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Genesis of giant sinkholes and caves in the quartz sandstone of Sarisarinama tepui, Venezuela

机译:委内瑞拉萨里萨里亚山脉石英砂岩的巨型下沉和洞穴的成因

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摘要

Quartz sandstone of the Sarisarinama massif in Venezuela hosts the world biggest collapse dolines in quartz-rich lithologies, with volumes up to some millions of cubic meters. Due to extremely complex logistics required to reach the massif, the genesis of these depressions and of the underlying caves has never been studied in detail. The lack of field campaigns and extended data has fostered a decade-long scientific debate on whether their origin was due to epigenic or hypogenic processes. This study integrates petrological, structural and hydrochemical observations, including analyses of silica concentration, pH, conductivity of surface and cave waters (EC), to investigate the speleogenetic processes acting underground.Petrographic and compositional analyses of the host rock (Mataui Formation) show that in the Sarisarinama region quartz sandstones are regularly characterized by clay interlayers with significant content of pyrophyllite and kaolinite and minor amount of iron hydroxides. Compared to surface waters, subsurface infiltration along vertical fractures and fault planes show enrichment in silica, higher pH and lower EC, confirming that chemical weathering is effective underground provoking intergranular silica dissolution along structural discontinuities. The weathering of the clay and iron hydroxide interlayers guides the speleogenesis, weakening specific strati graphic levels and causing the collapse and fragmentation of the more resistant quartz sandstone strata. The initial void, created by piping of the loose sand released by quartz sandstone weathering, can migrate upwards by means of roof and wall breakdown; this chain of events eventually triggers a collapse at the surface, which generates a circular or squared sinkhole. The weathering acts mainly along the dominant fracture networks, showing a clear guidance by regional tectonics. These speleogenetic controls rule out the hypothesis of a hypogenic origin of the simas, suggesting a primary role of long-term epigenic chemical weathering and mechanical erosion guided by joints, weak clay and iron hydroxide interlayers, followed by subsequent massive collapses. (C) 2019 Elsevier B.V. All rights reserved.
机译:在委内瑞拉的Sarisarinama Massif的石英砂岩在石英岩石中举办了世界上最大的坍塌小山脉,卷数量高达了一大千米。由于达到肿块所需的极其复杂的物流,因此从未详细地研究了这些凹陷和下面的腔腔的起源。缺乏野外活动和扩展数据促进了关于他们的起源是否是由于表观肾或肾上腺过程的巨大科学辩论。本研究整合了岩浆物质,结构和水化学观察,包括二氧化硅浓度,pH,表面和洞穴(EC)的pH,导电性分析,以研究当前岩石(Mataui Floweration)的基础植物和组成分析。在Sarisarinama Region中,石英砂岩经常具有粘土中间层,具有显着含量的纤维素和高岭石和少量铁氢氧化物。与表面水相比,沿着垂直骨折和故障平面的地下渗透显示二氧化硅,更高的pH和下EC中的富集,证实了化学风化是有效的地下挑衅跨结构不连续性的晶体硅溶液。粘土和铁氢氧化铁层间的风化引导了斯派发生,削弱了特异性的Strati图形水平并导致耐抗性石英砂岩层的塌陷和破碎。由石英砂岩风化释放的松散沙子管道产生的初始空隙,可以通过屋顶和墙壁击穿向上迁移;这种事件链最终触发了表面的坍塌,该表面产生圆形或平方池。风化主要沿着主导的骨折网络,展示了区域构造的明确指导。这些斯派科控制排除了Simas的浓缩起源的假设,这表明长期表观烯烯类化学耐候和机械腐蚀的主要作用,接头,弱粘土和氢氧化铁中间层,其次是随后的大量坍塌。 (c)2019 Elsevier B.v.保留所有权利。

著录项

  • 来源
    《Geomorphology》 |2019年第1期|223-238|共16页
  • 作者单位

    La Venta Geog Explorat Assoc Via Priamo Tron 35-F I-31100 Treviso Italy|Alma Mater Studiorum Bologna Univ Dept Biol Geol & Environm Sci BiGeA Bologna Italy|Theraphosa Exploring Team Puerto Ordaz Venezuela;

    La Venta Geog Explorat Assoc Via Priamo Tron 35-F I-31100 Treviso Italy;

    La Venta Geog Explorat Assoc Via Priamo Tron 35-F I-31100 Treviso Italy|Florence Univ Dept Earth Sci Via G La Pira 4 I-50121 Florence Italy;

    La Venta Geog Explorat Assoc Via Priamo Tron 35-F I-31100 Treviso Italy|Alma Mater Studiorum Bologna Univ Dept Biol Geol & Environm Sci BiGeA Bologna Italy;

    Genua Univ Dept Earth Environm & Life Sci DISTAV Corso Europa 26 Genoa Italy;

    Alma Mater Studiorum Bologna Univ Dept Biol Geol & Environm Sci BiGeA Bologna Italy;

    Alma Mater Studiorum Bologna Univ Dept Biol Geol & Environm Sci BiGeA Bologna Italy;

    La Venta Geog Explorat Assoc Via Priamo Tron 35-F I-31100 Treviso Italy|Theraphosa Exploring Team Puerto Ordaz Venezuela;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Quartz sandstone; Solutional weathering; Sinkhole; Speleogenesis;

    机译:石英砂岩;溶液风化;下沉;斯派孔发生;

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