4.8 Article

Biobased phase change materials in energy storage and thermal management technologies

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PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.rser.2023.113546

关键词

Thermal energy storage; TES; Sustainability; Biobased materials; Phase change materials; PCM; Composites; Esters; Fatty acids; Sugar alcohols; Mixtures; Applications; Life cycle assessments

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Harnessing the potential of phase change materials is crucial in revolutionizing thermal energy storage to address the energy generation and consumption disparity. Phase change materials, known for their ability to absorb and release substantial heat during phase transformations, have been invaluable in compact thermal energy storage technologies and applications. The shift towards biobased phase change materials in pursuit of sustainable energy models is explored in this review, identifying trends, opportunities, and challenges, and proposing novel methods for enhancing their integration into thermal energy storage applications.
Harnessing the potential of phase change materials can revolutionise thermal energy storage, addressing the discrepancy between energy generation and consumption. Phase change materials are renowned for their ability to absorb and release substantial heat during phase transformations and have proven invaluable in compact thermal energy storage technologies and thermal management applications. Present-day solutions mainly comprise of non-renewable phase change materials, where cyclability and sustainability concerns are increas-ingly being discussed. In pursuit of sustainable energy models, phase change material research has shifted to-wards biobased materials. This review explores the growing field of biobased phase change materials, aiming to identify prevailing trends, potential opportunities, and future applications. In addition, the persisting challenges of biobased phase change materials are discussed, where a critical dialogue on the current obstacles and research gaps is presented, offering a glimpse into the future of this rapidly evolving field. The authors furthermore present novel methods to enhance the integration of biobased phase change materials into thermal energy storage applications, ensuring their seamless adoption and maximum efficacy. With an analysis of 180 selected works, this review paints a vivid picture of the capabilities and promising prospects of biobased phase change materials, whilst highlighting the future research questions needing to be addressed.

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