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首页> 外文期刊>Microporous and mesoporous materials: The offical journal of the International Zeolite Association >Adsorption of pure and predicted binary (CO2:CH4) mixtures on 13X-Zeolite: Equilibrium and kinetic properties at offshore conditions
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Adsorption of pure and predicted binary (CO2:CH4) mixtures on 13X-Zeolite: Equilibrium and kinetic properties at offshore conditions

机译:纯净的二元(CO2:CH4)混合物对13x-沸石的混合物:近海条件下的平衡和动力学性质

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The growth in energy demand for natural gas has led to the exploration of sub-quality natural gas reserves with high CO2 content up to 80% at the offshore condition with temperature and pressure approximately 50 degrees C and 70 bar, In this work, a gravimetric technique is used to study CO2 and CH4 adsorptions on 13 x zeolites at 50 degrees C and up to 70 bar pressure as an adequate range for offshore operations. 13 x zeolite shows high CO2 adsorption capacity with 5.226 mmol/g at 50 degrees C compared to 4.29 mmol/g at 70 degrees C. The same trend is noticed for CH4 adsorption on both temperatures. Four equilibrium isotherm models are used to analyze the adsorption data i.e. Langmuir, Freundlich, Toth, and Sips. Virial isotherm model is applied on the experimental data to illustrate the isosteric heat of adsorption and it shows an excellent agreement with R-2 = 0.998 for 13 x MSZ. Henry's law constant is estimated utilizing Virial coefficients, which shows higher molar selectivity ratio for CO2 on 13 x with alpha (-)3.957 at 50 degrees C as compared to the alpha (-)3.736 at 70 degrees C. Extended Langmuir (EL) Model and Multisite Langmuir (MSL) models are applied for 30:70, 50:50, and 70:30 CO2:CH4 binary mixtures. The outcomes of MSL exhibit high agreement with the quadrupole and polarizability of the single component and the mixtures. The kinetic rate constant is estimated according to the applied LDF model at higher operational regions. The 13 x MSZ shows feasibly good isosteric heat of adsorption, which might refer to the large surface area and pore volume that can accommodate CO2 at higher speed and quantity at offshore conditions.
机译:天然气能源需求的增长导致亚质量天然气储量在近海条件下高达80%的次质天然气储量,温度和压力约为50摄氏度和70巴,在这项工作中,重量测量技术用于在50℃下在13×沸石上研究CO 2和CH 4吸附,最多70巴压力,作为海上操作的适当范围。 13 x沸石在50摄氏度下,5.226mmol / g的高CO 2吸附容量在70摄氏度下达到4.29mmol / g。在两个温度下吸附相同的趋势。四个平衡等温模型用于分析吸附数据I. Langmuir,Freundlich,Toth和Sips。 Virial等温模型应用于实验数据,以说明吸附的旁边热量,它显示出与R-2 = 0.998的优异协议,对于13 x MSZ。亨利的定律常数是利用病毒系数估计,其在50℃下以50℃的α( - )3.736相比,在50℃下为13×13×以70摄氏度为70℃的α( - )3.957,较高的摩尔选择性比。和多路径朗米尔(MSL)模型适用于30:70,50:50和70:30 CO2:CH4二元混合物。 MSL的结果表现出高度协议,与单个组分和混合物的四极和极化性。根据较高运营区域的应用LDF模型估计动力速率常数。 13 X MSZ显示可行的良好吸附潜水热量,这可能指的是大表面积和孔体积,可在近海条件下以更高的速度和数量容纳CO2。

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