地学前缘 ›› 2023, Vol. 30 ›› Issue (2): 239-258.DOI: 10.13745/j.esf.sf.2022.2.87
收稿日期:
2022-01-11
修回日期:
2022-04-27
出版日期:
2023-03-25
发布日期:
2023-01-05
通信作者:
刘晓鸿
作者简介:
王璐琳(1985—),女,博士,副研究员,主要从事第四纪地质学、地质遗迹与地质公园调查评价研究工作。E-mail: wangllin@cugb.edu.cn
基金资助:
WANG Lulin1(), LIU Xiaohong1,*(
), ZHANG Zhiguang2
Received:
2022-01-11
Revised:
2022-04-27
Online:
2023-03-25
Published:
2023-01-05
Contact:
LIU Xiaohong
摘要:
香港世界地质公园东平洲平洲组由于缺乏地质年代学数据,其时代归属一直存在较大争议。在该组中段下部新发现火山岩夹层,经薄片鉴定为流纹质玻屑凝灰岩,进行锆石U-Pb年代学和岩石地球化学研究,并在此基础上探讨其岩石成因和构造意义。锆石LA-ICP-MS U-Pb定年结果表明平洲组火山岩形成于早白垩世。地球化学数据显示,流纹质玻屑凝灰岩全碱含量较高(w(Na2O+K2O)=5.58%~9.45%),轻稀土元素分馏明显,轻稀土富集,重稀土亏损,Eu的负异常明显;微量元素呈现Rb、Ba等大离子亲石元素相对富集,高场强元素Th、U、Pb、Zr等相对富集,Sr强烈亏损,Ta、Nb相对亏损的特征。表明研究区平洲组火山岩是由大陆地壳的深熔作用形成,形成于太平洋板块俯冲引起的弧后伸展环境,是香港早白垩世火山活动最后阶段的产物,与我国东南沿海早白垩世大规模岩石圈伸展减薄和岩浆作用有关。本文的岩石地球化学和同位素年代学数据为东平洲平洲组的最新资料,为我国东南部早白垩世火山活动和构造演化提供了新的年代数据。
中图分类号:
王璐琳, 刘晓鸿, 张志光. 香港世界地质公园东平洲平洲组新发现火山岩的锆石U-Pb测年、地球化学及地质意义[J]. 地学前缘, 2023, 30(2): 239-258.
WANG Lulin, LIU Xiaohong, ZHANG Zhiguang. Discovery of volcanic rocks in the Pingchau Formation in Tungpingchau, Hong Kong UNESCO Global Geopark: Zircon U-Pb geochronology, geochemistry and geological implications[J]. Earth Science Frontiers, 2023, 30(2): 239-258.
图3 a—研究区地质简图(据文献[31]修改); b—平洲组岩性柱状图
Fig.3 (a) Geological sketch map of the study area (modified after [31]) and (b) stratigraphic profile of the Pingchau Formation
图4 平洲组火山岩野外露头、手标本及显微结构照片 (a) 流纹质玻屑凝灰岩野外露头;(b) 流纹质玻屑凝灰岩手标本图片;(c) 玻屑多呈鸡骨状和弧面棱角状;(d) Qtz—石英;Kfs—钾长石;Pl—斜长石。
Fig.4 Field outcrop (a), hand specimen (b), and thin sections (c, d) of rhyolitic vitric tuff from the key bed of the Pingchau Formation
图6 平洲组火山岩全碱-硅(TAS)图解(a)(底图据文献[44])和SiO2-K2O图解(b)(底图据文献[45])
Fig.6 (a) Geochemical classification diagram (adapted from [44]) and (b) plot of (Na2O+K2O) vs. SiO2 (adapted from [45]) for rhyolitic vitric tuff samples from the Pingchau Formation
图7 (a) 平洲组火山岩稀土元素球粒陨石标准化配分曲线(球粒陨石标准值引自文献[46]); (b) 平洲组火山岩微量元素正常型中洋脊玄武岩标准化配分曲线(正常型中洋脊玄武岩标准值引自文献[48])
Fig.7 (a) Chondrite-normalized REE patterns (modified from [46]), and (b) N-MORB-normalized spidergram (modified from [48]) for rhyolitic vitric tuff of the Pingchau Formation
图8 流纹质玻屑凝灰岩样品(PC1)锆石颗粒CL图像、测点位置及年龄(a)锆石U-Pb谐和曲线(b)和加权平均图解(c)
Fig.8 (a) CL images, (b) concordia plots of LA-ICP-MS zircon U-Pb ages, and (c) weighted mean age plot for the rhyolitic vitric tuff sample PC1 from the Pingchau Formation
