德克萨斯州新布朗费尔斯Edwards含水层蓄水和恢复的水文地球化学评价。

IF 2 4区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY Groundwater Pub Date : 2023-11-05 DOI:10.1111/gwat.13372
Christophe Wakamya Simbo
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摘要

本研究考察了德克萨斯州新布朗费尔斯Edwards含水层微咸水部分的含水层储存和回收潜力。成功的ASR依赖于对水力特性、含水层非均质性、水地球化学和作业期间的地球化学过程的理解。该研究旨在调查ASR运行期间天然地下水和注入剂的化学成分,估计含水层的水力特性,并评估满足总溶解固体(TDS)阈值的回收地下水的回收率。研究发现,由于岩盐溶解和与最大断层位移带相关的可能的盆地盐水迁移,天然地下水属于Na-Cl相。背景天然地下水中的高硫酸根离子是Kainer和Person地层中含硫酸盐矿物溶解的结果。注入水为Ca-Mg-HCO3相,这是由于含水层宿主基质中富含碳酸盐的成分以及与Guadalupe河水的相互作用。在ASR操作过程中,混合控制了水化学相从Na-Cl向Ca-Mg-HCO3的转变。该研究还表明,Kainer和Person地层与目标蓄水带含水层中的优先通道之间可能存在联系。估计的电导率值还表明,在Person和Kainer组储层中,通过可能的裂缝路径,存在主要的水平流。满足1000 mg/L TDS的地下水的回收要求60的回收率为0.03 m3/s 储存40天后。本研究强调,了解水文地质条件和地球化学过程对于微咸碳酸盐岩多含水层裂隙系统ASR的可行性至关重要。这篇文章受版权保护。保留所有权利。
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Hydrogeochemical Evaluation of Aquifer Storage and Recovery in Edwards Aquifer, New Braunfels, Texas

This study examines the potential for aquifer storage and recovery (ASR) in the brackish portion of the Edwards aquifer in New Braunfels, Texas. Successful ASR relies on understanding hydraulic properties, aquifer heterogeneity, water geochemistry, and geochemical processes during operations. The research aims to investigate the chemistries of native groundwater and injectant during ASR operation, estimate the hydraulic properties of the aquifer layers, and assess the recovery rate for the recovered groundwater meeting the total dissolved solids (TDS) threshold. The study found that native groundwater is of Na-Cl facies due to halite dissolution and a possible basinal brine migration associated with the zone of greatest fault displacement. High sulfate ions in background native groundwater result from sulfate-bearing minerals' dissolution in the Kainer and Person Formations. The injectant water is of Ca-Mg-HCO3 facies due to the carbonate-rich composition of the aquifer host matrix and interaction with the Guadalupe River riverbed. During ASR operations, mixing controlled the shift in hydrochemical facies from Na-Cl to Ca-Mg-HCO3.The study also suggests a possible connection between Kainer and Person Formations and preferential pathways in the targeted storage zone aquifer. The estimated conductivity values also indicate dominant horizontal flow via possible fracture pathways in both the Person and Kainer Formation storage zones. Recovery of groundwater meeting the TDS of 1000 mg/L requires a recovery rate of 0.03 m3/s for 60 days after 40-day storage. This research emphasizes that understanding the hydrogeological conditions and geochemical processes is critical to ASR feasibility in brackish carbonate multi-aquifer fractured systems.

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来源期刊
Groundwater
Groundwater 环境科学-地球科学综合
CiteScore
4.80
自引率
3.80%
发文量
0
审稿时长
12-24 weeks
期刊介绍: Ground Water is the leading international journal focused exclusively on ground water. Since 1963, Ground Water has published a dynamic mix of papers on topics related to ground water including ground water flow and well hydraulics, hydrogeochemistry and contaminant hydrogeology, application of geophysics, groundwater management and policy, and history of ground water hydrology. This is the journal you can count on to bring you the practical applications in ground water hydrology.
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