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Analysis of Potential for Critical Metal Resource Constraints in the International Energy Agency’s Long-Term Low-Carbon Energy Scenarios

机译:国际能源署长期低碳能源情景中潜在的关键金属资源限制因素分析

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As environmental problems associated with energy systems become more serious, it is necessary to address them with consideration of their interconnections—for example, the energy-mineral nexus. Specifically, it is unclear whether long-term energy scenarios assuming the expansion of low carbon energy technology are sustainable in terms of resource constraints. However, there are few studies that comprehensively analyze the possibility of resource constraints in the process of introducing low carbon energy technology from a long-term perspective. Hence, to provide guidelines for technological development and policy-making toward realizing the low carbon society, this paper undertakes the following: (1) Estimation of the impact of the expansion of low carbon energy technology on future metal demand based, on the International Energy Agency (IEA)’s scenarios; (2) estimation of the potential effects of low carbon energy technology recycling on the future supply-demand balance; (3) identification of critical metals that require priority measures. Results indicated that the introduction of solar power and next-generation vehicles may be hindered by resource depletion. Among the metals examined, indium, tellurium, silver, lithium, nickel and platinum were identified as critical metals that require specific measures. As recycling can reduce primary demand by 20%~70% for low carbon energy technology, countermeasures including recycling need to be considered.
机译:随着与能源系统相关的环境问题变得越来越严重,有必要解决它们之间的相互联系,例如能源与矿产的关系。具体而言,目前尚不清楚假设低碳能源技术得到扩展的长期能源方案在资源约束方面是否可持续。但是,从长期的角度来看,很少有研究能够全面地分析引入低碳能源技术过程中资源约束的可能性。因此,为为实现低碳社会提供技术发展和政策制定的指导,本文进行以下工作:(1)根据国际能源评估低碳能源技术的扩展对未来金属需求的影响。代理商(IEA)的方案; (2)估算低碳能源技术回收对未来供需平衡的潜在影响; (3)确定需要优先措施的关键金属。结果表明,太阳能和下一代车辆的引入可能会因资源枯竭而受到阻碍。在所检查的金属中,铟,碲,银,锂,镍和铂被确定为需要采取特殊措施的关键金属。由于回收可以将低碳能源技术的主要需求减少20%〜70%,因此需要考虑包括回收在内的对策。

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