Abstract:The accurate and rapid determination of tin in lead ore is of great significance to the comprehensive utilization of mineral resources. AC arc emission spectrometry was employed to determine the tin content in lead ore. Silicon dioxide, aluminum fluoride, sodium fluoride and carbon powder were used as buffers, and germanium was selected as the internal standard element. The analytical line pairs of tin were optimized. The exposure time was 22 s. The standard curve was established by mixing the pure lead oxide spectral material and the synthetic silicate standard material in different proportions, so as to reduce the error caused by the matrix difference. Sn Ⅰ 283.998 nm with little interference and high sensitivity was selected as the analytical line. The interference of tail peak of Pb Ⅰ 283.306 nm on Sn Ⅰ 283.998 nm was deducted by background correction of twofic-point difference method. The limit of detection (LOD) was 0.13 μg/g, and the limit of quantification (LOQ) was 0.43 μg/g. The proposed method was used to analyze the tin content in national first-class reference material and actual sample of lead ore. The relative standard deviations (RSD, n=12) of determination results were between 3.9% and 5.6%. The relative error (RE) ranged from -2.81% to 4.63%. The precision and trueness of the method could meet the technical requirements of the geological and mineral industry standard DZ/T 0130.3-2006.
马景治, 李光一, 董学兵, 李策, 董学林. 交流电弧发射光谱法测定铅矿石中锡[J]. 冶金分析, 2023, 43(2): 39-45.
MA Jingzhi, LI Guangyi, DONG Xuebing, LI Ce, DONG Xuelin. Determination of tin in lead ore by AC arc emission spectrometry. , 2023, 43(2): 39-45.
[1] 徐国栋,王冠,程江,等.应用能谱扫描电镜与X射线衍射等分析技术研究西藏扎西康铅锌矿中伴生元素锰的赋存状态[J].岩矿测试,2014,33(6):808-812. XU Guodong,WANG Guan,CHENG Jiang,et al.Occurrence of manganese in the Zhaxikang lead-zinc deposit from Tibet investigated by energy scanning electron microscope and X-ray diffraction methods[J].Rock and Mineral Analysis,2014,33(6):808-812. [2] 陈波,胡兰,陈园园,等.地质样品中总锡测定方法的研究进展[J].理化检验(化学分册),2017,53(2):236-241. CHEN Bo,HU Lan,CHEN Yuanyuan,et al.Recent progress of research on methods for determination of total tin in geological samples[J].Physical Testing and Chemical Analysis (Part B:Chemical Analysis),2017,53(2):236-241. [3] 郝宏艳,于阗,刘彦庭,等.电感耦合等离子体发射光谱法测定岩石矿物中的锡元素的含量[J].中国科技成果,2021,22(12):44-46. HAO Hongyan,YU Tian,LIU Yanting,et al.Determination of tin in rocks and minerals by inductively coupled plasma emission spectrometry[J].China Science and Technology Achievements,2021,22(12):44-46. [4] 刘晶.电感耦合等离子体发射光谱法测定多金属矿石中的少量锡[J].世界有色金属,2021(8):233-234. LIU Jing.Multi-metal ore by inductor coupling plasma emission spectrometry[J].World Nonferrous Metals,2021(8):233-234. [5] 王小强,夏辉,秦九红,等.过氧化钠碱熔-电感耦合等离子体发射光谱法测定多金属矿中的锡钨钛等主次量成分[J].岩矿测试,2017,36(1):52-58. WANG Xiaoqiang,XIA Hui,QIN Jiuhong,et al.Determination of Sn,W,Ti and other elements in polymetallic ore by inductively coupled plasma-optical emission spectrometry with sodium peroxide fusion[J].Rock and Mineral Analysis,2017,36(1):52-58. [6] Lo Dico G M,Cammilleri G,Macaluso A.Simultaneous determination of As,Cu,Cr,Se, Sn,Cd,Sb and Pb levels in infant formulas by ICP-MS after microwave-assisted digestion:method validation[J].Journal of Environmental & Analytical Toxicology,2015,5(6):1-5. [7] 王学田,丁力,李艳娟,等.X射线荧光光谱法同时测定矿石中钨钼锡[J]. 分析试验室,2015,34(9):1031-1037. WANG Xuetian,DING Li,LI Yanjuan,et al.Simultaneous determination of W,Mo and Sn in ore by X-ray fluorescence spectrometry[J].Chinese Journal of Analysis Laboratory,2015,34(9):1031-1037. [8] 孙慧莹,李小辉,郝胜涛,等.全谱交直流电弧发射光谱仪测定多金属矿中微量锡[J].分析测试技术与仪器,2021,27(2):121-126. SUN Huiying,LI Xiaohui,HAO Shengtao,et al.Determination of trace tin in polymetallic ore on full spectrum AC/DC arc emission spectrometer[J].Analysis and Testing Technology and Instruments,2021,27(2):121-126. [9] 黄光明,薛蒙伟,韩鹏飞,等.密闭消解ICP-AES测定钨矿石和钼矿石中的9种组分[J].光谱实验室,2013,30(2):956-962. HUANG Guangming,XUE Mengwei,HAN Pengfei,et al.Determination 9 elements in tungsten ores and molybdenum ores by ICP-AES after pressurizing decomposition[J].Chinese Journal of Spectroscopy Laboratory,2013,30(2):956-962. [10] 赵学沛.多种酸溶矿ICP-AES测定稀有金属矿中锂铍铌钽锡[J].化学研究与应用,2017,29(11):1714-1718. ZHAO Xuepei.Determination of lithium, beryllium,niobium and tantalum in rare metal ores by four acid soluble ICP-AES[J].Chemical Research and Application,2017,29(11):1714-1718. [11] Agatemor C,Beauchemin D. Matrix effects in inductively coupled plasma mass spectrometry:A review[J].Anal Chim Acta.,2011,706(1):66-83. [12] 郝志红,姚建贞,唐瑞玲,等.交流电弧直读原子发射光谱法测定地球化学样品中银、硼、锡、钼、铅的方法研究[J].地质学报,2016,90(8):2070-2082. HAO Zhihong,YAO Jianzhen,TANG Ruiling,et al.Study on the method for the determination of silver,boron,tin,molybdenum,lead in geochemical samples by AC-arc direct reading atomic emission spectroscopy[J].Acta Geologica Sinica,2016,90(8):2070-2082. [13] 李小辉,孙慧莹,于亚辉,等.交流电弧发射光谱法测定地球化学样品中银锡硼[J].冶金分析,2017,37(4):16-21. LI Xiaohui,SUN Huiying,YU Yahui,et al.Determination of sliver, tin and boron in geochemical sample by alternating current (AC) arc emission spectrometry[J].Metallurgical Analysis,2017,37(4):16-21. [14] 肖细炼,王亚夫,陈燕波,等.交流电弧光电直读发射光谱法测定地球化学样品中银硼锡[J].冶金分析,2018,38(7):27-32. XIAO Xilian,WANG Yafu,CHEN Yanbo,et al.Determination of silver, boron and tin in geochemical samples by alternating current arc optoelectronic direct reading emission spectrometry[J].Metallurgical Analysis,2018,38(7):27-32. [15] Amberger M A, Barth P, Förster O, et al. Direct multi-element determination of trace elements in boron carbide powders by direct current arc atomic emission spectrometry using a CCD spectrometer[J].Mikrochimica Acta,2010,172(3-4):261-267. [16] 王鹤龄,李光一,曲少鹏,等.氟化物固体缓冲剂-交流电弧直读发射光谱法测定化探样品中易挥发与难挥发微量元素[J].岩矿测试,2017,36(4): 367-373. WANG Heling,LI Guangyi,QU Shaopeng,et al. Determination of volatile and nonvolatile trace elements in geochemical samples by fluoride solid buffer-AC arc direct reading emission spectrometry[J].Rock and Mineral Analysis,2017,36(4):367-373. [17] 熊艳.深孔电极载体蒸馏光谱法测定化探样品中八个易挥发元素[J].岩矿测试,2007,26(5):425-427. XIONG Yan.Spectrometric determination of eight volatile elements in geochemical exploration samples with deep hole electrode carrier distillation[J].Rock and Mineral Analysis,2007,26(5):425-427. [18] 杨俊,林庆文,刘瑱,等.固体粉末进样交流电弧法测定区域地球化学调查样品中痕量银、硼、锡、铅[J].化学分析计量,2018,27(3):16-19. YANG Jun,LIN Qingwen,LIU Zhen,et al.Determination of trace Ag,B,Sn and Pb in regional geochemical survey samples by solid powder sample AC arc method[J].Chemical Analysis and Meterage,2018,27(3):16-19. [19] 王彩玉,刘玖芬,李君强,等. AES-7200型专用发射光谱仪在地质样品分析中的应用[J].黄金,2016,37(4):77-80. WANG Caiyu,LIU Jiufen,LI Junqiang,et al.Application of AES-7200 emission spectrometer in geologic samples analysis[J].Gold,2016,37(4):77-80.