首页> 外文期刊>Journal of Cleaner Production >Experimental investigation on improvement of latent heat and thermal conductivity of shape-stable phase-change materials using modified fly ash
【24h】

Experimental investigation on improvement of latent heat and thermal conductivity of shape-stable phase-change materials using modified fly ash

机译:改性粉煤灰改善形状稳定相变材料潜热和导热系数的实验研究

获取原文
获取原文并翻译 | 示例
           

摘要

Fly ash (FA) is the solid waste discharged from thermal power plants and has become one of the largest industrial solid wastes produced annually. Meanwhile, as energy shortages and environmental pollution caused by the excessive use of fossil energy becoming increasingly prominent, an improvement in energy efficiencies and the exploitation of clean renewable energies is urgently required. In this research, we proposed to modify FA by a simple alkali treatment. The modified fly ash (mFA) exhibited an optimized multistage three-dimensional hollow morphology with abundant granules and pores on the microsphere surface. The specific surface area of the FA was 2.68 m(2)/g, while it increased to 10.32 m(2)/g for mFA. Meanwhile, the Al2O3 content of mFA increased from 31.26 to 38.7 wt%, whereas the SiO2 content decreased from 57.43 to 44.89 wt%. After lauric acid (LA) impregnated into mFA, the shape-stable phasechange material (SSPCM) exhibited simultaneously enhanced latent heat and thermal conductivity. The latent heat and thermal conductivity of the obtained LA/mFA SSPCM was 65.7 J/g and 0.52 W/mK, which was 51.7% and 67.7% higher than that of LA/FA SSPCM, respectively. The latent heat enhancement was attributed to the larger specific surface area and the richer pore structure provided by the mFA. The significant thermal conductivity improvement was ascribed to the higher relative content of Al2O3 and the smaller thermal resistance of LA/mFA SSPCM. Moreover, the LA/mFA SSPCM exhibited robust thermal, chemical, and morphological stability with respect to 1000 times thermal cycling. Considering the suitable phase-change temperature, high energy storage density, enhanced thermal conductivity, robust thermal reliability, applicable thermoregulatory capacity, low cost and easy processing, and role of environmental governance, the mFA based SSPCM may have widespread application in solar-energy storage, building air-conditioning system and geothermal energy utilization. (C) 2019 Elsevier Ltd. All rights reserved.
机译:粉煤灰(FA)是从火力发电厂排出的固体废物,已成为每年产生的最大工业固体废物之一。同时,随着因过度使用化石能源而引起的能源短缺和环境污染日益突出,迫切需要提高能源效率和开发清洁可再生能源。在这项研究中,我们建议通过简单的碱处理来修饰FA。改性粉煤灰(mFA)表现出优化的多级三维中空形态,在微球表面具有丰富的颗粒和孔。 FA的比表面积为2.68 m(2)/ g,而mFA则增加到10.32 m(2)/ g。同时,mFA的Al 2 O 3含量从31.26wt%增加到38.7wt%,而SiO 2含量从57.43wt%减少到44.89wt%。在将月桂酸(LA)浸渍到mFA中后,形状稳定的相变材料(SSPCM)同时显示出增强的潜热和导热性。所得LA / mFA SSPCM的潜热和导热率分别为65.7J / g和0.52W / mK,分别比LA / FASPCM高51.7%和67.7%。潜热增强归因于mFA提供的更大的比表面积和更丰富的孔结构。 Al2O3的相对含量较高,而LA / mFA SSPCM的热阻较小,因此导热率显着提高。此外,相对于1000次热循环,LA / mFA SSPCM表现出强大的热,化学和形态稳定性。考虑到合适的相变温度,高能量存储密度,增强的导热性,强大的热可靠性,适用的温度调节能力,低成本和易于加工以及环境治理的作用,基于mFA的SSPCM可能在太阳能存储中具有广泛的应用,建筑空调系统和地热能的利用。 (C)2019 Elsevier Ltd.保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号