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result(s) for
"地球化学作用"
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Role of hydro-geochemical functions on karst critical zone hydrology for sustainability of water resources and ecology in Southwest China
by
Xi Chen;Yimeng Sun;Richao Huang
in
Composition
,
Earth and Environmental Science
,
Earth Sciences
2017
Focusing on sustainability of water resources and ecology in the complex karst critical zone, we illustrated functions of the hydro-geochemical analysis on hydrology from the aspects of connection and interaction among hydrology–vegetation–soils/rock fractures along the karst subsurface profile. We reviewed isotopic and geochemical interpretations on tracing water sources for plant uptake, quantifying watershed outlet flow composition and residence times, and evaluating long-term evolution among climate–landscape–hydrology in the karst critical zone. In this paper, the application of the hydro-geochemical analysis on the above aspects in the karst areas of southwest China was summarized.
Journal Article
Tectonic Subdivision of Dabie Orogenic Belt,Central China:Evidence from Pb Isotope Geochemistry of Late Mesozoic Basalts
2002
It has long been debated that the Dabie orogenic belt belongs to the North China or Yangtze craton. In recent years, eastern China has been suggested, based on the Pb isotopic compositions of Phanerozoic ore and Mesozoic granitoid K-feldspar (revealing the crust Pb) in combination with Meso-Cenozoic basalts (revealing the mantle Pb), being divided into the North China and Yangtze Pb isotopic provinces, where the crust and mantle of the Yangtze craton are characterized by more radiogenic Pb. In this sense, previous researchers suggested that the pro-EW-trending Dabie crogenic belt with less radiogenic Pb in the crust was part of the North China craton. In this paper, however, the Late Cretaceous basalts in the central and southern parts of the Dabie orogenic belt are characterized by some more radiogenic Pb (^sup 206^Pb/^sup 204^Pb=17.936-18.349,^sup 207^Pb/^sup 204^Pb=15.500-15.688,^sup 208^Pb/^sup 204^Pb=38.399-38.775) and a unique U-Th-Pb trace element system similar to those of the Yangtze craton, showing that the Mesozoic mantle is of the Yangtze type. In addition, the decoupled Pb isotopic compositions between crust and mantle were considerably derived from their rheological inhomogeneity, implying a complicated evolution of the Dabie orogenic belt.[PUBLICATION ABSTRACT]
Journal Article