关键矿物和:地球公正转型中的稀土元素:跨学科视角

IF 3.6 2区 社会学 Q2 ENVIRONMENTAL STUDIES
David Brown , Ronghui Zhou , Mandy Sadan
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引用次数: 0

摘要

关键矿物和稀土元素的开采和加工对 "清洁 "能源技术的发展至关重要,但同时也对世界各地的当地社区造成了一系列重叠的社会和环境危害。向低碳经济的过渡引发了一系列多领域的困境、不公正和权衡,特别是在全球减少温室气体排放的必要性与矿产开采对当地造成的后果之间。由于绿色技术依赖于关键矿产供应链中对社会环境有害的采掘行为,因此在全球范围内实现公正的能源转型存在着巨大的障碍。通过跨学科视角和一系列国际案例研究,我们批判性地审视了关键矿产与公正转型治理之间的交集,并探索了更加多元、全面和综合的公正能源转型途径的可能性。在这篇导言文章中,我们详细介绍了低碳技术的生产如何与全球不平等和持续的殖民主义联系在一起。然后,我们展示了在公正能源转型问题上采取全球、包容性观点的重要性。从地球公正转型的概念出发,我们概述了围绕关键矿物在公正能源转型中的作用的主要辩论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
‘Critical minerals and: Rare earth elements in a planetary just transition: an interdisciplinary perspective’

While vital for the development of ‘clean’ energy technologies, the extraction and processing of critical minerals and rare earth elements entail a range of overlapping social and environmental harms in local communities across the world. The transition to low-carbon economies invokes a host of multiscalar dilemmas, injustices and trade-offs, notably between the global imperative to reduce greenhouse gas emissions and the local consequences of mineral mining. There are profound barriers to delivering a just energy transition at a planetary scale given the reliance of green technologies upon socio-environmentally harmful extractive practices across critical mineral supply chains. Adopting an interdisciplinary lens and drawing from a set of international case studies, we critically examine the intersection of critical minerals with just transition governance and explore possibilities for more plural, holistic and integrated just energy transition pathways. In this introduction article, we detail the ways in which the production of low-carbon technologies is bound up with global inequalities and ongoing coloniality. We then demonstrate the importance of adopting a global, inclusive outlook on just energy transitions. Drawing from the concept of planetary just transition, we provide an overview of the key debates around the role of critical minerals in a just energy transition.

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来源期刊
CiteScore
6.60
自引率
19.40%
发文量
135
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