首页> 外文期刊>Thermochimica Acta: An International Journal Concerned with the Broader Aspects of Thermochemistry and Its Applications to Chemical Problems >A systematic screening approach for new materials for thermochemical energy storage and conversion based on the Strunz mineral classification system
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A systematic screening approach for new materials for thermochemical energy storage and conversion based on the Strunz mineral classification system

机译:基于Strunz矿物分类系统的热化学能量存储和转换的新材料的系统筛选方法

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摘要

Thermochemical energy storage and conversion is yet considered as key technology enhancing the efficiency of energy production and utilization from renewables. Recently, several search algorithms and screening approaches for new materials for thermochemical energy storage and conversion have been published. Since respective reaction systems have to match numerous requirements, the demand for suitable materials in the low, middle and high temperature range is quite significant. However, recent works on reversible de- and rehydrations for application in the middle temperature range from 100 degrees C-400 degrees C are predominantly restricted to simple, binary compounds containing water of crystallization. Within the scope of the present work, a new search methodology based on a mineral classification system also including ternary or higher compounds is firstly subjected and experimentally validated. The experimental elaboration started from a small number of 29 compounds, from which already two suitable reaction systems are identified. For one of these reaction systems, orthorhombic calcium dizinc-bisphosphate dihydrate to calcium dizinc-bisphosphate monohydrate, the cycling stability is firstly proven on a mineral sample.
机译:热化学能量存储和转换尚未被认为是可再生能源能源生产和利用效率的关键技术。最近,已经公布了几种搜索算法和用于热化学能量存储和转换的新材料的筛选方法。由于各自的反应系统必须匹配许多要求,因此对低温,中高温范围内对合适材料的需求非常显着。然而,近期在100摄氏度范围内的可逆去除和补水的作品主要限于含有结晶水的简单二元化合物。在本作本作的范围内,首先进行并经过实验验证的基于矿物分类系统的新搜索方法。从少量29种化合物开始的实验性阐述,从中鉴定了两个合适的反应体系。对于这些反应体系之一,正交钙致锌 - 双磷酸二磷酸二水合物与钙二锌 - 双磷酸二磷酸二水合物,首先在矿物样品上证明循环稳定性。

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