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Experimental study on the properties of CMTs-incorporated geopolymers prepared at low temperatures
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作者 jin quanbin Liu Zhibin +3 位作者 Lu Liangliang Zhang Yun Luo Tingyi Tang Yasen 《Journal of Southeast University(English Edition)》 EI CAS 2024年第3期295-303,共9页
Considering that copper mine tailings(CMTs)are commonly mixed with ordinary Portland cement,fly ash(FA),and kaolin to produce geopolymers,to make full use of CMTs,the properties of geopolymers manufactured under diffe... Considering that copper mine tailings(CMTs)are commonly mixed with ordinary Portland cement,fly ash(FA),and kaolin to produce geopolymers,to make full use of CMTs,the properties of geopolymers manufactured under different material mass ratios and curing methods(standard curing,water bath curing,and 60℃curing)are evaluated with significantly increased dosage of CMTs.Porosity and unconfined compressive strength tests,X-ray diffraction,field emission scanning electron microscopy,and energy dispersive spectroscopy are used to determine the physical and mechanical properties,microstructure,and mineral composition of geopolymers.Finally,costs and CO 2 emissions of specimens with different material mass ratios during the preparation processes are compared.The results show that during the geopolymerization of low-calcium materials,various geopolymer gels,including calcium silicate,calcium silicoaluminate,and mainly sodium silicoaluminate gels,coexist.The solid waste,cost,and carbon dioxide emission reductions can reach 100%,166.3 yuan/t,and 73.3 kg/t,respectively.Under a curing condition of 60℃,the sample with a CMTs mass fraction of 70%and an FA mass fraction of 30%meets the requirements of porosity,compressive strength.The resource utilization of CMT and FA is realized in a more economical way. 展开更多
关键词 copper mine tailings GEOPOLYMER solid wastes characterization techniques curing methods carbon dioxide emission
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复合相变材料在建筑节能领域的研究进展 被引量:7
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作者 靳春磊 刘志彬 +3 位作者 罗婷倚 金权斌 唐亚森 蔡昕辰 《化工新型材料》 CAS CSCD 北大核心 2023年第5期24-29,41,共7页
相变材料在解决建筑能耗方面具有广阔应用前景。针对使用单一相变材料容易产生泄漏、导热性差、存在污染性、腐蚀性、过冷和相分离的问题,提出将相变材料制备成复合相变材料再添加到建筑材料中。对相变材料进行了细化分类,介绍了相变材... 相变材料在解决建筑能耗方面具有广阔应用前景。针对使用单一相变材料容易产生泄漏、导热性差、存在污染性、腐蚀性、过冷和相分离的问题,提出将相变材料制备成复合相变材料再添加到建筑材料中。对相变材料进行了细化分类,介绍了相变材料的选用原则;归纳了两大类最常用的复合相变材料的制备方法和热物性质研究方式;梳理了将相变材料应用到建筑节能领域的多种应用方式;总结了复合相变建筑材料的掺入对建筑控温的应用效果。综合分析表明:复合相变建筑材料的掺入对建筑物温度具有明显的调控效果。温度升高时,复合相变材料吸热降低室内温度;温度降低时,复合相变材料放热提高室内温度。复合相变材料结合建筑材料使用可以在一定程度上提高建筑物的热惰性和热舒适性,但应对其应用耐久性和稳定性应进行进一步研究,最后对其发展趋势进行了展望。 展开更多
关键词 相变材料 建筑节能 建筑控温 热惰性 热舒适
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