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硬石膏粉磨活化与减水剂助磨分散作用 被引量:9
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作者 张建新 彭家惠 +2 位作者 董军 白冷 瞿金东 《非金属矿》 CAS CSCD 北大核心 2008年第6期30-32,共3页
为改善硬石膏活性,实现其建材资源化,采用离心式颗粒粒度分析、SEM微结构分析、液相离子浓度结合宏观性能实验,研究了硬石膏粉磨活化及减水剂对硬石膏的助磨和分散作用。结果表明,硬石膏的水化活性随比表面积增加而提高,其适宜的比表面... 为改善硬石膏活性,实现其建材资源化,采用离心式颗粒粒度分析、SEM微结构分析、液相离子浓度结合宏观性能实验,研究了硬石膏粉磨活化及减水剂对硬石膏的助磨和分散作用。结果表明,硬石膏的水化活性随比表面积增加而提高,其适宜的比表面积为4500~5000cm2/g;FDN减水剂磨前掺入具有良好的助磨分散作用,使硬石膏颗粒比表面积增大,颗粒粒度细化,粒径分布更加集中;FDN磨前掺有良好的分散增强作用,使硬石膏稠度降低,水化率、强度明显提高。这为减水剂作为硬石膏的助磨分散功能组分制备硬石膏基材料提供了可行的工艺依据。 展开更多
关键词 硬石膏 粉磨活化 减水剂
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利用低活-I'*N-性矿渣生产S95级矿粉的技术与研究
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作者 赵建清 武学龙 《水泥助磨剂技术》 2012年第1期5-11,共7页
根据低活性酸性矿渣特点,分别采用细粉磨、复合碱性激发剂、助磨活化剂等方法,经过实验室试验和生产线的试验进行激发矿渣粉的活性,解决了低活性酸性矿渣生产S95级矿粉的问题。
关键词 矿渣碱性激发剂助活化剂活性指数
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The Effect of the Grinding Time on the Mechanical Activation of MnO2 Ore and Tea Plant Waste Carbonization Product
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作者 Mustafa BOYRAZLI Elif ARANCI OZTURK Yunus Emre BENKLI 《Journal of Physical Science and Application》 2017年第4期59-65,共7页
In this study, pyrolusiteore (MnO2) was subjected to mechanical milling with a high-energy mill with carbonized tea plant wastes and the effect of grinding time on the crystal structure of the material was investiga... In this study, pyrolusiteore (MnO2) was subjected to mechanical milling with a high-energy mill with carbonized tea plant wastes and the effect of grinding time on the crystal structure of the material was investigated. The ratio of Mn/Fe was 8/1, the ratio of C/(MnO2 + Fe3O4) was 2 and the ratio of ball to ore was 10/1. The samples were mechanically ground at 10, 15, 20, 30, 60, 90 and 120 hours. In the processes performed on the attritor, the rotation speed of the mill shaft was determined to be 350 rpm. The results were characterized by TG-DTA, SEM and XRD analyzes. As a result of the experimental studies, it was observed that the samples subjected to mechanical grinding for 120 hours were gradually reduced due to the increasing grinding time at all the diffraction peaks when the XRD peaks were compared with the grinding times. In the thermogravimetric analysis, the sample milled for 120 hours, 50% weight loss was observed at 470 ℃, weight loss of up to 56% was observed at progressive temperatures. 展开更多
关键词 Tea plant wastes CARBONIZATION mechanical grinding pyrolusite ore.
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