化工学报
化工學報
화공학보
JOURNAL OF CHEMICAL INDUSY AND ENGINEERING (CHINA)
2014年
9期
3732-3737
,共6页
王维%董翰琼%王标%赵云超%王开
王維%董翰瓊%王標%趙雲超%王開
왕유%동한경%왕표%조운초%왕개
转炉钢渣%烧结机理%动力学%废物处理%Cr6+%环境
轉爐鋼渣%燒結機理%動力學%廢物處理%Cr6+%環境
전로강사%소결궤리%동역학%폐물처리%Cr6+%배경
BOF slag%sintering mechanism%kinetics%waste treatment%Cr6+%environment
为了研究转炉钢渣制备建筑陶瓷的烧结机理及动力学,以不同粒径转炉渣为主要原料,加入改善坯料烧结及制备性能的添加剂,成功地制备了高性能的陶瓷墙地砖。根据样品烧结前后变形及烧结密度的变化,初步探讨了转炉钢渣质墙地砖的烧结机理,并且计算了烧结激活能。利用差热分析和高倍电镜对样品进行了分析,研究了转炉钢渣质墙地砖结晶过程中的动力学。结果发现,原料粉末粒径越小,样品越易烧结,相应的烧结温度也越低。样品差热分析中的尖峰和宽峰分别代表了表面结晶和内部体结晶。研究表明,本工作为转炉铬渣无害化处理及大规模资源化综合利用奠定了基础。
為瞭研究轉爐鋼渣製備建築陶瓷的燒結機理及動力學,以不同粒徑轉爐渣為主要原料,加入改善坯料燒結及製備性能的添加劑,成功地製備瞭高性能的陶瓷牆地磚。根據樣品燒結前後變形及燒結密度的變化,初步探討瞭轉爐鋼渣質牆地磚的燒結機理,併且計算瞭燒結激活能。利用差熱分析和高倍電鏡對樣品進行瞭分析,研究瞭轉爐鋼渣質牆地磚結晶過程中的動力學。結果髮現,原料粉末粒徑越小,樣品越易燒結,相應的燒結溫度也越低。樣品差熱分析中的尖峰和寬峰分彆代錶瞭錶麵結晶和內部體結晶。研究錶明,本工作為轉爐鉻渣無害化處理及大規模資源化綜閤利用奠定瞭基礎。
위료연구전로강사제비건축도자적소결궤리급동역학,이불동립경전로사위주요원료,가입개선배료소결급제비성능적첨가제,성공지제비료고성능적도자장지전。근거양품소결전후변형급소결밀도적변화,초보탐토료전로강사질장지전적소결궤리,병차계산료소결격활능。이용차열분석화고배전경대양품진행료분석,연구료전로강사질장지전결정과정중적동역학。결과발현,원료분말립경월소,양품월역소결,상응적소결온도야월저。양품차열분석중적첨봉화관봉분별대표료표면결정화내부체결정。연구표명,본공작위전로락사무해화처리급대규모자원화종합이용전정료기출。
In order to study the sintering mechanism and kinetics of buildings ceramics prepared from basic oxygen furnace (BOF) slag, the BOF slag with different grain sizes as the main materials were mixed with some additives to improve the properties of sintering, and ceramic tiles with good performance were made. Sintering mechanism was studied with respect to ceramic tiles samples deformation and changes of density before and after sintering, and sintering activation energy of the BOF slag ceramic tiles was calculated. Crystallization kinetics of the BOF slag ceramic tiles was studied with differential thermal analysis and scanning electron microscopy. The smaller the grain size of raw material, the easier the sintering and the lower the sintering temperature. The broad crystallization peak in the differential thermal analysis indicated surface crystallization, whereas the sharp peak indicated bulk crystallization. The current work is useful for harmless processing and recycling of the BOF slag on a large scale.