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Converter off-gas, an important energy resource for steel industries, is one of the weak points in the recovery and utilization of secondary energy resources. To improve the level of recycling converter off-gas in steel plants, a novel approach to the recycle of CO2 separated from converter off-gas or other off-gas for the green slag splashing technique was developed, and the CO2 equilibrium conversion ratio of the green CO2 slag splashing under different technological conditions was calculated by the program of enthalpy (H), entropy (S), and heat capacity (C), i.e. HSC software. Furthermore, the experiments of CO2 injected into molten converter slag were carried out, and the influencing factors of the green slag splashing technique using CO2 were analyzed. The experimental results showed that the carbon content for smooth slag splashing using CO2 was about 4.0%.

参考文献

[1] 胡长庆,张春霞,殷瑞钰.新一代钢厂煤气利用模式和生态化转型设想[J].钢铁,2008(05):84-88.
[2] 张春霞,胡长庆,严定鎏,齐渊洪,陈丽云,张旭孝.温室气体和钢铁工业减排措施[J].中国冶金,2007(01):7-12.
[3] HU Chang-qing,CHEN Li-yun,ZHANG Chun-xia,QI Yuan-hong,YIN Rui-yu.Emission Mitigation of CO2 in Steel Industry: Current Status and Future Scenarios[J].钢铁研究学报(英文版),2006(06):38-42,52.
[4] Yeonbae Kim;Ernst Worrell .International comparison of CO_2 emission trends in the iron and steel industry[J].Energy policy,2002(10):827-838.
[5] Karl-Hermann Tacke;Rolf Steffen .Hydrogen for the reduction of iron ores -- state of the art and future aspects[J].Stahl und Eisen,2004(4):45-50,52-0.
[6] Nobuhiro Maruoka;Tomohiro Akiyama .Exergy recovery from steelmaking off-gas by latent heat storage for methanol production[J].Energy,2006(10/11):1632-1642.
[7] WANG Ai-hua,CAI Jiu-ju,LI Xiu-ping,WANG Ding,ZHOU Qing-an.Affecting Factors and Improving Measures for Converter Gas Recovery[J].钢铁研究学报(英文版),2007(06):22-26.
[8] Leticia Ozawa;Claudia Sheinbaum;Nathan Martin .Energy use and CO_2 emissions in Mexico's iron and steel industry[J].Energy,2002(3):225-239.
[9] Potential CO_2 emission reduction for BF-BOF steelmaking based on optimised use of ferrous burden materials[J].International Journal of Greenhouse Gas Control,2009(1):29-38.
[10] YUAN Zhang-fu;ZHAO Hong-xin;PAN Yi-fang et al.A Method to Recycle COz for Slag Splashing in Steelmaking Process[P].China,ZL200610165219.2,2009-8-26.
[11] Wenjing WANG;Zhangfu YUAN;Hiroyuki MATSUURA;Hongxin ZHAO;Cheng DAI;Fumitaka TSUKIHASHI .Three-dimensional Compressible Flow Simulation of Top-blown Multiple Jets in Converter[J].ISIJ International,2010(4):491-500.
[12] 李克兵,武立新,李洁.变压吸附法回收炼钢转炉气技术[J].炼钢,2001(01):58-60.
[13] 黄斌,刘练波,许世森,丰镇平.燃煤电站CO2捕集与处理技术的现状与发展[J].电力设备,2008(05):3-6.
[14] Kubaschewski O.Metallurgical Thermochemistry[M].London:pergamon Press,1979
[15] Barner H E;Scheurman R V.Handbook of Thermochemical Data for Compounds and Aqueous Species[M].New York:John Wiley and Sons,Inc,1978
[16] Mills K C;Su Yuchu;Fox A B et al.A Review of Siag Splashing[J].ISIJ International,2005,45(05):619.
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