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Tar and CO2 removal from simulated producer gas with activated carbon and charcoal

机译:用活性炭和木炭从模拟生产气中去除焦油和二氧化碳

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摘要

Steam gasification of biomass produces gases such as CO, CO2, H2, CH4, H2O, C2-C5 hydrocarbons, tars (aromatic hydrocarbons), NH3, HCN, and H2S, which are commonly known as producer gas. To produce liquid fuel, CO2 and tars have to be removed from the producer gas. The CO2 can be converted into a useful product such as CO using the reverse Boudouard reaction (CO2 + C <->2CO). Tars can be removed in the presence of carbon by adsorption. Using simulated producer gas flow, reactor studies (200 °C-950 °C) of the reverse Boudouard reaction and the adsorption of toluene and ethylene, tar surrogates, were conducted with different commercially activated carbon and mesquite charcoal. The study showed that the reverse Boudouard reaction is limited by kinetics. The concentration of CO from the reverse Boudouard reaction approaches equilibrium with increase in temperature and residence time. The adsorption of the tar surrogate toluene in the presence of carbon at lower temperature of 200 °C-300 °C is a useful removal mechanism.
机译:生物质的蒸汽气化会产生通常被称为生产气的气体,例如CO,CO2,H2,CH4,H2O,C2-C5碳氢化合物,焦油(芳烃),NH3,HCN和H2S。为了生产液体燃料,必须从生产气体中去除CO2和焦油。可以使用逆向Boudouard反应(CO2 + C 2CO)将CO2转化为有用的产物,例如CO。焦油可以在碳存在下通过吸附去除。使用模拟的生成器气流,使用不同的商业活性炭和豆科植物木炭进行反向Boudouard反应的反应器研究(200°C-950°C)以及甲苯和乙烯,焦油替代物的吸附。研究表明,反向的Boudouard反应受到动力学的限制。随着温度和停留时间的增加,来自反向Boudouard反应的CO浓度接近平衡。在200°C-300°C的较低温度下,碳存在下焦油替代甲苯的吸附是一种有用的去除机理。

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