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Effect of Carbon Nanoadditives on Lithium Hydroxide Monohydrate-Based Composite Materials for Low Temperature Chemical Heat Storage

机译:碳纳米添加剂对一水化氢氧化锂基低温化学储热复合材料的影响

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Carbon nanospheres (CNSs) and multi-walled carbon nanotubes (MWCNTs) as nanoadditives were used to modify lithium hydroxide monohydrate for low temperature chemical heat storage application. The lithium hydroxide monohydrate particles were well dispersed on the nanoscale level, and the diameter of nanoparticles was about 20–30 nm in the case of the carbon nanospheres and 50–100 nm the case of the MWCNTs, as shown by transmission electron microscopy characterization results. X-ray diffraction results indicated that the LiOH·H 2 O-carbon nano thermochemical composite materials were successfully synthesized. The thermochemical composite materials LiOH·H 2 O/CNSs (2020 kJ/kg), LiOH·H 2 O/MWCNTs (1804 kJ/kg), and LiOH·H 2 O/AC (1236 kJ/kg) exhibited obviously improved heat storage density and higher hydration rate than pure LiOH·H 2 O (661 kJ/kg), which was shown by thermogravimetric and differential scanning calorimetric (TG-DSC) analysis. It appears that nanocarbon-modified lithium hydroxide monohydrate thermochemical composite materials have a huge potential for the application of low temperature chemical heat storage.
机译:碳纳米球(CNSs)和多壁碳纳米管(MWCNTs)作为纳米添加剂被用于改性氢氧化锂一水合物,用于低温化学储热应用。氢氧化锂一水合物颗粒在纳米级上分布良好,碳纳米球的直径约为20–30 nm,MWCNT的直径为50–100 nm,如透射电子显微镜表征结果所示。 X射线衍射结果表明成功合成了LiOH·H 2 O-碳纳米热化学复合材料。热化学复合材料LiOH·H 2 O / CNSs(2020 kJ / kg),LiOH·H 2 O / MWCNTs(1804 kJ / kg)和LiOH·H 2 O / AC(1236 kJ / kg)表现出明显改善的热量热重和差示扫描量热法(TG-DSC)分析显示,其储存密度和水合速率高于纯LiOH·H 2 O(661 kJ / kg)。看来,纳米碳改性的氢氧化锂一水合物热化学复合材料在低温化学蓄热中的应用具有巨大的潜力。

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