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Dynamic and equilibrium-based investigations of CO2-removal from CH4-rich gas mixtures on microporous adsorbents

机译:基于CH4富含CH4 - 微孔吸附剂的CH4的气体混合物的动态和平衡研究

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The removal of CO2 from CH4-rich gas mixtures is one of the key technologies for CH4-production and purification (Silva et al., Microporous Mesoporous Mat 158:219, 2012; 187:100, 2014). For this purpose, different techniques like adsorption on porous solids, membrane technologies or absorptive methods are employed (Scholes et al., Fuel 96: 15, 2012; Sridhar et al., Sep Purific Rev, 2007). In any case, the appropriate separation technique as well as the optimal separation active material must be found. However, the choice of the optimal ensemble depends on many parameters, particularly CO2-concentration, the presence of other components i.e., water, the content of higher hydrocarbons, the pressure of the raw gas and the gas throughput (Andriani et al., Appl Biochem Biotechnol 172:4, 2014). In this work the focus is put on adsorption technologies. Therefore, three different commercially available adsorbents were investigated in the context of their applicability in separation processes by adsorption. One zeolite, a commercial activated carbon and a carbon molecular sieve were chosen as adsorbents. The classification of the materials is based on the characterization with N-2 at 77 K, a series of adsorption isotherms and breakthrough curves (CO2 in the presence of CH4). Isotherms were measured by a volumetric method at temperatures of 293-333 K and pressures up to 2 MPa. Due to very long equilibration times in case of CH4 on the carbon molecular sieve, isotherm data for 313-353 K up to 1 MPa were taken from reference (Moller et al., Chem. Ing. Tech 86:1-2, 2014). Dynamic experiments were carried out with a ternary mixture of He/CH4/CO2 (molar fractions: 0.80/0.15/0.05) at 0.5 MPa and 293 K. A simplified mathematical model, based on mass-and energy balances, was applied to simulate breakthrough curves on packed adsorbent beds. The suitability of the investigated adsorbents for CO2-removal by adsorption was classified with the help of the obtained experimental data. It can be shown, that an evaluation of the separation performance of such materials, based only on textural parameters like the BET surface area or N-2-isotherms at 77 K is limited in its confidence and can cause a substantial misinterpretation of the whole separation process.
机译:从CH4的气体混合物中除去CO 2是CH4 - 生产和纯化的关键技术之一(Silva等,微孔中孔垫158:219,2012; 187:100,2014)。为此目的,采用了对多孔固体,膜技术或吸收方法的吸附等不同技术(Scholes等,燃料96:15,2012; SRIDHAR等,SEP,SEP Plicic Rev,2007)。在任何情况下,必须找到适当的分离技术以及最佳分离活性材料。然而,最佳合奏的选择取决于许多参数,特别是CO 2浓度,其他组分的存在,即水,更高烃的含量,原料气体的压力和气体通量(Andriani等,Appl Biochem Biotechnol 172:4,2014)。在这项工作中,重点是吸附技术。因此,在其通过吸附在分离过程的适用性上研究了三种不同的市售吸附剂。选择一种沸石,商业活性炭和碳分子筛作为吸附剂。材料的分类基于N-2在77K中的表征,一系列吸附等温线和突破曲线(CH 4存在下的CO 2)。在293-333k的温度下通过体积法测量等温,高达2MPa的压力。由于在碳分子筛上的CH4的情况下的非常长的平衡次数,从参考文献中取出313-353 k的等温数据高达1MPa(Moller等,Chem.ing。Tech 86:1-2,2014) 。在0.5MPa和293k的统计/克/二氧化碳(摩尔分数:0.80 / 0.15 / 0.05)的三元混合物中进行动态实验。基于质量和能量余额,应用了简化的数学模型来模拟突破包装吸附床上的曲线。借助于所获得的实验数据,将研究的吸附剂用于通过吸附除去的CO 2的适用性。可以示出,仅基于诸如BET表面积或77k时的N-2-I等温度的纹理参数的分离性能的评估在其置信度下有限,并且可能导致整个分离的显着误解过程。

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