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Feasibility study of MgSO4 + zeolite based composite thermochemical energy stores integrated with vacuum flat plate solar thermal collectors for seasonal thermal energy storage

机译:用于季节热能储存真空平板太阳能热收集器的MgSO4 +沸石基复合热化学能源储存的可行性研究

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A primary drawback of solar thermal technologies, especially in a domestic setting, is that collection of thermal energy occurs when solar irradiance is abundant and there is generally little requirement for heating. Thermochemical Energy Storage (TCES) offers a means of storing thermal energy interseasonally with very little heat loss. A combination of Solar Thermal Collectors (STC) and TCES systems will allow a variety of different heating applications, such as domestic space and hot water heating as well as low temperature industrial process heat applications to be met in a low carbon way. This paper describes and assesses the feasibility of two novel technologies currently under development at Loughborough University; i) an evacuated flat plate STC and ii) composite TCES materials, coupled together into a system designed to store and supply thermal energy on demand throughout the year. The predicted performance of an evacuated flat plate STC is described. The objective of this paper is to evaluate the economic, energy and carbon saving potential of conceptual STC + TCES systems suitable for domestic use. This research uses experimental results from Differential Scanning Calorimeter tests to evaluate the total enthalpy, dehydration enthalpy and sensible component enthalpy of composite TCES materials. The experimental results along with predicted performance of STC are used within a developed model to assess key metrics of conceptual STC + TCES systems feasibility, including; charging time, payback time, cost/ kWh, energy savings and CO2 savings. Preliminary results suggest the combination of these two technologies has significant potential for domestic applications.
机译:太阳能热技术的主要缺点,特别是在国内环境中,是在太阳辐照度丰富时发生热能集合,并且通常很少需要加热要求。热化学储能(TCES)提供了一种流动的方法,其热量非常少。太阳能热收集器(STC)和TCES系统的组合将允许各种不同的加热应用,例如国内空间和热水加热以及以低碳方式满足的低温工业工艺热应用。本文介绍并评估了Loughborough大学目前正在开发的两种新技术的可行性; i)一种疏散的平板STC和II)复合TCES材料,耦合在一起的系统,该系统旨在全年满足于需求的供应和供应热能。描述了抽空平板STC的预测性能。本文的目的是评估适合国内使用的概念STC + TCES系统的经济,能源和碳潜力。该研究使用差示扫描量热计试验的实验结果来评估复合TCS材料的总焓,脱水焓和合理的成分焓。在开发的模型中使用实验结果以及预测的STC性能,以评估概念STC + TCES系统可行性的关键指标,包括;充电时间,投资金额,成本/千瓦时,节能和二氧化碳节省。初步结果表明这两种技术的组合具有巨大的国内应用潜力。

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