首页> 外文期刊>International journal of chemical engineering >Enhancement of Methane Concentration by Removing Contaminants from Biogas Mixtures Using Combined Method of Absorption and Adsorption
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Enhancement of Methane Concentration by Removing Contaminants from Biogas Mixtures Using Combined Method of Absorption and Adsorption

机译:通过使用组合的吸收和吸附方法从沼气混合物中除去污染物来提高甲烷浓度

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摘要

We report a laboratory scale combined absorption and adsorption chemical process to remove contaminants from anaerobically produced biogas using cafeteria (food), vegetable, fruit, and cattle manure wastes. Iron oxide (Fe2O3), zero valent iron (Feo), and iron chloride (FeCl2) react with hydrogen sulfide (H2S) to deposit colloidal sulfur. Silica gel, sodium sulfate (Na2SO4), and calcium oxide (CaO) reduce the water vapour (H2O) and carbon dioxide (CO2). It is possible to upgrade methane (CH4) above 95% in biogas using chemical or physical absorption or adsorption process. The removal efficiency of CO2, H2S, and H2O depends on the mass of removing agent and system pH. The results showed that Ca(OH)2 solutions are capable of reducing CO2 below 6%. The H2S concentration was reduced to 89%, 90%, 86%, 85%, and 96% for treating with 10?g of FeCl2, Feo (with pH), Fe2O3, Feo, and activated carbon, respectively. The H2O concentration was reduced to 0.2%, 0.7%, 0.2%, 0.2%, and 0.3% for treating raw biogas with 10?g of silica gel and Na2SO4 for runs R1, R2, R3, R4, and R5, respectively. Thus, given the successful contaminant elimination, the combined absorption and adsorption process is a feasible system for biogas purification.
机译:我们报告了实验室规模的组合吸收和吸附化学过程,以使用自助餐厅(食物),蔬菜,水果和牛粪废物从厌氧生产的沼气中除去污染物。氧化铁(Fe2O3),零价铁(FeO)和氯化铁(FECL2)与硫化氢(H2S)反应以沉积胶体硫。硅胶,硫酸钠(Na 2 SO 4)和氧化钙(CaO)减少了水蒸气(H2O)和二氧化碳(CO 2)。可以使用化学或物理吸收或吸附过程将甲烷(CH 4)升高95%以上。 CO2,H 2 S和H 2 O的去除效率取决于除去剂和系统pH的质量。结果表明,Ca(OH)2溶液能够将CO 2还原低于6%。将H 2 S浓度降至89%,90%,86%,85%和96%,用于分别用10·G的FECL2,FeO(用pH),Fe 2 O 3,FeO和活性炭处理。将H 2 O浓度降低至0.2%,0.7%,0.2%,0.2%和0.3%,用于处理10〜硅胶和Na 2 SO 4的原料沼气分别用于运行R1,R2,R3,R4和R5。因此,鉴于成功的污染物消除,组合的吸收和吸附过程是用于沼气纯化的可行系统。

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