Formation Age of the Hanwang BIF Deposit in Western Shandong:Evidence from Zircon SHRIMP U-Pb Dating
-
摘要: 鲁西地区太古宙表壳岩包括新太古代早期和晚期两期表壳岩, 早期表壳岩主要由变质玄武岩-科马提岩组成, 晚期表壳岩主要由变质火山岩-碎屑沉积岩和BIF(Banded Iron Formations)组成。韩旺铁矿位于鲁西的西北部, 铁矿区内存在大量变质玄武岩-科马提岩, 早期认为该BIF 形成于新太古代早期, 而新的研究认为鲁西地区BIF 都形成于新太古代晚期。本文对韩旺铁矿区内与BIF 互层的黑云变粒岩和侵入其中的片麻状花岗闪长岩开展锆石SHRIMP U-Pb 定年, 获得年龄分别为(2529±7) Ma 和(2534±11) Ma。黑云变粒岩和片麻状花岗闪长岩的TREE、(La/Yb)N、Eu/Eu*分别为76×10–6、19.8、0.84 和82.7×10–6、17.3、1.14, 它们的岩浆锆石的εHf 值、单阶段Hf 同位素模式年龄分别为5.5~9.46、2.5~2.6 Ga 和6.3~9.4、2.48~2.60 Ga。研究支持了鲁西地区BIF 形成于新太古代晚期的认识。表壳岩形成、变质变形和花岗闪长岩侵入发生在一个很短的时间范围内。研究还表明, 黑云变粒岩的原岩为英安质火山岩, 很可能形成于新生玄武质岩浆的强烈结晶分异作用, 花岗闪长岩形成于新生玄武质岩石部分熔融, 形成过程中有陆壳物质的加入。
-
关键词:
- BIF /
- 韩旺铁矿 /
- 鲁西 /
- 太古宙 /
- 锆石SHRIMP U-Pb 定年
Abstract: Archean supracrustal rocks in western Shandong include two stages of supracrustal rocks during the Early Neoarchean and the Late Neoarchean. Early supracrustal rocks are mainly composed of metamorphic basalt-Komatiite, whereas late supracrustal rocks are mainly composed of metamorphic volcanic rocks-clastic sedimentary rocks and BIF (Banded Iron Formations). The Hanwang iron deposit is located in the northwest of western Shandong. There are a large quantities of meta-basalt-Komatiite in the iron ore area. It is believed that the BIF was formed during the Early Neoarchean, but a recent study suggests that the BIF in western Shandong area was formed during the Late Neoarchean. In this study, the zircon SHRIMP U-Pb dating of the biotite granulite interbedded with BIF and the gneissic granodiorite intruded in the Hanwang iron ore area was carried out, and the ages were (2529±7) Ma and (2534±11) Ma, respectively. The TREE, (La/Yb)N, and Eu/Eu* of biotite granulite and gneissic granodiorite are 76×10–6, 19.8, and 0.84 and 82.7×10–6, 17.3, and 1.14, respectively. The εHf values and single-stage Hf isotopic model ages of their magmatic zircons are 5.5–9.46 Ga and 2.5–2.6 Ga, and 6.3–9.4 Ga and 2.48–2.60 Ga, respectively. This study supports the recognition that BIF in western Shandong was formed during the Late Neoarchean. The formation of supracrustal rocks, metamorphic deformation, and granodiorite intrusion occurred in a very short-time range. The study also shows that the protolith of the biotite granulite is dacitic volcanic rock, which was likely to be formed by the strong crystallization differentiation of the newborn basaltic magma. The granodiorite was formed by the partial melting of the newborn basaltic rock, and the continental crust material was added during the formation process.-
Key words:
- BIF /
- Hanwang iron deposit /
- western Shandong /
- Archean /
- zircon SHRIMP U-Pb dating
-
-
曹国权, 1996.鲁西早前寒武纪地质[M]. 北京: 地质出版社:1-193.
孔庆友, 张天祯, 于学峰, 等, 2006.山东矿床[M]. 济南: 山东科学技术出版社: 1-902.
万渝生, 董春艳, 颉颃强, 等, 2012a. 华北克拉通早前寒武纪条带状铁建造形成时代--SHRIMP 锆石U-Pb 定年[J]. 地质学报, 86(9): 1447-1478.
万渝生, 刘敦一, 王世进, 等, 2012b. 华北克拉通鲁西地区早前寒武纪表壳岩系重新划分和BIF 形成时代[J]. 岩石学报, 28(11): 3457-3475.
张连昌, 翟明国, 万渝生, 等, 2012. 华北克拉通前寒武纪BIF铁矿研究: 进展与问题[J]. 岩石学报, 28(11): 3431-3445.
中华人民共和国国土资源部, 2010a. 硅酸盐岩石化学分析方法第28 部分: 16 个主次成分量测定: GB/T 14506.28-2010[S].北京: 中国标准出版社.
中华人民共和国国土资源部, 2010b. 硅酸盐岩石化学分析方法第30 部分: 44 个元素量测定: GB/T 14506.30-2010[S].北京: 中国标准出版社.
中华人民共和国国土资源部, 2010c. 硅酸盐岩石化学分析方法第 14 部分: 氧化亚铁量测定: GB/T 14506.14-2010[S].北京: 中国标准出版社.
BAI Wenqian, DONG Chunyan, SONG Zhiyong, et al., 2020. Late Neoarchean granites in the Qixingtai region, western Shandong: Further evidence for the recycling of early Neoarchean juvenile crust in the North China Craton[J].Geological Journal, 55(9): 6462-6486.
BLACK L P, KAMO S L, ALLEN C M, et al., 2003. TEMORA 1:A new zircon standard for Phanerozoic U–Pb geochronology[J]. Chemical Geology, 200(1-2): 155-170.
