油页岩
露点
碳氢化合物
纳米孔
冷凝
丙烷
甲烷
相(物质)
碳氢化合物混合物
纳米孔
吸附
起泡点
化学物理
热力学
材料科学
纳米技术
化学
气泡
机械
地质学
物理
有机化学
古生物学
作者
Junjie Zhong,Yinuo Zhao,Chang Lu,Yi Xu,Zhehui Jin,Farshid Mostowfi,David Sinton
出处
期刊:Langmuir
[American Chemical Society]
日期:2018-08-03
卷期号:34 (34): 9927-9935
被引量:58
标识
DOI:10.1021/acs.langmuir.8b01819
摘要
Hydrocarbon recovery from shale reservoirs provides an increasing share of world energy. These resources are multicomponent fluid mixtures within multiscale geometries, and understanding their associated phase-change thermodynamics presents an array of challenges for experimentalists, theorists, operators, and policy makers. Here, we quantify hydrocarbon mixture phase behavior via direct imaging of connected channels spanning 4 orders of magnitude (10 nm to 10 μm) with supporting density functional theory. The methane/propane mixture dew point shifts, with early condensation of heavy components in nanopores because of a combination of capillarity and competitive surface adsorption. The bubble point in nanoconfinement is found to be deeply suppressed (∼3-fold), to below the bulk dew point of the original mixture, because of the exchange of mixture components with larger connected volumes. The trapping of the heaviest components of hydrocarbon mixtures within the smallest connected pores has implications for shale operations, reserve estimation, and ultimately energy security.
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