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Evaluation of biologic and non-biologic methods for assessing virus removal by and integrity of high pressure membrane systems

机译:评估通过高压膜系统去除病毒和完整性的生物学和非生物学方法的评估

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This paper describes pilot-scale studies that examined three integrity test methods for: (1) quantifying virus removal by nanofiltration (NF) and reverse osmosis (RO) membrane systems when arranged in single element unit and two-stage system configurations, and (2) determining change in virus removal capability of such systems when subject to different types of membrane/o-ring compromisation and fouling. The three methods evaluated included one biologic type (MS-2 phage), that has been employed previously; and two, new non-biologic types (24-nanometre polystyrene fluorescent dyed microspheres and fluorescent Rhodamine WT [R-WT] dye, molecular mass 496 daltons). All three surrogates were employed in a manner intended to show a minimum of 4-logs removal by the NF and RO membranes selected for test. Methods of compromisation included a pinhole induced through one membrane leaf in the spiral wound NF/RO element, and both cracking of and removal of sections from one of the permeate tube o-rings. Testing was conducted on two source waters, representing brackish surface water and effluent categories: a microfiltered secondary effluent and a river water. The river water is characterized by low to moderate TDS and high TOC and was treated with conventional alum coagulation, flocculation, sedimentation and granular media filtration for subsequent membrane processing.
机译:本文介绍了中试规模的研究,这些研究检查了以下三种完整性测试方法:(1)量化当以单元素单元和两阶段系统配置布置时,通过纳滤(NF)和反渗透(RO)膜系统去除病毒的情况;和(2 )确定此类系统在受到不同类型的膜/ O型圈损坏和污染时其病毒清除能力的变化。评估的三种方法包括一种先前已采用的生物学类型(MS-2噬菌体);以及两种新的非生物类型(24纳米聚苯乙烯荧光染色微球和荧光若丹明WT [R-WT]染料,分子量496道尔顿)。所有三种替代物的使用方式均旨在显示被选择用于测试的NF和RO膜去除最少4-log的物质。折衷的方法包括在螺旋缠绕的NF / RO元件中穿过一片膜叶诱导出针孔,并从其中一个渗透管O形圈上开裂并去除部分。对两种来源的水进行了测试,分别代表微咸的地表水和废水类别:微滤二级废水和河水。该河水的特征在于TDS低至中等,TOC高,并经过常规明矾凝结,絮凝,沉淀和颗粒介质过滤处理,用于后续的膜处理。

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