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Dynamic integrated assessment of bioenergy technologies for energy production utilizing agricultural residues: An input-output approach

机译:利用农业残留物进行能源生产的生物能源技术的动态综合评估:一种投入产出方法

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In order to facilitate regional agricultural residue utilization for energy production through bioenergy technologies, a dynamic input-output model is developed to estimate and assess the energy, economic and environmental performances of industrialization of five bioenergy technologies within a 15-year time horizon. Electricity and solid, gaseous and liquid biofuels are energy products of bioenergy technologies. Bioenergy technologies are complemented into regional input-output framework and combined with socioeconomic activities aided by their bottom-up economic and energy parameters. The simulation results for the target area indicate that the agricultural residues available for bioenergy technologies could amount to 55.16 million t, facilitating to 8.38 million t coal-equivalent bioenergy production by 2025. A 3.1% net reduction in accumulative greenhouse gas emission compared with the "business as usual" case could be achieved owing to substitution of fossil energy with electricity and biofuels produced by bioenergy technologies. From energy production, economic benefits and greenhouse gas mitigation three aspects integratedly, direct-combustion power generation and briquette fuel are more advantageous in the target area. The quantified energy, economic and environmental performances of bioenergy technologies are expected to give recommendations for their industrial development. (C) 2015 Elsevier Ltd. All rights reserved.
机译:为了促进通过生物能源技术将区域农业残余物用于能源生产,建立了动态​​的投入产出模型,以评估和评估15种时间范围内五种生物能源技术的工业化的能源,经济和环境绩效。电力以及固体,气体和液体生物燃料是生物能源技术的能源产品。生物能源技术是区域投入产出框架的补充,并结合了自下而上的经济和能源参数所促进的社会经济活动。针对目标区域的模拟结果表明,可用于生物能源技术的农业残留量可能达到5516万吨,到2025年将促进838万吨煤当量的生物能源生产。与“通过用生物能源技术生产的电力和生物燃料替代化石能源,可以实现“照常营业”的案例。从能源生产,经济效益和温室气体减排三个方面综合考虑,直接燃烧发电和煤饼燃料在目标地区更具优势。预计生物能源技术在能源,经济和环境方面的量化表现将为其工业发展提供建议。 (C)2015 Elsevier Ltd.保留所有权利。

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