期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
炭化粉自燃氧化规律研究 被引量:2
1
作者 肖旸 庞攀 +2 位作者 黄传亮 陆晓东 尹岚 《矿业安全与环保》 北大核心 2020年第6期25-31,共7页
为了对煤质活性炭生产过程中的副产物炭化粉的氧化特性进行研究,采集生产所用的原煤和炭化粉,采用扫描电镜实验、氮吸附实验、热重实验、傅里叶变换红外光谱实验及非线性热动力学方法,对样品的孔径结构、特征温度、活性官能团及表观活... 为了对煤质活性炭生产过程中的副产物炭化粉的氧化特性进行研究,采集生产所用的原煤和炭化粉,采用扫描电镜实验、氮吸附实验、热重实验、傅里叶变换红外光谱实验及非线性热动力学方法,对样品的孔径结构、特征温度、活性官能团及表观活化能的变化进行分析计算。结果表明:经过炭化工序处理,炭化粉的孔径结构和比表面积较之原煤更为发达;在同一升温速率下,炭化粉着火点温度和氧化速率最大点温度均低于原煤;炭化粉中脂肪烃、部分含氧官能团及芳香烃含量较之原煤减少,羟基含量增大;炭化粉的表观活化能小于原煤。综合分析表明,炭化工序可导致炭化粉的氧化自燃性增高,研究结果可为炭化粉自燃的防治与综合利用提供理论依据。 展开更多
关键词 炭化粉 自燃 氧化特性 孔径结构 特征温度 活性官能团 表观活化能
下载PDF
The Effect of the Grinding Time on the Mechanical Activation of MnO2 Ore and Tea Plant Waste Carbonization Product
2
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.
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部