• 论文
主办单位:煤炭科学研究总院有限公司、中国煤炭学会学术期刊工作委员会
页岩对CO2的绝对吸附量及其影响因素试验研究
  • Title

    Absolute adsorption capacity of shale on CO2 and its influencing factors

  • 作者

    汤积仁张靖卢义玉王相成陈侠宇周建坤陆朝晖

  • Author

    TANG Jiren 1,2 ,ZHANG Jing 1,2 ,LU Yiyu 1,2 ,WANG Xiangcheng 1,2 ,CHEN Xiayu 1,2 ,ZHOU Jiankun 1,2 ,LU Zhaohui 3

  • 单位

    重庆大学煤矿灾害动力学与控制国家重点实验室

  • Organization
    1. State Key Laboratory of Coal Mine Disaster Dynamics and Control,Chongqing University,Chongqing 400030,China; 2. National & Local of Gas Drainage in Complex Coal Seam,Chongqing University,Chongqing 400030,China; 3. National and Local Joint Engineering Research Center of Shale Gas Exploration and Development,Chongqing Geology and Mineral Research Institute,Chongqing 401120,China
  • 摘要

    为研究页岩在CO2作用下达到吸附平衡过程中对CO2的绝对吸附量(na)及其影响因素,考虑吸附相体积和页岩体积应变两个因素对吸附系统自由空间体积的影响,基于质量守恒原理推导了适用于“阶段平衡法”的CO2绝对吸附量计算模型。利用自主研发的“高温高压页岩吸附膨胀仪”开展了0~16 MPa CO2压力下页岩吸附-变形试验,结合试验计算结果分析了CO2质量注入量、吸附相体积、试件体积应变3个因素对na的影响。结果表明:低CO2压力下使用该模型计算的na值与常规绝对吸附量经验公式计算结果较为一致,当CO2压力高于4 MPa时CO2绝对吸附量的计算值明显大于经验公式计算结果,且差值随平衡压力升高而逐渐变大;拟合结果显示:na与CO2平衡压力满足指数函数关系。由CO2质量注入量因素所引起的吸附量占na的比例随平衡压力升高持续降低;由吸附相体积因素所引起的吸附量占na的比例随平衡压力升高而增加,在平衡压力高于6 MPa后达到50%以上,吸附相体积因素成为影响na的主导因素;由CO2质量注入量与吸附相体积因素所引起的吸附量占CO2绝对吸附量的95%以上,而页岩体积应变因素所引起的吸附量对na的影响较小,占na的比例始终位于5%以下,但对其他吸附质如煤而言,吸附CO2产生的体积变形量可达试件体积的10%,此时体积应变因素将对na产生较为显著的影响。

  • Abstract
    In order to study the absolute adsorption capacity ( na) of CO2 on shale and its influencing factors in the process of achieving adsorption equilibrium under the action of CO2 ,the calculation model of absolute adsorption capacity of CO2 suitable for “stage equilibrium method” was deduced based on the principle of mass conservation,considering the influence of two factors of adsorption phase volume and shale volume strain on the free space volume of adsorption system. The shale adsorption-deformation test under the pressure of 0-16 MPa CO2 was carried out with the self-developed “high-temperature and high-pressure shale adsorption expander”. The effects of three factors on na were analyzed,including CO2 mass injection quantity, adsorption phase volume and specimen volume strain. The results show that the na value calculated by this model under low CO2 pressure is consistent with the calculation result of conventional empirical formula of absolute adsorption amount,when the CO2 pressure is higher than 4 MPa,the calculated value of absolute adsorption capacity of CO2 is obviously larger than that calculated by the empirical formula,and the difference increases gradually with the increase of equilibrium pressure. The fitting results show that na and CO2 balance pressure satisfy the exponential function relation. The proportion of the adsorption amount of na caused by the CO2 mass injection quantity factor continues to decrease with the increase of equilibrium pressure. The proportion of the adsorption amount of na caused by the adsorption phase volume factor increases with the increase of equilibrium pressure. After the equilibrium pressure is higher than 6 MPa,it reaches more than 50% . The adsorption phase volume becomes the dominant factor affecting na. Adsorption caused by mass injection of CO2 and volume of adsorption phase accounts for more than 95% of absolute adsorption of CO2 ,while the adsorption amount caused by shale volume strain has little influence on na and the proportion of na is always below 5% ,but for other adsorbents such as coal,the volume deformation of CO2 adsorption could reach 10% of the sample volume. At this time,the volume strain factor will have a significant impact on na.
  • 关键词

    CO2强化页岩气开采CO2地质封存CO2绝对吸附量吸附相体积体积应变

  • KeyWords

    CO2 enhanced shale gas production;CO2 geological storage;absolute adsorption capacity of CO2 ;adsorption phase volume;volume strain

  • 基金项目(Foundation)
    国家重大科技专项资助项目(2017ZX05049-003-011);国家自然科学基金杰出青年基金资助项目(51625401);重庆市自然科学基金资助项目(cstc2018jcyjAX0542)
  • DOI
  • Citation
    TANG Jiren,ZHANG Jing,LU Yiyu,et al. Absolute adsorption capacity of shale on CO2
    and its influencing factors[J].Journal of China Coal Society,2020,45(8):2838-2845.
  • 图表
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    • 页岩试件平均孔径分布

    图(14) / 表(0)

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