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Advanced Technologies for Liquid-Redox Rechargeable Batteries

机译:液态氧化还原充电电池的先进技术

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22.1 INTRODUCTION Resources and the environment are the decisive factor for the sustainable development of the human society. The demand for global energy is climbing rapidly due to population growth and continuing industrialization. The use of renewable energy resources, such as solar and wind, as an energy policy is being planned in larger numbers than ever before owing to concern over the energy crisis that is caused by the increasing international oil price and the exhaustion of the limited supply of fossil fuels.~(1-5) These sources are, however, intermittent and often unpredictable. In this regard, as a possible route to solving the energy crisis, the development of large-scale energy-storage systems in combination with renewable resources has attracted much attention in recent years. The usage of stored energy is fundamental to the generation of electric power, whether in fuel stockpiles for fossil or nuclear power plants or the seasonal runoff and dammed waterways for hydroelectric power plants. The use of energy-storage technologies provides many advantages to electric power transmission systems, such as effective use of existing plant investment, flexibility in operation, and better response to price changes.~6 Storage could be used to defer or eliminate the need for high-cost investments in new or upgraded transmission and distribution facilities (wires, transformers, capacitors or capacitor banks, and substations). In addition, storage could also be a cost-effective option for utilities to improve power quality or service reliability for customers with high-value processes or critical operations.~7 Other benefits of energy-storage systems are use of off-peak power for pumping and/or charging and maximization of operations and flexibility for commercial buying or selling electricity during on-peak or off-peak periods.~6 Finally, broad technical, economic, and social factors also suggest a promising future for energy-storage technologies.
机译:22.1简介资源和环境是人类社会可持续发展的决定性因素。由于人口增长和持续的工业化,对全球能源的需求正在迅速攀升。由于令人担忧的是,在更大的数量之前,计划使用可再生能源资源,如太阳能,如太阳能,这是一个能量政策,而是由于国际油价越来越多的能源危机和有限的供应耗尽而导致的能源危机化石燃料。然而,这些来源是间歇性的,并且通常是不可预测的。在这方面,作为解决能源危机的可能途径,近年来,与可再生资源相结合的大规模能量储存系统的发展引起了很多关注。储存能量的用法是电力的基础,无论是在化石或核电站的燃料库存中还是水力发电厂的季节径流和钓鱼道。储能技术的使用为电​​力传输系统提供了许多优点,例如有效利用现有的植物投资,操作灵活性,更好地对价格变化进行响应。〜6个存储可用于推迟或消除对高的需求 - 在新的或升级的传输和配送设施(电线,变压器,电容器或电容器组和变电站)中的投资。此外,存储还可以是公用事业公司的经济高效选择,以提高具有高价目流程或关键操作的客户的电力质量或服务可靠性。〜7储能系统的其他优势是使用禁止峰值供泵和/或充电和最大化的运营和最大化在高峰期或偏峰期间商业购买或销售电力的灵活性。〜6终于,广泛的技术,经济和社会因素也为储能技术建议了一个有希望的未来。

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