Physical Modeling Study on Mixing Phenomena in a C-H2 Smelting Reduction Furnace Bath with Asymmetric Side Blowing Process

- Organization:
- The Minerals, Metals and Materials Society
- Pages:
- 9
- File Size:
- 1044 KB
- Publication Date:
- Jan 1, 2012
Abstract
"Mixing phenomena in smelting reduction furnaces with asymmetric side blowing were studied in this paper. Mixing phenomena in a smelting reduction furnace was represented as the mixing time by electrical conductivity measurements. Experiments were performed in a water model under various operating conditions to determine the effects of horizontal angle, radial angle, inserting depth, flow rate of the upper and the lower side nozzle, the included angle between the upper side nozzle, and the lower side nozzle on mixing phenomena in smelting reduction furnace. Comparing mixing time and mixing phenomena, the optimal conditions were obtained for an asymmetric side blowing process.IntroductionIn recent years, many countries have put forward development strategies for saving resources and environment-friendly, the development of various industries had to face its influence for resources and the environment .As we all know, the steel industry is a pillar industry of the global economy, in which ironmaking is an important part of it. In the modern ironmaking process, the blast furnace is regarded as the most important equipment and tool. But with the increasing scarcity of metallurgical coke resources and considering the environmental impact of such processes, metallurgists proposed the concept of smelting reduction. Smelting reduction processes to produce hot metal from iron ore and coal were being developed as a possible alternative to the traditional blast furnace. At present, a number of smelting reduction processes had been developed all over the world, they were mainly included COREX, HISMELT, FINEX, DIOS, etc."
Citation
APA:
(2012) Physical Modeling Study on Mixing Phenomena in a C-H2 Smelting Reduction Furnace Bath with Asymmetric Side Blowing ProcessMLA: Physical Modeling Study on Mixing Phenomena in a C-H2 Smelting Reduction Furnace Bath with Asymmetric Side Blowing Process. The Minerals, Metals and Materials Society, 2012.