Zhang Qiang, Liu Jing, Zhang Jian, Lin Lin, Shi Junyou
Key Laboratory of Wooden Materials Science and Engineering of Jilin Province, Beihua University, Jilin 132013, China.
College of Science, Beihua University, Jilin 132013, China.
Polymers (Basel). 2022 Sep 29;14(19):4089. doi: 10.3390/polym14194089.
Phase change materials (PCMs) can store/release heat from/to the external environment through their own phase change, which can reduce the imbalance between energy supply and demand and improve the effective utilization of energy. Biomass materials are abundant in reserves, from a wide range of sources, and most of them have a natural pore structure, which is a good carrier of phase change materials. Biomass-based composite phase change materials and their derived ones are superior to traditional phase change materials due to their ability to overcome the leakage of phase change materials during solid-liquid change. This paper reviews the basic properties, phase change characteristics, and binding methods of several phase change materials (polyethylene glycols, paraffins, and fatty acids) that are commonly compounded with biomass materials. On this basis, it summarizes the preparation methods of biomass-based composite phase change materials, including porous adsorption, microencapsulation based on biomass shell, and grafting by copolymerization and also analyzes the characteristics of each method. Finally, the paper introduces the latest research progress of multifunctional biomass-based composite phase change materials capable of energy storage and outlines the challenges and future research and development priorities in this field.
相变材料(PCMs)可以通过自身的相变与外部环境进行热量的存储/释放,这能够减少能源供需之间的不平衡,并提高能源的有效利用率。生物质材料储量丰富,来源广泛,且大多数具有天然的孔隙结构,是相变材料的良好载体。基于生物质的复合相变材料及其衍生材料优于传统相变材料,因为它们能够克服相变材料在固液相变过程中的泄漏问题。本文综述了几种通常与生物质材料复合的相变材料(聚乙二醇、石蜡和脂肪酸)的基本性质、相变特性及结合方式。在此基础上,总结了基于生物质的复合相变材料的制备方法,包括多孔吸附法、基于生物质壳的微胶囊法以及共聚接枝法,并分析了每种方法的特点。最后,本文介绍了具有储能功能的多功能基于生物质的复合相变材料的最新研究进展,并概述了该领域面临的挑战以及未来的研究和发展重点。