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动态调谐光吸收体以加速太阳能热储能。

Dynamic tuning of optical absorbers for accelerated solar-thermal energy storage.

机构信息

State Key Laboratory of Metal Matrix Composites, School of Materials Science and Engineering, Shanghai Jiao Tong University, Shanghai, 200240, China.

University of Michigan-Shanghai Jiao Tong University Joint Institute, Shanghai Jiao Tong University, Shanghai, 200240, China.

出版信息

Nat Commun. 2017 Nov 14;8(1):1478. doi: 10.1038/s41467-017-01618-w.

Abstract

Currently, solar-thermal energy storage within phase-change materials relies on adding high thermal-conductivity fillers to improve the thermal-diffusion-based charging rate, which often leads to limited enhancement of charging speed and sacrificed energy storage capacity. Here we report the exploration of a magnetically enhanced photon-transport-based charging approach, which enables the dynamic tuning of the distribution of optical absorbers dispersed within phase-change materials, to simultaneously achieve fast charging rates, large phase-change enthalpy, and high solar-thermal energy conversion efficiency. Compared with conventional thermal charging, the optical charging strategy improves the charging rate by more than 270% and triples the amount of overall stored thermal energy. This superior performance results from the distinct step-by-step photon-transport charging mechanism and the increased latent heat storage through magnetic manipulation of the dynamic distribution of optical absorbers.

摘要

目前,基于相变材料的太阳能热能存储依赖于添加高热导率填料来提高基于热扩散的充电速率,这往往导致充电速度的有限提高和储能容量的牺牲。在这里,我们报告了一种基于磁增强光子输运的充电方法的探索,该方法可以动态调节分散在相变材料中的光学吸收剂的分布,从而同时实现快速充电速率、大的相变焓和高的太阳能热能转换效率。与传统的热充电相比,光学充电策略将充电速度提高了 270%以上,并使总存储热能增加了两倍。这种卓越的性能源于分步式光子输运充电机制的显著特点,以及通过磁控动态分布光学吸收剂来增加潜热存储。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b81a/5684399/6b11b6cafd31/41467_2017_1618_Fig1_HTML.jpg

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