The Ordos Basin, as the second largest petroliferous basin of China, contains abundant oil and gas resources, oil shale, and sandstone-type uranium mineral resources. Chang 7 shale is not only the major source rock of...The Ordos Basin, as the second largest petroliferous basin of China, contains abundant oil and gas resources, oil shale, and sandstone-type uranium mineral resources. Chang 7 shale is not only the major source rock of the Mesozoic petroliferous system of the Basin, but is also crucial in determining the space-time distribution relationship of the shale section for the effective exploration and development of the Basin's oil and gas resources. To obtain a highly precise age of the shale development section, we collected tuff samples from the top and bottom profile of the Chang 7 Member, Yishi Village, Yaoqu Town, Tongchuan District, on the southern margin of the Ordos Basin and performed high-precision chemical abrasion(CA)–isotope dilution(ID)–thermal ionization mass spectrometry(TIMS) zircon U-Pb dating on the basis of extensive laser ablation inductively coupled plasma mass spectrometry(LA-ICP-MS) zircon U-Pb dating data. Our results show the precise ages of the top and bottom zircon in the Chang 7 shale to be 241.06±0.12 Ma and 241.558±0.093 Ma, respectively. We first obtained Chang 7 age data with Grade 0.1-Ma precision and then determined the age of the shale development in the Chang 7 Member to be the early-Middle Triassic Ladinian. This result is supported by paleontological evidence. The deposition duration of the Chang 7 shale is 0.5 Ma with an average deposition rate of the shale section being 5.3 cm/ka. Our research results provide time scale and basic data for further investigation of the basin–mountain coupling relation of the shale section, the sedimentary environment and volcanic ash and organic-matter-rich shale development relation, and the organism break-out and organic-matter enrichment mechanism.展开更多
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...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。展开更多
基金supported by the National Basic Research Program of China (973 Program) granted No. 2014CB239001
文摘The Ordos Basin, as the second largest petroliferous basin of China, contains abundant oil and gas resources, oil shale, and sandstone-type uranium mineral resources. Chang 7 shale is not only the major source rock of the Mesozoic petroliferous system of the Basin, but is also crucial in determining the space-time distribution relationship of the shale section for the effective exploration and development of the Basin's oil and gas resources. To obtain a highly precise age of the shale development section, we collected tuff samples from the top and bottom profile of the Chang 7 Member, Yishi Village, Yaoqu Town, Tongchuan District, on the southern margin of the Ordos Basin and performed high-precision chemical abrasion(CA)–isotope dilution(ID)–thermal ionization mass spectrometry(TIMS) zircon U-Pb dating on the basis of extensive laser ablation inductively coupled plasma mass spectrometry(LA-ICP-MS) zircon U-Pb dating data. Our results show the precise ages of the top and bottom zircon in the Chang 7 shale to be 241.06±0.12 Ma and 241.558±0.093 Ma, respectively. We first obtained Chang 7 age data with Grade 0.1-Ma precision and then determined the age of the shale development in the Chang 7 Member to be the early-Middle Triassic Ladinian. This result is supported by paleontological evidence. The deposition duration of the Chang 7 shale is 0.5 Ma with an average deposition rate of the shale section being 5.3 cm/ka. Our research results provide time scale and basic data for further investigation of the basin–mountain coupling relation of the shale section, the sedimentary environment and volcanic ash and organic-matter-rich shale development relation, and the organism break-out and organic-matter enrichment mechanism.