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Supercritical-CO2 Adsorption Quantification and Modeling for a Deep Coalbed Methane Reservoir in the Southern Qinshui Basin, China

机译:沁水盆地南部深层煤层气储层超临界CO 2吸附定量化与模拟

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Accurate depiction of the adsorption capacity of supercritical CO2 (ScCO2) by existing adsorption models is an important focus for deep coal seams in CO2-enhanced coalbed methane (CO2-ECBM) recovery. To investigate the applicability of different adsorption models for the adsorption isotherms of ScCO2, the validities of 10 different adsorption models were analyzed, based on analyses of the adsorption characteristics of ScCO2 from deep coal seams of the Southern Qinshui Basin, China. These models include the Langmuir (L) model, two-parameter Langmuir (TL) model, Toth (T) model, Langmuir–Freundlich (LF) model, extended Langmuir (EL) model, double parameter Brunauer–Emmett Teller model, three-parameter BET (TBET) model, Dubinin–Radushkevich (D–R) model, Dubinin–Astakhov (D–A) model, and Ono–Kondo lattice (OK) model. These models were tested for both the excess and absolute adsorption capacities of ScCO2 under various temperatures and pressures. The simulation accuracy of the different adsorption models was analyzed. The optimal models for the adsorption of ScCO2 in deep coal seams were selected based on a comprehensive analysis of the simulation parameters, standard error, and residual sum of squares. There were obvious differences in the validity of the different adsorption models in terms of the excess adsorption capacity and absolute adsorption capacity of ScCO2. The D–A and D–R models are the optimal adsorption models for the adsorption isotherms of the excess adsorption of ScCO2 for the whole tested pressure range. The T, TL, and D–R models are the optimal adsorption models in simulation of the excess adsorption capacity of ScCO2 for the selected adsorption models when the equilibrium pressure is divided into two sections at the point of 8.13 MPa. In simulation of the absolute adsorption capacity of ScCO2, the TBET and LF models are the optimal adsorption models among the selected models when the equilibrium pressure is less than or equal to 8.13 MPa. The linear, exponential, logarithmic, power function, and polynomial adsorption simulation all have good precision in the simulation of the absolute adsorption capacity of ScCO2 when the pressure is beyond 8.13 MPa.
机译:现有吸附模型准确描述超临界CO2(ScCO2)的吸附能力是深层煤层在CO2增强煤层气(CO2-ECBM)回收中的重要关注点。为了研究不同吸附模型对ScCO2吸附等温线的适用性,在分析沁水盆地南部深煤层ScCO2吸附特征的基础上,分析了10种不同吸附模型的有效性。这些模型包括Langmuir(L)模型,两参数Langmuir(TL)模型,Toth(T)模型,Langmuir-Freundlich(LF)模型,扩展Langmuir(EL)模型,双参数Brunauer-Emmett Teller模型,三参数BET(TBET)模型,Dubinin–Radushkevich(D–R)模型,Dubinin–Astakhov(D–A)模型和Ono–Kondo晶格(OK)模型。测试了这些模型的ScCO2在各种温度和压力下的过剩和绝对吸附能力。分析了不同吸附模型的模拟精度。在对模拟参数,标准误差和残差平方和进行综合分析的基础上,选择了ScCO2在深部煤层中吸附的最佳模型。就ScCO2的过量吸附能力和绝对吸附能力而言,不同吸附模型的有效性存在明显差异。 D–A和D–R模型是在整个测试压力范围内ScCO2过量吸附的吸附等温线的最佳吸附模型。当平衡压力在8.13 MPa点分为两部分时,T,TL和D–R模型是针对所选吸附模型模拟ScCO2的过量吸附容量时的最佳吸附模型。在模拟ScCO2的绝对吸附容量时,当平衡压力小于或等于8.13 MPa时,TBET和LF模型是所选模型中的最佳吸附模型。当压力超过8.13 MPa时,线性,指数,对数,幂函数和多项式吸附模拟在ScCO2绝对吸附容量模拟中均具有良好的精度。

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