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基于碳酸钠分解同时去除Cr(III)和V(V)并增强高品位金红石型TiO的合成。

Simultaneous removal of Cr(III) and V(V) and enhanced synthesis of high-grade rutile TiO based on sodium carbonate decomposition.

作者信息

Chen Guo, Jiang Qi, Li Kangqiang, He Aoxi, Peng Jinhui, Omran Mamdouh, Chen Jin

机构信息

Key Laboratory of Green-Chemistry Materials in University of Yunnan Province, Kunming Key Laboratory of Energy Materials Chemistry, Yunnan Minzu University, Kunming 650500, PR China; Key Laboratory of Unconventional Metallurgy, Ministry of Education, Kunming University of Science and Technology, Kunming 650093, PR China.

Key Laboratory of Unconventional Metallurgy, Ministry of Education, Kunming University of Science and Technology, Kunming 650093, PR China.

出版信息

J Hazard Mater. 2020 Apr 15;388:122039. doi: 10.1016/j.jhazmat.2020.122039. Epub 2020 Jan 10.

Abstract

Rutile TiO is widely applied as the raw material to produce titanium dioxide and titanium sponge, whereas the Cr (III) and V (V) impurities in rutile TiO significantly affect the performance of related products. In the present work, the sodium carbonate decomposition treatment on Panzhihua titanium slag was attempted, to improve the preparation process of rutile TiO with high crystallinity and simultaneously reduce the chromium (Cr) and vanadium (V) content as hazardous elements. Effects of sodium carbonate decomposition treatment on the crystal composition, microstructure of rutile TiO were determined using XRD, SEM and Raman characterization. The recovery of Cr(III) and V(V) was achieved through leaching the roasted titanium slag by dilute sulfuric acid, with the chromium and vanadium content in the residue decreasing up to 0.03 % and 0.04 %, respectively, followed by the final product rutile TiO was produced by the leaching residue calcined at 1323.15 K with a duration time of 120 min, with 85.56 % of TiO grade. The work highlights the feasibility of synchronously preparing rutile TiO and removing hazardous Cr (III) and V (V) impurities from titanium slag using sodium carbonate decomposition.

摘要

金红石型TiO被广泛用作生产二氧化钛和海绵钛的原料,而金红石型TiO中的Cr(III)和V(V)杂质会显著影响相关产品的性能。在本工作中,尝试对攀枝花钛渣进行碳酸钠分解处理,以改进高结晶度金红石型TiO的制备工艺,同时降低作为有害元素的铬(Cr)和钒(V)含量。采用XRD、SEM和拉曼表征手段,确定了碳酸钠分解处理对金红石型TiO晶体组成、微观结构的影响。通过用稀硫酸浸出焙烧后的钛渣实现了Cr(III)和V(V)的回收,残渣中的铬和钒含量分别降至0.03%和0.04%,随后通过将浸出残渣在1323.15K下煅烧120分钟制备出最终产品金红石型TiO,TiO品位为85.56%。这项工作突出了利用碳酸钠分解同步制备金红石型TiO并从钛渣中去除有害Cr(III)和V(V)杂质的可行性。

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