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Multicomponent bio-based fatty acids system as phase change material for low temperature energy storage

机译:基于多组分生物基脂肪酸系统作为低温储能的相变材料

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In this study, new multicomponent mixtures of fatty acids for low temperature thermal energy storage applications have been developed. The new mixtures were based on coconut oil fatty acids (CoFA) and commercial grades of oleic (OA) and linoleic acid (LA). Refined coconut oil (CO) was first converted into free fatty acids by alkaline saponification. The prepared CoFA were then mixed with OA or LA at various compositions to prepare stable bio-based phase change materials (BPCMs). The thermal behavior including melting/solidification temperatures, specific heat and enthalpy of the developed mixtures were investigated by means of differential scanning calorimetry (DSC) and T-history. Transient hot wire method was used to measure thermal conductivity of the PCMs. The chemical stability and thermal reliability of the mixtures were assessed stepwise from 100 to 700 melt/freeze cycles by attenuated total reflectance-Fourier transform infrared spectroscopy (ATR-FTIR) and DSC. Based on DSC and T-history results, the phase transition of the developed PCMs were in line with the range of human comfort temperatures i.e. 18-25 degrees C, with no incongruent melting and less than 0.6 degrees C super cooling, whereas specific heat and enthalpy of the new mixtures were in the range of 1-5 J/g K, and 40-100 J/g. The FTIR and DSC results indicated that the PCMs mixtures are chemically and thermally stable. The thermal conductivity of the mixtures were in average 0.2 W/m K, in liquid phase and 0.35 W/m K, in solid phase. Out of the different developed combinations, the mixture of LA/CoFA (20/80) showed distinguished performance and can be considered as potential BPCM for low temperature thermal energy storage applications.
机译:在该研究中,已经开发出用于低温热能储存应用的新型多组分混合物。新混合物基于椰子油脂酸(COFA)和油酸(OA)和亚油酸(LA)的商业等级。首先通过碱性皂化将精制椰子油(CO)转化为游离脂肪酸。然后将制备的COFA与OA或La混合在各种组合物中以制备稳定的生物基相变材料(BPCM)。通过差示扫描量热法(DSC)和T历史来研究包括熔融/凝固温度,特异性热量,比热和发育混合物的焓的热行为。瞬态热线方法用于测量PCM的导热率。通过减弱的总反射率 - 傅里叶变换红外光谱(ATR-FTIR)和DSC,通过100至700熔融/冷冻循环逐步评估混合物的化学稳定性和热可靠性。基于DSC和T历史结果,开发的PCM的相变符合人舒适温度的范围,即18-25℃,没有不一致的熔融且小于0.6摄氏度的超冷却,而比新混合物的焓在1-5J / g k和40-100 j / g的范围内。 FTIR和DSC结果表明PCMS混合物在化学上和热稳定。在固相中,混合物的导热率平均为0.2W / M K,液相和0.35W / m k。出于不同的开发组合,La / COFA(20/80)的混合物显示出可辨的性能,可被认为是低温热能储存应用的潜在BPCM。

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