化工学报
化工學報
화공학보
JOURNAL OF CHEMICAL INDUSY AND ENGINEERING (CHINA)
2014年
7期
2437-2442
,共6页
难选铁矿%流态化%磁化焙烧%本征动力学%过程强化%模拟
難選鐵礦%流態化%磁化焙燒%本徵動力學%過程彊化%模擬
난선철광%류태화%자화배소%본정동역학%과정강화%모의
low grade iron ore%fluidization%magnetizing roasting%intrinsic kinetics%process intensification%simulation
我国有大量常规选矿方法难以利用的铁矿石资源,实现其利用可增加我国铁矿石资源可利用量,缓解铁矿石供应紧张的局面,提高铁矿石供应安全的保障程度。磁化焙烧-磁选是难选铁矿石利用的重要方法,流态化磁化焙烧是近年来研究的热点。本文综述了磁化焙烧原理、竖炉及回转窑磁化焙烧的技术现状及存在问题,介绍了流化床磁化焙烧发展历史和研发现状,着重总结了低温流态化磁化焙烧在焙烧动力学、过程强化、反应器模拟、关键技术研发及产业化示范方面的研究进展,分析了其在褐铁矿、菱铁矿、赤铁矿及含铁尾渣利用方面的发展前景。
我國有大量常規選礦方法難以利用的鐵礦石資源,實現其利用可增加我國鐵礦石資源可利用量,緩解鐵礦石供應緊張的跼麵,提高鐵礦石供應安全的保障程度。磁化焙燒-磁選是難選鐵礦石利用的重要方法,流態化磁化焙燒是近年來研究的熱點。本文綜述瞭磁化焙燒原理、豎爐及迴轉窯磁化焙燒的技術現狀及存在問題,介紹瞭流化床磁化焙燒髮展歷史和研髮現狀,著重總結瞭低溫流態化磁化焙燒在焙燒動力學、過程彊化、反應器模擬、關鍵技術研髮及產業化示範方麵的研究進展,分析瞭其在褐鐵礦、蔆鐵礦、赤鐵礦及含鐵尾渣利用方麵的髮展前景。
아국유대량상규선광방법난이이용적철광석자원,실현기이용가증가아국철광석자원가이용량,완해철광석공응긴장적국면,제고철광석공응안전적보장정도。자화배소-자선시난선철광석이용적중요방법,류태화자화배소시근년래연구적열점。본문종술료자화배소원리、수로급회전요자화배소적기술현상급존재문제,개소료류화상자화배소발전역사화연발현상,착중총결료저온류태화자화배소재배소동역학、과정강화、반응기모의、관건기술연발급산업화시범방면적연구진전,분석료기재갈철광、릉철광、적철광급함철미사이용방면적발전전경。
There is large reserve of low grade and complex iron ore in China, which cannot be beneficiated by conventional physically-based beneficiation methods. High-efficiency utilization of these low grade iron ores is crucial to alleviate the supply shortage of iron ore in China on the one hand and to improve iron ore supply security on the other hand. Magnetizing roasting coupled with magnetic separation is an important method for the beneficiation of low grade iron ores and recently much attention has been paid to fluidized bed magnetizing roasting. In the present review, the principle of the magnetizing roasting method is first introduced, and then the status quo and existing problems of shaft furnace magnetizing roasting technology and rotary kiln magnetizing roasting technology are summarized. The development history and technical status of fluidized bed magnetizing roasting are also introduced, with the emphasis on summarizing the progress of the newly-developed low-temperature fluidized bed magnetizing roasting technology, including reduction intrinsic kinetics, process intensification, simulation and modeling, technology development like preheating of iron ore powder, feeding/discharging, roasted ore cooling and stable combustion of roasting off-gas. The application prospect of the technology is analyzed for low grade hematite, limonite, siderite and iron-containing tailings.