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首页> 外文期刊>Sedimentary geology >The Roles Of Pedogenesis And Diagenesis In Clay Mineral Assemblages: Lower Cretaceous Fluvial Mudrocks, Nova Scotia, Canada
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The Roles Of Pedogenesis And Diagenesis In Clay Mineral Assemblages: Lower Cretaceous Fluvial Mudrocks, Nova Scotia, Canada

机译:成岩作用和成岩作用在粘土矿物组合中的作用:加拿大新斯科舍省的下白垩统河床泥滩

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Clay mineral assemblages in alluvial mudrocks are important for paleoclimatic interpretation and for understanding burial diagenetic cementation in sandstones, but it is commonly difficult to unravel the relative importance of source weathering, pedogenesis and diagenesis in their origin. The clay mineral assemblages in fluvial overbank mudrocks from the Lower Cretaceous Chaswood Formation in central Nova Scotia, investigated by X-ray diffraction analysis of the <2 μm fraction of 45 samples, include kaolinite, illite, vermiculite, and mixed layer kaolinite/expandable clay and mica/vermiculite. The assemblages vary with depositional facies. Wetland organic-rich mudrocks have large amounts of amorphous material and kaolinite is the dominant clay mineral. In the eastern part of the basin, where overbank mudrocks were episodically uplifted by syn-sedimentary strike-slip faulting, cumulate ultisol and alfisol paleosols are common. In the ultisols, hematite is enriched and kaolinite increases at the expense of illite in the B horizon. Alfisols contain more illite and vermiculite and the B horizon is enriched in goethite. In the western part of the basin, where thin sandstones with abundant diagenetic kaolinite cement are interbedded with the mudrocks, the distinctive clay mineral assemblage of mica/vermiculite mixed layer, vermiculite with 15.5 A peak, and kaolinite/expandable mixed layer clay with a 17.7 A peak is interpreted to result from bacterially-mediated oxidation of organic matter below the paleo-water table during early burial diagenesis. Deeper burial diagenesis may lead to slightly higher kaolinite crystallinity. Volcanic ash appears to alter to kaolinite/ expandable mixed layer clay with a 7.9 A peak. Comparison with the continuously subsiding and rapidly accumulated Wessex Formation of southern England, formed at a similar paleolatitude, shows the strong role of pedogenic processes and early diagenesis by meteoric water in development of clay mineral assemblages in the locally tectonically uplifted Chaswood Formation.
机译:冲积泥岩中的粘土矿物组合对于古气候解释和理解砂岩中的成岩成岩胶结作用很重要,但通常很难阐明源风化,成岩作用和成岩作用的相对重要性。通过对45个样品的<2μm馏分进行X射线衍射分析,研究了来自新斯科舍省中部下白垩统Chaswood组的河流上岸泥岩中的粘土矿物组合,包括高岭石,伊利石,ver石和混合层高岭石/可膨胀粘土和云母/ ver石。组合随沉积相而变化。湿地富含有机物的泥岩具有大量的无定形物质,而​​高岭石是主要的粘土矿物。在该盆地的东部,同沉积的走滑断层使隆起的泥岩被隆起地抬升,累积的ultisol和alfisol古土壤很常见。在Ultisols中,赤铁矿富集,高岭石以B层的伊利石为代价增加。 Alfisol含有更多的伊利石和ver石,B层富含针铁矿。在盆地的西部,泥岩夹杂着富含成岩高岭石水泥的薄砂岩,云母/ ver石混合层的独特粘土矿物组合,峰值为15.5 A的ver石和17.7的高岭石/可膨胀混合层粘土。认为该峰值是由早期埋藏成岩作用期间古地下水位以下的细菌介导的有机物氧化引起的。较深的成岩作用可能导致高岭石结晶度略高。火山灰似乎改变为高岭土/可膨胀混合层粘土,峰值为7.9A。与在相似的古纬度形成的英格兰南部持续沉降和快速堆积的韦塞克斯地层进行比较,显示了成岩作用和早期成岩作用由陨石水在局部构造抬升的查斯伍德地层中的粘土矿物组合的发育中发挥了重要作用。

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