[1] 郭海花,常象春,张金 亮. 兰坪坳 陷上三 叠统原 油地球 化学
及有机成矿意义[J]. 长安 大学学 报 :地 球科 学版,2003,25
(4):1 5.
[2] 王 涛,刘淑文,隗 合明,等. 热 水沉积矿床研究的现状与趋
势[J]. 地球科学与环境学报,2004,26(4):6 10.
[3] T urner-Peterson C E,Fishm an N S,H at ch er P G,et al. Nature
and Role of Organic Mat t er in S andst one Uranium Deposit
s[M] . Berlin :S pringer Press,1993.
[4] Gi ze A. The Analysis of Organic Mat ter in Ore Deposit s
[M] . Berlin :S pringer Press,1993.
[5] Jehlicka J,Rou zau d J N. Transmi ssion Elect ron Microscopy
of Carbonaceaou s Mat t er in P recambrian S hungi te f rom
Karelia[M] . Berlin :S pringer Press,1993.
[6] Landai s P, Du bes sy J,Poty B, et al. Th ree Examples Illust
rating the Analysi s of Organic Mat ter As sociat ed wi th U ranium
Ores[J] . O re Geochem,1990,16 :601 608.
[7] Landais P. Organic Geochemist ry of Sediment ary Uranium
ore Deposi ts[J] . Ore Geol ogy Review s,1996,11 :33 51.
[8] Liu A,Gonzalez D. Modelin g Adsorpt ion of Copper (II),
Cadmium (II) an d Lead (II) on Pu ried H umic Acid[J] .
Langmui r, 2000,16 :3 902 3 909.
[9] Ping Zhou,H ui Yan,Baohu a Gu. C om pet it ive Complexation
of Metal Ion s w ith Humi c Su bst ances [J] . Chemosphere
, 2005,58 :1 327 1 337.
[10] Lubal P,Fet sch D, iroky’ D S,et al. Potent io-M et ric and
Spect roscopi c Study of Uranyl Complexation w ith Humic
Acid s[J] . Talant a, 2000,51 :977 991.
[11] Rabin ovi tch E,Belf ord R L. Spect roscopy an d Phot ochemi st
ry of Urany l Compou nds[M] . New York :Pergam on Press,
1964.
[12] Choppin G R. Humi cs and Radionuclide Mig rat ion[J] . Radiochim
Acta,1988,45 :23 28.
[13] Goncalves M L S,M ota A M A M. Compl exes of Vanadyl
and Uranyl Ions wi th the Chelating Groups of Humi c Mat ter
[J] . T alant a, 1987,34 :839 847.
[14] Tem pleton G D, Chasteen N D. Vanadium-Ful vic Acid Chemist
ry :Conf ormati on al and Bindin g Studies by El ectron S pin
Probe Tech niques[J] . Geochim Cosm ochim Acta,1980,44 :
741 752.
[15] Wi lson D E,Kin ney P. Eff ect s of Polymeric Charge Variati
ons on the Prot on-metal Ion Equilib ri a of Humi c Materials
[J] . Limnol Oceanog r, 1977,22 :281 289.
[16] Wood S A. The Role of H umic S ubst ances in the Transpo rt
and Fixat ion of Metals of E conomic In teres t (Au,Pt,Pd,
U,V) [J] . Ore Geology Review s,1996,11 :1 31.
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CHEN Zheng-le,WANG Ping-an,WANG Yong,et al.Ore-controlling Tectonic Analysis and Ore-prospecting in Shannan Mining Area of Xiangshan Uranium Ore-field, Jiangxi[J].Journal of Earth Sciences and Environment,2013,35(04):8.
[2]王丹,吴柏林,寸小妮,等.柴达木盆地多种能源矿产同盆共存及其地质意义[J].地球科学与环境学报,2015,37(03):55.
WANG Dan,WU Bai-lin,CUN Xiao-ni,et al.Coexistence of Multiple Energy Minerals in Qaidam Basin and Its Geological Significance[J].Journal of Earth Sciences and Environment,2015,37(04):55.
[3]叶永钦,叶松鑫,许幼,等.粤北长江铀矿田长排地区花岗岩体地球化学特征及其意义[J].地球科学与环境学报,2015,37(06):101.
YE Yong-qin,YE Song-xin,XU You,et al.Geochemical Characteristics of Granite Body in Changpai Area of Changjiang Uranium Orefield, the Northern Guangdong and Their Significance[J].Journal of Earth Sciences and Environment,2015,37(04):101.
[4]安国堡,辛存林,杨涛,等.甘肃龙首山成矿带地质构造演化及其对铀成矿的控制作用[J].地球科学与环境学报,2016,38(06):803.
AN Guo-bao,XIN Cun-lin,YANG Tao,et al.Geotectonic Evolution of Longshoushan Metallogenic Belt in Gansu and Its Control Function on Uranium Mineralization[J].Journal of Earth Sciences and Environment,2016,38(04):803.
[5]王倩,胡宝群,宋金如,等.磷灰石吸附铀试验及其铀成矿意义——以江西相山矿田为例[J].地球科学与环境学报,2016,38(06):813.
WANG Qian,HU Bao-qun,SONG Jin-ru,et al.Experiment on Apatite Adsorbing Uranium and Its Implication on Uranium Mineralization—Taking Xiangshan Orefield in Jiangxi as an Example[J].Journal of Earth Sciences and Environment,2016,38(04):813.
[6]李卫红,徐高中.鄂尔多斯盆地后期改造与砂岩型铀成矿关系[J].地球科学与环境学报,2006,28(03):19.
LI Wei-hong,XU Gao-zhong.Relationship Between Late Reformation and Formation
of Sandstone-type UraniumOre in Ordos Basin[J].Journal of Earth Sciences and Environment,2006,28(04):19.
[7]耿英英,刘章月*,黄少华,等.准噶尔盆地东北缘卡拉麦里花岗质岩体年代学、地球化学特征及铀成矿潜力[J].地球科学与环境学报,2022,44(01):20.[doi:10.19814/j.jese.2021.08054]
GENG Ying-ying,LIU Zhang-yue*,HUANG Shao-hua,et al.Geochronology and Geochemistry of Kalamaili Granitic Rocks and Uranium Ore-forming Potential at the Northeastern Margin of Junggar Basin, China[J].Journal of Earth Sciences and Environment,2022,44(04):20.[doi:10.19814/j.jese.2021.08054]