可持续发展双碳钠离子电容器的价值链

IF 4.7 4区 材料科学 Q2 ELECTROCHEMISTRY
Roman Mysyk, Daniel Carriazo, Damien Saurel, Maria Arnaiz, Olivier Crosnier, Thierry Brousse, Kangkang Ge, Pierre-Louis Taberna, Patrice Simon, Sander Ratso, Einar Karu, Alberto Varzi, Juan Pablo Badillo, Andrea Hainthaler, Akshaya Sidharthan, Andrea Balducci, Obinna Egwu Eleri, Amaia Saenz de Buruaga, Javier Olarte, Juan Dayron Lopez Cardona, Fatemeh Bahmei, Sebastian P. Bautista, Marcel Weil, Jon Ajuria
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引用次数: 0

摘要

既然需要迅速采取行动减轻气候变化的影响,开发新技术以减少全球碳足迹至关重要。钠离子电容器可以成为广泛的交通电气化或大规模采用可再生技术的关键推动者。然而,从第一份概念验证报告到将技术转移到市场的成熟程度,需要经历长达数年的旅程。为了缩短这条道路,这项工作聚集了参与钠离子电容器技术开发的所有利益相关者,涵盖了从学术界(TRL 1-3)和研究中心(TRL3-5)到公司和最终用户(TRL 6-9)的整个价值链。从了解潜在的操作机制到建立最终用户规范和材料和工艺的工业要求,从360度的角度给出了如何关注钠离子电容器或相关电化学储能技术的研究和技术开发。这不仅是在性能指标方面,而且主要考虑相关的实际参数,即。通过生命周期评估(LCA)和生命周期成本(LCC)分析,最终对整个技术进行可持续性评估,这对社会和政策制定者至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The Value Chain of Sustainable Dual Carbon Sodium Ion Capacitors

The Value Chain of Sustainable Dual Carbon Sodium Ion Capacitors

The Value Chain of Sustainable Dual Carbon Sodium Ion Capacitors

The Value Chain of Sustainable Dual Carbon Sodium Ion Capacitors

The Value Chain of Sustainable Dual Carbon Sodium Ion Capacitors

Now that fast action is needed to mitigate the effects of climate change, developing new technologies to reduce the worldwide carbon footprint is critical. Sodium ion capacitors can be a key enabler for widespread transport electrification or massive adoption of renewable technologies. However, a years-long journey needs to be made from the first proof-of-concept report to a degree of maturity for technology transfer to the market. To shorten this path, this work gathers all the stakeholders involved in the technical development of the sodium ion capacitor technology, covering the whole value chain from academics (TRL 1–3) and research centers (TRL3–5) to companies and end-users (TRL 6–9). A 360-degree perspective is given on how to focus the research and technology development of sodium ion capacitors, or related electrochemical energy storage technologies, from understanding underlying operation mechanisms to setting up end-user specifications and industrial requirements for materials and processes. This is done not only in terms of performance metrics, but mainly considering relevant practical parameters, i. e., processability, scalability, and cost, leading up to the final sustainability evaluation of the whole of the technology by Life Cycle Assessment (LCA) and Life Cycle Cost (LCC) analysis, which is of utmost importance for society and policymakers.

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来源期刊
CiteScore
8.60
自引率
5.30%
发文量
223
期刊介绍: Electrochemical energy storage devices play a transformative role in our societies. They have allowed the emergence of portable electronics devices, have triggered the resurgence of electric transportation and constitute key components in smart power grids. Batteries & Supercaps publishes international high-impact experimental and theoretical research on the fundamentals and applications of electrochemical energy storage. We support the scientific community to advance energy efficiency and sustainability.
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