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Regeneration of Waste Diatomite from Palm Oil Production Process as a Support Material for PCMs in Thermal Energy Storage in Buildings

机译:废物硅藻土的再生从棕榈油生产过程中作为PCMS在建筑物中的热能储存中的载体材料

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In this study, the use of spent diatomite, an industrial waste in the palm oil production process, was evaluated as a support material for phase change materials (PCMs). Calcination tests of the diatomite were carried out at different temperatures (400, 550 and 700°C) and times (1 and 2 h). For the PCMs preparation, the organic phase, mixtures of palm oil and commercial stearic acid esters, were impregnated on calcined diatomite under vacuum. Differential scanning calorimetry (DSC) analyses were performed in order to select the PCM with the highest latent heat of fusion and a range of phase change temperature corresponding to the thermal comfort range. DSC, TGA and FT-IR analyses were performed before and after the application of 360 thermal cycles to establish the thermal and chemical reliability of the PCM. It was found that 700°C and 1 h are the best conditions of the calcination process, and the PCM consisting in 100% methyl esters of commercial stearic acid presented the highest value of latent heat of fusion (34.67 J/g) and a phase change temperature range of 16,4 to 33,5°C. After the thermal cycles, the results show that the prepared PCMs has thermal and chemical stability.
机译:在本研究中,使用花硅藻土的使用,棕榈油生产过程中的工业废物,作为相变材料(PCM)的支撑材料。硅藻土的煅烧试验在不同的温度(400,550和700℃)和时间(1和2小时)处进行。对于PCMS制备,有机相,棕榈油和商业硬脂酸酯的混合物在真空下浸渍在煅烧的硅藻土上。进行差分扫描量热法(DSC)分析,以便选择具有最高融合热的PCM和与热舒适度相对应的相变温度的一系列相变温度。在施加360个热循环之前和之后进行DSC,TGA和FT-IR分析,以确定PCM的热和化学性可靠性。发现700℃和1小时是煅烧过程的最佳条件,并且在商业硬脂酸100%甲酯中组成的PCM呈现出静脉融合热的最高值(34.67J / g)和相位更换16,4至33,5°C的温度范围。在热循环之后,结果表明,制备的PCM具有热和化学稳定性。

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