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Method of reducing metal oxide in a rotary hearth furnace heated by an oxidizing flameMethod of reducing metal oxide in a rotary hearth furnace (14) to make a feed stock for a refining vessel when manufacturing alloyed iron, alloyed steel or stainless steel. The rotary hearth furnace includes ...
experiment is indicative of rapid turnover of the produced N2O to N2by N2O-reducing (non-methanotrophic) bacteria. The sustained activity ofMethylobacter-like MOB under anoxia indicates that these microorganisms efficiently remove methane not only at oxic-anoxic interfaces but also at anoxic water dep...
Fungal enzymes responsible for reducing NO2− to N2O are encoded by nirK and P450nor (a cytochrome P450 nitric oxide reductase), which differ from the bacterial nirK and nor genes (Shoun et al., 2012; Wei et al., 2015b). Fungal and bacterial denitrifying genes are closely related, but...
A MIXTURE OF A METALLIC OXIDE AND A CARBON REDUCING AGENT IS LOCATED ON THE TOP SURFACE OF THE PLATFORM AND ROTATING AROUND THE BURNERS. THE OXIDE IS HEATED BY AN OXIDIZING FLAME. THEN, A SECOND LAYER OF A REDUCING AGENT IS CHARGED FIRST HOT LAYER, AND BOTH LAYERS ARE HEATED DURING A ...
Oxides by flame oxidation after preheating the heat release of the reducing agent in the second layer on the first layer, and then heated to at least 1300 ℃ Layer of the metal oxide reduction to provide a molten iron alloyed with inexpensive metal units.D·M·昆德拉特...
Method of reducing metal oxide in a rotary hearth furnace heated by an oxidizing flameMethod of reducing metal oxide in a rotary hearth furnace (14) to make a feed stock for a refining vessel when manufacturing alloyed iron, alloyed steel or stainless steel. The rotary hearth furnace includes ...
Method of reducing metal oxide in a rotary hearth furnace heated by an oxidizing flameMethod of reducing metal oxide in a rotary hearth furnace (14) to make a feed stock for a refining vessel when manufacturing alloyed iron, alloyed steel or stainless steel. The rotary hearth furnace includes ...
Oxides by flame oxidation after preheating the heat release of the reducing agent in the second layer on the first layer, and then heated to at least 1300 ℃ Layer of the metal oxide reduction to provide a molten iron alloyed with inexpensive metal units.D·M·昆德拉特...
Method of reducing metal oxide in a rotary hearth furnace (14) to make a feed stock for a refining vessel when manufacturing alloyed iron, alloyed steel or stainless steel. The rotary hearth furnace includes an annular inner refractory wall (32), an annular outer refractory wall (34), an an...