Lithium recovery from U.S. oil and gas produced waters: resource quality and siting considerations†

IF 3.5 4区 环境科学与生态学 Q3 ENGINEERING, ENVIRONMENTAL
Sheila Gerardo and Wen Song
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Abstract

To meet the growing demand for lithium sustainably, secondary resources must be explored. Among nontraditional resource alternatives, brines co-produced from oil and gas (O&G) operations are of particular interest owing to their abundance and considerable lithium concentrations. Whereas previous work has highlighted potential O&G brines of interest for lithium extraction, the criteria to distinguish optimal from suboptimal O&G produced waters are still unclear. In the following, we provide perspectives on assessing the feasibility and challenges of produced waters from key U.S. formations as lithium resources based on their water chemistry, production rates, and geographic placement. Specifically, we clarify the impact of production rates on the estimated lithium resources and how it may aggrandize evaluations. We assess how key secondary cation concentrations and ratios complicate downstream separation, and evaluate the role of the geographic coexistence of lithium resources and lithium consumers (i.e., the manufacturing sector). Among the U.S. O&G formations evaluated herein, the Marcellus shale emerges as an attractive formation for lithium extraction, with an estimated annual lithium metal output of 930 metric tons and lower secondary cation concentrations. The potential feasibility of brines from the Marcellus formation is enabled by its reduced need for downstream separation and purification, as well as its proximity to major lithium end-user facilities (i.e., battery manufacturers). Overall, we provide an initial set of criteria to help evaluate O&G formations for their potential to serve as lithium resources and provide an assessment of the lithium resources in key U.S. O&G plays.

Abstract Image

美国油气采出水中的锂回收:资源质量和选址考虑†
为了可持续地满足日益增长的锂需求,必须开发二次资源。在非传统资源替代方案中,油气联合生产的卤水由于其丰富度和可观的锂浓度而受到特别关注。尽管之前的工作强调了潜在的锂提取兴趣的O&;G盐水,但区分最佳和次优O&;G产出水的标准仍然不清楚。在接下来的文章中,我们将根据美国主要地层的水化学成分、产量和地理位置,对其产出水作为锂资源的可行性和挑战进行评估。具体来说,我们澄清了生产率对估计锂资源的影响,以及它如何扩大评估。我们评估了关键仲离子浓度和比例如何使下游分离复杂化,并评估了锂资源和锂消费者(即制造业)地理共存的作用。在本文评估的美国o&g地层中,Marcellus页岩是一个极具吸引力的锂提取地层,估计每年锂金属产量为930公吨,二次阳离子浓度较低。Marcellus地层卤水的潜在可行性在于其减少了下游分离和纯化的需求,并且靠近主要的锂终端用户设施(即电池制造商)。总的来说,我们提供了一套初步的标准来帮助评估油气层作为锂资源的潜力,并对美国主要油气层的锂资源进行了评估。
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来源期刊
Environmental Science: Water Research & Technology
Environmental Science: Water Research & Technology ENGINEERING, ENVIRONMENTALENVIRONMENTAL SC-ENVIRONMENTAL SCIENCES
CiteScore
8.60
自引率
4.00%
发文量
206
期刊介绍: Environmental Science: Water Research & Technology seeks to showcase high quality research about fundamental science, innovative technologies, and management practices that promote sustainable water.
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