Suppr超能文献

非法倾倒油气废水改变了干旱土壤微生物群落。

Illegal dumping of oil and gas wastewater alters arid soil microbial communities.

机构信息

U.S. Geological Survey, Geology, Energy & Minerals Science Center, Reston, Virginia, USA.

Department of Earth, Environmental and Resource Sciences, University of Texas at El Paso, El Paso, Texas, USA.

出版信息

Appl Environ Microbiol. 2024 Feb 21;90(2):e0149023. doi: 10.1128/aem.01490-23. Epub 2024 Jan 31.

Abstract

The Permian Basin, underlying southeast New Mexico and west Texas, is one of the most productive oil and gas (OG) provinces in the United States. Oil and gas production yields large volumes of wastewater with complex chemistries, and the environmental health risks posed by these OG wastewaters on sensitive desert ecosystems are poorly understood. Starting in November 2017, 39 illegal dumps, as defined by federal and state regulations, of OG wastewater were identified in southeastern New Mexico, releasing ~600,000 L of fluid onto dryland soils. To evaluate the impacts of these releases, we analyzed changes in soil geochemistry and microbial community composition by comparing soils from within OG wastewater dump-affected samples to unaffected zones. We observed significant changes in soil geochemistry for all dump-affected compared with control samples, reflecting the residual salts and hydrocarbons from the OG-wastewater release (e.g., enriched in sodium, chloride, and bromide). Microbial community structure significantly ( < 0.01) differed between dump and control zones, with soils from dump areas having significantly ( < 0.01) lower alpha diversity and differences in phylogenetic composition. Dump-affected soil samples showed an increase in halophilic and halotolerant taxa, including members of the Marinobacteraceae, Halomonadaceae, and Halobacteroidaceae, suggesting that the high salinity of the dumped OG wastewater was exerting a strong selective pressure on microbial community structure. Taxa with high similarity to known hydrocarbon-degrading organisms were also detected in the dump-affected soil samples. Overall, this study demonstrates the potential for OG wastewater exposure to change the geochemistry and microbial community dynamics of arid soils.IMPORTANCEThe long-term environmental health impacts resulting from releases of oil and gas (OG) wastewater, typically brines with varying compositions of ions, hydrocarbons, and other constituents, are understudied. This is especially true for sensitive desert ecosystems, where soil microbes are key primary producers and drivers of nutrient cycling. We found that releases of OG wastewater can lead to shifts in microbial community composition and function toward salt- and hydrocarbon-tolerant taxa that are not typically found in desert soils, thus altering the impacted dryland soil ecosystem. Loss of key microbial taxa, such as those that catalyze organic carbon cycling, increase arid soil fertility, promote plant health, and affect soil moisture retention, could result in cascading effects across the sensitive desert ecosystem. By characterizing environmental changes due to releases of OG wastewater to soils overlying the Permian Basin, we gain further insights into how OG wastewater may alter dryland soil microbial functions and ecosystems.

摘要

美国得克萨斯州西部和新墨西哥州东南部的二叠纪盆地是美国产量最高的石油和天然气(OG)产区之一。石油和天然气生产会产生大量具有复杂化学成分的废水,而这些 OG 废水对敏感沙漠生态系统构成的环境健康风险还没有得到充分的了解。自 2017 年 11 月以来,在新墨西哥州东南部发现了 39 个非法倾倒场,按照联邦和州的规定,这些倾倒场倾倒了约 60 万升液体到旱地土壤上。为了评估这些排放物的影响,我们通过比较 OG 废水倾倒场影响样本和未受影响区域的土壤,分析了土壤地球化学和微生物群落组成的变化。与对照样本相比,所有受倾倒场影响的土壤都发生了显著的土壤地球化学变化,这反映了 OG 废水释放的残留盐和碳氢化合物(例如,钠、氯和溴含量增加)。倾倒场和对照区的微生物群落结构有显著差异(<0.01),倾倒区土壤的 alpha 多样性和系统发育组成差异显著(<0.01)。受倾倒场影响的土壤样本中,嗜盐菌和耐盐菌的数量增加,包括 Marinobacteraceae、Halomonadaceae 和 Halobacteroidaceae 的成员,这表明倾倒的 OG 废水中的高盐度对微生物群落结构产生了强烈的选择压力。在受倾倒场影响的土壤样本中还检测到了与已知烃类降解生物具有高相似性的分类群。总的来说,这项研究表明,OG 废水的暴露可能会改变干旱土壤的地球化学和微生物群落动态。

相似文献

1
Illegal dumping of oil and gas wastewater alters arid soil microbial communities.非法倾倒油气废水改变了干旱土壤微生物群落。
Appl Environ Microbiol. 2024 Feb 21;90(2):e0149023. doi: 10.1128/aem.01490-23. Epub 2024 Jan 31.

本文引用的文献

1
Lithium and Microorganisms: Biological Effects and Mechanisms.锂与微生物:生物学效应与作用机制。
Curr Pharm Biotechnol. 2023;24(13):1623-1629. doi: 10.2174/1389201024666230302153849.

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验