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The History and Present Status of the World’s First Major Membrane-Based Water Reuse System in the Petrochemical Industry

机译:世界上第一个主要膜的水重利系统在石油化工行业中的历史和现状

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This paper reviews the history and present status of a successful advanced recycled water treatment system in operation for more than 12 years in a major petrochemical plant. This pioneering project started with a water resources management study that identified an in-plant recycled water project that would be both environmentally and economically beneficial. Because of the relatively high total dissolved solids (TDS) of the water supplied from the water company, using highly purified recycled water to feed the plant’s deionization (DI) system would save 70 to 80 percent of the expensive DI regeneration cost and drastically reduce water and wastewater fees. A one-year pilot testing program confirmed the recycled water system’s technical feasibility and provided design criteria for the full-scale 6,600 cubic meters per day (m3/d) advanced treatment system, which includes the processes of chemical oxidation, granular media filtration, granular activated carbon (GAC) adsorption, ultrafiltration (UF), ultraviolet (UV), reverse osmosis (RO), and decarbonation. Over the past 12 years, more than 25 million m3 of purified water were recycled to feed the plant's DI system.
机译:本文审查了在一家主要的石油化工厂运行中成功先进的再生水处理系统的历史和现状。这项开创性项目始于水资源管理研究,确定了植物内再生水项目,这些项目将是环境和经济的有益。由于从水公司供应的水的溶解固体(TDS)的总溶解固体(TDS),使用高度纯化的再循环水来喂养植物的去离子(DI)系统将节省70%至80%的昂贵的DI再生成本,大大减少水和污水费。一年的试验计划确认了再生水系统的技术可行性,并为全级6,600立方米(M3 / D)先进治疗系统提供了设计标准,包括化学氧化,颗粒介质过滤,粒度活性炭(GAC)吸附,超滤(UF),紫外线(UV),反渗透(RO),和脱二氧化碳。在过去的12年里,再循环超过2500万M3的纯净水以喂养植物的DI系统。

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