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首页> 外文期刊>Solar Energy >Double hydrates salt as sustainable thermochemical energy storage materials: Evaluation of dehydration behavior and structural phase transition reversibility
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Double hydrates salt as sustainable thermochemical energy storage materials: Evaluation of dehydration behavior and structural phase transition reversibility

机译:双水合物盐作为可持续的热化学储能材料:评估脱水行为和结构相变可逆性

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摘要

Currently, thermochemical energy storage (TCES) offers the opportunity to relieve the enormous gap of energy demand and supply in the solar energy field. This method has its specific requirements, such as high energy storage density, good thermal stability, high reaction enthalpy, high heat capacity and switched temperature range of thermochemical storage material (TCM) for low to medium temperature building applications. This paper reports the synthesis of blodite-type structure Na2M(SO4)(2)center dot 4H(2)O (M = Zn, Mg) and copper krohnkite phase Na2Cu(SO4)(2)center dot 2H(2)O. Their structural and thermal behavior were also investigated to explore a new temperature range using incorporated salts. An evaluation of potential energy storage density, structural reversibility, thermal cycling stability and storage efficiency of double salts compared to pure hydrates salts as TCM was carried out. The preliminary results show a good structural matching of synthesized double salts confirmed by XRD, FTIR, and Raman spectroscopy, while the transition phase investigation since dehydration process was reported by XRD and Raman spectroscopy. Moreover, Na2Zn(SO4)(2)center dot 4H(2)O exhibited a suitable charging range temperature (< 105 degrees C), good cycling stability at the first ten hydration/dehydration cycles with an excellent energy storage density of 4.7 GJ m(-3) and an interesting theoretical efficiency up to 77.4%.
机译:当前,热化学能量存储(TCES)提供了缓解太阳能领域能源供需巨大差距的机会。此方法具有特定的要求,例如,对于中低温度建筑应用,热化学存储材料(TCM)具有高的储能密度,良好的热稳定性,高的反应焓,高的热容和转换的温度范围。本文报道了闪锌矿型结构Na2M(SO4)(2)中心点4H(2)O(M = Zn,Mg)和铜方铁矿相Na2Cu(SO4)(2)中心点2H(2)O的合成。还研究了它们的结构和热行为,以探索使用掺入盐的新温度范围。与纯水合物盐作为中药相比,对复盐的潜在储能密度,结构可逆性,热循环稳定性和储藏效率进行了评估。初步结果表明,通过XRD,FTIR和拉曼光谱证实了合成的复盐具有良好的结构匹配性,而XRD和拉曼光谱报道了自脱水过程以来的过渡相研究。此外,Na2Zn(SO4)(2)中心点4H(2)O表现出合适的充电范围温度(<105摄氏度),在前十个水合/脱水循环中具有良好的循环稳定性,并具有4.7 GJ m的出色储能密度(-3)和有趣的理论效率高达77.4%。

著录项

  • 来源
    《Solar Energy》 |2020年第5期|846-856|共11页
  • 作者

  • 作者单位

    Univ Hassan II CASABLANCA Fac Sci Ben Msik Lab Phys Chem Appl Mat LPCMA Casablanca Morocco;

    CIC Energigune Albert Einstein 48 Minano 01510 Alava Spain;

    Univ Basque Country Appl Phys Dept 2 Fac Sci & Technol UPV EHU POB 644 Bilbao 48080 Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Thermochemical energy storage; TCM; Double hydrates salts; Enthalpy of dehydration; Density of storage;

    机译:热化学储能;中医;双水合物盐;脱水焓储存密度;

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