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首页> 外文期刊>ACS Omega >Swelling of Shales by Supercritical Carbon Dioxide and Its Relationship to Sorption
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Swelling of Shales by Supercritical Carbon Dioxide and Its Relationship to Sorption

机译:通过超临界二氧化碳肿胀的萨尔斯及其与吸附的关系

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Shale gas is a promising energy source offering additional energy security over concerns of fossil fuel depletion. Injecting CO_(2) into depleted shale gas reservoirs might provide a feasible solution for CO_(2) storage and enhanced gas recovery. However, shale strain caused by the CO_(2) injection as well as CO_(2) sequestration in the reservoir needs to be considered during shale gas production. For this purpose, this paper examines the adsorption capacities, CO_(2)-induced swelling, and He-induced strain of shales at 0–16 MPa and 35–75 °C. The maximum excess adsorption at different temperatures correlated with the bulk phase density: as the CO_(2) temperature increased, the maximum excess adsorption density decreased. The density of the adsorbed phase, obtained using the Dubinin–Radushkevich model, was used to fit the excess adsorption data. At low pressure, the CO_(2)-induced strain on shale was caused by the gas adsorption, whereas at high pressure, it was caused by gas pressure. The absolute adsorption linearly correlated with the adsorption-induced strain.
机译:页岩气是一个有前途的能源,提供了对化石燃料消耗的担忧提供了额外的能源安全性。将CO_(2)注入耗尽的页岩气储层可能为CO_(2)储存和增强的气体回收提供可行的解决方案。然而,在页岩气产量期间需要考虑由CO_(2)注射液以及储层中的CO_(2)封存引起的页岩菌株。为此目的,本文研究了吸附能力,CO_(2)诱导的溶胀,以及在0-16MPa和35-75°C的HALES的菌株。不同温度的最大过量吸附与堆积相密度相关的不同温度:随着CO_(2)温度的增加,最大过量吸附密度降低。使用Dubinin-Radushkevich模型获得的吸附相的密度用于符合过量的吸附数据。在低压下,CO_(2)诱导物体对页岩的应变是由气体吸附引起的,而在高压下,它是由气体压力引起的。绝对吸附与吸附诱导的菌株线性相关。

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