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Adsorption of natural gas and biogas components on activated carbon

机译:天然气和沼气成分在活性炭上的吸附

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Experimental results are presented for the adsorption equilibria of methane, ethane, propane, butane, carbon dioxide, and nitrogen, as well as natural gas odorants tert-butyl mercaptan and tetrahydrothiophene, on an activated carbon with the desirable characteristics for use in a guard bed for adsorbed natural gas storage, but that can also be applied for separation of biogas components, such as carbon dioxide and nitrogen. The adsorption experiments were performed using both open- and closed-loop gravimetry over the pressure and temperature ranges of 0-9 MPa and 273-325 K, respectively. The two odorants were analyzed at the very low concentrations usually found in natural gas (0-25mg/(Nm~3)). The experimental data were successfully correlated by the adsorption potential theory and collapsed into a single temperature-independent characteristic curve. This analysis allows for extrapolation of the adsorption data to higher alkanes, for which no experimental data are available, in order to span the global composition of a typical natural gas stream. The adsorption equilibrium data for methane, carbon dioxide and nitrogen were fitted to the Toth and Sips isotherm models and their isosteric heats of adsorption were determined. The preferential adsorption capacity for carbon dioxide indicates that the carbon can be used for methane purification from natural gas, carbon dioxide sequestration from flue gas, or biogas purification.
机译:实验结果显示了甲烷,乙烷,丙烷,丁烷,二氧化碳和氮气以及天然气气味剂叔丁基硫醇和四氢噻吩在具有防护特性的活性炭上的吸附平衡。用于吸附的天然气存储,但也可用于分离沼气成分,例如二氧化碳和氮气。使用开环和闭环重量分析法分别在0-9 MPa和273-325 K的压力和温度范围内进行吸附实验。分析了两种异味剂,它们的浓度通常在天然气中非常低的浓度下(0-25mg /(Nm〜3))。通过吸附势理论成功地关联了实验数据,并折叠成一条与温度无关的特性曲线。该分析允许将吸附数据外推到高级烷烃(对于该烷烃而言,没有实验数据),以便涵盖典型天然气流的总体组成。将甲烷,二氧化碳和氮气的吸附平衡数据拟合到Toth和Sips等温模型中,并确定它们的等规吸附热。对二氧化碳的优先吸附能力表明,该碳可用于从天然气中提纯甲烷,从烟道气中吸收二氧化碳或提纯沼气。

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