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攀西地区钛资源综合利用技术现状分析与前景展望
引用本文:无.攀西地区钛资源综合利用技术现状分析与前景展望[J].攀枝花科技与信息,2006,31(2):8-10.
作者姓名:
作者单位:中国科学院过程工程研究所,攀枝花市科学技术局
摘    要:四川攀枝花—西昌地区拥有96.6亿t储量的钒钛磁铁矿,是世界闻名的复合共生矿,其中钛资源约占中国储量的90%,世界储量的40%,其综合利用意义重大。本文分析了攀枝花—西昌地区钛资源综合利用技术现状和发展趋势。从资源条件和特点出发,着眼于综合回收利用钛资源,提出了钒钛磁铁矿综合利用新工艺—转底炉法制备高钛渣技术、快速流化床氯化制备四氯化钛技术及纳米二氧化钛的制备技术并探讨了其可行性及存在问题。

关 键 词:钛资源  综合利用  转底炉  富钛渣  快速流化床氯化技术  纳米二氧化钛

Analysis and Prospect on the comprehensive utilization telhnology of titanium resources in Panzhihua -Xichang
Institute of Process Engineering, CAS Sciences and Technology Bureau of Panzhihua, Sichuan.Analysis and Prospect on the comprehensive utilization telhnology of titanium resources in Panzhihua -Xichang[J].Panzhihua Sci-Tech & Information,2006,31(2):8-10.
Authors:Institute of Process Engineering  CAS Sciences and Technology Bureau of Panzhihua  Sichuan
Abstract:There are a total amount of 9.66 billion tons of vanadium-bearing titaniferous magnetite resource in, Panzhihua-Xichang area,Sichuan.It is well-known in the world that the vanadium-bearing titaniferous magnetite is a sort of complex-intergrowth ore.Thereinto titanium resources is 40% of the world reserves,90% of the Chinese reserves,the comprehensive utilization of which is crucial to the development of titanium industry technology in China.The present status of the comprehensive utilization of titanium rcsources and its related new technologies were reviewed and analyzed.In terms of the resources characteristics,and in order to fully utilize titanium in the ore,we proposed a new process based on rotary hearth furnace to produce high-grade titanium slag, the technology of muti-grade fast fluidized bed to produce titanium tetrachloride,and the novel method to solve the scaling and clogging of the oxidation furnace and the preparation technology of novel nanometer titania are introduced.The probability and underlying problems of the new technology has also been discussed.
Keywords:titanium resources  comprehensive utilization  rotary hearth furnace  htigh-grade titanium slag  technology of fast fluidzed bed to produce titanium totrachloride  nanometer titania
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