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High and intermediate temperature sodium-sulfur batteries for energy storage: development, challenges and perspectives

机译:高中温度钠 - 硫磺电池供储能:发展,挑战和观点

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摘要

In view of the burgeoning demand for energy storage stemming largely from the growing renewable energy sector, the prospects of high ( 300 degrees C), intermediate (100-200 degrees C) and room temperature (25-60 degrees C) battery systems are encouraging. Metal sulfur batteries are an attractive choice since the sulfur cathode is abundant and offers an extremely high theoretical capacity of 1672 mA h g(-1) upon complete discharge. Sodium also has high natural abundance and a respectable electrochemical reduction potential (2.71 V vs. standard hydrogen electrode). Combining these two abundant elements as raw materials in an energy storage context leads to the sodium-sulfur battery (NaS). This review focuses solely on the progress, prospects and challenges of the high and intermediate temperature NaS secondary batteries (HT and IT NaS) as a whole. The already established HT NaS can be further improved in terms of energy density and safety record. The IT NaS takes advantage of the lower operating temperature to lower manufacturing and potentially operating costs whilst creating a safer environment. A thorough technical discussion on the building blocks of these two battery systems is discussed here, including electrolyte, separators, cell configuration, electrochemical reactions that take place under the different operating conditions and ways to monitor and comprehend the physicochemical and electrochemical processes under these temperatures. Furthermore, a brief summary of the work conducted on the room temperature (RT) NaS system is given seeking to couple the knowledge in this field with the one at elevated temperatures. Finally, future perspectives are discussed along with ways to effectively handle the technical challenges presented for this electrochemical energy storage system.
机译:鉴于对耗能的促销需求源于不断增长的可再生能源部门,高(& 300℃)的前景,中间(100-200摄氏度)和室温(25-60℃)电池系统令人鼓舞。金属硫电池是一个有吸引力的选择,因为硫磺阴极充足,在完全放电时提供1672 mA H(-1)的极高理论容量。钠还具有高天然丰度和可观的电化学还原电位(2.71V与标准氢电极)。将这两个丰富的元素组合为能量存储上下文中的原材料导致硫磺电池(NAS)。本综述仅关注高中温度NAS二次电池(HT和IT NAS)的进展,前景和挑战。已经建立的HT NAS可以在能量密度和安全记录方面进一步改善。 IT NAS利用较低的工作温度来降低制造和潜在运营成本,同时创造更安全的环境。这里讨论了关于这两个电池系统的构建块的全面技术讨论,包括电解质,分离器,电池配置,在不同的操作条件下进行的电化学反应以及在这些温度下监测和理解物理化学和电化学过程的方法。此外,在室温(RT)NAS系统上进行的简要概述,寻求将该领域的知识与升高的温度介断。最后,将来与有效处理该电化学能量存储系统所呈现的技术挑战的方法一起讨论了未来的观点。

著录项

  • 来源
    《RSC Advances》 |2019年第10期|共25页
  • 作者单位

    Dutch Inst Fundamental Energy Res DIFFER De Zaale 20 NL-5612 AJ Eindhoven Netherlands;

    Dutch Inst Fundamental Energy Res DIFFER De Zaale 20 NL-5612 AJ Eindhoven Netherlands;

    Dutch Inst Fundamental Energy Res DIFFER De Zaale 20 NL-5612 AJ Eindhoven Netherlands;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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