图9 流纹质玻屑凝灰岩样品(PC9)锆石颗粒CL图像、测点位置及年龄(a)锆石U-Pb谐和曲线(b)和加权平均图解(c)
Fig.9 (a) CL images, (b) concordia plot of LA-ICP-MS zircon U-Pb ages, and (c) weighted mean age plot for rhyolitic vitric tuff sample PC9 from the Pingchau Formation
![]() |
表3 香港地区和深圳大鹏半岛中侏罗世到早白垩世火山活动相关性概要表
Table 3 Chronological association between Pingchhao volcanic rocks and Middle-Jurassic to Early-Cretaceous volcanic activities in Hong Kong and Dapeng Peninsula, Shenzhen
![]() |
特征 | 滘西洲火山岩群(141 Ma)[ | 平洲组火山岩 ((140.3±0.8) Ma,(139.3±0.9) Ma) | ||
---|---|---|---|---|
粮船湾凝灰岩 | 清水湾熔岩或凝灰岩 | 流纹质玻屑凝灰岩 | ||
颜色 | 粉灰色 | 蓝灰色或黑色 | 灰色或浅灰色 | |
结构 | 含晶屑细火山灰玻屑凝灰岩 | 斑状熔岩和细火山灰玻屑凝灰岩 | 细火山灰玻屑凝灰岩 | |
成分 | 高硅流纹岩(SiO2含量>75%) | 粗面英安岩或高硅流纹岩(SiO2含量为64%~77%) | 高硅流纹岩(平均SiO2含量为74.44%) | |
斑晶 | 石英、奥长石、正长石、条纹长石、透长石和云母(约20%) | 钠长石、透长石、微纹长石、正长石、石英(<8%) | 长石、石英 | |
岩屑 | 很少 | 很少 | 很少 | |
玻璃质 | 很少 | 常见 | 常见 | |
构造 | 无熔结或强熔结 | 流纹状熔结或强熔结 | 流纹状或块状 |
表4 香港滘西洲火山岩群及平洲组新发现火山岩的岩石学特征
Table 4 Field and petrographic characteristic of the newly discovered volcanic rocks from the Pingchau Formation and Kausaichau Volcanic Group
特征 | 滘西洲火山岩群(141 Ma)[ | 平洲组火山岩 ((140.3±0.8) Ma,(139.3±0.9) Ma) | ||
---|---|---|---|---|
粮船湾凝灰岩 | 清水湾熔岩或凝灰岩 | 流纹质玻屑凝灰岩 | ||
颜色 | 粉灰色 | 蓝灰色或黑色 | 灰色或浅灰色 | |
结构 | 含晶屑细火山灰玻屑凝灰岩 | 斑状熔岩和细火山灰玻屑凝灰岩 | 细火山灰玻屑凝灰岩 | |
成分 | 高硅流纹岩(SiO2含量>75%) | 粗面英安岩或高硅流纹岩(SiO2含量为64%~77%) | 高硅流纹岩(平均SiO2含量为74.44%) | |
斑晶 | 石英、奥长石、正长石、条纹长石、透长石和云母(约20%) | 钠长石、透长石、微纹长石、正长石、石英(<8%) | 长石、石英 | |
岩屑 | 很少 | 很少 | 很少 | |
玻璃质 | 很少 | 常见 | 常见 | |
构造 | 无熔结或强熔结 | 流纹状熔结或强熔结 | 流纹状或块状 |
[1] |
SEWELL R J, CAMPBELL S D G. Geochemistry of coeval Mesozoic plutonic and volcanic suites in Hong Kong[J]. Journal of the Geological Society, 1997, 154(6): 1053-1066.
DOI URL |
[2] |
DARBYSHIRE D P F, SEWELL R J. Nd and Sr isotope geochemistry of plutonic rocks from Hong Kong: implications for granite petrogenesis, regional structure and crustal evolution[J]. Chemical Geology, 1997, 143(1/2): 81-93.
DOI URL |
[3] |
CAMPBELL S D G, SEWELL R J. Structural control and tectonic setting of Mesozoic volcanism in Hong Kong[J]. Journal of the Geological Society, 1997, 154(6): 1039-1052.
DOI URL |
[4] |
SEWELL R J, DAVIS D W, CAMPBELL S D G. High precision U-Pb zircon ages for Mesozoic igneous rocks from Hong Kong[J]. Journal of Asian Earth Sciences, 2012, 43(1): 164-175.
