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43篇 您的检索式:作者名="Gudenau"
    题名 作者 年代 出处 被引量
1Combustion of pulverized coal with additives under conditions of simu- lating blast furnace injection 显示文摘Vamvnka D Schwanekamp G Gudenau H 1996Fuel1996,9,75:1
2Choice of Technological Regimes of a Blast Furnace Operation With Injection of Hot Reducing Gases 显示文摘Babieh A I Gudenau H W Mavrommatis K T 2002ISIJ2002,38,4:1
3Combustion of pulverized coal with additives under conditions simulating blast furnace injection显示文摘VAMVUKA D SCHWANEKAMP G GUDENAU H W 1996Fuel1996,75,11:1
4Simulation of thermochmical and thermomechanical load in blast furnace hearth 显示文摘Gudenau H W Scheiwe M Sieger A 1993Steel Research1993,64,11:1
5Choice of technological regimes of a blast furnace operation with injection of hot reducing gases 显示文摘Babich A Gudenau H Mavrommatis K 2002Revista de Meta- lurgia2002,38,4:1
6Research in the Reduction of Iron Ore Agglomerates Including Coal and C-Containing Dust显示文摘Heinrich Wilhelm Gudenau Dieter Senk Shaowen Wang 2005ISIJ International2005,45,4:1
7Continuous Casting Powders in the Temperature Range 100 to 1550 deg C显示文摘 Gudenau H W Nagata K 1985Stahl Eisen1985,105,24:1
8Combustion of Pulverized Coal with Additives under Conditions Simulating Blast Furnace Injection 显示文摘Vamvuka D Sehwanekamp G Gudenau H W 1996Fuel (S0016-2361)1996,75,9:1
9Effect of coke reactivity and nut coke on the blast furnace operation 显示文摘Babich A Senk D Gudenau H W 2009Ironmaking and Steelmaking2009,,3:1
10炼铁过程使用木炭和生物质以及废塑料减少CO_2的排放显示文摘根据实验室研究,提出了两种可应用于钢铁行业降低CO2排放的方法:利用可再生的生物质或木炭以及利用可回收的含氢废旧塑料。该方法可通过以下两个途径实现:①风口喷吹;②混入入炉炉料,例如:通过混入炼焦煤而进入焦炭,在生产用于高炉或直接还原的球团原料中添加含碳原料和塑料。为考察现代高炉风口喷吹木炭的益处,重点研究了木炭在风口回旋区的气化行为和在风口回旋区外的二次反应。采用实验室装置及其相应的检测设备,研究了几种木头在不同炭化条件下所得到的木炭的转化效率。研究结果表明,对于风口喷吹,所测试木炭的燃烧行为都不逊于矿物质煤;在模拟的高炉炉身条件下,木炭的熔损反应速率高于试验所用的矿物质煤。使用塔姆曼炉试验装置及检测仪研究了可用于直接还原和高炉的冷固结含碳、废塑料和木炭球团的还原和体积变化行为。使用该种球团可抑制和减小还原膨胀,甚至出现体积收缩。球团的自还原行为受还原气的量、气氛和操作条件的影响。采用电阻炉进一步研究了固结废塑料(聚乙烯和垃圾衍生燃料)的氧化铁的还原行为。A Babich K Ohno D Senk H W Gudenau P Kowitwarangkul Y Ueki M Shimizu 徐辉(译) 李仕坚(译) 徐辉(校) 2012世界钢铁2012,12,3:1
11Mobility control for steam- flooding with high temperature-resistant additives 显示文摘StoU R D Gudenau H W Lupki M W 1993SPE Reserv Eng1993,8,4:1
12Research in the reduction of iron ore agglomerates including coal and C-containing dust显示文摘Heinrich Wilhelm Gudenau Dieter Senk WANG Shao-wen 2005ISIJ Internaitonal2005,45,4:1
13Heat Exchange in the Hearth of a Blast Furnace Operating With Combined Blast Parameters 显示文摘Formoso A Babich A Gudenau H W 1999ISIJ International1999,39,11:1
14Fluidized Bed Reduction as the Pre-Step of Smelting Reduction 显示文摘Gudenau H W Fang J Hirata T 1989Steel Res1989,60,314:1
15Thermal Conduetivities of Blast Furnace Slags and Continuous Casting Powders in the Temperature Range 100 to 1550C显示文摘Kazuhiro Sylvester Goto Heinrich Wilhelm Gudenau Kazu hiro Nagata 0,,24:1
16Research in the reduction of iron ore agglomerates including coal and C-containing dust显示文摘GUDENAU H W SENK D WANG S 2005ISIJ International2005,45,4:1
17Simulation of thermochemical and thermomechanical load in blast furnace hearth显示文摘Gudenau H W Scheiwe M Sieger R 1993Steel Research International1993,64,11:1
18The Sticking problem during direct reduction of fine iron ore in the fluidized bed显示文摘Komatlna M Gudenau H W 2004Metalurgija Journal of Metallurgy2004,10,4:1
19Direct re- duction of iron ore fines in a fluidized bed using hydro- gen-rich gas显示文摘Gudenau H W Hirsch M Denecke H 1997Stahl und Eisen (Germany)1997,117,4:1
20Investigations of carbon bricks for blast furnace hearths under the effect of hot metal显示文摘Gudenau H W Pietzko G Scheiwe M 1993Stahl und Eisen1993,113,11:1
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