昂温 G, 昂温 P S, 1988.外国出版史[M].陈生铮, 译.北京:中国书籍出版社.
Google Scholar
|
董树文, 胡健民, 施炜, 等, 2006.大巴山侏罗纪叠加褶皱与侏罗纪前陆[J].地球学报, 27(5): 403-410.
Google Scholar
|
倪明, 2008.全球石炭纪首个“阶”级“金钉子”的科学突破[N/OL].地质勘查导报, 2008-01-17(5) [2008-02-14].http://www.cigem.gov.cn/ readnews.asp?newsid=13909.
Google Scholar
|
邵济安, 张文兰, 2008.演化中的裂谷带: 五大连池火山岩带[J].地学前缘, 15(6): 241-250.
Google Scholar
|
唐菊兴, 王勤, 杨欢欢, 等, 2017.西藏斑岩-矽卡岩-浅成低温热液铜多金属矿成矿作用、勘查方向与资源潜力[J].地球学报, 38(5): 571-613.
Google Scholar
|
王大珍, 1996.中国盐湖及碱湖中嗜盐菌及嗜碱菌研究简介[C]//郑绵平, 盐湖资源环境与全球变化: 第六届国际盐湖学术讨论会论文选集.北京: 地质出版社: 145-150.
Google Scholar
|
王学求, 张必敏, 于学峰, 等, 2020.金矿立体地球化学探测模型与深部钻探验证[J].地球学报, 41(6): 869-885.
Google Scholar
|
魏乐军, 2000.西藏洞错湖相化学沉积的古气候意义和藏北高原环境的比较盐湖学研究[D].北京: 中国地质大学(北京).
Google Scholar
|
吴昌华, 王俊连, 钟长汀, 1994.“燕辽地区花岗绿岩带区域地质背景”研究报告[R].天津: 地质矿产部天津地质矿产研究所.
Google Scholar
|
夏正楷, 1997.第四纪环境学[M/OL].北京: 北京大学出版社[2008-02-14].http://124.42.30.12/dlib/List.asp?lang=gb& type=& DocGroupID= 2& DocID=6.
Google Scholar
|
新疆维吾尔自治区区域地质调查大队, 1981.1∶20万索尔库里幅区域地质矿产图和调查报告[R].乌鲁木齐: 新疆维吾尔自治区区域地质调查大队.
Google Scholar
|
杨遵仪, 吴顺宝, 殷鸿福, 等, 1991.华南二叠-三叠纪过渡期地质事件[M].北京: 地质出版社: 2-5.
Google Scholar
|
中国地质科学院, 2008.中国地质科学院2007年度十大科技进展成果点评[EB/OL].[2008-02-14].http://www.cags.net.cn/2008/0124/200801242.htm.
Google Scholar
|
Bureau of Geology and Mineral Resources of Xinjiang Uygur Autonomous Region, 1993.Regional geology of Xinjiang Uygur Autonomous Region[M].Beijing: Geological Publishing House(in Chinese with English Summery).
Google Scholar
|
CALMS R B, 1965.Infrared spectroscopic studies on solid oxygen[D].Berkeley: Univ.of California.
Google Scholar
|
CHEN Bailin, CHEN Xuanhua, WANG Xiaofeng, et al., 2002.Analysis of ore-controlling structure of ductile shear zone type gold deposits in Northern Altun area, northwestern China[J].Acta Geologica Sinica, 76(2): 235-243(in Chinese with English abstract).
Google Scholar
|
SHAO Ji’an, ZHANG Wenlan, 2008.The evolving rift belt: Wudalianchi volcanic rock belt[J].Earth Science Frontiers, 15(6):241-250(in Chinese with English abstract).
Google Scholar
|
TANG Juxing, WANG Qin, YANG Huanhuan, et al., 2017.Mineralization, Exploration and Resource Potential of Porphyry-skarn-epithermal Copper Polymetallic Deposits in Tibet[J].Acta Geoscientica Sinica, 38(5): 571-613(in Chinese with English abstract).
Google Scholar
|
WANG Xueqiu, ZHANG Bimin, YU Xuefeng, et al., 2020.Three-dimension Geochemical Patterns of Gold Deposits: Implications for the Discovery of Deep-seated Orebodies[J].Acta Geoscientica Sinica, 41(6): 869-885(in Chinese with English abstract).
Google Scholar
|
The Geological Survey Team of the Xinjiang Uygur Autonomous Region, 1981.Regional Map and Report of the Geology and Mineral Resources for the Suoerkuli sheet at the scale of 1∶200 000[R].Urumqi: The Geological Survey Team of the Xinjiang Uygur Autonomous Region(in Chinese).
Google Scholar
|
World Health Organization, 1970.Factors regulating the immune response: report of WHO Scientific Group[R].Geneva: WHO.
Google Scholar
|
YANG Zunyi, WU Shunbao, YIN Hongfu, et al., 1991.Geological events of Permo-Triassic transitional period in South China[M].Beijing: Geological Publishing House: 2-5(in Chinese).
Google Scholar
|
ZHENG Mianping, 2001a.Study advances in saline lake resources on the Qinghai-Tibet plateau[J].Acta Geologica Sinica, 22(2):97-102(in Chinese with English abstract).
Google Scholar
|
ZHENG Mianping, 2001b.On Chinese salt lakes[J].Mineral Deposits, 20(2): 181-189(in Chinese with English abstract).
Google Scholar
|