DOI URL |
[5] |
LI Y H M, ZHOU M F, LAI K W, et al. Geochemical and geochronological constraints on Late Jurassic volcanic rocks at Tuen Mun, Hong Kong, with implications for the Palaeo-Pacific subduction[J]. International Geology Review, 2014, 56(4): 408-429.
DOI URL |
[6] | 李作明, 陈金华, 何国雄. 香港古生物和地层(上册)[M]. 北京: 科学出版社, 1997: 1-206. |
[7] | 李作明, 陈金华, 何国雄. 香港古生物和地层(下册)[M]. 北京: 科学出版社, 1998: 1-242. |
[8] | 李作明, 陈金华, 何国雄, 等. 香港的地层序列[J]. 地层学杂志, 1997, 21(3): 161-182. |
[9] | 李作明. 香港地区地层的研究进程及划分对比[J]. 广东地质, 1997, 12(4): 1-15. |
[10] | 李作明. 香港地质研究史略[J]. 广东地质, 1997, 12(2): 1-4. |
[11] | SEWELL R J, CAMPBELL S D G, FLETCHER C J N, et al. The pre-quaternary geology of Hong Kong[M]. Hong Kong: Geotechnical Engineering Office, Civil Engineering Department, the Government of the Hong Kong Special Administrative Region, 2000: 1-200. |
[12] | CAMPBELL S D G, SEWELL R J. A proposed revision of the volcanic stratigraphy and related plutonic classification of Hong Kong[J]. Hong Kong Geologist, 1998, 4: 1-11. |
[13] |
DAVIS D W, SEWELL R J, CAMPBELL S D G. U-Pb dating of Mesozoic igneous rocks from Hong Kong[J]. Journal of the Geological Society, 1997, 154(6): 1067-1076.
DOI URL |
[14] | SEWELL R J, CAMPBELL S D G, DAVIS D W. Three new U-Pb ages from igneous rocks in the NE new territories of Hong Kong and their structural significance[J]. Hong Kong Geologist, 1998, 4: 31-36. |
[15] |
SEWELL R J, TANG D L K, CAMPBELL S D G. Volcanic-plutonic connections in a tilted nested caldera complex in Hong Kong[J]. Geochemistry, Geophysics, Geosystems, 2012, 13(1): 1-17.
DOI URL |
[16] | SEWELL R J. Geochemical atlas of Hong Kong[M]. Hong Kong: Geotechnical Engineering Office, Civil Engineering Department, the Government of Hong Kong Special Administrative Region, 1999: 1-120. |
[17] | SEWELL R J. Absolute age-dating of Hong Kong volcanic and plutonic rocks, superficial deposits, and faults[M]. Hong Kong: Geotechnical Engineering Office, Civil Engineering Department, the Government of Hong Kong Special Administrative Region, 2001: 1-153. |
[18] |
CAMPBELL S D G, SEWELL R J, DAVIS D W, et al. New U-Pb age and geochemical constraints on the stratigraphy and distribution of the Lantau Volcanic Group, Hong Kong[J]. Journal of Asian Earth Sciences, 2007, 31(2): 139-152.
DOI URL |
[19] | NAU P S. Geological notes on the sedimentary rocks of Ping Chau Island, Mirs Bay, Hong Kong[J]. Annals of the Geographical, Geological and Archaeological Society, 1979, 7: 33-41. |
[20] | TATLOR G, WORKMAN D R, PEART M R. The rocks of Ping Chau, Mirs Bay, Hong Kong[J]. Geological Society of Hong Kong Newsletter, 1990, 8: 46-50. |
[21] | LEE C M, ATHERTON M J, WU S Q. Discovery of angiosperm fossils from Hong Kong-with discussion on the age of the Ping Chau Formation[J]. Geological Society of Hong Kong Newsletter, 1991, 9: 50-60. |
[22] | JOMES N S. The sedimentology of the (Devonian) Bluff Head Formation, New Territories, Hong Kong, with sedimentological notes on other strata examined within the area[R]. British Geological Survey Technical Report WH/95/101R. British Geological Survey. U. K., 1995: 60-68. |
[23] | KEMP S J, STYLES M T, MERRIMAN R J. Mineralogy of Tertiary sedimentary rocks from Ping Chau, Hong Kong[R]. British Geological Survey Technical Report WG/97/27C. British Geological Survey. U. K., 1997: 1-16. |
[24] | 周志炎, 李浩敏, 曹正尧, 等. 香港坪洲岛若干白垩纪植物化石[J]. 古生物学报, 1990, 29(4): 415-426, 513. |
