜蒸馏中胶体和有机污垢的协同增效作用:测量和机理

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We examined the synergistic effect of combined fouling in MD process with three organic foulants - algi-nate, bovine serum albumin (BSA), and humic acid - in the presence of colloidal silica particles. Membrane fouling profiles were quantified by water flux decline and permeate conductivity. Mechanisms of the synergistic effect of combined fouling were revealed by light scattering measurements and infrared spectra of foulant-foulant interaction and foulant-membrane interaction. Membrane fouling morphology and element mapping provided further details of transport of colloidal silica particles and elucidated the mechanisms for silica-induced pore wetting. Specially, gelation of alginate formed an alginate layer on membrane surface and prevented penetration of silica particles into the membrane matrix, which was confirmed by silicon element mapping as well as infrared spectra. Adsorption of BSA protein by colloidal silica aggregates led to a sharp water flux decline and a partial pore wetting. Humic acid, forming a coil structure in high salinity, exhibited limited interaction with colloidal silica that penetrated into the membrane matrix and wetted membrane pores, thereby compromising the product water quality. Results showed that the combined organic fouling with colloidal silica particle not only deteriorated water production, but also compromised product quality by partial membrane wetting.
机译:我们研究了在胶体二氧化硅颗粒存在下,在MD过程中与三种有机污垢剂(藻酸盐,牛血清白蛋白(BSA)和腐殖酸)联合污垢的协同作用。通过水通量下降和渗透率电导率来量化膜污染曲线。通过光散射测量和污垢-污垢相互作用和污垢-膜相互作用的红外光谱揭示了结垢协同效应的机理。膜结垢的形态和元素图谱提供了胶体二氧化硅颗粒传输的更多细节,并阐明了二氧化硅诱导的孔润湿的机理。特别地,藻酸盐的胶凝在膜表面上形成藻酸盐层并防止二氧化硅颗粒渗透到膜基质中,这通过硅元素图谱和红外光谱得以证实。胶态二氧化硅聚集体对BSA蛋白的吸附导致水通量急剧下降和部分孔润湿。腐殖酸以高盐度形成卷曲结构,与渗透到膜基质和润湿的膜孔中的胶态二氧化硅的相互作用有限,从而损害了产品的水质。结果表明,有机污垢与胶体二氧化硅颗粒的结合不仅会降低产水量,而且还会因部分膜润湿而损害产品质量。

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    Institute for Sustainability and Innovation, College of Engineering and Science,Victoria University, Melbourne, VIC 8001, Australia,CSIRO Manufacturing, Private bag 10, Clayton South MDC, VIC 3169, Australia,Institute of Marine Geology and Resource, Ocean College, Zhejiang University,Zhoushan, Zhejiang 316021, China;

    Institute for Sustainability and Innovation, College of Engineering and Science,Victoria University, Melbourne, VIC 8001, Australia;

    CSIRO Manufacturing, Private bag 10, Clayton South MDC, VIC 3169, Australia;

    CSIRO Manufacturing, Private bag 10, Clayton South MDC, VIC 3169, Australia;

    Institute of Marine Geology and Resource, Ocean College, Zhejiang University,Zhoushan, Zhejiang 316021, China;

    Institute for Sustainability and Innovation, College of Engineering and Science,Victoria University, Melbourne, VIC 8001, Australia;

    Institute for Sustainability and Innovation, College of Engineering and Science,Victoria University, Melbourne, VIC 8001, Australia;

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