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CHEMICAL, PHYSICAL AND MORPHOLOGICAL CHANGES OF SINTERING DUST BY MECHANICAL ACTIVATION

机译:机械活化的烧结粉尘的化学,物理和形态学变化

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Sintering dust has been regarded as an important secondary resource in a modern steel plant. Sintering dust was mechanically treated using different milling machines and experimental conditions in air atmosphere. The changes in phase constitution, particle size, specific surface area, particle morphology, and lattice parameters of activated sintering dust were determined. It was found that the agglomeration of the particles take place during extended dry milling with accessible pores for Nitrogen gas. The maximum specific BET surface area in the stirring wet grinding and planetary wet grinding increases to 43.06 and 46.45 m~2/g after activated 360 min respectively. With the increasing of energy input, the intensity of diffraction peaks of dolomite and hematite gradually decreased. Furthermore, the previous phase almost disappeared eventually under any experimental conditions. In addition, Fourier transform infrared spectroscopy indicates that organic matter and carbonate decompose easier than other phases, especially under stirring wet milling.
机译:烧结灰尘被认为是现代钢铁厂中的重要二级资源。使用不同的铣床和空气气氛中的实验条件机械处理烧结灰尘。确定了相位构造,粒度,比表面积,粒子形貌和活性烧结粉尘的晶格参数的变化。发现颗粒的聚集在延长的干式铣削期间发生,其具有用于氮气的可偏转孔。搅拌湿磨削的最大特定BET表面积分别在360分钟后搅拌湿磨削和行星湿磨削速度增加至43.06和46.45m〜2 / g。随着能量输入的增加,白云石和赤铁矿的衍射峰的强度逐渐减少。此外,前一阶段几乎在任何实验条件下最终消失。此外,傅里叶变换红外光谱表明有机物质和碳酸盐比其他相更容易,特别是在搅拌下磨削。

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