[25] | WU Q J, NIU B S. The characteristic of fossil plants and age of strata of Ping Chau Island, Mirs Bay, Hong Kong[J]. Geological Society of Hong Kong Newsletter, 1989, 7(4): 2-11. |
[26] | NIU B S, JIANG Q Q, WU Q J. Spore pollen flora from Ping Chau Island, Mirs Bay, Hong Kong[J]. Geological Society of Hong Kong Newsletter, 1990, 8(2): 25-29. |
[27] | 吴起俊, 钮栢燊. 香港平洲岛地层的植物和孢粉化石特征及时代归属[J]. 热带地理, 1991, 11(1): 25-31. |
[28] | LEE C M, CHEN J H, HE G X, et al. On the age of the Ping Chau Formation[J]. Geological Society of Hong Kong Newsletter, 1991, 9: 34-49. |
[29] | 吴舜卿. 根据植物化石讨论香港平洲组的地质时代[J]. 广东地质, 1999, 14(3): 5-9. |
[30] | 姚素平, 胡文瑄, 陈龙生, 等. 香港坪洲岛早第三纪地层发现优质烃源岩[J]. 科学通报, 2004, 49(24): 2596-2604. |
[31] | Kat O Chau, Hong Kong Geological Survey Sheet 4, Solid and Superficial Geology, 1∶20 000 Series HGM20[M]. Hong Kong: Geotechnical Engineering Office, Civil Engineering Department, the Government of Hong Kong Special Administrative Region, 1992: 1-5. |
[32] |
LI X H. Cretaceous magmatism and lithospheric extension insoutheast China[J]. Journal of Asian Earth Sciences, 2000, 18(3): 293-305.
DOI URL |
[33] |
ZHOU X M, SUN T, SHEN WZ, et al. Petrogenesis of Mesozoic granitoids and volcanic rocks in South China: a response to tectonic evolution[J]. Episodes, 2006, 29(1): 26-33.
DOI URL |
[34] | LAI K W. Stratigraphy of the Ping Chau Formation, Hong Kong[J]. Geological Society of Hong Kong Newsletter, 1991, 9(2): 3-23. |
[35] |
LIU Q, YU J H, WANG Q, et al. Ages and geochemistry of granites in the Pingtan-Dongshan Metamorphic Belt, Coastal South China: new constraints on Late Mesozoic magmatic evolution[J]. Lithos, 2012, 150: 268-286.
DOI URL |
[36] |
LIU S W, PAN Y M, XIE Q L, et al. Geochemistry of thepaleoproterozonic Nanying granitic gneisses in the Fuping complex: implications for the tectonic evolution of the Central Zone, North China Craton[J]. Journal of Asian Earth Sciences, 2005, 24(5): 643-658.
DOI URL |
[37] |
YANG P T, LIU S W, LIQ G, et al. Geochemistry and zircon U-Pb-Hf isotopic systematics of the Ningshan granitoid batholith, middle segment of the South Qinling belt, Central China: constraints on petrogenesis and geodynamic processes[J]. Journal of Asian Earth Sciences, 2012, 61: 166-186.
DOI URL |
[38] |
ZHANG F, LIU S W, CHEN X, et al. Xiba granitic pluton in the Qinlingorogenic belt, central China: its petrogenesis and tectonic implications[J]. Acta Geologica Sinica (English Edition), 2012, 86(5): 1128-1142.
DOI URL |
[39] |
ANDERSEN T. Correction of common lead in U-Pb analyses that do not report 204Pb[J]. Chemical Geology, 2002, 192(1/2): 59-79.
DOI URL |
[40] |
LIU Y S, GAO S, HU Z C, et al. Continental and oceanic crust recycling-induced melt-peridotite interactions in thetrans-north China orogen: U-Pb dating, Hf isotopes and trace elements in zircons from mantle xenoliths[J]. Journal of Petrology, 2009, 51(1/2): 537-571.
DOI URL |
[41] |
LIU Y S, HU Z C, ZONG K Q, et al. Reappraisement and refinement of zircon U-Pb isotope and trace element analyses by LA-ICP-MS[J]. Chinese Science Bulletin, 2010, 55(15): 1535-1546.
DOI URL |
[42] |
WANG W, LIU S W, FENG Y G, et al. Chronology, petrogenesis and tectonic setting of the Neoproterozoic Tongchang dioritic pluton at the northwestern margin of the Yangtze Block: constraints from geochemistry and zircon U-Pb-Hf isotopic systematics[J]. Gondwana Research, 2012, 22(2): 699-716.
