熔渣(焊接)
冶金
冶炼
材料科学
煤
合金
煤气化
焦炭
碳纤维
电弧炉
生铁
硅铁
碳热反应
碳化物
废物管理
复合材料
复合数
工程类
作者
Yaoxuan Wang,Zhaoyang Zhang,Lamei Li,Xiaolin Guo,Donghui Wei,Jian Kong,DU Hong-bing,Hong Wang,Yanxin Zhuang,Pengfei Xing
标识
DOI:10.1016/j.jenvman.2023.117681
摘要
Maximizing the use of valuable components in coal gasification slag is of great significance for resource recovery and the environment due to the huge annual emission of coal gasification slag. This study successfully produced Si-Fe-Al-Ca alloy with a composition of 63.83 wt% Si, 19.73 wt% Fe, 7.09 wt% Al, 6.32 wt% Ca, 1.70 wt% Ti, 0.03 wt% P, 0.66 wt% Mn, 0.05 wt% Cr, 0.53 wt% C, and 0.06 wt% others through electric arc furnace smelting from mixed coal gasification fine slag. The alloy composition is close to the standard 65% ferrosilicon, which can be used in the deoxidation of the molten steel industry. Moreover, the alloy yield was increased from 20.53% to 67.78% by using the residual carbon of the coal gasification slag as the reductant directly instead of adding petroleum coke. The transformation of coal gasification fine slag during the smelting process and the formation mechanism of the alloy were studied and the carbothermal reduction mechanism of Al2O3 and CaO can be explained by the reduction and decomposition theory of carbides. The complex liquid phase of the reactant system and product system in the smelting process made the carbothermal reaction of Al2O3 and CaO easier to occur, but it also brought the problem that the reactions were not fully completed.
科研通智能强力驱动
Strongly Powered by AbleSci AI