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Effect of paste humidity on kinetics of carbothermal reduction of extruded barite and coke mixture

机译:糊剂湿度对挤压重晶石和焦炭混合物碳热还原动力学的影响

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摘要

The effect of the moisture content of barite-coke paste on the kinetics of carbothermal reduction was investigated to understand the role of extrusion technique on this type of solid-gas reaction. The pastes were formulated using the typical natural barite and coke powders normally used in the industrial scale. 0.65 wt.% carboxyl methyl cellulose and different amounts of distilled water, ranging 24.3-34.4% were added to the mixed powders. The obtained pastes were then shaped by a laboratory extruder. The extrusion process was assessed by determining the total porosity of dry samples. The samples in the form of disc were isothermally heated at different temperatures in the range of 800-950 °C and the conversion of barite into barium sulfide was measured by the iodometry. The reduction data were analyzed by a modified kinetic model and the frequency factor and activation energy were calculated to evaluate the reduction mechanism. It was found that the moisture content of the paste significantly affects the active site density due to increasing contact surface area between coke and barite particles.
机译:研究了重晶石-焦炭糊的水分含量对碳热还原动力学的影响,以了解挤压技术在这类固-气反应中的作用。使用通常用于工业规模的典型天然重晶石和焦炭粉配制浆料。将0.65wt。%的羧甲基纤维素和24.3-34.4%范围的不同量的蒸馏水加入到混合粉末中。然后将获得的糊剂通过实验室挤出机成形。通过确定干燥样品的总孔隙率评估挤出过程。圆盘状样品在800-950°C的不同温度下等温加热,并通过碘量法测量重晶石向硫化钡的转化率。通过改进的动力学模型分析还原数据,并计算频率因子和活化能以评估还原机理。已经发现,由于焦炭和重晶石颗粒之间的接触表面积增加,糊剂的水分含量显着影响活性部位的密度。

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