DOI URL |
[43] |
WANG W, LIU S W, WILDE S A, et al. Petrogenesis and geochronology of Precambrian granitoid gneisses in western Liaoning Province: constraints on Neoarchean to Early Paleoproterozoic crustal evolution of the North China Craton[J]. Precambrian Research, 2012, 222/223: 290-311.
DOI URL |
[44] | LE MAITRE R W, BATEMAN P, DUDEK A, et al. A classification of igneous rocks and glossary of terms[M]. Oxford: Blackwell, 1989: 1-256. |
[45] |
RICKWOOD P C. Boundary lines within petrologic diagrams which use oxides of major and minor elements[J]. Lithos, 1989, 22(4): 247-263.
DOI URL |
[46] | TAYLOR S R, MCLENNAN S M. The continental crust: its composition and evolution[M]. Oxford: Blackwell Scientific Publications, 1985: 1-312. |
[47] |
LI P J, YU X Q, LI H Y, et al. Jurassic-Cretaceous tectonic evolution of Southeast China: geochronological and geochemical constraints of Yanshanian granitoids[J]. International Geology Review, 2013, 55(10): 1202-1219.
DOI URL |
[48] |
HOFMANN A W. Chemical differentiation of the Earth: the relationship between mantle, continental crust, and oceanic crust[J]. Earth and Planetary Science Letters, 1988, 90(3): 297-314.
DOI URL |
[49] |
SIVELL W J, WATERHOUSE J B. Petrogenesis of Gympie Group volcanics: evidence for remnants of an Early Permian volcanic arc in eastern Australia[J]. Lithos, 1988, 21(2): 81-95.
DOI URL |
[50] | 李昌年. 火成岩微量元素岩石学[M]. 武汉: 中国地质大学出版社, 1992: 1-195. |
[51] |
MARTIN H. Adakitic magmas: modern analogues of archaean granitoids[J]. Lithos, 1999, 46(3): 411-429.
DOI URL |
[52] |
HOSKIN P W O, BLACK L P. Metamorphic zircon formation by solid-state recrystallization of protolith igneous zircon[J]. Journal of Metamorphic Geology, 2000, 18(4): 423-439.
DOI URL |
[53] |
BELOUSOVA E, GRIFFIN W, O’REILLY S Y, et al. Igneous zircon: trace element composition as an indicator of source rock type[J]. Contributions to Mineralogy and Petrology, 2002, 143(5): 602-622.
DOI URL |
[54] |
COHEN K M, FINNEY S C, GIBBARD P L, et al. The ICS international chronostratigraphic chart[J]. Episodes, 2013, 36(3): 199-204.
DOI URL |
[55] | 梅村, 唐跃林, 张崧, 等. 深圳大鹏半岛国家地质公园中生代火山地层的时代讨论[J]. 地层学杂志, 2011, 35(4): 454-462. |
[56] | 梅村, 唐跃林, 张崧, 等. 深圳大鹏半岛中生代火山岩地质地貌特征: 以大鹏半岛国家地质公园为例[J]. 热带地理, 2010, 30(4): 341-347. |
[57] | 邢光福, 吴振扬, 陶奎元, 等. 香港国家地质公园粮船湾组火山岩岩石学研究[J]. 中国地质, 2011, 38(4): 1079-1093. |
[58] | 苏伟贤, 邓丽君, 萧伟立. 香港地质[M]. 香港: 香港特别行政区政府, 2009: 1-104. |
[59] | 王德滋, 杜杨松. 东南沿海地区中生代火山-侵入杂岩形成的构造背景[J]. 矿物岩石地球化学通讯, 1990, 9(3): 186-188. |
[60] | 舒良树, 王德滋. 北美西部与中国东南部盆岭构造对比研究[J]. 高校地质学报, 2006, 12(1): 1-13. |
[61] | 毛建仁, 厉子龙, 叶海敏. 华南中生代构造-岩浆活动研究: 现状与前景[J]. 中国科学: 地球科学, 2014, 44(12): 2593-2617. |
[62] | 毛建仁, 叶海敏, 厉子龙, 等. 华南中生代岩浆活动研究: 现状和前景[J]. 地质学报, 2013, 87(增刊1): 137-138. |
[63] | 徐夕生, 谢昕. 中国东南部晚中生代—新生代玄武岩与壳幔作用[J]. 高校地质学报, 2005, 11(3): 318-334. |
[64] | 舒良树. 华南构造演化的基本特征[J]. 地质通报, 2012, 31(7): 1035-1053. |
[65] | 张岳桥, 董树文, 李建华, 等. 华南中生代大地构造研究新进展[J]. 地球学报, 2012, 33(3): 257-279. |
[66] |
WANG Y J, FAN W M, ZHANG G W, et al. Phanerozoic tectonics of the South China Block: key observations and controversies[J]. Gondwana Research, 2013, 23(4): 1273-1305.
