面向应用的多功能大型固定电池和氢混合储能系统概述

Yuchen Yang , Zhen Wu , Jing Yao , Tianlei Guo , Fusheng Yang , Zaoxiao Zhang , Jianwei Ren , Liangliang Jiang , Bo Li
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引用次数: 0

摘要

解决传统能源危机和环境问题的当务之急加速了能源结构转型的需要。然而,可再生能源的可变性给满足复杂的实际能源需求带来了挑战。为解决这一问题,建造多功能大型固定储能系统被认为是一种有效的解决方案。本文对电池和氢混合储能系统进行了深入研究。这两种技术都面临着一些限制,阻碍它们完全满足未来的储能需求,如在有限空间内实现大容量储能、快速响应的频繁储能和无损耗的连续储能。电池具有快速响应(1 秒)和高效率(90%)的特点,在短时间频繁储能方面表现出色。然而,自放电率(1%)和容量损耗(20%)等局限性限制了其在长时间能量存储中的应用。氢作为一种潜在的能量载体,由于其能量密度高、状态稳定、损耗低,适合大规模、长时间储能。然而,由于氢气的储存效率较低(50%),它在频繁储能方面的效率较低。正在进行的研究表明,电池和氢气混合储能系统可以结合两种技术的优势,满足对大规模、长时间储能日益增长的需求。为了评估这两种技术的应用潜力,本文利用提出的关键性能指标对两种储能技术的研究现状进行了详细分析。此外,还从多个角度概述了电池和氢混合储能系统面向应用的未来方向和挑战,为先进储能系统的开发提供指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An overview of application-oriented multifunctional large-scale stationary battery and hydrogen hybrid energy storage system

The imperative to address traditional energy crises and environmental concerns has accelerated the need for energy structure transformation. However, the variable nature of renewable energy poses challenges in meeting complex practical energy requirements. To address this issue, the construction of a multifunctional large-scale stationary energy storage system is considered an effective solution. This paper critically examines the battery and hydrogen hybrid energy storage systems. Both technologies face limitations hindering them from fully meeting future energy storage needs, such as large storage capacity in limited space, frequent storage with rapid response, and continuous storage without loss. Batteries, with their rapid response (<1 ​s) and high efficiency (>90 ​%), excel in frequent short-duration energy storage. However, limitations such as a self-discharge rate (>1 ​%) and capacity loss (∼20 ​%) restrict their use for long-duration energy storage. Hydrogen, as a potential energy carrier, is suitable for large-scale, long-duration energy storage due to its high energy density, steady state, and low loss. Nevertheless, it is less efficient for frequent energy storage due to its low storage efficiency (∼50 ​%). Ongoing research suggests that a battery and hydrogen hybrid energy storage system could combine the strengths of both technologies to meet the growing demand for large-scale, long-duration energy storage. To assess their applied potentials, this paper provides a detailed analysis of the research status of both energy storage technologies using proposed key performance indices. Additionally, application-oriented future directions and challenges of the battery and hydrogen hybrid energy storage system are outlined from multiple perspectives, offering guidance for the development of advanced energy storage systems.

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