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Towards a circular economy: insights based on the development of the global ENGAGE-materials model and evidence for the iron and steel industry

机译:迈向循环经济:基于全球ENGAGE-材料模型发展的见解以及钢铁行业的证据

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A number of recent economic modelling studies have attempted to analyse resource efficiency and the circular economy. However, modelling analysis in this area is relatively underdeveloped. In particular, many CGE models are unable to provide significant insight given their aggregated sectoral coverage. Here we describe the development of the Environmental Global Applied General Equilibrium (ENGAGE-materials) model created to consider the economic and sectoral effects of potential policies on a circular economy and resource efficiency, which affect materials and resources at the stages of extraction, production and recycling. Our policy scope is global with a special emphasis on China and Europe, as both regions have dedicated policies in place and indicate their willingness to take the lead. The case of steel is relevant as it is a key material for all economies across the world and offers a range of interesting features for circularity and sustainability. ENGAGE-materials models iron ore mining, primary production of iron and steel, secondary production of iron and steel, and steel scrap recycling at the global level. We utilise this technology rich framework to provide preliminary results on scenarios comprising economic insights into a saturation effect and straightforward policy such as doubling the availability of secondary steel.
机译:最近的许多经济模型研究已尝试分析资源效率和循环经济。但是,该领域的模型分析相对欠发达。特别是,鉴于CGE模型的部门总覆盖率,它们无法提供重要的见解。在这里,我们描述了环境全球应用一般均衡(ENGAGE-materials)模型的开发,该模型的创建是为了考虑潜在政策对循环经济和资源效率的经济和部门影响,该政策在开采,生产和生产阶段会影响材料和资源。回收。我们的政策范围是全球性的,并且特别着重于中国和欧洲,因为这两个地区都制定了专门的政策并表明了他们带头的意愿。钢材的情况很重要,因为它是全球所有经济体的关键材料,并且为圆度和可持续性提供了一系列有趣的功能。 ENGAGE-materials在全球范围内模拟铁矿石开采,钢铁的初级生产,钢铁的次级生产以及废钢回收。我们利用这种技术含量高的框架来提供有关情景的初步结果,这些情景包括对饱和效应的经济见解和诸如将二次钢的可用性提高一倍的直接政策。

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