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Modeling the development and utilization of bioenergy and exploring the environmental economic benefits

机译:模拟生物能源的开发利用,探索环境经济效益

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This paper outlines a complete bioenergy flow incorporating bioresource procurement, feedstock supply, conversion technologies and energy consumption to industrialize the development and utilization of bioenergy. An input-output optimization simulation model is developed to introduce bioenergy industries into the regional socioeconomy and energy production and consumption system and dynamically explore the economic, energy and environmental benefits. 16-term simulation from 2010 to 2025 is performed in scenarios preset based on bioenergy industries, carbon tax-subsidization policy and distinct levels of greenhouse gas emission constraints. An empirical study is conducted to validate and apply the model. In the optimal scenario, both industrial development and energy supply and demand are optimized contributing to a 8.41% average gross regional product growth rate and a 39.9% reduction in accumulative greenhouse gas emission compared with the base scenario. By 2025 the consumption ratio of bioenergy in total primary energy could be increased from 0.5% to 8.2%. Energy self-sufficiency rate could be increased from 57.7% to 77.9%. A dynamic carbon tax rate and the extent to which bioenergy industrial development could be promoted are also elaborated. Regional economic development and greenhouse gas mitigation can be potentially promoted simultaneously by bioenergy utilization and a proper greenhouse gas emission constraint. The methodology presented is capable of introducing new industries or policies related to energy planning and detecting the best tradeoffs of economy-energy-environment. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文概述了完整的生物能源流程,其中包括生物资源采购,原料供应,转化技术和能源消耗,以实现生物能源的开发和利用的工业化。建立了投入产出优化模拟模型,以将生物能源产业引入区域社会经济和能源生产与消费系统,并动态地探索经济,能源和环境效益。在基于生物能源行业,碳税补贴政策以及不同水平的温室气体排放限制的预设情景下,进行了从2010年到2025年的16期模拟。进行了实证研究以验证和应用该模型。在最佳方案中,与基本方案相比,工业发展以及能源供应和需求都得到了优化,从而使地区生产总值平均增长率达到了8.41%,累计温室气体排放量减少了39.9%。到2025年,生物能源在一次能源总消费中的消耗比例将从0.5%增加到8.2%。能源自给率可以从57.7%提高到77.9%。还阐述了动态碳税率以及可促进生物能源产业发展的程度。生物能源利用和适当的温室气体排放限制可以同时促进区域经济发展和减少温室气体排放。所介绍的方法能够引入与能源规划有关的新行业或政策,并能发现经济-能源-环境之间的最佳权衡。 (C)2015 Elsevier Ltd.保留所有权利。

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