Comprehensive Evaluation of Biomass Energy Technologies in China

Q. Yang, F. Han, Xudong Wu, Deyuan Wang, Xianhua Wang, Haiping Yang, Shihong Zhang, Hanping Chen
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Abstract

Based on a comprehensive review of the different biomass energy technologies in China, a hybrid evaluation model founding on Analytic Hierarchy Process (AHP) is proposed to offer a comprehensive evaluation of a variety of biomass energy technologies in China. In this model, three evaluation criteria, including the applicability of technology, economic viability and environment-friendly, are defined and nine indicators, including resources supply, equipment and technology, energy efficiency, energy grade, production cost, economic benefit, ecological impact, environmental pollution and social benefit, are devised. Priorities are established in this study based on pairwise comparisons of the elements. In addition, the model has been validated by various utilization technologies reported in literatures. Results show that environmental pollution, social benefit, ecological impact and resources supply greatly impact on the application of biomass technologies, followed by economic benefit. Besides, it is demonstrated that integrated technologies of biomass energy, which is closely related with residential daily life and compatible with local ecological environment, possess evident superiority. Furthermore, the outcome can be supportive for guiding future development of biomass energy in China.
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中国生物质能技术综合评价
在对中国不同的生物质能技术进行综合评价的基础上,提出了基于层次分析法的混合评价模型,对中国多种生物质能技术进行综合评价。该模型定义了技术适用性、经济可行性和环境友好性3个评价标准,设计了资源供给、设备与技术、能源效率、能源等级、生产成本、经济效益、生态影响、环境污染和社会效益9个指标。优先级是建立在本研究的基础上两两比较的要素。并通过文献报道的各种利用技术对模型进行了验证。结果表明,环境污染、社会效益、生态影响和资源供给对生物质技术应用的影响最大,其次是经济效益。与居民日常生活密切相关、与当地生态环境相适应的生物质能集成技术具有明显的优势。此外,研究结果可以为指导中国生物质能的未来发展提供支持。
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