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首页> 外文期刊>Geobiology >Stromatolite branching in the Neoproterozoic of the Centralian Superbasin, Australia: an investigation into sedimentary and microbial control of stromatolite morphology
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Stromatolite branching in the Neoproterozoic of the Centralian Superbasin, Australia: an investigation into sedimentary and microbial control of stromatolite morphology

机译:澳大利亚Centralian超级盆地的新元古代的间质岩分支:对层间岩形态的沉积和微生物控制的研究

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摘要

The extensive and well-preserved Neoproterozoic Acaciella australica Stromatolite assemblage of Australia is ideal for examining the relative roles of microbial and environmental influences on stromatolite branching and stromatolite macrostructure across a wide geographical area. Detailed sedimentological analyses indicate that the basal hemispheroidal section of bioherms contains abundant sediment. By contrast, the columnar sections of bioherms are composed almost exclusively of micritic laminae. These micritic laminae display little evidence for environmental, especially sedimentary, control over stromatolite morphology. The change from a hemispheroidal morphology to branching morphology is linked to variations in the relative contributions of sediment and framework growth. The shift to columns appears to be closely linked to a decrease in sediment supply that resulted in a more stable environment in which microbially mediated framework growth began to control stromatolite morphology. Branching in the A. australica assemblage stromatolites appears to be caused by shifting sedimentary and microbial control on stromatolite morphology.
机译:澳大利亚广泛而保存完好的新元古代Acaciella australica层间辉石组合非常适合研究微生物和环境影响在广阔地理区域中层间石分支和层间石宏观结构的相对作用。详细的沉积学分析表明,生物herms的基底半球形部分包含丰富的沉积物。相比之下,生物hermes的柱状部分几乎完全由微薄层构成。这些微晶薄片几乎没有证据证明环境,尤其是沉积对叠层石形态的控制。从半球状形态到分支形态的变化与沉积物和框架生长的相对贡献的变化有关。转向柱子似乎与沉积物供应减少密切相关,沉积物供应减少导致更稳定的环境,其中微生物介导的框架生长开始控制叠层石的形态。 A.澳大利亚组合层状叠层石中的分支似乎是由沉积和微生物对层状叠层石形态的控制转移引起的。

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