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Lithium nitrate purity influence assessment in ternary molten salts as thermal energy storage material for CSP plants

机译:三元熔盐作为CSP装置储热材料的硝酸锂纯度影响评估

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摘要

The addition of lithium nitrate is assumed to improve the performance of molten salts, extending the work temperature range. This paper presents an evaluation of the influence of different degrees of purity of LiNO3, in a ternary mixture with composition 30 wt%LiNO3 + 13 waNaNO(3) + 57 wt% KNO3 including a Chilean mixture obtained from the Atacama Desert brines. In addition, the use of synthetic lithium nitrate obtained from the chemical synthesis using Li2CO3 and HNO3, was incorporated in the comparison. The melting point results of the 30 wt% LiNO3 + 13 wt% NaNO3 + 57 wt% KNO3 mixture for different purities (128 degrees C, 124 degrees C), show a reduction of 92-96 degrees C with respect to the 223 degrees C of the solar salt and thermal stability results show maximum temperature are around 594 and 596 degrees C, which means that this mixture could work at maximum operating temperatures similar to those of solar salt. Finally, it was also determined that for the use of the proposed ternary mixture would mean a reduction of 35% in the volume of inventory with respect to solar salt since the proposed ternary salt presents an improvement about 14-21% in the heat capacity. (C) 2019 Elsevier Ltd. All rights reserved.
机译:假定添加硝酸锂可改善熔融盐的性能,从而扩大工作温度范围。本文介绍了一种组成为30 wt%LiNO3 + 13 waNaNO(3)+ 57 wt%KNO3的三元混合物(包括从阿塔卡马沙漠盐水中获得的智利混合物)对三氧化二锂的不同程度影响的评估。另外,在比较中并入了使用通过使用Li 2 CO 3和HNO 3的化学合成获得的合成硝酸锂。 30 wt%LiNO3 + 13 wt%NaNO3 + 57 wt%KNO3混合物在不同纯度(128摄氏度,124摄氏度)下的熔点结果表明,相对于223摄氏度,降低了92-96摄氏度太阳盐的热稳定性结果表明最高温度约为594和596摄氏度,这意味着该混合物可以在与太阳盐相似的最高工作温度下工作。最后,还确定对于所提出的三元混合物的使用将意味着相对于太阳能盐而言库存量减少了35%,因为所提出的三元盐的热容提高了约14-21%。 (C)2019 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Renewable energy》 |2020年第4期|940-950|共11页
  • 作者

  • 作者单位

    Univ Antofagasta CDEA Av Univ Antofagasta Antofagasta 02800 Chile|Univ Almeria Crta Sacramento S-N E-04120 Almeria Spain;

    Univ Evora Renewable Energies Chair P-7002 Evora Portugal;

    Univ Antofagasta CDEA Av Univ Antofagasta Antofagasta 02800 Chile;

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

    Thermal energy storage; Lithium nitrate; Concentrated solar power;

    机译:热能存储;硝酸锂;集中式太阳能;

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