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The sweet spot of forward osmosis: Treatment of produced water, drilling wastewater, and other complex and difficult liquid stream's

机译:正向渗透的最佳解决方案:处理采出水,钻井废水以及其他复杂而困难的液流

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摘要

Global water scarcity and substantial challenges associated with treatment of complex and impaired liquid streams have advanced the development of forward osmosis (FO), which can successfully treat and recover water for beneficial reuse. Surging research and advancements in FO, a technology once unable to compete with conventional wastewater treatment processes, have identified its sweet spot: treatment and desalination of complex industrial streams, and especially oil and gas (O&G) exploration and production wastewaters. High salt concentrations, decentralized and transient operations, the presence of free and emulsified hydrocarbons silts and clays leached from producing formations, and process additives common in O&G drilling wastewater and produced water render many common treatment technologies ineffective. Treatment and reuse of O&G wastewater, and other complex industrial streams, in a cost effective and environmentally sound manner is critical for sustainable industrial development and to meet increasingly stringent regulations. This review focuses on the successful development and demonstration of FO membrane treatment systems, supported by a review of bench-scale, pilot, and demonstration studies on treatment of O&G waste streams, landfill leachates, centrate from anaerobic digesters, activated sludge in membrane bioreactors, and liquid foods and beverages. Recent developments in membrane fabrication, system configurations, and draw solutions are briefly reviewed.
机译:全球水资源短缺以及与处理复杂和受损的液流相关的重大挑战推动了正渗透(FO)的发展,正渗透可以成功处理和回收水以利于再利用。曾经无法与传统废水处理工艺竞争的技术FO的迅猛研究和进步,已经确定了它的优势:复杂工业流的处理和脱盐,尤其是石油和天然气(O&G)勘探和生产废水。高盐浓度,分散操作和过渡操作,从生产地层中沥出的游离和乳化的碳氢化合物淤泥和粘土,以及O&G钻井废水和采出水中常见的加工助剂,使许多常见的处理技术无效。以具有成本效益和对环境无害的方式处理和重复利用O&G废水和其他复杂的工业流,对于可持续工业发展和满足日益严格的法规至关重要。这篇综述着重于FO膜处理系统的成功开发和演示,并通过对O&G废水,垃圾渗滤液,厌氧消化池中的浓缩物,膜生物反应器中的活性污泥的处理的台式规模,中试和演示研究进行回顾,以及液态食品和饮料。简要回顾了膜制造,系统配置和拉伸解决方案的最新进展。

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