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CO_2 utilization via a novel anaerobic bioprocess configuration with simulated gas mixture and real stack gas samples

机译:通过新型厌氧生物工艺配置利用模拟的气体混合物和实际烟气样本来CO_2的利用

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CO2, which is considered to be one of the major causes of climate change, has reached to critical levels in the atmosphere due to tremendous consumption of fossil fuels all over the world. In this study, anaerobic bioconversion of CO2 into bio-methane using a novel bioprocess configuration (HYBRID bioreactor) was studied under mesophilic conditions. Varying ratios of H-2/CO2 gas mixture and volumetric feeding rates were investigated and no additional organic matter and trace element were needed throughout the study. The maximum methane production of 19 m(3) CH4/m(3) (reactor/)d was achieved at a H-2/CO2 ratio of 4:1 and feeding rate of 24 m(3) gas/m(3) (reactor)/d. It was determined that H-2 conversion rate is about 96%. For demonstration purpose, real stack gas sample from a petrochemical industry was also tested under optimized operational conditions. No inhibitory effect from stack gas mixture was observed. This study provided an environmentally friendly and sustainable solution for industries such as petrochemical industry in order to produce extra energy while capturing their waste CO2. Thereby, a sustainable and environmentally friendly model solution was presented for industries with high CO2 emissions.
机译:由于全世界大量消耗化石燃料,被认为是气候变化的主要原因之一的二氧化碳已达到大气中的临界水平。在这项研究中,研究了在中温条件下使用新型生物过程配置(HYBRID生物反应器)将CO2厌氧生物转化为生物甲烷的过程。研究了H-2 / CO2气体混合物的比率和体积进料速率,并且在整个研究过程中不需要其他有机物和微量元素。在H-2 / CO2比为4:1和进料速率为24 m(3)气体/ m(3)的条件下,实现了19 m(3)CH4 / m(3)(反应器/ d)的最大甲烷产量。 (反应器)/ d。确定H-2转化率约为96%。为了演示,还对石化行业的实际烟气样本进行了优化操作条件的测试。没有观察到来自烟道气混合物的抑制作用。这项研究为石化行业等行业提供了一种环境友好和可持续的解决方案,以便在捕获其废二氧化碳的同时产生更多的能源。因此,为二氧化碳排放量高​​的行业提出了一种可持续,环保的模型解决方案。

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