TY - JOUR
T1 - A Review of Granulation Process for Blast Furnace Slag
AU - Yu, Pengfei
AU - Wang, Shuzhong
AU - Li, Yanhui
AU - Xu, Guixi
N1 - Publisher Copyright:
© 2016 The Authors, published by EDP Sciences.
PY - 2016/8/1
Y1 - 2016/8/1
N2 - Molten slags of blast furnace is a second resources with great value of 1600~1 800 MJ sensible heat per ton. At present, water-quenching process plays a leading role in recovering waste heat of the molten slags. However, this method not only cost lots of water, but also recover little sensible heat and can pollute the surrounding environment. Dry granulation process, as an environmentally friendly method with high-efficiency heat recovery, have attracted widespread attentions. In this paper, the water quenching and dry granulation processes were discussed in detail. After a thorough comparative analysis of various treatment technologies, it can be concluded that centrifugal granulation affiliated with dry granulation is the optimum process, with smaller slag particle size (about 2mm), more glassy phase and higher recovery rate.
AB - Molten slags of blast furnace is a second resources with great value of 1600~1 800 MJ sensible heat per ton. At present, water-quenching process plays a leading role in recovering waste heat of the molten slags. However, this method not only cost lots of water, but also recover little sensible heat and can pollute the surrounding environment. Dry granulation process, as an environmentally friendly method with high-efficiency heat recovery, have attracted widespread attentions. In this paper, the water quenching and dry granulation processes were discussed in detail. After a thorough comparative analysis of various treatment technologies, it can be concluded that centrifugal granulation affiliated with dry granulation is the optimum process, with smaller slag particle size (about 2mm), more glassy phase and higher recovery rate.
UR - https://www.scopus.com/pages/publications/84982133213
U2 - 10.1051/matecconf/20166806007
DO - 10.1051/matecconf/20166806007
M3 - 会议文章
AN - SCOPUS:84982133213
SN - 2261-236X
VL - 68
JO - MATEC Web of Conferences
JF - MATEC Web of Conferences
M1 - 06007
T2 - 2016 3rd International Conference on Industrial Engineering and Applications, ICIEA 2016
Y2 - 28 April 2016 through 30 April 2016
ER -