Development of High Added Value Products from Industrial Minerals for Hybrid Energy Storage

Antonis Peppas, C. Politi
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引用次数: 1

Abstract

Industrial minerals are at the forefront of innovation and play an essential role in many innovative applications. Their functionalities and properties make them very versatile materials which are essential to many industries. A combination of properties such as heat capacity, density, price, availability, and eco-friendliness are exceptional and crucially advantageous of industrial minerals utilisation as thermal energy storage (TES) systems. This technology stocks thermal energy by heating or cooling a storage medium so that the stored energy can be used at a later time for heating and cooling applications and power generation. In this context, the utilisation of industrial minerals as carriers for impregnating phase change materials (PCM) can deliver new innovative products acting as short-term energy storage systems for construction applications to the market. TES is a technology that can solve the existing mismatch of energy supply and demand and improve buildings’ system performance by smoothing temperature fluctuations, as well as improving the reliability of the heating and/or cooling source. However, the most recent publications in this area are focused on PCM-enhanced building components thermal and kinetics analysis rather than focusing on the building component scale. This study is focused on the industrial minerals-PCM application as part of the building’s envelope, aiming to determine the benefits for buildings in terms of thermal energy performance and renewable energy penetration based on real data, harvested by an intelligent monitored building in Lavrion Technological and Cultural Park operated solely for research activities.
混合储能用工业矿产高附加值产品的开发
工业矿物处于创新的前沿,在许多创新应用中发挥着至关重要的作用。它们的功能和特性使它们成为用途广泛的材料,对许多工业都是必不可少的。热容量、密度、价格、可用性和生态友好性等特性的组合是工业矿物作为热能储存(TES)系统的特殊和至关重要的优势。该技术通过加热或冷却存储介质来储存热能,以便储存的能量可以在以后用于加热和冷却应用以及发电。在这种情况下,利用工业矿物作为浸没相变材料(PCM)的载体,可以提供新的创新产品,作为市场上建筑应用的短期储能系统。TES是一项可以通过平滑温度波动来解决现有的能源供需不匹配,改善建筑物系统性能,并提高供暖和/或制冷源可靠性的技术。然而,该领域的最新出版物主要集中在pcm增强的建筑构件热和动力学分析上,而不是集中在建筑构件尺度上。本研究的重点是工业矿物- pcm应用作为建筑围护结构的一部分,旨在根据真实数据确定建筑在热能性能和可再生能源渗透方面的好处,这些数据由Lavrion科技文化园的智能监控建筑收集,仅用于研究活动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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