DOI URL |
[67] | 邱家骧, 王人镜, 王方正, 等. 长江下游中生代火山岩岩石化学特征及成因分析[J]. 地球科学: 中国地质大学学报, 1981, 6(1): 170-182. |
[68] | 赵明德, 张培垚. 浙江板块构造初探[J]. 地质学报, 1983, 57(4): 369-378. |
[69] | 霍玉华. 我国东南沿海区中生代火山岩形成的构造环境[J]. 地球化学, 1985, 14(3): 255-263. |
[70] | 陶奎元, 黄光昭, 王美星, 等. 中国东南部碎斑熔岩基本特征及成因机理的探讨[J]. 中国地质科学院南京地质矿产研究所所刊, 1985, 6(1): 1-21. |
[71] | 毛建仁. 大陆扩张裂解型钙碱性系列火山带研究[J]. 矿物岩石地球化学通讯, 1994, 13(2): 106-109. |
[72] | 舒良树, 周新民, 邓平, 等. 中国东南部中、 新生代盆地特征与构造演化[J]. 地质通报, 2004, 23(增刊2): 876-884. |
[73] |
SHU L S, ZHOU X M, DENG P, et al. Mesozoic tectonic evolution of the Southeast China Block: new insights from basin analysis[J]. Journal of Asian Earth Sciences, 2009, 34(3): 376-391.
DOI URL |
[74] | 周建, 徐善法, 迟清华, 等. 东南沿海中生代火山岩带地球化学特征[J]. 地学前缘, 2012, 19(3): 93-100. |
[75] |
WANG D Z, SHU L S. Late Mesozoic Basin and range tectonics and related magmatism in Southeast China[J]. Geoscience Frontiers, 2012, 3(2): 109-124.
DOI URL |
[76] |
ZHENG Y F, XIAO W J, ZHAO G C. Introduction to tectonics of China[J]. Gondwana Research, 2013, 23(4): 1189-1206.
DOI URL |
[77] | 张国伟, 郭安林, 王岳军, 等. 中国华南大陆构造与问题[J]. 中国科学: 地球科学, 2013, 43(10): 1553-1582. |
[78] |
YANG J H, WU F Y, WILDE S A. A review of the geodynamic setting of large-scale Late Mesozoic gold mineralization in the North China Craton: an association with lithospheric thinning[J]. Ore Geology Reviews, 2003, 23(3/4): 125-152.
DOI URL |
[79] |
YAN J, CHEN J F, XIE Z, et al. Mantle xenoliths from Late Cretaceous basalt in eastern Shandong Province: new constraint on the timing of lithospheric thinning in eastern China[J]. Chinese Science Bulletin, 2003, 48(19): 2139.
DOI URL |
[80] | 孙涛, 周新民. 中国东南部晚中生代伸展应力体制的岩石学标志[J]. 南京大学学报: 自然科学版, 2002, 38(6): 737-746. |
[81] | 吴福元, 葛文春, 孙德有, 等. 中国东部岩石圈减薄研究中的几个问题[J]. 地学前缘, 2003, 10(3): 51-60. |
[82] | 谢昕, 徐夕生, 邢光福, 等. 浙东早白垩世火山岩组合的地球化学及其成因研究[J]. 岩石学报, 2003, 19(3): 385-398. |
[83] | 邹和平, 王建华, 丘元禧. 广东南澳和莲花山韧性剪切带40Ar/39Ar年龄及其地质意义[J]. 地球学报, 2000, 21(4): 356-364. |
[84] |
XIA S H, ZHAO D P. Late Mesozoic magmatic plumbing system in the onshore-offshore area of Hong Kong: insight from 3-D active-source seismic tomography[J]. Journal of Asian Earth Sciences, 2014, 96: 46-58.
DOI URL |
[85] |
ZHOU X M, LI W X. Origin of Late Mesozoic igneous rocks in southeastern China: implications for lithosphere subduction and underplating of mafic magmas[J]. Tectonophysics, 2000, 326(3/4): 269-287.
DOI URL |
[86] | 郭锋, 范蔚茗, 王岳军, 等. 大兴安岭南段晚中生代双峰式火山作用[J]. 岩石学报, 2001, 17(1): 161-168. |
[87] | 沈渭洲, 凌洪飞, 李武显, 等. 中国东南部花岗岩类的Nd模式年龄与地壳演化[J]. 中国科学D辑: 地球科学, 2000, 30(5): 471-478. |
[88] |
LI L M, SUN M, XING G F, et al. Two Late Mesozoic volcanic events in Fujian Province: constraints on the tectonic evolution of southeastern China[J]. International Geology Review, 2009, 51(3): 216-251.
