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Experimental investigations on heat content of supercooled sodium acetate trihydrate by a simple heat loss method

机译:简单热损失法研究过冷三水合乙酸钠热含量的实验研究

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Sodium acetate trihydrate is a phase change material that can be used for long term heat storage in solar heating systems because of its relatively high heat of fusion, a melting temperature of 58 degrees C and its ability to supercool stable. In practical applications sodium acetate trihydrate tend to suffer from phase separation which is the phenomenon where anhydrous salt settles to the bottom over time. This happens especially in supercooled state. The heat released from the crystallization of supercooled sodium acetate trihydrate with phase separation will be lower than the heat released from sodium acetate trihydrate without phase separation. Possible ways of avoiding or reducing the problem of phase separation were investigated. A wide variety of composites of sodium acetate trihydrate with additives including extra water, thickening agents, solid and liquid polymers have been experimentally investigated by a simple heat loss method. The aim was to find compositions of maximum heat released from the crystallization of supercooled sodium acetate trihydrate samples at ambient temperature. It was found that samples of sodium acetate trihydrate with 0.5-2% (wt.%) Carboxy-Methyl Cellulose, 03-0.5 % (wt.%) Xanthan Gum or 1-2% (wt.%) of some solid or liquid polymers as additives had significantly higher heat contents compared to samples of sodium acetate trihydrate suffering from phase separation. (C) 2016 Elsevier Ltd. All rights reserved.
机译:三水合乙酸钠是一种相变材料,由于其相对较高的熔融热,58摄氏度的熔融温度和过冷稳定能力,可用于太阳能加热系统中的长期储热。在实际应用中,三水合乙酸钠易于发生相分离,这是无水盐随时间沉淀到底部的现象。这尤其在过冷状态下发生。与相分离的过冷乙酸钠三水合物结晶释放的热量将低于由三水合乙酸钠无相分离产物释放的热量。研究了避免或减少相分离问题的可能方法。通过简单的热损失方法,实验研究了三水合乙酸钠与添加剂的各种复合材料,包括额外的水,增稠剂,固体和液体聚合物。目的是寻找在环境温度下过冷的乙酸钠三水合物样品结晶释放出的最大热量的成分。已发现三水合乙酸钠样品含0.5-2%(wt。%)的羧甲基纤维素,03-0.5%(wt。%)的黄原胶或1-2%(wt。%)的某些固体或液体与遭受相分离的三水合乙酸钠样品相比,作为添加剂的聚合物具有更高的热含量。 (C)2016 Elsevier Ltd.保留所有权利。

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