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Adsorption of CO2, CH4, CO2/N2 and CO2/CH4 in Novel Activated Carbon Beads: Preparation, Measurements and Simulation

机译:新型活性炭微珠对CO2,CH4,CO2 / N2和CO2 / CH4的吸附:制备,测量和模拟

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A series of high performance carbonaceous mesoporous materials: activated carbon beads (ACBs), have been prepared in this work. Among the samples, ACB-5 possesses the BET specific surface area of 3537 m~2 g~(-1) and ACB-2 has the pore volume of 3.18 cm g~(-1) . Experimental measurements were carried out on the intelligent gravimetric analyzer (IGA-003, Hiden). Carbon dioxide adsorption capacity of 909 mg g~(-1) has been achieved in ACBS at 298 K and 18 bar, which is superior to the existing carbonaceous porous materials and comparable to metal-organic framework (MOF)-177 (1232 mg g~(-1), at 298 K and 20 bar) and covalent-organic framework (COF)-102 (1050 mg g~(-1) at 298 K and 20 bar) reported in the literature. Moreover, methane uptake reaches 15.23 wt % in ACBS at 298 K and 18 bar, which is better than MOF-5. To predict the performances of the samples ACB-2 and ACBS at high pressures, modeling of the samples and grand canonical Monte Carlo simulation have been conducted, as is presented in our previous work. The adsorption isotherms of CO2/N2 and CO2/CH4 in our samples ACB-2 and 5 have been measured at 298 and 348 K and different compositions, corresponding to the pre- and postcombustion conditions for CO2 capture. The Dual-Site Langmuir-Freundlich(DSLF) model-based ideal-adsorbed solution theory (IAST) was also used to solve the selectivity of CO2 over N2 and CH4. The selectivities of ACBs for CO2/CH4 are in the range of 2-2.5, while they remain in the range of 6.0-8.0 for CO2/N2 at T = 298 K. In summary, this work presents a new type of adsorbent-ACBs, which are not only good candidates for CO2 and CH4 storage but also for the capture of carbon dioxide in pre- and postcombustion processes.
机译:在这项工作中,准备了一系列高性能的碳质介孔材料:活性炭珠(ACB)。在样品中,ACB-5的BET比表面积为3537m〜2g〜(-1),ACB-2的孔容为3.18cm g〜(-1)。在智能重量分析仪(IGA-003,Hiden)上进行实验测量。 ACBS在298 K和18 bar下的二氧化碳吸附容量达到909 mg g〜(-1),优于现有的碳质多孔材料,可与金属有机骨架(MOF)-177(1232 mg g (298)和20 bar下的(-1))和共价有机骨架(COF)-102(298 K和20 bar下1050 mg g(-1))已有文献报道。此外,ACBS在298 K和18 bar下的甲烷吸收量达到15.23 wt%,比MOF-5好。为了预测样品ACB-2和ACBS在高压下的性能,已进行了样品建模和大正则蒙特卡罗模拟,正如我们先前的工作所述。在我们的样品ACB-2和5中,CO2 / N2和CO2 / CH4的吸附等温线已在298 K和348 K以及不同的组成下进行了测量,这与燃烧前和燃烧后捕获CO2的条件相对应。基于双站点Langmuir-Freundlich(DSLF)模型的理想吸附溶液理论(IAST)也用于解决CO2对N2和CH4的选择性。 ACB对CO2 / CH4的选择性在2-2.5范围内,而在T = 298 K时对CO2 / N2的选择性在6.0-8.0范围内。总之,这项工作提出了一种新型的吸附剂-ACB ,不仅是储存二氧化碳和甲烷的理想选择,而且是燃烧前和燃烧后过程中二氧化碳捕集的好选择。

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