Phase Equilibrium for the CaO-SiO_2-FeO-P_2O_5 System at 1673K for Dephosphorization With Multi Phas

来源 :Journal of Iron and Steel Research(International) | 被引量 : 0次 | 上传用户:L530798540
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
Development of the efficient hot metal dephosphorization processes during steelmaking process is one of the most essential topics for the production of high grade clean steels. Since the formation of solid solution composed of tricalcium phosphate and dicalcium silicate could obtain a considerable mass transfer of phosphorus from liquid slag into solid phase during hot metal dephosphorization, itcould obviously sustain a high phosphatecapacityof theliquid slag without huge consumption of lime or addition of fluxes, such as fluorite. The above outlines are the main idea of multi phase flux dephosphorization. For the last few decades, many studies have been done towards the scientific principles and the commercial utilization of this technique. However, the reaction mechanism by using multi phase fluxes remains unclear even by now due tolack of evidence. Based on those previous works, providing a reliable and available phase diagram for the fundamental understanding of the reaction mechanism of multi phase flux dephosphorization has become the main purpose of present research. As well known, the CaO-SiO2-FeO-P2O5 slag is the main component of current steelmaking process. Hence the CaO-SiO2-FeO-P2O5 system at equilibrium has been studied at 1673K with low oxygen partial pressure. The solid phase coexisting with liquid flux is approved to be the solid solution composed of CaO, SiO2 and P2O5. Phosphorus distributes mainly in solid solution rather than liquid phase. Development of the efficient hot metal dephosphorization processes during steelmaking process is one of the most essential topics for the production of high grade clean steels. Since the formation of solid solution composed of tricalcium phosphate and dicalcium silicate could obtain a considerable mass transfer of phosphorus from liquid slag into solid phase during hot metal dephosphorization, itcould obviously sustain a high phosphate capacity of the liquid slag without huge consumption of lime or addition of fluxes, such as fluorite. The above outlines are the main idea of ​​multiphase flux dephosphorization. For the last few decades, Many studies have been done towards the scientific principles and the commercial utilization of this technique. However, the reaction mechanism by using multi phase fluxes remains unclear even by now due tolack of evidence. Based on that previous works, providing a reliable and available phase diagram for the fundamental understanding of the reaction mecha因此 CaO-SiO 2 -FeO-P 2 O 5 system at equilibrium has has been the main purpose of present research. was studied at 1673K with low oxygen partial pressure. The solid phase coexisting with liquid flux is approved to be the solid solution composed of CaO, SiO2 and P2O5. Phosphorus distributes mainly in solid solution rather than liquid phase.
其他文献
山西省晋城市师范附属小学与新中国同龄,是一所具有深厚文化积淀的品牌老校。伴随着祖国改革开放的步伐,我校实现了跨越式的发展,办学规模越 Shanxi Jincheng Normal Primar
从创新教育理念到创新育人模式,从创新教学课程到创新校园文化,武汉市洪山区广埠屯小学坚持走创新发展之路,形成了独具特色的办学模式,打造“雅行教育”优质品牌的办学实践,
“下载速度慢得让人发疯……”,“天啊,已经下我了95%,却断线了,还得重来”……这种情况,您在下载文件时肯定曾经遇到过。时于上网者来说,方便实用的下载工具是必不可少的。事
企业是培养和使用技能人才的主体,也应是评价技能人才的主体。推进企业技能人才评价试点工作,要将企业评价标准与国家标准有机结合,采用贴近生产需要、贴近岗位要求、贴近职
“规范管理为儿童,提高素质创特色”。这是我园一直追求的办园目标,它深刻地蕴含着教职员工要爱岗敬业,全心全意为幼儿服务,努力实施素质教育,要不断开拓、进取、创新,办出自
20世纪80年代所出现的最重要的、也是最为人所知的营销概念就是品牌资产(Brand Equity)。这一概念于上世纪80年代由广告公司最早使用(Barwise,1993),出现后便日益引起营销管
深圳自确定生物、互联网、新能源、新材料、文化创意和新一代信息技术为战略性新兴产业以来,六大产业总规模由2010年的8091亿元,增加到2012年的12480亿元,产业规模年均增长24
选用标准κ-ε紊流模型,采用二阶精度及SIMPLE算法,设置相应边壁粗糙度,以Fluent流体计算软件为平台,以福建某电站为例对不同工况下出水侧流道流场进行了三维数值模拟计算,比
据《北京消防》1999年第11期报道,10月22日,北京消防教育训练中心正式落成。这是中日两国政府继北京消防救灾中心合作项目之后的又一个新的专项技术合作,是中日两国消防界真诚合作的硕果。
利用天山乌鲁木齐河源1号冰川2001-2005年消融期的水文气象实测资料,分析了河源区径流量的昼、夜变化特征,并对径流变化过程与气温、降水等关系进行了相关分析.结果表明:从5