BLICHERT-TOFT J, 2008. The Hf isotopic composition of zircon reference material 91500[J]. Chemical Geology, 253(3-4):252-257.
BLICHERT-TOFT J, ALBARÈDE F, 1997. The Lu-Hf isotope geochemistry of chondrites and the evolution of the mantle-crust system[J]. Earth and Planetary Science Letters, 148(1-2): 243-258.
CAO Guoquan, 1996.Early Precambrian geology of western Shandong[M]. Beijing: Geological Publishing House:1-193(in Chinese).
DONG Chunyan, BAI Wenqian, XIE Hangqiang, et al., 2021. Early Neoarchean oceanic crust in the North China Craton:Evidence from geology, geochemistry and geochronology of greenstone belts in western Shandong[J]. Lithos, 380-381:105888.
ELHLOU S, BELOUSOVA E, GRIFFIN W L, et al., 2006. Trace element and isotopic composition of GJ-red zircon standard by laser ablation[J]. Geochimica et Cosmochimica Acta, 70(18): A158.
GRIFFIN W L, WANG Xiang, JACKSON S E, et al., 2002. Zircon chemistry and magma mixing, SE China: In-situ analysis of Hf isotopes, Tonglu and Pingtan igneous complexes[J]. Lithos, 61(3-4): 237-269.
KONG Qingyou, ZHANG Tianzhen, YU Xuefeng, et al., 2006.Deposits in Shandong Province[M]. Jinan: Shandong Science and Technology Press: 1-902(in Chinese).
LI Yuan, XIE Hangqiang, DONG Chunyan, et al., 2022. Zircon evolution from migmatite to crustally-derived granite: A case study of late Neoarchean migmatite in the Yishan area, western Shandong, North China Craton[J]. Gondwana Research, 112: 82-104.
LUDWIG K R, 2001. Squid 1.02: A User’s Manual[J]. Berkeley Geochronology Centre Special Publication 2: 1-19.
LUDWIG K R, 2003. User’s Manual for Isoplot 3.00, a Geochronological Toolkit for Microsoft Excel[J]. Berkeley Geochronology Center Special Publication, 4(2): 1-70.
Ministry of Land and Resources of the People’s Republic of China, 2010a. Methods for chemical analysis of silicate rocks - Part 28: Determination of 16 major and minor elements content:GB/T 14506.28-2010[S]. Beijing: Standard Press of China(in Chinese).
Ministry of Land and Resources of the People’s Republic of China, 2010b. Methods for chemical analysis of silicate rocks - Part 30: Determination of 44 elements: GB/T 14506.30-2010[S].Beijing: Standard Press of China(in Chinese).
Ministry of Land and Resources of the People’s Republic of China, 2010c. Methods for chemical analysis of silicate rocks - Part 14: Determination of ferrous oxide content: GB/T 14506.14-2010[S]. Beijing: Standard Press of China(in Chinese).
NASDALA L, HOFMEISTER W, NORBERG N, et al., 2008.Zircon M257 - a homogeneous natural reference material for the ion microprobe U-Pb analysis of zircon[J]. Geostandards and Geoanalytical Research, 32(3): 247-265.
SÖDERLUND U, PATCHETT P J, VERVOORT J D, et al., 2004.The 176Lu decay constant determined by Lu–Hf and U–Pb isotope systematics of Precambrian mafic intrusions[J]. Earth and Planetary Science Letters, 219(3-4): 311-324.
SUN S S, MCDONOUGH W F, 1989. Chemical and isotopic systematics of oceanic basalts: implications for mantle composition and processes[J]. Geological Society, London, Special Publications, 42(1): 313-345.
WAN Yusheng, DONG Chunyan, XIE Hangqiang, et al., 2012a.Formation Ages of Early Precambrian BIFs in the North China Craton: SHIRMP Zircon U-Pb Dating[J]. Acta Geologica Sinica, 86(9): 1448-1478(in Chinese with English abstract).
WAN Yusheng, LIU Dunyi, WANG Shijin, et al., 2010. Juvenile magmatism and crustal recycling at the end of the Neoarchean in Western Shandong Province, North China Craton: Evidence from SHRIMP zircon dating[J]. American Journal of Science, 310(10): 1503-1552.
WAN Yusheng, LIU Dunyi, WANG Shijin, et al., 2011.-2.7 Ga juvenile crust formation in the North China Craton(Taishan-Xintai area, western Shandong Province): Further evidence of an understated event from U–Pb dating and Hf isotopic composition of zircon[J]. Precambrian Research, 186(1-4): 169-180.
WAN Yusheng, LIU Dunyi, WANG Shijin, et al., 2012b.Redefinition of Early Precambrian supracrustal rocks and formation age of BIF in western Shandong, North China Craton[J]. Acta Petrologica Sinica, 28(11): 3457-3475(in Chinese with English abstract).
WILLIAMS I S, 1997. U-Th-Pb geochronology by ion microprobe[M]//Society of Economic Geologists, Applications of Microanalytical Techniques to Understanding Mineralizing Processes: Part I: Geochronology and Radiogenic Isotopes. Reviews in Economic Geology, 7: 1-35.
WU Fuyuan, YANG Yueheng, XIE Liewen, et al., 2006. Hf isotopic compositions of the standard zircons and baddeleyites used in U–Pb geochronology[J]. Chemical Geology, 234(1-2):105-126.
ZHANG Lianchang, ZHAI Mingguo, WAN Yusheng, et al., 2012.Study of the Precambrian BIF-iron deposits in the North China Craton: Progresses and questions[J]. Acta Petrologica Sinica, 28(11): 3431-3445(in Chinese with English abstract).
-
计量
- 文章访问数: 26
- PDF下载数: 4
- 施引文献: 0