2017 Vol. 50, No. 2
Article Contents

HAN Yanbing, CAO Shan, MA Jingzhi. Rapid Determination of Titanium,Iron,Phosphorus,Vanadium and Cobalt in Titanomagnetite by X-Ray Fluorescence Spectrometry[J]. Northwestern Geology, 2017, 50(2): 224-230.
Citation: HAN Yanbing, CAO Shan, MA Jingzhi. Rapid Determination of Titanium,Iron,Phosphorus,Vanadium and Cobalt in Titanomagnetite by X-Ray Fluorescence Spectrometry[J]. Northwestern Geology, 2017, 50(2): 224-230.

Rapid Determination of Titanium,Iron,Phosphorus,Vanadium and Cobalt in Titanomagnetite by X-Ray Fluorescence Spectrometry

  • In this paper, the titanomagnetite samples from southern Shaanxi have been preparated by pressed powder tablet, and the titanium, iron, phosphorus, vanadium and cobalt have been rapid determinated using Axios X-ray fluorescence spectrometer.This method avoids the disadvantages of traditional testing methods, such as long process, labor-intensive and polluting serious.The analysis results show that, when the sample grain size is equal or less than 0.074 mm, the sample preparation pressure is equal or greater than 30 MPa, and the holdup time is more than 30 s, the tested results of Ti, Fe, P, V and Co in titanomagnetite samples are stable and reliable.Adding a fixed sample to the standard curve can effectively reduce the matrix effect, the precision of the test data is better than 2.1%, the accuracy is better than 3.7% and the relative standard deviation is less than 5%, which meet the testing requirements for geological prospecting and mineral processing.It is important to expand the scope application of X-ray fluorescence spectroscopy, to shorten the time prospecting, to guide the beneficiation processes and to develop the rich ilmenite resources in southern Shaanxi.
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  • 涂怀奎.陕西南部安康地区地质背景与成矿特征的讨论[J].陕西地质, 1993,11(2):9-18.

    Google Scholar

    TU Huaiku.A Preliminary Discussion on Geological Setting and Ore-foring Characteristics of Ankang Region,Sorthern Shannxi[J].Geology of Shaanxi, 1993,11(2):9-18.

    Google Scholar

    赵长缨,陈清石,杨春辉.陕西安康地区辉绿岩体特征及钛磁铁矿成矿条件分析[J].甘肃地质, 2012,21(4):39-45.

    Google Scholar

    ZHAO Changying, CHEN Qingshi, YANG Chunhui.Diabase Mass and Metallogenic Condition of Titannomagnetite in Ankang Area of Shaanxi Province[J].Gansu Geology, 2012,21(4):39-45.

    Google Scholar

    龙运波,张裕书.低品位钒钛磁铁矿选铁尾矿综合回收钛试验研究[J].矿业快报, 2007,7(7):22-24.

    Google Scholar

    LONG Yunbo, ZHANG Yushu.Experimental Research on Comprehensively Recovering Titanium from Iron Tailings of Low Grade Vanadium Titano-Magnetite[J].Express Information of Mining Industry, 2007,7(7):22-24.

    Google Scholar

    郑子恩,赵婷,袁仕华.我国钛工业的技术现状及展望[J].稀有金属与硬质合金, 2012,40(4):35-39.

    Google Scholar

    ZHENG Zien, ZHAO Ting, YUAN Shihua.Technique Status and Prospect of China's Titanium Industry[J].Rare Metals and Cemented Carbides, 2012,40(4):35-39.

    Google Scholar

    陈正学,我国钒钦磁铁矿选矿的进展[J].矿产综合利用, 1987,32(4):32-38.

    Google Scholar

    CHEN Zhengxue.Progress in Mineral Processing Technology of Vanadium-titanium Magnetite in China[J].Multipurpose Utilization of Mineral Resources, 1987,32(4):32-38.

    Google Scholar

    岩石矿物分析编写组.岩石矿物分析(第二分册)[M].北京:地质出版社, 2011.

    Google Scholar

    The Editorial Committee of Rock and Mineral Analysis.Rock and Mineral Analysis (The Fourth Edition:VolumeⅡ)[M].Beijing:Geological Press, 2011.

    Google Scholar

    王重华,张海燕,邱林友.XRF测定钛铁矿中的主量和次量元素[J].稀有金属与硬质合金, 2005,123(12):40-42.

    Google Scholar

    WANG Zhonghua, ZHANG Haiyan, QIU Linyou.Determination of Major and Minor Elements in Ilmenite by XRF[J].Rare Metals and Cemented Carbides, 1995,123(12):40-42.

    Google Scholar

    郭月芳.钒钛磁铁矿中钛、钒、磷、钴、镍的测定[J].甘肃冶金, 2009,31(4):78-79.

    Google Scholar

    GUO Yuefang.Determination of Titanium, Vanadium, Phosphorus, Cobalt and Nickel in Vanadium Titano-magnetite[J].Gansu Metallurgy, 2009,31(4):78-79.

    Google Scholar

    凌学芳.钒钛磁铁矿中钛铁连测方法研究[J].矿物岩石, 1990,30(2):105-107.

    Google Scholar

    LING Xuefang.A Study of Successive Determination of Titanium and Iron in V-Ti-Magnetite[J].Journal of Mineralogy and Petrology, 1990,30(2):105-107.

    Google Scholar

    刘继华,梁红.ICP-AES法测定钒钦磁铁矿中多元素[J].岩矿测试, 1991,10(3):238-239.

    Google Scholar

    LIU Jihua, LIANG Hong.Determination of Multi Elements in Vanadium Titanomagnetite by ICP-AES[J].Rock and Mineral Analysis, 1991,10(3):238-239.

    Google Scholar

    尹继先,罗华魏,黎永强,等.钒钛磁铁矿的微波消解溶样研究[J].分析实验室, 2009,28(5):79-81.

    Google Scholar

    YI Jiguang, LUO Huawei, LI Yongqiang,et al.Study on Microwave Digestion of Vanadium and Titanium Magnetite[J].Chinese Journal of Analysis Laboratory, 2009,28(5):79-81.

    Google Scholar

    朱霞萍, 胡子文,陈卫东,等.微波消解ICP-OES 快速测定难溶钒钛磁铁矿中铁、钛、钒[J].光谱学与光谱实验室, 2010, 30(8):2277-2280.

    Google Scholar

    ZHU Xiaping, YIN Jixian, CHEN Weidong,et al.Determination of Fe,Ti and V in Vanadium and Titanium Magnetite by ICP-OES and Microwave-Assisted Digestion[J].Spectroscopy and Spectral Analysis, 2010,30(8):2277-2280.

    Google Scholar

    梁述廷,刘玉纯,胡浩,等.X射线荧光光谱法同时测定土壤中碳氮等多元素[J].岩矿测试, 2004,23(2):102-108.

    Google Scholar

    LIANG Shuting, LIU Yuchun, HU Hao.Determination of C, N and Other 36 Elements in Soil Samples by XRF[J].Rock and Mineral Analysis, 2004,23(2):102-108.

    Google Scholar

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