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Streamlining Zinc Removal from Completion Fluid Flowback and Produced Water in Offshore Oil Gas Production

机译:简化从完井流体流动的锌清除,并在海上石油和天然气生产中生产水

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This paper and its presentation provides an overview of an innovative way to treat zinc-contaminated water that might, for example, result from the use of completion fluids with extremely dense zinc bromide-up to 19.2 pounds (8.7 kilograms) per gallon-in high-pressure wells. Traditional approaches to treating zinc from completion fluid flowback and produced water are cumbersome and costly, with potential for perpetual liabilities associated with onshore in-ground disposal. Discussed will be a simpler, highly effective system that can save as much as 25 percent or more in zinc treatment and disposal costs.The patented system combines two technologies-reverse osmosis (RO) membrane and ion exchange (Ⅸ) resin-to minimize zinc waste volumes. It works without chemicals and has a relatively low residence time. By selectively removing zinc, the remainder of the salts and most of the water can be discharged to the ocean. The zinc-removal system is available in two options: (1) RO with Ⅸ and (2) Ⅸ only. Both components arrive in a skid-based, offshore package. The entire system is fully compliant with API RP 14C safety standards and can operate as a standalone or integrated with pre-treatment systems that separate oil and other contaminants from completion fluid flowback or produced water.In a 2019 efficiency test with a large independent E&P operator in the Gulf of Mexico, the system treated 36,387 barrels of water using five pairs of Ⅸ resin columns that together averaged 5 barrels-per-minute flow rates, with four total backwash cycles. Because the TDS of the produced water was already high, RO was not needed as part of the treatment system. Ultimately, the operator was able to discharge 35.400 barrels of water overboard instead of being collected and sent ashore. Only 900 barrels of zinc water from the Ⅸ resin columns needed to be sent ashore for disposal, although that amount was reduced by 75 percent to just 225 barrels upon the system's second deployment a month later.
机译:本文及其介绍概述了治疗锌污染水的创新方法,这些方法可能是由于每加仑高达19.2磅(8.7千克)的完工液而导致的完工液。 - 压力井。将锌从完井流体返回处理和生产的水处理的传统方法是繁琐的,并且成本高昂,具有与陆上地上处置相关的永久负债潜力。讨论将是一种更简单,高效的系统,可以在锌处理和处置成本中节省多达25%或更多。专利制度结合了两种技术 - 反渗透(RO)膜和离子交换(ⅸ)树脂 - 以最小化锌浪费量。它没有化学品工作,停留时间相对较低。通过选择性地除去锌,盐的其余部分和大部分水可以排放到海洋。锌清除系统有两种选择:(1)只有ⅸ和(2)ⅸ。两种组件都达到了基于SkID的海上包装。整个系统完全符合API RP 14C安全标准,可以作为独立操作或与预处理系统集成,使油和其他污染物从完井流体流量流过或产生的水中分开。在2019年使用大型独立E&P算子的效率测试中在墨西哥湾,系统使用五对树脂柱治疗了36,387桶水,其共同平均每分钟流量率为5次,具有四个全反冲动循环。因为所生产的水的TDS已经很高,因此作为治疗系统的一部分不需要RO。最终,操作员能够排放35.400桶水,而不是被收集并送岸。只需900桶树脂柱的锌水才能送岸,虽然一个月后,但在系统的第二次部署时,这一金额将减少75%至225桶。

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