期刊文献+

Sulfur Flow Analysis for New Generation Steel Manufacturing Process 被引量:5

Sulfur Flow Analysis for New Generation Steel Manufacturing Process
原文传递
导出
摘要 Sulfur flow for new generation steel manufacturing process is analyzed by the method of material flow analysis, and measures for SO2 emission reduction are put forward as assessment and target intervention of the results. The results of sulfur flow analysis indicate that 90 % of sulfur comes from fuels. Sulfur finally discharges from the steel manufacturing route in various steps, and the main point is BF and BOF slag desulfurization. In sintering process, the sulfur is removed by gasification, and sintering process is the main source of SO2 emission. The sulfur content of coke oven gas (COG) is an important factor affecting SO2 emission. Therefore, SO2 emission reduction should be started from the optimization and integration of steel manufacturing route, sulfur burden should be reduced through energy saving and consumption reduction, and the sulfur content of fuel should be controlled. At the same time, BF and BOF slag desulfurization should be optimized further and coke oven gas and sintering exhausted gas desulfurization should be adopted for SO2 emission reduction and reuse of resource, to achieve harmonic coordination of economic, social, and environmental effects for sustainable development. Sulfur flow for new generation steel manufacturing process is analyzed by the method of material flow analysis, and measures for SO2 emission reduction are put forward as assessment and target intervention of the results. The results of sulfur flow analysis indicate that 90 % of sulfur comes from fuels. Sulfur finally discharges from the steel manufacturing route in various steps, and the main point is BF and BOF slag desulfurization. In sintering process, the sulfur is removed by gasification, and sintering process is the main source of SO2 emission. The sulfur content of coke oven gas (COG) is an important factor affecting SO2 emission. Therefore, SO2 emission reduction should be started from the optimization and integration of steel manufacturing route, sulfur burden should be reduced through energy saving and consumption reduction, and the sulfur content of fuel should be controlled. At the same time, BF and BOF slag desulfurization should be optimized further and coke oven gas and sintering exhausted gas desulfurization should be adopted for SO2 emission reduction and reuse of resource, to achieve harmonic coordination of economic, social, and environmental effects for sustainable development.
出处 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2008年第4期12-15,37,共5页 钢铁研究学报(英文版)
基金 Item Sponsored by National Natural Science Foundation of China(50334020)
关键词 material flow analysis sulfur flow analysis steel industry sustainable development SO2 emission material flow analysis sulfur flow analysis steel industry sustainable development SO2 emission
  • 相关文献

参考文献8

  • 1ZHANG Chun-xia,,QI Yuan-hong,YAN Ding-liu, et al.En- ergy-Saving and Environmental Protection of Ironmaking Sys- tem in China[].Asia Steel International Conference.2006
  • 2Paul H Brunner,Helmut Rechberger.Practical Handbook of Material Flow Analysis[]..2003
  • 3Peter L Daniels,,Stephen Moore.Approaches for Quantifying the Metabolism of Physical Economies, PartⅠ:Methodologi- cal Overview[].Journal of Dalian Institute of Light Industry.2001
  • 4Robert U Ayres.Industrial Metabolism:Theory and Policy[].The Greening of Industrial Ecosystems.1994
  • 5World Steel in Figures. http://www. worldsteel, org . 2006
  • 6Shinya IKEHARA,Susumu KUBO.Application of Exhaust Gas Recirculation System to Tobata No.3 Sinter Plant[].Nippon Steel Technical Report.1996
  • 7WEN Guang-yuan.Iron-Making Metallurgy[]..1993
  • 8Stoppa H,Strrunk J.Costs and Environmental Impact of Dryand Wet Quenching[].Cokemaking International.1999

同被引文献73

引证文献5

二级引证文献22

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部