Nanocellulose-based composite phase change materials for thermal energy storage: status and challenges

IF 32.4 1区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Zhenghui Shen, Mulin Qin, Feng Xiong, Ruqiang Zou and Jin Zhang
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引用次数: 8

Abstract

Thermal energy storage and utilization is gathering intensive attention due to the renewable nature of the energy source, easy operation and economic competency. Among all the research efforts, the preparation of sustainable and advanced phase change materials (PCMs) is the key. Cellulose, the most abundant natural polymer on earth, has the advantages of renewability, biodegradability, recyclability and ease of functionalization, making it a versatile candidate for newly emerging energy applications. Incorporating nanocellulose into PCMs has undergone a booming development as it can overcome the drawbacks of PCMs and form multifunctional sustainable composites. This review summarizes the use of nanocellulose including cellulose nanocrystals and cellulose nanofibers in the field of latent heat storage (LHS). Firstly, the preparation, physical properties and surface modification of nanocellulose are systematically reviewed, followed by the illustration of the preparation of nanocellulose-based materials, including films, hydrogels, foams and aerogels. Then, the fundamentals and applications of PCMs are briefly introduced. In particular, the recent progress in using nanocellulose-based materials for PCM-based LHS applications is intensively reviewed, where nanocellulose-based composite PCM slurries, capsules, fibers, films, and blocks are introduced in detail. The role of nanocellulose in preparing composite PCMs is interpreted from the perspective of its intrinsic properties. Summary and outlook are given to suggest the chances and challenges of using nanocellulose for LHS applications. This work may shed light on the innovative applications of naturally occurring polymers in sustainable energy systems and provide inspiration for the efficient utilization of sustainable thermal energy.

Abstract Image

纳米纤维素基复合相变储热材料:现状与挑战
热能的可再生、易操作、经济等特点使热能的储存与利用日益受到人们的关注。在所有的研究工作中,制备可持续和先进的相变材料是关键。纤维素是地球上最丰富的天然聚合物,具有可再生、生物降解、可回收、易功能化等优点,是新兴能源领域的多功能候选材料。将纳米纤维素掺入聚甲基丙烯酸酯中,可以克服聚甲基丙烯酸酯的缺点,形成多功能的可持续复合材料,因此得到了蓬勃的发展。综述了纳米纤维素(包括纤维素纳米晶体和纤维素纳米纤维)在潜热储存(LHS)领域的应用。本文首先系统地综述了纳米纤维素的制备、物理性质和表面改性,然后介绍了纳米纤维素基材料的制备方法,包括薄膜、水凝胶、泡沫和气凝胶。然后,简要介绍了PCMs的基本原理和应用。特别是,对纳米纤维素基材料用于PCM基LHS应用的最新进展进行了深入的综述,其中详细介绍了纳米纤维素基复合PCM浆料、胶囊、纤维、薄膜和块。从纳米纤维素的性质出发,阐述了纳米纤维素在制备复合PCMs中的作用。总结和展望了纳米纤维素在LHS应用中的机遇和挑战。这项工作可能为天然聚合物在可持续能源系统中的创新应用提供启示,并为可持续热能的有效利用提供灵感。
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来源期刊
Energy & Environmental Science
Energy & Environmental Science 化学-工程:化工
CiteScore
50.50
自引率
2.20%
发文量
349
审稿时长
2.2 months
期刊介绍: Energy & Environmental Science, a peer-reviewed scientific journal, publishes original research and review articles covering interdisciplinary topics in the (bio)chemical and (bio)physical sciences, as well as chemical engineering disciplines. Published monthly by the Royal Society of Chemistry (RSC), a not-for-profit publisher, Energy & Environmental Science is recognized as a leading journal. It boasts an impressive impact factor of 8.500 as of 2009, ranking 8th among 140 journals in the category "Chemistry, Multidisciplinary," second among 71 journals in "Energy & Fuels," second among 128 journals in "Engineering, Chemical," and first among 181 scientific journals in "Environmental Sciences." Energy & Environmental Science publishes various types of articles, including Research Papers (original scientific work), Review Articles, Perspectives, and Minireviews (feature review-type articles of broad interest), Communications (original scientific work of an urgent nature), Opinions (personal, often speculative viewpoints or hypotheses on current topics), and Analysis Articles (in-depth examination of energy-related issues).
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