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Properties and Hydration Mechanism of Cementitious Materials Prepared from Calcined Coal Gangue 被引量:1
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作者 zhaopeng wang Shaowu Jiu +2 位作者 Hui Li Kaifeng Zhang Simeng Cheng 《Journal of Renewable Materials》 SCIE EI 2023年第3期1223-1236,共14页
The preparation of cementitious materials by replacing part of the cement with activated coal gangue is of great significance to the cement industry in terms of carbon reduction and coal-based solid waste utilization.... The preparation of cementitious materials by replacing part of the cement with activated coal gangue is of great significance to the cement industry in terms of carbon reduction and coal-based solid waste utilization.For this paper,cementitious material was prepared by firing activated coal gangue under suspension conditions and batching it with limestone powder using Inner Mongolia coal gangue as raw material.The optimal ratio was determined by testing the strength changes of the cementitious material at 3,7,and 28 days of hydration,and the hydration process and mechanism were explored by combining the pore structure,heat of hydration,chemical composition,phase composition,and microscopic morphological characteristics of the hydration products.The results showed that the active materials formulated from activated gangue and limestone powder can be used to prepare cementitious materials with good performance at the level of 30%–50%replacement of cement.The optimal ratio was 30%replacement of cement,and the mass ratio of calcined gangue to limestone powder was 2:1.The 3 days compressive strength of this ratio was 28.8 MPa,which was only slightly lower than that of cement.However,the 28 days compressive strength of samples reached 67.5 MPa,which was much higher than that of the reference cement.In the hydration of this cementitious material,not only does the activated coal gangue react with the Ca(OH)_(2)formed by hydration to form C–S–H gel,but CaCO3 also participates in the reaction to form a new phase of carbon aluminate,and the two effects together promote the development of the later strength of the samples.This paper can provide a reference for carbon reduction in the cement production process and comprehensive utilization of coal gangue. 展开更多
关键词 Coal gangue carbon reduction HYDRATION suspension calcination
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在宽光谱范围内具有强光电响应的全有机复合材料 被引量:2
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作者 刘杰 易可望 +5 位作者 王兆鹏 祁瑜聪 张子劼 陈攀 沈群东 初宝进 《Science China Materials》 SCIE EI CAS CSCD 2021年第5期1197-1205,共9页
本文合成了席夫碱化合物2-hydroxynaphthylidene-1′-naphthylamine (HNAN)和硝基改性的HNAN (HNAN-NO_(2)).这两种化合物在可见光(<650 nm)下显示出强吸光性.我们将这些化合物与Poly(vinylidene fluoride-trifluoroethylene)(P(VDF-... 本文合成了席夫碱化合物2-hydroxynaphthylidene-1′-naphthylamine (HNAN)和硝基改性的HNAN (HNAN-NO_(2)).这两种化合物在可见光(<650 nm)下显示出强吸光性.我们将这些化合物与Poly(vinylidene fluoride-trifluoroethylene)(P(VDF-Tr FE))铁电聚合物复合,得到了在可见光和红外光下具有高光电响应的复合材料.研究发现,利用HNAN的硝基改性或高电场下对复合材料进行极化可以大大增强复合材料的光电响应.复合材料在近红外光(波长915 nm)下可产生1386 mV的光电压,而在绿光(532 nm)下可产生352.7 mV的光电压.本文还探索了复合材料在绿光下的光电响应的产生机理,发现其响应主要源于席夫碱的光热效应和铁电聚合物的热释电效应之间的耦合作用.该复合材料可作为光电材料应用于下一代人工视网膜的光响应材料,并使人工视网膜能够感知的光波段从可见光扩展到红外光. 展开更多
关键词 有机复合材料 增强复合材料 光电响应 热释电效应 铁电聚合物 光热效应 光电材料 光电压
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