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人工地下岩石自养微生物生态系统和深部地下气体储存。

Artificial subsurface lithoautotrophic microbial ecosystems and gas storage in deep subsurface.

机构信息

Universite de Pau et des Pays de l'Adour, E2S UPPA, CNRS, IPREM, Pau 64000, France.

出版信息

FEMS Microbiol Ecol. 2024 Oct 25;100(11). doi: 10.1093/femsec/fiae142.

Abstract

Over the next few years, it is planned to convert all or part of the underground gas storage (UGS) facilities used for natural gas (salt caverns, depleted hydrocarbon reservoirs, and deep aquifers) into underground dihydrogen (H2) storage reservoirs. These deep environments host microbial communities, some of which are hydrogenotrophic (sulfate reducers, acetogens, and methanogens). The current state of microbiological knowledge is thus presented for the three types of UGS facilities. In the mid-1990s, the concept of anaerobic subsurface lithoautotrophic microbial ecosystems, or SLiMEs, emerged. It is expected that the large-scale injection of H2 into subsurface environments will generate new microbial ecosystems called artificial SLiMEs, which could persist over time. These artificial SLiMEs could lead to H2 loss, an intense methanogenic activity, a degradation of gas quality and a risk to installations through sulfide production. However, recent studies on salt caverns and deep aquifers suggest that hydrogenotrophic microbial activity also leads to alkalinization (up to pH 10), which can constrain hydrogenotrophy. Therefore, studying and understanding these artificial SLiMEs is both a necessity for the development of the H2 industry and presents an opportunity for ecologists to monitor the evolution of deep environments in real time.

摘要

在未来几年内,计划将用于天然气的全部或部分地下储气设施(盐穴、枯竭的碳氢化合物储层和深部含水层)转换为地下氢气(H2)储存库。这些深部环境中存在微生物群落,其中一些是氢营养型的(硫酸盐还原菌、乙酸菌和产甲烷菌)。因此,目前呈现了用于三种类型的 UGS 设施的微生物学知识现状。在 20 世纪 90 年代中期,出现了厌氧地下岩生微生物自养生态系统或 SLiMEs 的概念。预计将 H2 大规模注入地下环境会产生新的微生物生态系统,称为人工 SLiMEs,这些生态系统可能会随着时间的推移而持续存在。这些人工 SLiMEs 可能导致 H2 损失、强烈的产甲烷活性、气体质量下降以及通过硫化物产生对设施的风险。然而,最近对盐穴和深部含水层的研究表明,氢营养型微生物活性也会导致碱化(高达 pH 值 10),从而限制了氢营养型。因此,研究和了解这些人工 SLiMEs 不仅是 H2 工业发展的必要条件,也为生态学家提供了一个实时监测深部环境演变的机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ac21/11549562/7d16f6d9920e/fiae142fig1.jpg

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