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Thermoproperties research on the carbon nanotube-inorganic salt composite nucleating agents under the MgCl2∙6H2O-CaCl2∙6H2O system
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School of Materials Science and Engineering,Peiyang Park Campus of Tianjin University,School of Materials Science and Engineering,Peiyang Park Campus of Tianjin University,School of Chemistry and Chemical Engineering,Qinghai Nationalities University

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TQ129

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    Abstract:

    Effect of using SrCl2?6H2O-SrCO3and hydroxylate carbon nanotubes (CNTs) as composite nucleating agent on the energy storage properties in the induced crystallization nucleation process of MgCl2?6H2O-CaCl2?6H2O were investigated. It is suggested that the addition of CNTs can reduce system supercooling degree (SSD), which decreases with increased CNTs. When the composite nucleating agents consisting SrCl2?6H2O-SrCO3 and CNTs were introduced SSD can be further decreased when the composite nucleating agents consisting SrCl2?6H2O-SrCO3 and CNTs were introduced because of the good thermal conductivity and high phase change latent heat. SSD decreased to a minimum of 0.6 ℃ when the ratio of CNTs, SrCO3 and SrCl2?6H2O was optimized as 0.25 wt.%、1 wt.% and 3 wt.%, respectively.

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[Lu Pengyi, Hou Feng, Xu Guiyu. Thermoproperties research on the carbon nanotube-inorganic salt composite nucleating agents under the MgCl2∙6H2O-CaCl2∙6H2O system[J]. Rare Metal Materials and Engineering,2018,47(S1):277~281.]
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History
  • Received:June 29,2017
  • Revised:June 29,2017
  • Adopted:January 29,2018
  • Online: October 22,2018
  • Published: