Abstract:In order to objectively master the progress in X-ray fluorescence spectrometry (XRF) in China, the related research papers in Chinese National Knowledge Internet (CNKI) database were analyzed including year distribution, institution, foundation and journal source. The key words analysis method by Citespace was employed to systemically reveal the research progress of XRF in China. The results show that the study of XRF in China is in the stage of rapid development and the quantity of papers published every year grow exponentially. Chengdu University of Technology (CDUT) has published most research papers on XRF (69 papers), while the institution having highest total citations is China National Geological Experimental Testing Center, Chinese Academy of Geological Sciences (819 times cited). At present, the fund support on study of XRF at national level is insufficient. The first author of paper with highest citations is LI Guo-hui (93 times cited). The journal with highest number of published papers and rate of citation is Metallurgical Analysis (300 papers, 86.3%). The journal with highest total citations and average total citations is Rock and Mineral Analysis (2541 times cited, 14.4 times/paper). The analysis results of key words indicate that the researches are mainly focused on sample preparation, analysis method study and detection application. The proportion of theoretical research is much lower than that of application research.It has important significance to understand the development trend of XRF and promote the deepening of related researches.
徐英岚. 基于CNKI的X射线荧光光谱研究文献计量学分析[J]. 冶金分析, 2019, 39(10): 1-7.
XU Ying-lan. Bibliometric analysis on research trend of X-ray fluorescence spectrometry based on CNKI. , 2019, 39(10): 1-7.
Ren D,Shen J,Ren S,et al.An X-ray fluorescence spectroscopy pretreatment method for detection of heavy metal content in soil[J].Spectroscopy and Spectral Analysis,2018,38(12):3934-3940.
[2]
Kikongi P,Fauteux-Lefebvre C,Salvas J,et al.Detecting trace levels of heavy metals in pharmaceutical raw materials with wavelength-dispersive X-ray fluorescence spectroscopy and curve-fitting regression[J].Spectrochimica Acta Part B:Atomic Spectroscopy,2018,147:59-70.
[3]
Tian K,Huang B,Xing Z,et al.In situ investigation of heavy metals at trace concentrations in greenhouse soils via portable X-ray fluorescence spectroscopy[J].Environmental Science and Pollution Research,2018,25(11SI):11011-11022.
[4]
Mendonca Filho F F,Morillas H,Derluyn H,et al.In-situ versus laboratory characterization of historical site in marine environment using X-ray fluorescence and Raman spectroscopy[J].Microchemical Journal,2019,147:905-913.
[5]
吉昂.X射线荧光光谱三十年[J].岩矿测试,2012,31(3):383-398.JI Ang.Development of X-ray fluoresence spectrometry in the 30 Years[J].Rock and Mineral Analysis,2012,31(3):383-398.
[6]
毛月英,庞喜斌,唐凌天,等.我国能力验证项目研究热点可视化分析[J].冶金分析,2018,38(1):16-23.MAO Yue-ying,PANG Xi-bin,TANG Ling-tian,et al.Visualization map analysis of research hotspots in proficiency testing in China[J].Metallurgical Analysis,2018,38(1):16-23.
[7]
毛月英.1954—2018年我国水资源研究进展可视化分析[J].中国水利,2019(9):60-64.MAO Yue-ying.Visualization analysis of water resource research progress from 1954 to 2018 in China[J].China Water Resources,2019(9):60-64.
[8]
LIU W,WANG J,LI C,et al.Using bibliometric analysis to understand the recent progress in agroecosystem services research[J].Ecological Economics,2019,156:293-305.
[9]
LEI L,LIU D.The research trends and contributions of system's publications over the past four decades (1973—2017):A bibliometric analysis[J].System,2019,80:1-13.
[10]
CHEN W,LIU W,GENG Y,et al.Recent progress on emergy research:A bibliometric analysis[J].Renewable and Sustainable Energy Reviews,2017,73:1051-1060.
[11]
全先荣.贵金属检测用X射线荧光光谱仪专利技术分析[J].科技创新与应用(Technology Innovation and Application),2019(15):18-19.
第二研究室,第五研究室.溶液中钇铥镱镥的X射线荧光光谱测定——相干散射线作内标的应用[J].有机化学(Chinese Journal of Organic Chemistry),1975(1):11-22.
[14]
李国会,卜维,樊守忠.X射线荧光光谱法测定硅酸盐中硫等20个主、次、痕量元素[J].光谱学与光谱分析,1994(1):105-110.LI Guo-hui,BU Wei,FAN Shou-zhong.Determination of twenty major, minor and trace elements in silicate by XRF spectrometry[J].Spectroscopy and Spectral Analysis,1994(1):105-110.
[15]
张勤,樊守忠,潘宴山,等.X射线荧光光谱法测定多目标地球化学调查样品中主次痕量组分[J].岩矿测试,2004(1):19-24.ZHANG Qin,FAN Shou-zhong,PAN Yan-shan,et al.Determination of 25 major,minor and trace elements in geochemical exploration samples by X-ray fluorescence spectrometry[J].Rock and Mineral Analysis,2004(1):19-24.
章连香,符斌.X-射线荧光光谱分析技术的发展[J].中国无机分析化学,2013,3(3):1-7.ZHANG Lian-xiang,FU Bin.Advances in X-ray fluoresence spectrometry[J].Chinese Journal of Inorganic Analytical Chemistry,2013,3(3):1-7.
[18]
于波,严志远,杨乐山,等.X射线荧光光谱法测定土壤和水系沉积物中碳和氮等36个主次痕量元素[J].岩矿测试,2006(1):74-78.YU Bo,YAN Zhi-yuan,YANG Le-shan,et al.Determination of 36 major,minor and trace elements in soil and stream sedmient samples by X-ray fluorescence spectrometry[J].Rock and Mineral Analysis,2006(1):74-78.
[19]
刘尚华,陶光仪,吉昂.X射线荧光光谱分析中的粉末压片制样法[J].光谱实验室,1998(6):10-16.LIU Shang-hua,TAO Guang-yi,JI Ang.Powder pellets preparation for X-ray fluorescence analysis[J].Chinese Journal of Spectroscopy Laboratory,1998(6):10-16.
[20]
陆安祥,王纪华,潘立刚,等.便携式X射线荧光光谱测定土壤中Cr,Cu,Zn,Pb和As的研究[J].光谱学与光谱分析,2010,30(10):2848-2852.LU An-xiang,WANG Ji-hua,PAN Li-gang.Determination of Cr,Cu,Zn,Pb and As in soil by field portable X-ray fluorescence spectrometry[J].Spectroscopy and Spectral Analysis,2010,30(10):2848-2852.
[21]
梁述廷,刘玉纯,胡浩.X射线荧光光谱法同时测定土壤样品中碳氮等多元素[J].岩矿测试,2004(2):102-108.LIANG Shu-ting,LIU Yu-chun,HU Hao.Determination of C,N and other 36 elements in soil samples by XRF[J].Rock and Mineral Analysis,2004(2):102-108.