Chapter 15. Governing Resource Flows in a Circular Economy: Rerouting Materials in an Established Policy Landscape

P. Deutz, H. Baxter, D. Gibbs
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引用次数: 3

Abstract

The development of a Circular Economy, whereby resources are kept in circulation for the extraction of maximum value, has captured extensive policy and academic attention. The circularisation of material flows is likely to prove a task for a generation: the challenges are only beginning to be explored and the wider implications are seldom considered. However, circular economy-relevant policies are not new; EU policy makers have already made adjustments to remove inadvertent barriers to resource recovery. This chapter considers how resource recovery in the UK steel industry has been influenced by environmental policies, particularly the 2008 Waste Framework Directive's approach to enabling residues to lose, or avoid altogether, identification as wastes. In this context, we also consider the response to a proposed novel technology to recover vanadium, a high value component, from steel slag. Extensive analysis of policy-related documents at EU and UK level was carried out along with semi-structured stakeholder interviews (including producers of steel slag, industry bodies and regulators). Findings suggest that implementing reforms to earlier regulations necessitates changes to practices engendered by previous institutional arrangements. We face a risk of adding to layers of complexity rather than removing them. Circular economy theory and policy need to be aware of policy legacy.
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第15章。管理循环经济中的资源流动:在既定的政策环境中重新安排材料
发展循环经济,使资源保持流通以获取最大价值,已引起政策和学术界的广泛关注。物质流动的循环化很可能被证明是一代人的任务:挑战才刚刚开始被探索,更广泛的影响很少被考虑。然而,与循环经济相关的政策并不新鲜;欧盟的政策制定者已经做出了调整,以消除对资源回收的无意障碍。本章考虑英国钢铁行业的资源回收如何受到环境政策的影响,特别是2008年废物框架指令的方法,使残留物失去或完全避免被识别为废物。在此背景下,我们还考虑了从钢渣中回收高价值成分钒的新技术的响应。对欧盟和英国层面的政策相关文件进行了广泛的分析,并进行了半结构化的利益相关者访谈(包括钢渣生产商、行业机构和监管机构)。调查结果表明,要对以前的条例进行改革,就必须改变以前的体制安排所产生的做法。我们面临着增加而不是消除复杂性的风险。循环经济理论和政策需要意识到政策遗留问题。
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Chapter 7. Integrating Remediation and Resource Recovery of Industrial Alkaline Wastes: Case Studies of Steel and Alumina Industry Residues Chapter 8. Conclusions Chapter 11. Applications of Engineered Nanomaterials in the Recovery of Metals from Wastewater Chapter 6. An Exploration of Key Concepts in Application of In Situ Processes for Recovery of Resources from High-volume Industrial and Mine Wastes Chapter 5. Adding Value to Ash and Digestate (AVAnD Project): Elucidating the Role and Value of Alternative Fertilisers on the Soil–Plant System
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