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首页> 外文期刊>ACS Omega >Biodiesel and Hydrogen Production in a Combined Palm and Jatropha Biomass Biorefinery: Simulation, Techno-Economic, and Environmental Evaluation
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Biodiesel and Hydrogen Production in a Combined Palm and Jatropha Biomass Biorefinery: Simulation, Techno-Economic, and Environmental Evaluation

机译:棕榈和麻风树生物质联合炼油厂的生物柴油和氢气生产:模拟,技术经济和环境评估

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摘要

The biodiesel from lignocellulosic materials has been widely recognized as an alternative fuel to meet energy requirements worldwide, facing fossil fuel depletion, and emerging energy policies. In this work, the biorefinery approach was applied for biodiesel production from jatropha and palm oils in order to make it economically competitive by the utilization of residual biomass as the feedstock for obtaining hydrogen via steam reforming of glycerol and gasification. The linear chains for hydrogen and diesel were simulated using UniSim software and main stream properties were collected from the literature or predicted by correlations. The proposed scheme of biorefinery was analyzed through environmental and techno-economic assessment to identify the feasibility of this process to be implemented. Three different blends of oils (JO10-PO90, JO20-PO80, and JO30-PO70) were considered in the environmental analysis to determine alternatives for reducing potential environmental impacts (PEIs). It was found that the acidification potential highly contributed to the environmental impacts attributed to the use of fossil fuels for heating requirements, and JO30-PO70 blend exhibited the lowest PEI value. The economic indicators were calculated to be 8,455,147.29 $USD and 33.18% for the net present value and internal rate of return, respectively. These results revealed that the proposed combined biomass biorefinery is feasible to be scaled up without causing significant negative impacts on the environment.
机译:木质纤维材料制成的生物柴油已被广泛认为是替代燃料,可满足全球对化石燃料的枯竭和新兴能源政策的能源需求。在这项工作中,采用生物精炼方法从麻疯树和棕榈油生产生物柴油,以通过利用残余生物质作为原料通过甘油的蒸汽重整和气化获得氢气来使其具有经济竞争力。使用UniSim软件模拟氢和柴油的线性链,并从文献中收集主流性质或通过相关性预测。通过环境和技术经济评估对拟议的生物精炼计划进行了分析,以确定该流程得以实施的可行性。在环境分析中考虑了三种不同的机油混合物(JO10-PO90,JO20-PO80和JO30-PO70),以确定减少潜在环境影响(PEI)的替代方法。发现酸化潜力在很大程度上归因于使用化石燃料满足供暖要求,从而对环境产生了很大影响,JO30-PO70混合物的PEI值最低。经计算,净现值和内部收益率的经济指标分别为8,455,147.29美元和33.18%。这些结果表明,所提议的组合的生物质生物精炼厂可以扩大规模而不会对环境造成重大负面影响。

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