在绿色能源转型的背景下,通过生产预测评估电池矿物的未来供应

IF 10.2 2区 经济学 0 ENVIRONMENTAL STUDIES Resources Policy Pub Date : 2025-04-01 Epub Date: 2025-03-04 DOI:10.1016/j.resourpol.2025.105526
Anahita Jannesar Niri , Gregory A. Poelzer , Maria Pettersson , Jan Rosenkranz
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引用次数: 0

摘要

从目前的“棕色经济”到“绿色经济”的全球转型被认为是应对气候变化及其全球破坏性影响的必然的碳中和战略。全球绿色经济的雄心需要大规模的电气化,这对锂离子电池作为最先进的储能技术的需求日益增长。因此,电池市场的发展加强了对电池原材料弹性和一致性供应的关注。由于电池价值链中涉及的所有阶段都是相互依赖的,因此识别电池材料供应中断的风险和不确定性,并随后分析供应问题对未来电池市场的影响至关重要。在本研究中,为了有助于克服持续供应可持续性挑战所需的这些过程,重点关注锂,镍,石墨和钴,这些都是供应风险较高的电池原材料。在分析和分类其采矿生产的历史和当前瓶颈背后的驱动力之后,使用三种时间序列预测技术,包括季节性自回归综合移动平均线,Holt的线性趋势和Holt- winters的方法,对这些电池材料的区域和全球采矿生产进行了20年的预测。预测这些电池原材料未来可能的生产趋势,对于解决规划策略,同时应对不确定性和供应风险,无疑是必不可少的。可靠的供应预测结果提供了更多的不确定性和风险管理成果,因为利益相关者和决策者可以在锂离子电池价值链的任何阶段将其结果作为决策过程的信息来源。
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Evaluating battery minerals future supply through production predicting in the context of the green energy transition
A global transition from the current “brown economy” to a “green economy” has been perceived as an ineluctable carbon neutrality strategy to deal with climate change and its global devastating impacts. This global ambition of green economy necessitates large-scale electrification which imposes growing demand for lithium-ion batteries as state-of-the-art energy storage technologies. Thereupon, the developing market of batteries reinforces the concern over the resilient and consistent supply of battery raw materials. By the reason of the interdependencies of all the stages involved in a value chain of a battery, it is critical to identify the battery material supply-disruptive risks and uncertainties, and subsequently to analyze the impacts of the perpetuation of the supply issues on the future market of batteries. In this research study, to contribute to these processes necessary for overcoming the ongoing supply sustainability challenges, the focus is on lithium, nickel, graphite, and cobalt, which are among the battery raw materials with high supply risks. After analyzing and categorizing the driving forces behind the historical and current bottlenecks to their mining production, the regional and global mining production of those battery materials have been predicted for twenty years ahead using three time series forecasting techniques including Seasonal Autoregressive Integrated Moving Average, Holt's linear trend, and Holt-Winters’ methods. Forecasting possible future production trends of those battery raw materials is indisputably imperative to resolve planning strategies while dealing with uncertainties and supply risks. Reliable supply forecasting results provide more uncertainty and risk management achievements since the stakeholders and policymakers can use the outcomes as a source of information in the decision-making process at any stage of a lithium-ion battery value chain.
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来源期刊
Resources Policy
Resources Policy ENVIRONMENTAL STUDIES-
CiteScore
13.40
自引率
23.50%
发文量
602
审稿时长
69 days
期刊介绍: Resources Policy is an international journal focused on the economics and policy aspects of mineral and fossil fuel extraction, production, and utilization. It targets individuals in academia, government, and industry. The journal seeks original research submissions analyzing public policy, economics, social science, geography, and finance in the fields of mining, non-fuel minerals, energy minerals, fossil fuels, and metals. Mineral economics topics covered include mineral market analysis, price analysis, project evaluation, mining and sustainable development, mineral resource rents, resource curse, mineral wealth and corruption, mineral taxation and regulation, strategic minerals and their supply, and the impact of mineral development on local communities and indigenous populations. The journal specifically excludes papers with agriculture, forestry, or fisheries as their primary focus.
期刊最新文献
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