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A study of densified biochar as carbon source in the silicon and ferrosilicon production

机译:硅和硅铁生产中致密生物炭作为碳源的研究

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Biochar pellets were investigated as renewable reducing agents in substitution of coal and coke in the silicon and ferrosilicon production, where a high reactivity, good mechanical properties and low feedstock costs are appreciated. The usage of pyrolysis oil as binder was investigated as way to improve the quality of the pellets. Norway spruce biochar produced at 500, 800 and 1100 degrees C, was pelletized blended with pyrolysis oil and lignosulphonate. A second heat treatment was carried out at the same temperatures to evaluate the interaction between biochar and pyrolysis oil and to imitate the thermal stability of the pellets when used in a furnace. Density, tensile strength and mechanical durability were analyzed before and after the second heat treatment. The CO2 reactivity was investigated under non-steady conditions. It was observed that the pellet quality is affected by the pyrolysis temperature, showing a relevant difference in properties between 500 degrees C and 800 degrees C. The combination of lignosulphonate and pyrolysis oil improved considerably the density and mechanical durability of the pellets. By the second heat treatment, the quality of the pellets was bettered significantly. Densification seems to reduce CO2 reactivity; however, pellets showed a still high reactivity. (C) 2019 Elsevier Ltd. All rights reserved.
机译:对生物炭颗粒作为可再生还原剂进行了研究,以取代硅和硅铁生产中的煤和焦炭,人们对其中的高反应性,良好的机械性能和较低的原料成本表示赞赏。研究了使用热解油作为粘合剂以提高颗粒质量的方法。将在500、800和1100摄氏度下生产的挪威云杉生物炭与热解油和木质素磺酸盐进行造粒混合。在相同温度下进行第二次热处理,以评估生物炭和热解油之间的相互作用,并模拟在炉中使用时颗粒的热稳定性。在第二次热处理之前和之后分析密度,拉伸强度和机械耐久性。在非稳定条件下研究了CO2反应性。观察到颗粒质量受热解温度的影响,显示出在500℃和800℃之间的性质上的相关差异。木质素磺酸盐和热解油的组合显着提高了颗粒的密度和机械耐久性。通过第二次热处理,粒料的质量显着提高。致密化似乎降低了二氧化碳的反应性;然而,颗粒显示出仍然高的反应性。 (C)2019 Elsevier Ltd.保留所有权利。

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