M nch U;Blum N;Halbach P,Mineralogical and geochemical features of sulphide chimneys from the MESO zone,Central Indian Ridge,Chemical Geology,1999.
[2]
Jiang Shaoyong;Ma Fang;Zhao Kuidong;Jiang Yaohui Ling Hongfei Ni Pei,Origin of iron deposits in the Ningwu volcanic basin,Lower Yangtze River district,Chinas geochemical and isotopic evidence,2006.
[3]
Hou Tong;Zhang Zhaochong;Du Yangsong;Li Shunting Geology of the Gushan iron oxide deposit associated with dioritic porphyries,eastern Yangtze craton,SE China [J] 2009 doi:10.1080/00206810902823941
[4]
Harlov DE. ;Andersson UB. ;Forster HJ. ;Nystrom JO. ;Dulski P. ;Broman C.,Apatite-monazite relations in the Kiirunavaara magnetite-apatite ore, northern Sweden,Chemical geology?,2002, 191(1-3).
[5]
Gunther D. ;Frischknecht R. ;Heinrich CA. ;Audetat A.,Quantitative analysis of major, minor and trace elements in fluid inclusions using laser ablation inductively coupled plasma mass spectrometry,Journal of Analytical Atomic Spectrometry?,1998, 13(4).
[6]
Frietsch R;Perdahl J A Rare earth elements in apatite and magnetite in Kiruna type iron ores and some other iron ore types [J] 1995 doi:10.1016/0169-1368(94)00015-G
[7]
Fdlfelt,The Tj rroj kka Apatite-Iron and Cu(-Au) Deposits,Northern Sweden Products of One Ore Forming Event,Lule University of Technology,Sweden,2007.
[8]
Danyushevsky L V;Robinson P;McGoldrick P;Large R,Gilbert S,LA-ICPMS of sulphides:Evaluation of an XRF glass disc standard for analysis of different sulphide matrixes,Geochimica et Cosmochimica Acta,2003.
[9]
Miguel G;Charles K;Lawrence D M;Roberto M,REE in skarn systems:A LA-ICP-MS study of garnets from the Crown Jewel gold deposit,Geochimica et Cosmochimica Acta,2008.
[10]
McGoldrick P J;Maier R C,Pyrite trace element halos to northern Australian sediment-hosted Zn-Pb-Ag deposits Goldschmidt Conference,Japans Gsochimica et Cosmochimica Acta,2006(18).
[11]
Marshall O.J,Cathodoluminescence of Geological Materials,Uniwin Hyman,Boston,1988.
[12]
Mao Jingwen;Wang Yitian;Lehmann B;Yu Jinjie.Du Andao,Mei Yanxiong,Li Yongfeng,Zang Wenshuan,Stein H J,Zhou Taofa Molybdenite Re-Os and albite 40Ar/39Ar dating of Cu-Au-Mo and magnetite porphyry systems in the Yangtze River valley and metallogenic implications [J] 2006(3-4) doi:10.1016/j.oregeorev.2005.11.001
[13]
Large R R;Maslennikow V V;Robert F;Danyushevsky L V Chang Zhaoshan Multistage sedimentary and metamorphic origin of pyrite and gold in the Giant Sukhoi Log Deposit,Lena gold Province,Russia [J] 2007(7) doi:10.2113/gsecongeo.102.7.1233
[14]
Klemm D D,Untersuchungen fiber die Misehkristall bildung im Dreieek diagramm FeS2-CoS2-NiS:und ihre Beziehungen zum Aufbau der naturlichen "Bravoite",Neues Jahrb.Mineral.Monatsh,1962.
[15]
Clack C;Grguric B;Schmidt M A,Genetic implications of pyrite chemistry from the Palaeoproterozoic Olary Domain and overlying Neoproterozoic Adelaidean sequences,northeastern South Australia,Ore Geology Reviews,2004.
[16]
Carew M J;Mark G;Oliver N H S;Pearson N,Trace element geochemistry of magnetite and pyrite in Fe oxide (Cu-Au) mineralised systems:Insights into the geochemistry of oreforming fluids,Japan:Geochimica et Cosmochimica Acta,2006.
[17]
I. B. Butler ;R. W. Nesbitt,Trace element distributions in the chalcopyrite wall of a black smoker chimney: insights from laser ablation inductively coupled plasma mass spectrometry (LA-ICP-MS),Earth and Planetary Science Letters?,1999, 167(3-4).
Zhu Chen;Sverjensky D A Partitioning of F-C1-OH between minerals and hydrothermal fluids [J] 1991(07) doi:10.1016/0016-7037(91)90028-4
[35]
Zhou Taofa;Fan Yu;Yuan Feng;Zhang Lejun Qian Bing Ma Liang Yang Xifei David R C,Geochronology and significance of volcanic rocks in the Ning-Wu Basin of China,Science China (Earth Science),2011(02).
[36]
Yang X M;Lentz D R;Sylvester P J,Gold contents of sulphide minerals in granitoids from southwestern New Brunswick,Canada,Mineral Deposits,2006.
[37]
Weiss, Y ;Griffin, WL ;Elhlou, S ;Navon, O,Comparison between LA-ICP-MS and EPMA analysis of trace elements in diamonds,Chemical geology?,2008, 252(3/4).
[38]
Watling R J;Herbert H K;Abell I D The application of ablation-inductively coupled plasma-mass spectrometry (LA-ICP-MS) to the analysis of selected sulphide minerals [J] 1995(1-2) doi:10.1016/0009-2541(95)00025-H
[39]
Sba L K;Chappll B W,Apatite chemical composition,determined by electron microprobe and laser-ablation inductively coupled plasma mass spectrometry,as a probe into granite petrogenesis,Geochimica et Cosmochimica Acta,1999(22).
[40]
Ridley W I;Lichte F E,Major,trace and ultratrace element analysis by laser ablation ICP-MS,1998.
[41]
Rhodes A L;Oreskes N;Sheets S,Geology and Rare Earth Element Geochemistry of Magnetite Deposits at El Laco,Chile In:Skinner BJ (ed) Geology and ore deposits of the Central Andes,Society of Economic Geologists,1999.
Oliver L R,Pyrite composition and ore genesis in the Prince Lyell copper deposit,Mt Lyell mineral field,western Tasmania,Australia,Ore Geology Reviews,1996.
[44]
Bizzarro M. ;Simonetti A. ;Stevenson RK. ;Kurszlaukis S.,In situ Sr-87/Sr-86 investigation of igneous apatites and carbonates using laser-ablation MC-ICP-MS,Geochimica et Cosmochimica Acta?,2003, 67(2).
[45]
Belousova E A;Walters S;Griffin W L;OReilly S Y,Trace element signatures of apatites from granitoids of Mount Isa Inlier,north-west Queensland,Australia,Australian Journal of Earth Sciences,2001.
[46]
Allen R;Martinsson O;Weihed P,Svecofennian OreForming Environments:Volcanic-Associated Zn-Cu-Au-Ag,Intrusion-Associated Cu-Au,Sediment-Hosted Pb-Zn,and Magnetite-Apatite Deposits of Northern Sweden,Society of Economic Geologists Guidebook Series,2004.
[47]
周涛发,张乐骏,袁峰,David R Cooke,安徽铜陵新桥Cu-Au-S 矿床黄铁矿微量元素LA-ICP-MS原位测定及其对矿床成因的制约,地学前缘,2010(02).