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Effect of nano-MgO on thermal and mechanical properties of aluminate cement composite thermal energy storage materials

机译:纳米氧化镁对铝酸盐水泥复合储热材料热力学性能的影响

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摘要

Thermal and mechanical properties of high temperature aluminate cementitious thermal energy storage materials enriched with nano-MgO (NM) are investigated. According to the development of thermal storage materials and their application environment requirement in solar thermal power, the specimens were subjected to heating at 105, 350, and 900 ℃. It was observed that the addition of NM provided a great improvement on the thermal properties of the composite pastes which were heated principally at 350 and 900 ℃. When the NM content was 1 wt%, the thermal conductivities are 34.8% and 23.6% higher than that of pure paste at 350 and 900 ℃, respectively. Meanwhile, at 2 wt% NM particles loading, the optimum value of volume heat capacity is obtained, which are 19.8% and 40.8% higher than that of pure paste at 350 and 900 ℃, respectively. Moreover, compressive strength of the composite paste with 1 wt% NM presents approximately 30.5%, 27.8%, and 23.8% higher than that of pure paste at 105, 350, and 900 ℃, respectively. XRD, TG-DSC, SEM, and MIP were used to characterize the phases, mass/heat changes, microstructure and pore distribution of the hardened cement pastes, respectively.
机译:研究了富含纳米MgO(NM)的高温铝酸盐水泥质储热材料的热力学性能。根据蓄热材料的发展及其在太阳能热发电中的应用环境要求,对试样进行了105、350和900℃的加热。观察到,NM的添加大大改善了主要在350和900℃下加热的复合浆料的热性能。当NM含量为1 wt%时,在350和900℃时的导热率分别比纯糊剂高34.8%和23.6%。同时,在2 wt%的NM颗粒负载下,获得的体积热容量最佳值比在350和900℃的纯糊剂分别高19.8%和40.8%。此外,NM含量为1 wt%的复合浆料的抗压强度分别比纯浆料在105、350和900℃时高约30.5%,27.8%和23.8%。 XRD,TG-DSC,SEM和MIP分别用于表征硬化水泥浆的相,质量/热变化,微观结构和孔分布。

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