首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >In-situ regeneration of activated carbon with electric potential swing desorption (EPSD) for the H2S removal from biogas
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In-situ regeneration of activated carbon with electric potential swing desorption (EPSD) for the H2S removal from biogas

机译:原位再生活性炭与电势挥杆解吸(EPSD)从沼气中移除H2S

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摘要

In-situ regeneration of a granular activated carbon was conducted for the first time using electric potential swing desorption (EPSD) with potentials up to 30 V. The EPSD system was compared against a standard non-potential system using a fixed-bed reactor with a bed of 10 g of activated carbon treating a gas mixture with 10,000 ppm H2S. Breakthrough times, adsorption desorption volume, capacities, effect of regeneration and desorption kinetics were investigated. The analysis showed that desorption of H2S using the new EPSD system was 3 times quicker compared with the no potential system. Hence, physical adsorption using EPSD over activated carbon is efficient, safe and environmental friendly and could be used for the in-situ regeneration of granular activated carbon without using a PSA and/or TSA system. Additionally, adsorption and desorption cycles can be obtained with a classical two column system, which could lead towards a more efficient and economic biogas to biomethane process.
机译:使用高达30 V的电位挥杆解吸(EPSD)首次进行粒状活性炭的原位再生。将EPSD系统与使用固定床反应器的标准非潜在系统进行比较 10克活性炭的床处理含10,000ppm H 2 S的气体混合物。 研究了调查了再生和解吸动力学的吸附解吸体积,容量,吸附解吸体积,容量,影响。 分析表明,与NO潜在的系统相比,使用新EPSD系统的H2S的解吸比3倍更快。 因此,使用EPSD在活性炭上使用EPSD的物理吸附是有效,安全和环保的,可用于粒状活性炭的原位再生,而无需使用PSA和/或TSA系统。 另外,通过经典的两列系统可以获得吸附和解吸循环,这可能导致更有效和经济的沼气对生物甲烷的过程。

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