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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Advanced supercritical water-based process concepts for treatment and beneficial reuse of brine in oil/gas production
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Advanced supercritical water-based process concepts for treatment and beneficial reuse of brine in oil/gas production

机译:高级超临界水基工艺概念,用于油/天然气生产中盐水的处理和有益再利用

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摘要

Produced water generated from oil/gas reservoirs is a cost burden for oil/gas producers, with over 21 billion barrels of the waste generated in 2019. Average disposal costs range from $4.00-$8.00.bbl(-1), with up to $20.bbl(-1) spent on transportation alone. Dissolved solids content is a contributing factor which limits economical treatment options for this waste stream. This work proposes a novel technique that can handle high salinity waste, employing favorable properties past the critical point of water. In this study, process simulation of two supercritical water desalination (SCWD) scenarios was completed. Zero liquid discharge (ZLD) and brine concentration operating scenarios were compared, weighing the associated economics and benefits for each case. The results were shown to be economically feasible for brines with a high dissolved solids content, ranging from $3.49 to $17.28.bbl(-1) in an expanded sensitivity analysis.
机译:生产从石油/天然气储层产生的水是石油/天然气生产商的成本负担,2019年产生超过210亿桶的废物。平均处置成本从$ 4.00- $ 8.00.bbl(-1),高达20美元。 BBL(-1)单独花在运输上。 溶解的固体含量是为该废物流限制经济的治疗选择的贡献因素。 这项工作提出了一种可以处理高盐度浪费的新技术,采用良好的水分的良好性能。 在这项研究中,完成了两个超临界水海水淡化(SCWD)情景的过程模拟。 比较零液体放电(ZLD)和盐水浓度操作场景,称重每个案例的相关经济学和益处。 结果表明,在扩展的敏感性分析中,盐水含量高的盐水可在经济上可行,从3.49美元到17.28.28.bbl(-1)。

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