ISSN 2594-357X
34º Seminário de Redução de Minério de Ferro e Matérias-Primas — Vol. 01 , num. 34 (2004)
Title
Authorship
DOI
Downloads
Abstract
This paper proposes a new thermal energy recovery process of hot gas exhausted from the steelmaking LD converter by utilizing not only latent heat but also endothermic heat of reaction. In this process, the intermittently emitted LD gas was first transferred into continuous, constant-temperature heat source in the form of latent heat in the Phase Change Material (PCM) of copper. Then, the stored heat was supplied to Coke Oven Gas (COG) to induce endothermic reaction of steam reforming of methane. Methanol was finally produced from the obtained gas in the proposed system. A heat and material balance model predicted all operating data of the system and then exergy analysis based on the predicted data was conducted to validate the system theoretically. The results showed that the proposed system has a possibility to produce a large amount of methanol corresponding to 20% of total demand in Japan, with only 28% of exergy consumption in the conventional method.
This paper proposes a new thermal energy recovery process of hot gas exhausted from the steelmaking LD converter by utilizing not only latent heat but also endothermic heat of reaction. In this process, the intermittently emitted LD gas was first transferred into continuous, constant-temperature heat source in the form of latent heat in the Phase Change Material (PCM) of copper. Then, the stored heat was supplied to Coke Oven Gas (COG) to induce endothermic reaction of steam reforming of methane. Methanol was finally produced from the obtained gas in the proposed system. A heat and material balance model predicted all operating data of the system and then exergy analysis based on the predicted data was conducted to validate the system theoretically. The results showed that the proposed system has a possibility to produce a large amount of methanol corresponding to 20% of total demand in Japan, with only 28% of exergy consumption in the conventional method.
Keywords
Steelmaking converter, Exergy Recovery, Methanol, Latent heat, Reaction heat
Steelmaking converter, Exergy Recovery, Methanol, Latent heat, Reaction heat
How to cite
Akiyama, Tomohiro; Maruoka, Nobuhiro.
HYDROGEN PRODUCTION BY USING HIGH TEMPERATURE WASTE GAS IN THE STEELWORKS,
p. 579-586.
In: 34º Seminário de Redução de Minério de Ferro e Matérias-Primas,
None,
2004.
ISSN: 2594-357X, DOI 10.5151/2594-357x-34Red-579-586