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Basic properties of eutectic chloride salts NaCl-KCl-ZnCl_2 and NaCl-KCl- MgCl2 as HTFs and thermal storage media measured using simultaneous DSC-TGA

机译:使用同时DSC-TGA测量的共晶氯化物盐NaCl-KCl-ZnCl_2和NaCl-KCl-MgCl2作为HTF的基本性质和储热介质

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摘要

Concentrated solar power (CSP) technologies tend to work at high temperatures for better energy efficiency, which need high temperature heat transfer fluids (HTF) and thermal storage. A good HTF should have low melting point and be thermally stable at high temperatures. A thermal storage medium needs a high heat capacity in order to store more energy in per unit of mass or volume. The objective of this work is to study the basic thermophysical properties of several eutectic molten salts for HTF and thermal storage media, which can work at upper limit temperatures of 850 degrees C. The eutectic salts are mixtures by NaCl-KCl-ZnCl2, and by NaCl-KCl-MgCl2, respectively. The heat capacity, melting point, and heat of fusion of the eutectic salts at different temperatures were measured using Differential Scanning Calorimetry (DSC) and Thermal Gravimetric Analysis (TGA) simultaneously. Details of the measurements and obtained experience of operating the equipment are provided in the work. For each of the eutectic salts multiple samples were tested to check repeatability and to minimize random errors. In theoretical analysis, mixing rules from literature was used to estimate the heat capacity of the new HTFs, which showed good agreement with experimental data.
机译:集中式太阳能(CSP)技术倾向于在高温下工作以提高能源效率,这需要高温传热流体(HTF)和储热器。好的HTF应该具有低熔点,并且在高温下具有热稳定性。蓄热介质需要高的热容量,以便在单位质量或体积中存储更多的能量。这项工作的目的是研究几种HTF和热存储介质的共晶熔融盐的基本热物理性质,它们可以在850摄氏度的上限温度下工作。共晶盐是NaCl-KCl-ZnCl2和NaCl-KCl-MgCl2分别。同时使用差示扫描量热法(DSC)和热重分析(TGA)测量在不同温度下共晶盐的热容量,熔点和熔化热。工作中提供了测量的详细信息和获得的操作设备的经验。对于每种低共熔盐,测试了多个样品以检查可重复性并最大程度地减少随机误差。在理论分析中,使用文献中的混合规则来估算新型HTF的热容,这与实验数据吻合良好。

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