北京科技大学学报
北京科技大學學報
북경과기대학학보
JOURNAL OF UNIVERSITY OF SCIENCE AND TECHNOLOGY BEIJING
2013年
3期
282-287
,共6页
吴胜利%庹必阳%张丽华%郭亮%武建龙%周宇
吳勝利%庹必暘%張麗華%郭亮%武建龍%週宇
오성리%탁필양%장려화%곽량%무건룡%주우
高炉%焦炭%反应性%炉料%铁矿石还原
高爐%焦炭%反應性%爐料%鐵礦石還原
고로%초탄%반응성%로료%철광석환원
blast furnaces%coke%reactivity%burden%iron ore reduction
研究了五种具有不同反应性的焦炭对高炉块状带含铁炉料还原的影响规律,并对料层的压差、CO 体积分数以及含铁炉料的还原程度进行了分析.当炉内通入的原始气体中 CO 体积分数(仅考虑 CO 和 CO2)为72.22%时,随着焦炭反应性的增强,焦炭气化速率加快,含铁炉料颗粒周围的 CO 体积分数升高,含铁炉料的还原度依次增高,还原度从使用低活性焦炭时的33.18%增大到使用高活性焦炭时的53.83%;而当原始气体成分中 CO 体积分数为66.67%时(低于900℃还原 FeO 的平衡气相体积分数),使用高反应性焦炭也可还原出金属铁.由此可见,适当增加入炉焦炭的反应性,可促进焦炭与含铁炉料间的耦合反应,提升料层 CO 体积分数,提高含铁炉料进入软熔带区域的金属化率.
研究瞭五種具有不同反應性的焦炭對高爐塊狀帶含鐵爐料還原的影響規律,併對料層的壓差、CO 體積分數以及含鐵爐料的還原程度進行瞭分析.噹爐內通入的原始氣體中 CO 體積分數(僅攷慮 CO 和 CO2)為72.22%時,隨著焦炭反應性的增彊,焦炭氣化速率加快,含鐵爐料顆粒週圍的 CO 體積分數升高,含鐵爐料的還原度依次增高,還原度從使用低活性焦炭時的33.18%增大到使用高活性焦炭時的53.83%;而噹原始氣體成分中 CO 體積分數為66.67%時(低于900℃還原 FeO 的平衡氣相體積分數),使用高反應性焦炭也可還原齣金屬鐵.由此可見,適噹增加入爐焦炭的反應性,可促進焦炭與含鐵爐料間的耦閤反應,提升料層 CO 體積分數,提高含鐵爐料進入軟鎔帶區域的金屬化率.
연구료오충구유불동반응성적초탄대고로괴상대함철로료환원적영향규률,병대료층적압차、CO 체적분수이급함철로료적환원정도진행료분석.당로내통입적원시기체중 CO 체적분수(부고필 CO 화 CO2)위72.22%시,수착초탄반응성적증강,초탄기화속솔가쾌,함철로료과립주위적 CO 체적분수승고,함철로료적환원도의차증고,환원도종사용저활성초탄시적33.18%증대도사용고활성초탄시적53.83%;이당원시기체성분중 CO 체적분수위66.67%시(저우900℃환원 FeO 적평형기상체적분수),사용고반응성초탄야가환원출금속철.유차가견,괄당증가입로초탄적반응성,가촉진초탄여함철로료간적우합반응,제승료층 CO 체적분수,제고함철로료진입연용대구역적금속화솔.
@@@@The influence of coke reactivity on the ferric burden reduction of the lumpy zone in a blast furnace was studied by using five kinds of coke with different reactivities. The pressure drop and CO volume fraction of the burden layer as well as the burden reduction degree were also analyzed. It is found that the coke gasification rate, CO volume fraction of the burden surface, and burden reduction degree increase with the increase of coke reactivity. When the CO volume fraction (only considering CO and CO2) of the original gas is 72.22% the burden reduction degree increases from 33.18% for low-reactivity coke to 53.83% for high-reactivity coke. When the CO volume fraction of the original gas is 66.67%, which is slightly lower than the CO theoretical equilibrium volume fraction of FeO reduction at 900 ℃, metallic iron can be obtained by means of high-reactivity coke. Therefore, appropriately increasing the coke reactivity in a blast furnace can promote the coupling reaction between coke and ferric burden, improve the CO volume fraction of the burden layer, and increase the burden metallization rate before going into the cohesive zone.