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含磷钢渣碳热还原脱磷及资源化利用的研究现状
引用本文:刘亚琴,林路,何赛,冯梦龙,吕岩,霍立桥.含磷钢渣碳热还原脱磷及资源化利用的研究现状[J].钢铁研究学报,2022,34(10):1034-1046.
作者姓名:刘亚琴  林路  何赛  冯梦龙  吕岩  霍立桥
作者单位:钢铁研究总院冶金工艺研究所,北京100081;德龙钢铁有限公司炼钢厂,河北邢台054009
基金项目:国家自然科学基金;国家自然科学基金;国家自然科学基金
摘    要:摘要:针对脱磷转炉渣中磷资源高效回收及其资源化利用过程中存在的问题,系统总结了含磷钢渣除磷方式及其应用优缺点,并着重总结了不同条件(炉渣温度、炉渣碱度、钢渣中FeO质量分数、碳当量、底吹气体流量、冶炼时间等)对碳热还原气化脱磷的影响规律。同时,以应用前景较好的碳热还原气化脱磷方法为基础,提出了脱磷转炉渣在碳热还原气化脱磷过程磷的流向规律,展望了渣中磷资源回收制备磷铁及其循环利用模式。这为实现渣中磷资源高效回收及处理后残渣资源化利用提供重要研究基础和方向。

关 键 词:钢渣  碳热还原  气化脱磷  资源化利用  磷铁

Research status of dephosphorization and resource utilization of phosphorous steel slag by carbon thermal reduction gasification
LIU Yaqin,LIN Lu,HE Sai,FENG Menglong,LV Yan,HUO Liqiao.Research status of dephosphorization and resource utilization of phosphorous steel slag by carbon thermal reduction gasification[J].Journal of Iron and Steel Research,2022,34(10):1034-1046.
Authors:LIU Yaqin  LIN Lu  HE Sai  FENG Menglong  LV Yan  HUO Liqiao
Affiliation:1.Metallurgical Technology Institute, Central Iron and Steel Research Institute, Beijing 100081, China;2.Steel Making Plant of Delong Iron and Steel Co., Ltd., Xingtai 054009, Hebei, China
Abstract:Abstract: Aiming at the problems in the process of efficient recovery of phosphorus resources in dephosphorization converter slag and resource utilization, the dephosphorization methods of phosphorus containing steel slag and their advantages and disadvantages of application were systematically summarized. It also emphatically underlined the influence of different conditions (such as slag temperature, slag basicity, FeO mass fraction in steel slag, carbon equivalent, bottom blowing gas flow, smelting time, etc.) on carbothermal reduction gasification dephosphorization. At the same time, based on the promising carbothermic reduction gasification dephosphoriza tion method, the flow of phosphorus in the dephosphorization converter slag in the carbothermal reduction gasification dephosphorization process was proposed, the recovery of phosphorus resources in slag to prepare ferrophosphorus and its recycling mode were discussed, which provide an important research foundation and direction for realizing the efficient recovery of phosphorus resources in the slag and the resource utilization of the treated residue.
Keywords:Key words:steel slag  carbothermic reduction  gasification dephosphorization  resource utilization  ferrophosphorus  
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