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具有稳定分散性的中温太阳能热纳米流体制备研究进展综述

A Review on Recent Progress in Preparation of Medium-Temperature Solar-Thermal Nanofluids with Stable Dispersion.

作者信息

Hu Ting, Zhang Jingyi, Xia Ji, Li Xiaoxiang, Tao Peng, Deng Tao

机构信息

State Key Laboratory of Metal Matrix Composites, School of Materials Science and Engineering, Shanghai Jiao Tong University, 800 Dong Chuan Road, Shanghai 200240, China.

出版信息

Nanomaterials (Basel). 2023 Apr 18;13(8):1399. doi: 10.3390/nano13081399.

Abstract

Direct absorption of sunlight and conversion into heat by uniformly dispersed photothermal nanofluids has emerged as a facile way to efficiently harness abundant renewable solar-thermal energy for a variety of heating-related applications. As the key component of the direct absorption solar collectors, solar-thermal nanofluids, however, generally suffer from poor dispersion and tend to aggregate, and the aggregation and precipitation tendency becomes even stronger at elevated temperatures. In this review, we overview recent research efforts and progresses in preparing solar-thermal nanofluids that can be stably and homogeneously dispersed under medium temperatures. We provide detailed description on the dispersion challenges and the governing dispersion mechanisms, and introduce representative dispersion strategies that are applicable to ethylene glycol, oil, ionic liquid, and molten salt-based medium-temperature solar-thermal nanofluids. The applicability and advantages of four categories of stabilization strategies including hydrogen bonding, electrostatic stabilization, steric stabilization, and self-dispersion stabilization in improving the dispersion stability of different type of thermal storage fluids are discussed. Among them, recently emerged self-dispersible nanofluids hold the potential for practical medium-temperature direct absorption solar-thermal energy harvesting. In the end, the exciting research opportunities, on-going research need and possible future research directions are also discussed. It is anticipated that the overview of recent progress in improving dispersion stability of medium-temperature solar-thermal nanofluids can not only stimulate exploration of direct absorption solar-thermal energy harvesting applications, but also provide a promising means to solve the fundamental limiting issue for general nanofluid technologies.

摘要

通过均匀分散的光热纳米流体直接吸收阳光并转化为热量,已成为一种简便的方法,可有效地利用丰富的可再生太阳能,用于各种与加热相关的应用。然而,作为直接吸收式太阳能集热器的关键组件,太阳能热纳米流体通常分散性较差,容易聚集,并且在温度升高时聚集和沉淀的趋势会变得更强。在这篇综述中,我们概述了近期在制备能够在中温下稳定均匀分散的太阳能热纳米流体方面的研究工作和进展。我们详细描述了分散挑战和主要的分散机制,并介绍了适用于乙二醇、油、离子液体和熔盐基中温太阳能热纳米流体的代表性分散策略。讨论了包括氢键、静电稳定、空间位阻稳定和自分散稳定在内的四类稳定策略在提高不同类型蓄热流体分散稳定性方面的适用性和优势。其中,最近出现的自分散纳米流体在实际中温直接吸收太阳能热采集方面具有潜力。最后,还讨论了令人兴奋的研究机会、正在进行的研究需求和可能的未来研究方向。预计对提高中温太阳能热纳米流体分散稳定性的近期进展的概述,不仅可以刺激对直接吸收太阳能热采集应用的探索,还可以提供一种有前景的手段来解决一般纳米流体技术的基本限制问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f9fb/10141638/9100c2e21868/nanomaterials-13-01399-g005.jpg

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