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Biogas Cleaning: Activated Carbon Regeneration for H2S Removal

机译:沼气清洁:H2S去除的活性炭再生

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The coupling of fuel cell technology with wastewater treatment plants (WWTPs) is within the sustainable development imperative for the integration of energy production purposes and recovery of materials, even if research is still under development in this field. The anaerobic digestion process can be used for fuel cell feeding, only if trace contaminants are removed continuously. The most harmful and frequent contaminant is H2S. This article shows the results of H2S adsorption on activated carbon fixed-beds (dry process), since it is one of the best solutions from both the complexity and costs perspectives. Inside the wide range of commercial activated carbons, a specific commercial carbon has been used in test campaigns, since it is also used in the Società Metropolitana Acque Torino (SMAT) real plant. Thermal regeneration of spent carbons was exploited, using different conditions of temperature, treatment time and atmosphere, since it is a better cost-effective and environmentally sound option than immediate carbon disposal after adsorption. Regeneration with CO2 showed the best regeneration ratio values. In particular, the best conditions achieved were 300 °C and 75 min of thermal treatment time, with a regeneration ratio of 30%.
机译:燃料电池技术与废水处理厂(WWTPS)的耦合是在可持续发展中,即使在该领域的开发仍在开发中,仍然是能源生产目的和材料恢复的必要性。厌氧消化方法可用于燃料电池供给,只有连续去除痕量污染物。最有害和频繁的污染物是H2S。本文显示了H2S对活性炭固定床(干法)吸附的结果,因为它是来自复杂性和成本观点的最佳解决方案之一。在广泛的商业活性炭内,特定的商业碳已用于测试活动,因为它也用于SocietàMetropolitana获取的Torino(Smat)真正的植物。利用不同的温度,治疗时间和大气来利用废碳的热再生,因为它是吸附后更好的成本效益和环境声音的选择。用CO 2再生显示出最佳的再生比值。特别地,达到的最佳条件为300℃和75分钟的热处理时间,再生比为30%。

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