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Proposed Methodology for Determining Reverse Osmosis Unit Integrity for Pathogen Removal Credit

机译:用于确定病原体去除信用的反渗透单位完整性的拟议方法

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摘要

It is intuitive to suggest that reverse osmosis (RO), which is used for the removal of dissolved solutes (salts), can also be used to achieve the removal of virus, Giardia, and Cryptosporidium. The challenge is that the use of conductivity for water quality monitoring of the RO process lacks sufficient sensitivity, and a direct integrity test that translates water quality performance to regulatory compliance for pathogen removal has not been established or accepted as a practice. The basis of this article is as follows: It is proposed for a production-level (e.g., 1 mgd or larger) RO system that the sensitivity can be increased by using the results of a conductivity profile, which is an existing diagnostic tool used to identify integrity defects within an RO unit. The proposed direct integrity test methodology uses the results of a conductivity profile to (1) determine that RO unit integrity exists within statistical limits, (2) isolate and differentiate between the conductivity associated with diffusion and with a defect, and (3) calculate the log removal value (LRV) that would be associated with an RO membrane defect. The resulting calculation approach significantly increases the sensitivity of the LRV calculation and is supported by full-scale testing data using MS2 coliphage as the challenge organism.
机译:直观地暗示,用于去除溶解的溶质(盐)的反渗透(RO)也可以用于去除病毒,贾第鞭毛虫和隐孢子虫。面临的挑战是,将电导率用于反渗透过程的水质监测缺乏足够的敏感性,并且尚未建立或将将水质性能转化为法规要求的病原菌去除方法的直接完整性测试。本文的依据如下:对于生产级(例如1 mgd或更大)的RO系统,建议通过使用电导率分布图的结果来提高灵敏度,这是一种现有的诊断工具,可用于识别RO单元内的完整性缺陷。拟议的直接完整性测试方法使用电导率分布图的结果来(1)确定RO单元完整性在统计范围内存在;(2)隔离和区分与扩散和缺陷相关的电导率,以及(3)计算对数去除值(LRV),可能与反渗透膜缺陷有关。所得的计算方法显着提高了LRV计算的灵敏度,并得到了以MS2噬菌体为攻击生物的全面测试数据的支持。

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