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The Relationship between the Distribution of Thick Coal Belts and the Late Carboniferous-Early Early Permian Marine Transgression-Regression in the North China Platform
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作者 ZHONG Rong FU Zeming 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 1998年第1期114-120,共7页
Four great second-order transgressions occurred during the Late Carboniferous to early Early Permian and they came from both the eastern and western sea areas in the North China Platform. As time went on, depocentres,... Four great second-order transgressions occurred during the Late Carboniferous to early Early Permian and they came from both the eastern and western sea areas in the North China Platform. As time went on, depocentres, depositional extent, transgression directions, coastline position and distribution of minable coal seams were changing continuously. The third great second-order transgression occurring at the beginning of the early Early Permian marks the maximum transgression period and before its arrival, i.e. at the close of the late Late Carboniferous, there was the super-regional coal-forming environment. During the second, third and fourth transgressions, the northern North China Platform was all along situated on the transgressive margin of the epicontinental sea and became the major distribution area of thick coal belts because it maintained a coal-forming environment for a long period of time from the close of the late Late Carboniferous to the Early Permian. 展开更多
关键词 Late Carboniferous-early Early Permian marine transgression-regression thick coal belt North China Platform
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Rare earth elements stratigraphic significance in late Permian coal measure from Bijie City, Guizhou Province, China 被引量:6
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作者 王强 杨瑞东 鲍淼 《Journal of Rare Earths》 SCIE EI CAS CSCD 2008年第5期760-764,共5页
Rare earth elements (REEs) are good geological indicators. In order to understand REEs stratigraphic significance, REEs in Late Permian coal measure from Bijie City, western Guizhou Province, China were studied. The... Rare earth elements (REEs) are good geological indicators. In order to understand REEs stratigraphic significance, REEs in Late Permian coal measure from Bijie City, western Guizhou Province, China were studied. The results showed that the contents of both light rare earth element (LREE) and ∑ REE were sharply increased in the boundary between Longtan Formation and Changxing Formation, which resulted from the gyration and discontinuity eruption of Emeishan basalt (REEs source) and frequent transgression-regression during forming coal. The coal measure and strata could be subdivided and correlate, and the sea-level change could be under stood by studying REEs content variation in coal measure. 展开更多
关键词 STRATIGRAPHY source transgression-regression Bijie City Late Permian rare earths
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Late Permian- Early Triassic Conodont Biofacies and Bioprovinces in South China and Himalaya
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作者 Yao Jianxin, Li Zishun, Zhan Lipei Institute of Geology, Chinese Academy of Geological Sciences, Beijingand Hao Weicheng Department of Geology, Peking University, Beijing 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 1994年第2期209-218,共10页
On the basis of existing conodont data, the authors have studied the Late Permian-Early Triassic conodonts of different forms and biofacies in detail. Five conodont biofacies are recognized, from shallow to deep water... On the basis of existing conodont data, the authors have studied the Late Permian-Early Triassic conodonts of different forms and biofacies in detail. Five conodont biofacies are recognized, from shallow to deep waters 1. Hindeodus conodont biofacies, 2. Pachycladina-Parachi rognathus conodont biofacies, 3. Gondolella -Hindeodus conodont biofacies, 4. Gondolella-Neospathodus conodont biofacies, and 5. Xaniognathus conodont biofacies. Considering the temporal and spatial changes of these conodont biofacies, 3 conodont bloprovinces have been divided. In light of the biofacies changes of each bioprovince, the authors also discuss, in this paper, the regularity of transgression-regression cycles of eastern Tethys and their possible relation to the mass biotic alternation. 展开更多
关键词 conodont biofacies conodont biopfovincialism transgression-regression cycles Permian-Triassic conodont
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Sources and control factors of rare earth elements in Late Permian mudstones,Southwest China
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作者 肖明国 庄新国 +1 位作者 易炜 毛婉慧 《Journal of Central South University》 SCIE EI CAS 2012年第6期1741-1752,共12页
The material sources and control factors of rare earth elemems (REEs) for 25 borehole bulk samples from the Late Permian Longtan Formation in Mount Huaying (borehole number: ZK10-6), Sichuan Province, South China... The material sources and control factors of rare earth elemems (REEs) for 25 borehole bulk samples from the Late Permian Longtan Formation in Mount Huaying (borehole number: ZK10-6), Sichuan Province, South China, were investigated. All samples were determined by inductively coupled plasma mass spectrometry (ICP-MS). The chondrite-normalized distribution patterns of mudstone samples are uniform. All samples belong to the light rare earth element (LREE)-rich type and are enriched in LREEs relative to heavy rare earth elements (HREEs). The distribution curves of REEs in mudstone are highly similar to Mount Emei basalt and the three periods of REEs enrichment correspond to three Mount Emei basalt eruption cycles in Longtan period. The results indicate that REE patterns are not controlled by materials from the seawater or land plants. The predominant sources of REEs are from terrigenous material as indicated by negative Eu anomaly. So, the sources of REEs are controlled by terrigenous material, and the Mount Emei basalt is the predominant source of terrigenous material. Thus, transgression-regression is another control factor of REEs enrichment. 展开更多
关键词 rare earth elements (REEs) control factors material sources transgression-regression Mount Emei basalt LatePermian
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