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以碳纳米管为潜在高温应用相变材料的太阳能盐:热性能和化学稳定性研究

Solar Salt with Carbon Nanotubes as a Potential Phase Change Material for High-Temperature Applications: Investigations on Thermal Properties and Chemical Stability.

作者信息

Vigneshwaran Pethurajan, Shaik Saboor, Suresh Sivan, Abbas Mohamed, Saleel Chanduveetil Ahamed, Cuce Erdem

机构信息

Department of Thermal and Energy Engineering, School of Mechanical Engineering (SMEC), Vellore Institute of Technology, Vellore 632014, Tamil Nadu, India.

Nanotechnology Research Laboratory, Department of Mechanical Engineering, National Institute of Technology (NIT), Tiruchirappalli 620015, Tamil Nadu, India.

出版信息

ACS Omega. 2023 May 8;8(20):17563-17572. doi: 10.1021/acsomega.2c07571. eCollection 2023 May 23.

Abstract

Nano-enhanced phase change materials are highly employed for an enhanced heat-transfer process. The current work reports that the thermal properties of solar salt-based phase change materials were enhanced with carbon nanotubes (CNTs). Solar salt (60:40 of NaNO/KNO) with a phase change temperature and enthalpy of 225.13 °C and 244.76 kJ/kg, respectively, is proposed as a high-temperature PCM, and CNT is added to improve its thermal conductivity. The ball-milling method was employed to mix CNTs with solar salt at various concentrations of 0.1, 0.3, and 0.5% by weight. SEM images display the even distribution of CNTs with solar salt, with the absence of cluster formations. The thermal conductivity, phase change properties, and thermal and chemical stabilities of the composites were studied before and after 300 thermal cycles. FTIR studies indicated only physical interaction between PCM and CNTs. The thermal conductivity was enhanced with an increase in CNT concentration. The thermal conductivity was enhanced by 127.19 and 125.09% before and after cycling, respectively, in the presence of 0.5% CNT. The phase change temperature decreased by around 1.64% after adding 0.5% CNT, with a decrease of 14.67% in the latent heat during melting. TGA thermograms indicated the weight loss was initiated at about 590 and 575 °C before and after thermal cycling, after which it was rapid with an increase in temperature. Thermal characterization of CNT-enhanced solar salt indicated that the composites could be used as phase change materials for enhanced heat-transfer applications.

摘要

纳米增强相变材料被广泛用于强化传热过程。当前的工作报道了碳纳米管(CNT)增强了基于太阳能盐的相变材料的热性能。提出了一种相变温度和焓分别为225.13℃和244.76kJ/kg的太阳能盐(NaNO₃/KNO₃质量比为60:40)作为高温相变材料,并添加碳纳米管以提高其热导率。采用球磨法将不同重量浓度(0.1%、0.3%和0.5%)的碳纳米管与太阳能盐混合。扫描电子显微镜(SEM)图像显示碳纳米管与太阳能盐均匀分布,没有团聚现象。研究了复合材料在300次热循环前后的热导率、相变特性以及热稳定性和化学稳定性。傅里叶变换红外光谱(FTIR)研究表明相变材料与碳纳米管之间仅存在物理相互作用。热导率随碳纳米管浓度的增加而提高。在存在0.5%碳纳米管的情况下,热循环前后热导率分别提高了127.19%和125.09%。添加0.5%碳纳米管后,相变温度下降了约1.64%,熔化潜热下降了14.67%。热重分析(TGA)热谱图表明,热循环前后重量损失分别在约590℃和575℃开始,之后随着温度升高而迅速增加。碳纳米管增强太阳能盐的热特性表明,该复合材料可作为相变材料用于强化传热应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/05aa/10210211/d81ab9f7c56b/ao2c07571_0002.jpg

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