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Combined heat and power from the intermediate pyrolysis of biomass materials: performance, economics and environmental impact

机译:生物质材料中间热解过程中产生的热能和动力相结合:性能,经济性和环境影响

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摘要

Combined heat and power from the intermediate pyrolysis of biomass materials offers flexible, on demand renewable energy with some significant advantages over other renewable routes. To maximise the deployment of this technology an understanding of the dynamics and sensitivities of such a system is required. In the present work the system performance, economics and life-cycle environmental impact is analysed with the aid of the process simulation software Aspen Plus. Under the base conditions for the UK, such schemes are not currently economically Competitive with energy and char products produced from conventional means. However, under certain scenarios as modelled using a sensitivity analysis this technology can compete and can therefore potentially contribute to the energy and resource sustainability of the economy, particularly in on-site applications with low-value waste feed-stocks. The major areas for potential performance improvement are in reactor cost reductions, the reliable use of waste feedstocks and a high value end use for the char by-product from pyrolysis. (C) 2017 Elsevier Ltd. All rights reserved.
机译:来自生物质材料中间热解的热电联产提供了灵活的,按需提供的可再生能源,与其他可再生路线相比,具有一些明显的优势。为了最大程度地利用这种技术,需要了解这种系统的动态性和敏感性。在当前工作中,借助过程模拟软件Aspen Plus分析了系统性能,经济性和生命周期对环境的影响。在英国的基本条件下,此类计划目前在经济上与传统方式生产的能源和焦炭产品不具有竞争力。但是,在使用敏感性分析建模的某些情况下,该技术可以竞争,因此可能潜在地促进经济的能源和资源可持续性,尤其是在使用低价值废物原料的现场应用中。潜在性能改善的主要领域是降低反应器成本,可靠地使用废料以及热解焦炭副产品的高价值最终用途。 (C)2017 Elsevier Ltd.保留所有权利。

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