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Cost-Effective Biochar Produced from Agricultural Residues and Its Application for Preparation of High Performance Form-Stable Phase Change Material via Simple Method

机译:由农业残留物生产的具有成本效益的生物炭及其在通过简单方法制备高性能形状稳定相变材料中的应用

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摘要

A new form-stable composite phase change material (PEG/ASB) composed of almond shell biochar (ASB) and polyethylene glycol (PEG) was produced via a simple and easy vacuum impregnation method. The supporting material ASB, which was cost effective, environmentally friendly, renewable and rich in appropriate pore structures, was produced from agricultural residues of almond shells by a simple pyrolysis method, and it was firstly used as the matrix of PEG. Different analysis techniques were applied to investigate the characteristics of PEG/ASB, including structural and thermal properties, and the interaction mechanism between ASB and PEG was studied. The thermogravimetric analysis (TGA) and thermal cycle tests demonstrated that PEG/ASB possessed favorable thermal stability. The differential scanning calorimetry (DSC) curves demonstrated that the capacities for latent heat storage of PEG/ASB were enhanced with increasing PEG weight percentage. Additionally, PEG/ASB had an excellent thermal conductivity of 0.402 W/mK, which was approximately 1.6 times higher than that of the pure PEG due to the addition of ASB. All the study results indicated that PEG/ASB had favorable phase change properties, which could be used for thermal energy storage.
机译:通过简单易行的真空浸渍法制备了由杏仁壳生物炭(ASB)和聚乙二醇(PEG)组成的新型形状稳定复合相变材料(PEG / ASB)。通过简单的热解方法,从杏仁壳的农业残留物中生产出成本效益高,环保,可再生且具有适当孔结构的支撑材料ASB,并将其首先用作PEG的基质。运用不同的分析技术研究了PEG / ASB的结构和热性能,研究了ASB与PEG的相互作用机理。热重分析(TGA)和热循环测试表明,PEG / ASB具有良好的热稳定性。差示扫描量热法(DSC)曲线表明,随着PEG重量百分比的增加,PEG / ASB的潜热存储能力增强。另外,由于添加了ASB,PEG / ASB具有0.402 W / mK的出色导热性,比纯PEG高约1.6倍。所有研究结果表明,PEG / ASB具有良好的相变性能,可用于热能存储。

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