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首页> 外文期刊>Energy Conversion & Management >Techno-economic assessment of a biorefinery based on low-impact energy crops: A step towards commercial production of biodiesel, biogas, and heat
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Techno-economic assessment of a biorefinery based on low-impact energy crops: A step towards commercial production of biodiesel, biogas, and heat

机译:基于低影响能源作物的生物精炼厂的技术经济评估:迈向生物柴油,沼气和热能商业化生产的一步

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摘要

Given that castor and Eruca sativa plants are non-edible, low-impact energy crops, different scenarios for commercial-scale biorefineries based on these plants were developed. The processes were simulated by Aspen Plus (TM) software, and the estimation of equipment cost and economic analyses were performed by Aspen Process Economic Analyzer (PEA) software. In each scenario, biodiesel was produced by transesterification of oil extracted from castor (scenarios 1 and 3) and Eruca sativa (scenarios 2 and 4) grains, and the lignocellulosic residuals were used for biogas or heat (scenarios 3 and 4) production. Based on the simulation results, 7400-7470 m(3) per year biodiesel can be produced in these processes. The production price of biodiesel was obtained as 0.28, 0.04, 0.31, and 0.02 $/L for scenarios 1 to 4, respectively. Furthermore, the total capital investment was $87, 33, 89, and 34 for scenarios 1 to 4, respectively. The energy efficiencies of these processes were 63%, 71%, 63%, and 81%, respectively. Direct heat production from residues resulted in profitable processes, while biogas production was profitable only at a capacity higher than 240,000 tonnes per year. High investment requirements and interest rate were the most important factors affecting the profitability of biogas production scenarios. The results of this study could lead the research in the area toward commercialization of profitable biorefineries.
机译:鉴于蓖麻和草属植物是不可食用的,低影响的能源作物,因此开发了基于这些植物的商业规模生物精炼厂的不同方案。通过Aspen Plus(TM)软件对过程进行仿真,并通过Aspen Process Economic Analyzer(PEA)软件进行设备成本和经济分析的估算。在每种情况下,生物柴油都是通过对从蓖麻(情形1和3)和白桦(情景2和4)谷物中提取的油进行酯交换反应制得的,木质纤维素残留物用于沼气或热能(情形3和4)的生产。根据模拟结果,这些过程每年可以生产7400-7470 m(3)生物柴油。对于情况1至4,获得的生物柴油的生产价格分别为0.28、0.04、0.31和0.02美元/升。此外,方案1至4的总资本投资分别为$ 87、33、89和34。这些过程的能源效率分别为63%,71%,63%和81%。残留物直接供热产生了有利可图的过程,而沼气的生产仅以每年超过240,000吨的产能获利。高投资要求和高利率是影响沼气生产情景盈利能力的最重要因素。这项研究的结果可能会导致该领域的研究朝着有利可图的生物精炼厂的商业化方向发展。

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