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MACROENCAPSULATION OF SODIUM NITRATE FOR THERMAL ENERGY STORAGE IN SOLAR THERMAL POWER

机译:硝酸钠在太阳能热能中的宏胶囊化

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Storage systems based on latent heat storage have high-energy storage density, which reduces the footprint of the system and the cost. However, phase change materials (PCMs) have very low thermal conductivities making them unsuitable for large-scale use without enhancing the effective thermal conductivity. In order to address the low thermal conductivity of the PCMs, macroencapsulation of PCMs is adopted as an effective technique. The macro encapsulation not only provides a self-supporting structure but also enhances the heat transfer rate. In this research, Sodium nitrate (NaNO_3), a low cost PCM, was selected for thermal storage in a temperature range of 300 - 500°C. The PCM was encapsulated in a metal oxide cell using self-assembly reactions, hydrolysis, and simultaneous chemical oxidation at various temperatures. The metal oxide encapsulated PCM capsule was characterized using Fourier transform infrared spectroscopy (FTIR) and scanning electron microscopy (SEM). The cyclic stability and thermal performance of the capsules were also studied.
机译:基于潜热存储的存储系统具有高能量存储密度,这减少了系统的占地面积和成本。但是,相变材料(PCM)的导热系数非常低,使其不适合大规模使用而又不提高有效导热系数。为了解决PCM的低导热性,采用PCM的大封装作为有效技术。宏观封装不仅提供了自支撑结构,而且还提高了传热速率。在这项研究中,选择了低成本PCM硝酸钠(NaNO_3)在300-500°C的温度范围内进行热存储。使用自组装反应,水解以及在不同温度下同时进行化学氧化,将PCM封装在金属氧化物电池中。使用傅里叶变换红外光谱(FTIR)和扫描电子显微镜(SEM)对金属氧化物封装的PCM胶囊进行了表征。还研究了胶囊的循环稳定性和热性能。

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