Sorption-based Energy Storage Systems: A Review

IF 0.2 Q4 ENGINEERING, MULTIDISCIPLINARY Makara Journal of Technology Pub Date : 2019-04-30 DOI:10.7454/MST.V23I1.3691
K. Thu, N. Nasruddin, S. Mitra, B. Saha
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引用次数: 5

Abstract

Mismatched timing between the supply and demand of energy calls for reliable storage systems. Energy storage systems have become further significant with the widespread implementation of renewable energy. These systems can mitigate problems that are often associated with renewable energy sources such as supply unreliability while meeting the demand during peak hours. Energy can be stored in various forms, yet storage systems can be generally grouped based on their output forms, namely (i) electricity and (ii) heat or thermal energy. Electrical energy is the most convenient and effective form since it can power almost all modern devices. However, the electricity itself is vastly produced by thermodynamic cycles at a particular thermal efficiency using thermal energy from fossil fuels. Meanwhile, thermal energy for the HVAC&R and the production of hot water remains the largest portion of the building energy sector. Thermal energy can be stored in the form of sensible, latent, and thermochemical energy. This review focuses on thermochemical sorption-based energy storage systems. These systems exploit endothermic and exothermic sorption processes for charging and discharging of the thermal energy. Sorption-based storage systems exhibit huge potential due to a high energy density and their ability to store the energy at room temperature. We discuss the current state-of-the-art developments, key challenges, and future prospects of sorption-based energy systems.
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基于吸附的储能系统:综述
能源供应和需求之间的时间不匹配需要可靠的存储系统。随着可再生能源的广泛应用,储能系统变得更加重要。这些系统可以缓解通常与可再生能源相关的问题,例如在高峰时段满足需求时的供应不可靠性。能量可以以各种形式存储,但存储系统通常可以根据其输出形式进行分组,即(i)电和(ii)热能或热能。电能是最方便、最有效的形式,因为它几乎可以为所有现代设备供电。然而,电力本身是利用化石燃料的热能以特定的热效率通过热力学循环大量产生的。与此同时,用于暖通空调和热水生产的热能仍然是建筑能源部门的最大组成部分。热能可以以显能、潜热和热化学能的形式储存。本文综述了基于热化学吸附的储能系统。这些系统利用吸热和放热吸附过程来充放电热能。基于吸附的存储系统由于其高能量密度和在室温下存储能量的能力而显示出巨大的潜力。我们讨论了基于吸附的能源系统的当前最先进的发展、关键挑战和未来前景。
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来源期刊
Makara Journal of Technology
Makara Journal of Technology ENGINEERING, MULTIDISCIPLINARY-
自引率
0.00%
发文量
13
审稿时长
20 weeks
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