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钢铁行业低碳冶金技术路径研究 被引量:2
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作者 胡丽娟 《山西冶金》 CAS 2023年第7期84-86,共3页
钢铁行业是全球最大的能源消耗行业之一,其对全球碳排放贡献巨大,研究和发展低碳冶金技术是减少钢铁行业碳排放的重要途径,因此,重点研究探讨了钢铁行业低碳冶金技术路径。通过研究钢铁行业低碳冶金技术发展现状,提出优化铁素资源、废... 钢铁行业是全球最大的能源消耗行业之一,其对全球碳排放贡献巨大,研究和发展低碳冶金技术是减少钢铁行业碳排放的重要途径,因此,重点研究探讨了钢铁行业低碳冶金技术路径。通过研究钢铁行业低碳冶金技术发展现状,提出优化铁素资源、废气净化及废渣回收以及封存利用CO_(2)等低碳冶金技术的具体应用路径。低碳冶金技术是减少钢铁行业碳排放的有效途径,也是钢铁行业可持续发展的重要保障,希望此研究和分析能够为钢铁行业低碳冶金技术的发展提供一定参考和借鉴。 展开更多
关键词 钢铁行业 低碳冶金技术 排放量
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Main influencing factors and coal fly ash characteristics of gasoues fuel reburning process 被引量:1
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作者 苏胜 向军 +1 位作者 孙路石 胡松 《Journal of Central South University》 SCIE EI CAS 2009年第1期160-165,共6页
The unburned carbon concentration in fly ash and the influence of main factors on the reduction of nitrogen oxides during gaseous fuel reburning process were experimentally studied in a 36 kW down-fired furnace when f... The unburned carbon concentration in fly ash and the influence of main factors on the reduction of nitrogen oxides during gaseous fuel reburning process were experimentally studied in a 36 kW down-fired furnace when five typical coals with different qualities were served as the primary fuel. It is found that the higher nitrogen oxide reduction efficiency can be obtained by reburning process when the coal used as the primary fuel contains more volatile matter. But under the optimizational operating conditions, both above 50% nitrogen oxide reduction and low carbon loss can be achieved by reburning process even though the primary fuel is the low-volatile coal. The experimental results show that the reasonable residence time in reburn zone is 0.6-0.9 s, the appropriate gaseous reburn fuel percentage is 10%-15% and the optimal average excess air coefficient in reburn zone is 0.8-0.9. These results extend the ranges of the key parameter values for reburning process with respect to that the low-volatile coals are used as the primary fuel. 展开更多
关键词 coal fly ash unburned carbon nitrogen oxides coal combustion rebuming down-fired furnace
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