解读上古生代穆拉利亚-埃斯卡拉普兰诺盆地(意大利撒丁岛)的硅质沉积:构造对出产的影响

Luca G. Costamagna , Sara Criniti
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引用次数: 0

摘要

意大利撒丁岛(Sardinia)出露了晚宾夕法尼亚-二叠纪(Late Pennsylvanian-Permian age)晚至后瓦利斯纪(post-Variscan)的蜕皮盆地。在此,我们研究了 Mulargia-Escalaplano 沉积盆地(撒丁岛中部)的成分和地层演变,以突出构造-岩浆过程对沉积的影响。研究人员沿特征明确的地层剖面采集了鲁地岩和贝叶岩样本,从而对构造-岩浆作用过程对硅质沉积的影响有了新的认识。因此,砾岩主要是由碎屑岩支撑的岩浆岩,因此并不成熟,也没有明确的向上成熟趋势。然而,卵石成分随着时间的推移,从富含瓦利斯坎基底卵石变为富含火山岩,这是盆地扩大以及同时期火山活动的解体和再加工的结果。砂岩成分明显地从石英岩变为长石岩,这也是对火山岩进料和再加工的同样变化的反应。偶尔夹杂的石英碎屑岩表明,有特殊的洪水携带着来自盆地远端边界的碎屑。此外,不成熟的砂岩成分也被解释为受到新鲜碎屑持续供应和快速埋藏速度的控制。此外,砂岩矿物组中古生代玄武岩(AA级锂辉石)颗粒的消失,可能是瓦里斯卡链条逐渐解顶和来自更深构造单元的碎屑供应的显著标志。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Interpreting siliciclastic sedimentation in the upper Paleozoic Mulargia-Escalaplano Basin (Sardinia, Italy): influence of tectonics on provenance

Late to post-Variscan molassic basins of Late Pennsylvanian-Permian age are exposed in Sardinia (Italy). Here, the compositional and stratigraphic evolution of the Mulargia-Escalaplano sedimentary basin (central Sardinia) has been investigated to highlight how the tectono-magmatic processes have influenced the sedimentation. Ruditic and arenitic samples were collected along well-characterized stratigraphic sections to provide a new insight into the impact of the tectono-magmatic processes on siliciclastic sedimentation. As a result, the conglomerates are mainly clast-supported, petromictic, and thus immature, with no defined maturity trend upwards. Nevertheless, pebble composition changes in times from Variscan basement pebble-rich to volcanic rock-rich, as a consequence of the basin widening and the dismantling and reworking of the coeval volcanic activity. The sandstone composition clearly changes from quartzolithic to feldspatholithic upwards, as a response to the same change of feeding and reworking of the volcanic rocks. Occasionally, interbedded quartzolithic arenites suggest exceptional floods carrying debris from the far borders of the basin. Also, the immature sandstone composition has been interpreted as being controlled by a continuous supply of fresh debris and to a rapid burial rate. In addition, the disappearance of metaradiolarite (lydite AA) Paleozoic grains in the sandstone mineral suite could represent a distinctive marker of a progressive unroofing of the Variscan chain and a clastic supply from deeper tectonic units.

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