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基于钴/氮双掺杂ZIF-67衍生碳的复合相变材料的封装及热性能

Encapsulation and thermal properties of composite phase change materials based on cobalt/nitrogen double-doped ZIF-67 derived carbon.

作者信息

Li Yanteng, Gao Yan, Cao Xuankai, Rong Xing, Chen Baoming, Tian Guohong, Zhu Zishang, Zhao Xudong, Zhang Zhanchao

机构信息

Shandong Technology Innovation Center of Carbon Neutrality, School of Thermal Engineering, Shandong Jianzhu University Jinan 250013 China

Shandong Province Jinan Ecological and Environmental Monitoring Center Jinan 250101 China.

出版信息

RSC Adv. 2023 Sep 7;13(38):26907-26917. doi: 10.1039/d3ra04002j. eCollection 2023 Sep 4.

Abstract

To solve the problems of easy leakage and weak thermal conductivity of single-phase change material, in this experiment, cobalt/nitrogen-doped ZIF-67 derived carbon (CoN-ZIF-C) was constructed as the carrier material, and paraffin was used as the phase change core material to construct thermally enhanced shaped composite phase change materials (P@CoN-ZIF-C). The composite PCMs were characterized using scanning electron microscopy, isothermal nitrogen adsorption-desorption, X-ray diffraction, and Fourier infrared spectroscopy, and their performance was evaluated using transient planar heat source techniques, differential scanning calorimetry, and thermal cycling tests. The results indicated that the impurities of the acid-washed porous carbon material were reduced and the loading of the paraffin was 60%, and the prepared P@CoN-ZIF-C had an excellent thermal performance. Among them, P@CoN-ZIF-C3 has the melting and crystallization enthalpy of 71.03 J g and 68.81 J g. The thermal conductivity is 0.4127 W m K, a 46.19% thermal conductivity improvement compared with pure paraffin. It still has favourable thermal storage capacity after 50 cycles without paraffin leakage during the phase transition.

摘要

为解决单相相变材料易泄漏和热导率低的问题,本实验构建了钴/氮掺杂ZIF-67衍生碳(CoN-ZIF-C)作为载体材料,并使用石蜡作为相变核心材料来构建热增强型复合相变材料(P@CoN-ZIF-C)。采用扫描电子显微镜、等温氮吸附-脱附、X射线衍射和傅里叶红外光谱对复合相变材料进行表征,并使用瞬态平面热源技术、差示扫描量热法和热循环测试对其性能进行评估。结果表明,酸洗多孔碳材料的杂质减少,石蜡负载量为60%,制备的P@CoN-ZIF-C具有优异的热性能。其中,P@CoN-ZIF-C3的熔化焓和结晶焓分别为71.03 J/g和68.81 J/g。热导率为0.4127 W/(m·K),与纯石蜡相比,热导率提高了46.19%。在50次循环后仍具有良好的储热能力,相变过程中无石蜡泄漏。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0a5e/10483374/d759d64561b4/d3ra04002j-f1.jpg

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