三元碳酸盐混合物的制备及热物性研究

闫全英,孙相宇,王立娟,王随林,赵加

化工新型材料 ›› 2017, Vol. 45 ›› Issue (9) : 190 -192.

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化工新型材料 ›› 2017, Vol. 45 ›› Issue (9) : 190-192.
科学研究

三元碳酸盐混合物的制备及热物性研究

    闫全英,孙相宇,王立娟,王随林,赵加
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Research on preparation and thermal property of high temperature carbonate molten salt

  • Yan Quanying, Sun Xiangyu, Wang Lijuan, Wang Suilin, Zhao Jia
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摘要

选取Na2CO3、Li2CO3和K2CO3按不同比例配制三元混合碳酸盐。通过差示扫描量热分析仪实验测试其热物性。结果表明:能够共熔的碳酸盐混合物的熔点在400℃左右,低于单一组分的熔点;部分样品初晶点高于熔点;熔点低、初晶点小于熔点的碳酸盐混合物熔化潜热大部分在100J/g以上,有些大于200J/g;优选出的9种低熔点、低初晶点和高熔化潜热的碳酸盐混合物的稳定性较好。旨在寻找熔点低、相变潜热大、性能稳定的混合熔盐,为其在太阳能热发电中的应用提供参考和依据。

Abstract

Selected Na2CO3,Li2CO3 and K2CO3 to prepare ternary mixed carbonates in different proportions.The thermal properties were tested by differential thermal analyzer.The results showed that the melting point of carbonates which melted together was about 400℃.And the melting point of ternary carbonates was lower than the single component's.The initial crystallization points of some samples were higher than the melting points.The latent heat of most carbonate mixtures were more than 100J/g,and some were more than 200J/g.These carbonate mixtures had low melting points and the initial points were lower than the melting points.9 kinds of carbonate mixtures with low melting points,low initial crystallization points and high melt latent heat were selected.And the stabilities of 9 kinds of carbonate mixtures were good.It was attempted to find the mixed molten salts with low melting point,high latent heat and stable performance.The reference and basis for its application in solar thermal power generation were provided.

关键词

碳酸盐 / 熔点 / 初晶点 / 相变潜热 / 稳定性

Key words

carbonate / melting point / initial crystallization point / phase change latent heat / stability

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三元碳酸盐混合物的制备及热物性研究[J]. 化工新型材料, 2017, 45(9): 190-192 DOI:

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参考文献

[1] Bradshaw R W,Siegel N P.Molten nitrate salt development for thermal energy storage in parabolic trough solar power systems[C].Jacksonville,Florida USA:Proceedings of ES 2008 Energy Sustainability 2008,2008.
[2] Araki N,Matsuura M,Makino A,et al.Measurement of thermophysical properties of molten salts:mixtures of alkaline carbonate salts[J].International Journal of Thermophysics,1988,9(6):1071-1080.
[3] Kourkova L,Sadovska G.Heat capacity,enthalpy and entropy of Li2CO3 at 303.15~563.15K[J].Thermochimica Acta,2007,452(80-81):153-154.
[4] Wu Yuting,Ren Nan,Wang Tao,et al.Experimental study on optimized composition of mixed carbonate salt for sensible heat storage in solar thermal power plant[J].Solar Energy,2011,85(9):1957-1966.
[5] 廖敏,魏小兰,丁静,等.LNK碳酸熔盐热物性能研究[J].太阳能学报,2010,31(7):863-867.
[6] 任楠.混合碳酸盐和低熔点熔盐的配制与热物性实验研究[D].北京:北京工业大学,2011.
[7] 汪洋,黄师荣,唐忠锋,等.陶瓷材料在LiF-NaF-KF熔盐中的腐蚀行为研究[J].化工新型材料,2014,42(3):111-113.
[8] 程晓敏,陶冰梅,朱闯,等.四元碳酸盐相变储热材料的制备及热物性研究[J].化工新型材料,2014,42(6):49-51.
[9] 胡宝华,丁静,魏小兰,等.高温熔盐的热物性测试及热稳定性分析[J].无机盐工业,2014,42(1):22-24.
[10] 彭强,杨晓西,丁静,等.三元硝酸熔盐高温热稳定性实验研究与机理分析[J].化工学报,2013,64(5):1507-1512.

基金资助

国家重点研发计划(2016YFB0601100)

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