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Thermo-physical analysis of natural shellac wax as novel bio-phase change material for thermal energy storage applications

机译:天然虫胶蜡的热物理分析作为热能储存应用的新型生物相变材料

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The high energy density of latent heat storage makes it more competent than other types of thermal energy storage (TES) systems. Studying thermophysical and rheological properties of phase change material (PCM) is required for effective storage design, simulation, and applications. Bio-based PCM (BPCM) is a renewable and eco-friendly option for commercial paraffin-based PCMs. This study intends to characterize the shellac wax using the conventional and non-conventional approach as novel BPCM. Analysis of Fourier transforms infrared spectrophotometer (FTIR) indicates that shellac wax has aliphatic hydrocarbons, carboxylic acid, alcohol, and esters functional group. Thermogravimetric analysis (TGA) shows shellac wax has no mass change for operating temperature range (50-85 degrees C). Differential scanning calorimetry (DSC) analysis reported enthalpy of melting and crystallization as 148 kJ/kg and 161 kJ/kg, respectively. The crystallization enthalpy measured in the T-history method (THM) is 210.5 kJ/kg. However, DSC analysis of sample undergone 0,100,200 and 300 thermal cycle shows no significant change in thermal properties. Other properties like thermal conductivity, density, specific heat and viscosity are comparable to the present PCM used in storage applications. The overall study outcome that shellac wax is thermally stable and is potential BPCM for the TES application like solar desalination, district heating, waste heat recovery and solar cooking.
机译:潜热储存的高能量密度使其比其他类型的热能存储(TES)系统更称为。研究相变材料(PCM)的热神族和流变性能是有效的存储设计,仿真和应用所必需的。基于生物的PCM(BPCM)是一种基于商业石蜡的PCM的可再生和环保选择。该研究旨在使用常规和非常规方法作为新型BPCM来表征虫胶蜡。傅里叶变换的分析红外分光光度计(FTIR)表明虫胶蜡具有脂族烃,羧酸,醇和酯官能团。热重分析(TGA)显示Hellac Wax的工作温度范围(50-85℃)没有质量变化。差分扫描量热法(DSC)分析报告熔融和结晶的焓分别为148 kJ / kg和161 kJ / kg。在T历史法(THM)中测量的结晶焓为210.5kJ / kg。然而,样品的DSC分析经过0,100,200和300热循环显示出的热性能没有显着变化。其他性质,如导热性,密度,比热和粘度相当于存储应用中使用的本发明的PCM。 Shellac蜡的整体研究结果是热稳定的,并且是太阳海水淡化,区供暖,废热回收和太阳能烹饪等特色应用的潜在BPCM。

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