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首页> 外文期刊>Arabian journal of geosciences >Genesis of Upper Permian Changxing Formation dolomites, south of Kaijiang-Liangping Trough, SW China: evidence from petrology, geochemistry, and fluid inclusions
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Genesis of Upper Permian Changxing Formation dolomites, south of Kaijiang-Liangping Trough, SW China: evidence from petrology, geochemistry, and fluid inclusions

机译:SW中国北京 - 梁平汤南南部上二叠纪长兴形成白云岩的成因:来自岩石学,地球化学和流体夹杂物的证据

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摘要

Dolomitization has a profound influence on the quality and distribution of the Changxing Formation reef-shoal gas fields in the south of Upper Permian Kaijiang-Liangping Trough. These gas fields consist of two types of matrix replacement dolomite (D1 and D2) and some saddle dolomite (SD). A comprehensive petrographic and geochemical examination indicates that D1 dolomite is formed by the replacement of matrix limestone by seepage-reflux of penesaline seawater during the syndiagenetic-early diagenetic stage. This interpretation is supported by delta O-18 values slightly higher than those of dolomites precipitated from coeval seawater and REE patterns similar to those of matrix limestones, reinforced by Sr-87/Sr-86 ratios that greatly overlap those of matrix limestones and coeval well-preserved fossils. Dolomitization by penesaline seawater rather than by hypersaline evaporated seawater is also supported by the absence of massive evaporites. D2 dolomite, with C-O-Sr isotopes and Fe-Mn concentrations comparable to those of D1, formed through the hydrothermal alteration of D1 at temperatures between 163.2 and 189.3 degrees C during Early Triassic. SD precipitated directly from hydrothermal fluids at temperatures between 152.4 and 197.8 degrees C. The hydrothermal origins of D2 and SD are also supported by more negative delta O-18 values than those of dolomite formed from coeval seawater, higher Sr-87/Sr-86 ratios, and positive Eu anomalies.
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