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高铝煤矸石复合活化及其火山灰效应分析 |
程海丽1, 杨飞华2, 马保国3, 张杰4, 郝利炜2, 刘国强1
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1.北方工业大学土木工程学院,北京100144;2.固废资源化利用与节能建材国家重点实验室,北京100041;3.武汉理工大学材料科学与工程学院,湖北武汉430070;4.中冶建筑研究总院有限公司,北京100088
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摘要: |
采用胶砂强度法研究了机械粉磨、煅烧、增钙煅烧及与化学活化剂复合对内蒙古某地高铝煤矸石活性的激发效果,并采用SEM,XRD,FTIR分析了不同粉磨时间、不同煅烧温度对高铝煤矸石内部结构变化及其活化效果的影响;以强度活性指数、火山灰效应贡献率为考察指标,分析了不同方式活化的高铝煤矸石的火山灰效应.结果表明:单纯机械粉磨对高铝煤矸石的活性有一定的激发作用,但活化效果有限;煅烧对高铝煤矸石活性有明显的激发作用,其最佳煅烧温度为800℃,此时高铝煤矸石水泥胶砂强度活性指数达1265%,火山灰效应贡献率达447%;增钙煅烧可使其强度活性指数进一步提高到1426%,火山灰效应贡献率提高到509%;在增钙煅烧基础上掺入06%(质量分数)的硫酸钠可使其28d抗压强度达到789MPa,强度活性指数达到1570%,火山灰效应贡献率达到555%. |
关键词: 高铝煤矸石 复合活化 强度活性指数 火山灰效应 |
DOI:103969/j.issn1007 9629201602007 |
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基金项目:北京市自然科学基金资助项目(2142013);北京市教委科技发展计划资助项目(KM201210009010);固废资源化利用与节能建材国家重点实验室开放基金资助项目(SWR 2012 003) |
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Composite Activation of High Alumina Coal Gangue and Analysis on Its Pozzolanic Effect |
CHENG Haili1, YANG Feihua2, MA Baoguo3, ZHANG Jie4, HAO Liwei2, LIU Guoqiang1
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1.School of Civil Engineering, North China University of Technology, Beijing 100144, China;2.State Key Laboratory of Solid Waste Reuse for Building Materials, Beijing 100041, China;3.School of Materials Science and Engineering, Wuhan University of Technology, Wuhan 430070, China;4.Central Research Institute of Building and Construction Co., Ltd, MCC Group, Beijing 100088, China
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Abstract: |
In order to develop new activity admixture for cement based material and broaden the comprehensive utilization way for high alumina coal gangue(HACG) from Inner Mongolia, the effect of mechanical, thermal and chemical composite activation on HACG was studied by testing the compressive strength of cement mortars with activated HACG. The micro structure and activation effect of activated HACG under different grinding times and calcining temperatures were studied using SEM, XRD and FTIR. Taking the strength activity index(SAI) and contribution rate of pozzolanic effect(CRPE) as the inspected objects, the pozzolanic effect of HACG activated by different methods was analyzed. The results show that the HACG can be activated to some extent by mechanical grinding, but the effect is limited. The HACG can be effectively activated by calcining, and the optimal calcining temperature is 800℃, at this temperature the kaolinite in HACG can be decomposed into high activating SiO2 and Al2O3, thus, the SAI and CRPE of cement mortars with HACG can reach to 1265% and 447%, respectively. The SAI and CRPE are further increased to 1426% and 509% respectively while being calcinated with Ca(OH)2. After being calcinated with Ca(OH)2 and 06%Na2SO4 the 28d compressive strength is up to 789MPa, SAI up to 157% and CRPE up to 555%. |
Key words: high alumina coal gangue composite activation strength activity index pozzolanic effect |