DOI URL |
[89] | 路凤香, 桑隆康, 邬金华, 等. 岩石学[M]. 北京: 地质出版社, 2002: 1-399. |
[90] | 邓晋福, 罗照华, 苏尚国, 等. 岩石成因、构造环境与成矿作用[M]. 北京: 地质出版社, 2004: 1-381. |
[91] | WILSON M. Igneous petrogenesis: a global tectonic approach[M]. London: Chapman and Hall, 1989: 1-187. |
[92] |
FLOYD P, KELLING G, GÖKÇEN S L, et al. Arc-related origin of volcaniclastic sequences in the misis complex, southern Turkey[J]. Journal of geology, 1992, 100(2): 221-230.
DOI URL |
[93] | 薛怀民, 陶奎元, 沈家林. 中国东南沿海地区中生代火山岩Sr-Nd同位素特征和岩浆成因[J]. 地质学报, 1996, 70(1): 35-47. |
[94] | 张旗, 金惟俊, 李承东, 等. 中国东部燕山期大规模岩浆活动与岩石圈减薄: 与大火成岩省的关系[J]. 地学前缘, 2009, 16(2): 21-51. |
[95] | 邢光福, 汪庆华, 陶奎元. 东南沿海中生代安山岩的地质意义[J]. 火山地质与矿产, 2001, 22(3): 157-162. |
[96] |
LAPIERRE H, JAHN B M, CHARVET J, et al. Mesozoic felsic arc magmatism and continental olivine tholeiites in Zhejiang Province and their relationship with the tectonic activity in southeastern China[J]. Tectonophysics, 1997, 274(4): 321-338.
DOI URL |
[97] | 邱检生, 徐夕生, 蒋少涌. 地壳深俯冲与富钾火山岩成因[J]. 地学前缘, 2003, 10(3): 191-200. |
[98] |
CHEN H L, YANG S F, LI Z L. Geochemistry and tectonic setting of early Late Paleozoic felsic volcanic rocks from the Altai orogenic belt, North Xinjiang[J]. Acta Geologica Sinica (English Edition), 2006, 80: 38-42.
DOI URL |
[99] | 单强, 牛贺才, 于学元, 等. 新疆北部阿尔泰南缘晚古生代高钾高硅熔结凝灰岩的地球化学、 岩浆成因及构造背景[J]. 岩石学报, 2007, 23(7): 1721-1729. |
[100] | 黎彤. 化学元素的地球丰度[J]. 地球化学, 1976, 5(3): 167-174. |
[101] | 刘书生, 范文玉, 罗茂金, 等. 老挝南部帕莱通双峰式火山岩锆石U-Pb定年及岩石地球化学特征[J]. 吉林大学学报(地球科学版), 2014, 44(2): 540-553. |
[102] |
ZHAO Z F, ZHENG Y F, WEI C S, et al. Post-collisional granitoids from the Dabieorogen in China: zircon U-Pb age, element and O isotope evidence for recycling of subducted continental crust[J]. Lithos, 2007, 93(3/4): 248-272.
DOI URL |
[103] | 俞云文, 徐步台, 陈江峰, 等. 浙东南中生代晚期火山岩Nd同位素组成及其地层学意义[J]. 高校地质学报, 2001, 7(1): 62-69. |
[104] |
LI Z X, LI X H. Formation of the 1300-km-wide intracontinentalorogen and postorogenic magmatic Province in Mesozoic South China: a flat-slab subduction model[J]. Geology, 2007, 35(2): 179.
DOI URL |
[105] | 郭福祥. 中国南方中新生代大地构造属性和南华造山带褶皱过程[J]. 地质学报, 1998, 72(1): 22-33. |
[106] | 李武显, 周新民. 古太平洋岩石圈消减与中国东南部晚中生代火成岩成因: 岩石圈消减与玄武岩底侵相结合模式的补充证据[J]. 大地构造与成矿学, 2001, 25(1): 55-63. |
[107] | 邢光福, 卢清地, 陈荣, 等. 华南晚中生代构造体制转折结束时限研究: 兼与华北燕山地区对比[J]. 地质学报, 2008, 82(4): 451-463. |
[108] | 薛怀民, 汪应庚, 马芳, 等. 皖南太平-黄山复合岩体的SHRIMP年代学: 由钙碱性向碱性转变对扬子克拉通东南部中生代岩石圈减薄时间的约束[J]. 中国科学D辑: 地球科学, 2009, 39(7): 979-993.[知网] |
[109] | 余明刚, 邢光福, 张彦洁, 等. 皖赣交界障公山地区燕山期花岗岩年代学和地球化学及成因研究[J]. 矿物岩石地球化学通报, 2009, 28(增刊): 128. |
[110] |
CUI J J, ZHANG Y Q, DONG S W, et al. Zircon U-Pb geochronology of the Mesozoic metamorphic rocks and granitoids in the coastal tectonic zone of SE China: constraints on the timing of Late Mesozoic orogeny[J]. Journal of Asian Earth Sciences, 2013, 62: 237-252.
