通过使用天然和活化沸石吸附剂的吸附过程从沼气中去除二氧化碳

IF 0.9 Q4 ENGINEERING, CHEMICAL Indian Chemical Engineer Pub Date : 2022-11-15 DOI:10.1080/00194506.2022.2144485
Elshaday Mulu, M. M’Arimi, R. Ramkat, Elsabet Mulu
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引用次数: 1

摘要

天然沸石是一种低成本的材料,可用于去除沼气中的污染物。沼气的清洁增加了它的能量密度,减少了可能的负面影响。目前的研究旨在利用天然沸石升级沼气。用氢氧化钠对天然沸石进行了活化。吸附剂样品使用XRF机进行表征,而沼气样品使用岛津气相色谱法和便携式数字气体检测器进行分析。考察了沸石水比对碳酸化过程的影响。此外,还研究了沼气流量、吸附剂用量和接触时间对干法吸附过程的影响。干吸附法和湿碳化法对沸石的最大CO2吸收量分别为4.8和0.2 mmol/g。结果表明,低Si2O3/Al2O3比的表面吸附比需要高碱性氧化物的碳化作用更明显。结果表明:当活性粘土用量由2.5 g增加到35 g时,CO2去除率由11.2%提高到79.8%,CO2吸收量由4.8 mmol/g降低到2.5 mmol/g;此外,实验数据最符合准一级动力学和突破曲线的Bohart-Adams模型。图形抽象
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Carbon dioxide removal from biogas through sorption processes using natural and activated zeolite adsorbents
ABSTRACT Natural zeolite is among the low-cost materials that can be used to remove contaminants in biogas. The cleaning of biogas increases its energy density and reduces possible negative effects. The current study aimed to upgrade biogas using natural zeolites. The activation of natural zeolite was done using sodium hydroxide. The adsorbent samples were characterised using an XRF machine, while the biogas samples were analysed using Shimadzu gas chromatography and a portable digital gas detector. The effect of zeolite-to-water ratio on the carbonation process was investigated. In addition, the effects of biogas flow rate, adsorbent dose and contact time on the dry adsorption process were studied. The maximum CO2 uptake of zeolite was 4.8 and 0.2 mmol/g by dry adsorption and wet carbonation process, respectively. The results indicate that surface adsorption favoured by a low Si2O3/Al2O3 ratio was more prominent than carbonation that requires high basic oxides. The results showed that an increase in the dose of activated clay from 2.5 to 35 g increased the removal efficiency of CO2 from 11.2% to 79.8%, while the CO2 uptake decreased from 4.8 to 2.5 mmol/g. Furthermore, the experimental data fitted best to pseudo-first-order kinetics and the Bohart-Adams model for the breakthrough curve. GRAPHICAL ABSTRACT
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来源期刊
Indian Chemical Engineer
Indian Chemical Engineer ENGINEERING, CHEMICAL-
CiteScore
3.00
自引率
6.70%
发文量
33
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