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Research sites of the H2STORE project and the relevance of lithological variations for hydrogen storage at depths

机译:H2Store项目的研究网站及深度储氢岩性变化的相关性

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The H2STORE collaborative project investigates potential geohydraulic, petrophysical, mineralogical, microbiological and geochemical interactions induced by the injection of hydrogen into depleted gas reservoirs and CO_(2-) and town gas storage sites. In this context the University of Jena performs mineralogical and geochemical investigations on reservoir and cap rocks to evaluate the relevance of preferential sedimentological features, which will control fluid (hydrogen) pathways, thus provoking fluid-rock interactions and related variations in porosity and permeability. Thereby reservoir sand-and sealing mudstones of different composition, sampled from distinct depths (different: pressure/temperature conditions) of five German locations are analysed. In combination with laboratory experiments the results will enable the characterization of specific mineral reactions at different physico-chemical conditions and geological settings.
机译:H2Store协作项目调查通过将氢气注入耗尽的气体储层和CO_(2-)和城镇储气位点而诱导的潜在地质液压,岩石物理,矿物学,微生物和地球化学相互作用。在这方面,耶拿大学对水库和帽岩进行矿物学和地球化学研究,以评估优惠沉积物特征的相关性,这将控制液体(氢)途径,从而引发流体岩相互作用和孔隙率和渗透性的相关变化。由此分析了不同组成的水库砂和密封泥岩,分析了五个德国地点的不同深度(不同:压力/温度条件)的抽样。结合实验室实验,结果将在不同的物理化学条件和地质环境下表征特异性矿物反应。

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