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Preparation of paraffin/expanded vermiculite with enhanced thermal conductivity by implanting network carbon in vermiculite layers

机译:通过在network石层中注入网络碳来制备具有增强的导热性的石蜡/膨胀exp石

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Paraffin/expanded vermiculite with modified porous carbon layer was prepared in the study. In the composite phase change materials (PCM), expanded vermiculite was impregnated with sucrose in the layer and then carbonated in situ in order to enhance thermal conductivity and improve the adsorption capacity of expanded vermiculite, which acted as a carrier material in the preparation of the form-stable PCM. SEM images showed the morphology of expanded vermiculite had been changed after carbonation. A series of micro-pores had been formed among the layers of expanded vermiculite with the diameter ranging from several microns to 120 mu m. Thermal properties of the composite PCM were determined by differential scanning calorimeter (DSC) analysis. According to DSC analysis results, when the paraffin adsorption reached 53.2 wt.%, latent heats of the composite PCM were respectively 101.14 J/g at the freezing temperature of 48.85 degrees C and 103 J/g at the melting temperature of 53.1 degrees C. TGA results showed that the form-stable composite PCM presented good thermal stability. Due to the formation of carbon structure in the layer of expanded vermiculite, the thermal conductivity of the supporting materials was improved, thus slightly decreasing the extrapolated onset melting temperature of pure paraffin. Furthermore, the results of FT-IR analysis and thermal cycling tests showed that the form-stable composite PCM had good chemical stability and thermal reliability after 200 melting/freezing cycles. The form-stable composite PCM with good thermal properties, thermal reliability, and chemical stability is the promising PCM for the low-temperature thermal energy storage applications. (C) 2015 Elsevier B.V. All rights reserved.
机译:研究中制备了具有改性多孔碳层的石蜡/膨胀ver石。在复合相变材料(PCM)中,膨胀的ver石在层中浸渍有蔗糖,然后就地碳酸盐化,以增强导热性并提高膨胀的mic石的吸附能力,而膨胀的ver石在载体的制备中起载体的作用。形状稳定的PCM。 SEM图像显示碳化后膨胀ver石的形态发生了变化。在膨胀的ver石层之间形成了一系列微孔,直径范围从几微米到120微米。通过差示扫描量热仪(DSC)分析确定复合材料PCM的热性能。根据DSC分析结果,当石蜡吸附达到53.2重量%时,复合PCM的潜热在48.85℃的冷冻温度下分别为101.14J / g,在53.1℃的熔融温度下为103J / g。 TGA结果表明,形状稳定的复合材料PCM具有良好的热稳定性。由于在膨胀的ver石层中形成了碳结构,因此提高了载体材料的导热性,从而略微降低了纯石蜡的外推起始熔化温度。此外,FT-IR分析和热循环测试的结果表明,在200次熔融/冷冻循环后,形状稳定的复合PCM具有良好的化学稳定性和热可靠性。具有良好的热性能,热可靠性和化学稳定性的形状稳定的复合PCM是用于低温热能存储应用的有前途的PCM。 (C)2015 Elsevier B.V.保留所有权利。

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