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生物质与煤共燃的技术特性:对多维资源回收价值的影响。

Technical properties of biomass and solid recovered fuel (SRF) co-fired with coal: Impact on multi-dimensional resource recovery value.

机构信息

School of Civil Engineering, University of Leeds, Woodhouse Lane, LS2 9JT Leeds, UK.

School of Civil Engineering, University of Leeds, Woodhouse Lane, LS2 9JT Leeds, UK.

出版信息

Waste Manag. 2018 Mar;73:535-545. doi: 10.1016/j.wasman.2017.07.001. Epub 2017 Jul 8.

Abstract

The power plant sector is adopting the co-firing of biomass and solid recovered fuel (SRF) with coal in an effort to reduce its environmental impact and costs. Whereas this intervention contributes to reducing carbon emissions and those of other pollutants related with the burning of fossil fuel, it may also result in hidden impacts that are often overlooked. When co-firing, the physical and chemical properties of the mixed fuels and the subsequent technical implications on the process performance and by-products are significant. Interconnections between multiple values nested within four domains of value, i.e. environmental, economic, technical and social, mean that changes in the one domain (in the co-firing case, the technical one) can have considerable implications in the other domains as well. In this study, using a systematic and flexible approach to conceptualising multi-dimensional aspects associated with the co-firing of biomass and SRF with coal, we unveil examples of such interconnections and implications on overall value delivered through the use and recovery of waste resources. Such an analysis could underpin the selection of useful metrics (quantitative or semi-quantitative descriptors) for enabling a systemic multi-dimensional value assessment, and value's distribution amongst interconnected parts of resource recovery systems; key in enabling sound analysis and decision-making.

摘要

发电部门正在采用生物质和固体回收燃料 (SRF) 与煤混烧的方法,以降低其环境影响和成本。虽然这种干预措施有助于减少碳排放和与化石燃料燃烧有关的其他污染物的排放,但也可能带来经常被忽视的潜在影响。在混烧过程中,混合燃料的物理和化学性质以及对工艺性能和副产品的后续技术影响都非常重要。四个价值领域(即环境、经济、技术和社会)内嵌套的多个价值之间的相互关系意味着一个领域(在混烧情况下是技术领域)的变化也可能对其他领域产生相当大的影响。在本研究中,我们采用系统和灵活的方法来概念化与生物质和 SRF 与煤混烧相关的多维方面,揭示了这种相互关系的实例,以及通过利用和回收废物资源提供的整体价值的影响。这种分析可以为系统的多维价值评估和资源回收系统中相互关联部分的价值分配提供有用的指标(定量或半定量描述符)的选择提供依据;这是进行合理分析和决策的关键。

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