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DOI10.1016/j.gloenvcha.2018.09.003
Resource recovery and low carbon transitions: The hidden impacts of substituting cement with imported ‘waste’ materials from coal and steel production
Millward-Hopkins J.; Zwirner O.; Purnell P.; Velis C.A.; Iacovidou E.; Brown A.
发表日期2018
ISSN0959-3780
起始页码146
结束页码156
卷号53
英文摘要Here we investigate the increasingly complex relationship between the resource recovery practices of the UK concrete industry and ongoing low-carbon transitions taking place in electricity and steel. Reductions in UK coal-based electricity and primary steel production are reducing domestic availability of residues – coal ash and steel slag – that are used to replace cement in concrete; for decarbonisation purposes and to increase concrete quality. This is leading to an unusual mass-transportation of ‘wastes’ from the Global South to Global North. Focusing closely upon the mitigation pathways of concrete producers, we develop an inter-industry model of material flows, and a diversity of scenarios and sensitivity tests, to consider how resource recovery practices and carbon emissions of the three sectors may evolve. A continuation of domestic shortages in waste-derived cement substitutes appears inevitable and future international shortages possible. But even if foreign producers supplied enough cement substitutes to meet UK demand, the broader carbon implications of such trade may be far from benign. Using a revenue-based approach to allocate emissions to coal ash leads to a wide range of embodied carbon estimates – from relatively low (0.15 t.CO2/t.ash) to exceeding that of traditional Portland cement (1 t.CO2/t.ash). However, the carbon associated with internationally traded recovered resources currently stands behind a ‘double-blind’ system of accounting: emissions do not register in the conventional territorial accounts of the importing country and they may be hidden from its consumption-based accounts as well. The impacts of such trade and related carbon accounting conventions are unclear and we emphasise the need for further investigation. To this end, our results demonstrate the importance of incorporating highly interconnected sectors and international trade into analyses of low-carbon transitions, and highlight the challenges this presents for designing appropriate policies, accounting frameworks, and interdisciplinary impact assessment methods that look beyond sectorial and national horizons. © 2018 The Authors
英文关键词Biomass; Carbon accounting; Coal ash; Complex value; Concrete; Resource recovery; Solid waste
学科领域ash; biomass; carbon emission; coal; concrete; environmental economics; environmental impact assessment; international trade; resource use; solid waste; steel; trade-environment relations; trade-off; United Kingdom
语种英语
scopus关键词ash; biomass; carbon emission; coal; concrete; environmental economics; environmental impact assessment; international trade; resource use; solid waste; steel; trade-environment relations; trade-off; United Kingdom
来源期刊Global Environmental change
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/117080
作者单位Sustainability Research Institute, University of Leeds, Leeds LS2 9JT, United Kingdom; School of Civil Engineering, University of Leeds, Leeds LS2 9JT, United Kingdom; Economics Division, Leeds University Business School, University of Leeds, Leeds LS2 9JT, United Kingdom; Social, Economics and Geographical Sciences Group, James Hutton Institute, Craigiebuckler, Aberdeen, AB158QH, Scotland, United Kingdom
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Millward-Hopkins J.,Zwirner O.,Purnell P.,等. Resource recovery and low carbon transitions: The hidden impacts of substituting cement with imported ‘waste’ materials from coal and steel production[J],2018,53.
APA Millward-Hopkins J.,Zwirner O.,Purnell P.,Velis C.A.,Iacovidou E.,&Brown A..(2018).Resource recovery and low carbon transitions: The hidden impacts of substituting cement with imported ‘waste’ materials from coal and steel production.Global Environmental change,53.
MLA Millward-Hopkins J.,et al."Resource recovery and low carbon transitions: The hidden impacts of substituting cement with imported ‘waste’ materials from coal and steel production".Global Environmental change 53(2018).
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