DOI URL |
[1] | 王学求, 张必敏, 姚文生, 刘雪敏. 地球化学探测:从纳米到全球[J]. 地学前缘, 20140101, 21(1): 65-74. |
[2] | 刘玲霞, 路睿, 谢文苹, 刘博, 王亚茹, 姚海慧, 蔺文静. 青藏高原东北部温泉分布及水文地球化学特征[J]. 地学前缘, 2024, 31(6): 173-195. |
[3] | 杨峥, 彭敏, 赵传冬, 杨柯, 刘飞, 李括, 周亚龙, 唐世琪, 马宏宏, 张青, 成杭新. 中国土壤54项指标的地球化学背景与基准研究[J]. 地学前缘, 2024, 31(4): 380-402. |
[4] | 吕良华, 王水. 耦合CO2脱气的岩溶地热水结垢趋势定量分析[J]. 地学前缘, 2024, 31(3): 402-409. |
[5] | 张佳文, 李明超, 韩帅, 张敬宜. 基于集成量子神经网络的大地构造环境判别与分析[J]. 地学前缘, 2024, 31(3): 511-519. |
[6] | 杨志波, 季汉成, 鲍志东, 史燕青, 赵雅静, 向鹏飞. 白云石晶体结构和地球化学特征对沉积环境响应:以扬子地台晚埃迪卡拉纪灯影组白云岩为例[J]. 地学前缘, 2024, 31(3): 68-79. |
[7] | 刘持恒, 李子颖, 贺锋, 张字龙, 李振成, 凌明星, 刘瑞萍. 鄂尔多斯盆地西北部下白垩统物源定量分析研究[J]. 地学前缘, 2024, 31(3): 80-99. |
[8] | 钏茂山, 胡乐, 蔺如喜, 毛崇祯, 李仕忠, 李锁明, 袁永盛. 扬子板块西缘早中生代“绿豆岩”成因及构造启示:锆石U-Pb年龄、微量元素及Hf同位素约束[J]. 地学前缘, 2024, 31(2): 204-223. |
[9] | 周予茜, 时毓, 黄椿文, 刘希军, 蓝媛春, 唐源远, 翁伯寅. 桂东南莲垌和古龙岩体加里东期I型花岗岩类的岩石成因及构造意义[J]. 地学前缘, 2024, 31(2): 224-248. |
[10] | 李海东, 田世洪, 刘斌, 胡鹏, 吴建勇, 陈正乐. 粤北地区琶江铀矿床沥青铀矿原位微区年代学和元素分析:对铀成矿作用的启示[J]. 地学前缘, 2024, 31(2): 270-283. |
[11] | 何雁兵, 雷永昌, 邱欣卫, 肖张波, 郑仰帝, 刘冬青. 珠江口盆地陆丰南地区文昌组沉积古环境恢复及烃源岩有机质富集主控因素研究[J]. 地学前缘, 2024, 31(2): 359-376. |
[12] | 王野, 陈旸, 陈骏. 岩石有机碳风化及其控制因素[J]. 地学前缘, 2024, 31(2): 402-409. |
[13] | 郭华明, 尹嘉鸿, 严松, 刘超. 陕北靖边高铬地下水中硝酸根分布及来源[J]. 地学前缘, 2024, 31(1): 384-399. |
[14] | 刘丛强, 李思亮, 刘学炎, 王宝利, 郎赟超, 丁虎, 郝丽萍, 张琼予. 人类世生物地球化学循环及其科学[J]. 地学前缘, 2024, 31(1): 455-466. |
[15] | 杨梦凡, 邱昆峰, 何登洋, 黄雅琪, 王玉玺, 付男, 于皓丞, 薛宪法. 西秦岭完肯金矿床载金硫化物矿物学和地球化学特征[J]. 地学前缘, 2023, 30(6): 371-390. |
阅读次数 | ||||||
全文 |
|
|||||
摘要 |
|
|||||