首页> 外文期刊>Catena: An Interdisciplinary Journal of Soil Science Hydrology-Geomorphology Focusing on Geoecology and Landscape Evolution >Physical, chemical, and biological investigation of an unconformity between limestone and sandstone in a coastal area: Iriomote Island case study
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Physical, chemical, and biological investigation of an unconformity between limestone and sandstone in a coastal area: Iriomote Island case study

机译:沿海地区石灰石和砂岩之间无关的物理,化学和生物学调查:IrioMote Island案例研究

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摘要

Although physical and chemical weathering due to groundwater and/or wind flow is frequently observed in outcrops, the geological mechanism responsible for these processes is not fully understood. In the northern coastal area of Iriomote Island, Japan, rock collapse caused by weathering of an unconformity between Pleistocene limestones and Miocene sandstones has been observed. The boundary is characterised by distinctive columnar structures in the sandstone, possibly induced by preferential weathering along desiccation-induced fractures. We found that the formation processes of the columns may be closely related to the rock collapse. In this study, the unconformable layer between the Pleistocene Ryukyu Group and the Miocene Yaeyama Group was investigated to determine the geological processes involved, such as the formation, weathering mechanisms, and alteration of chemical and physical properties. Consequently, the macroscopic and microscopic geometric forms, compressive strength, and mineral composition of the columnar structures were determined. Carbon stable isotopic analysis of the columns indicated that microbial solidification phenomena might have been involved in column formation. A formation scenario for the columns has subsequently been proposed, and we found that past stratification processes based on chemical and biological reactions with desiccation cracks on sandy soil directly influenced the modern dynamic rock collapse.
机译:尽管在露头中经常观察到由于地下水和/或风流引起的物理和化学风化,但对这些过程的地质机制尚未完全了解。在日本Iriomote岛北部沿海地区,观察到了由更新世石灰岩和中新世砂岩之间的不整合面风化引起的岩石崩塌。该边界以砂岩中独特的柱状结构为特征,可能是由沿干燥诱导裂缝的优先风化引起的。我们发现,柱的形成过程可能与岩石崩塌密切相关。在本研究中,对更新世琉球群和中新世Yaeyama群之间的不整合层进行了调查,以确定所涉及的地质过程,例如形成、风化机制以及化学和物理性质的改变。因此,确定了柱状结构的宏观和微观几何形状、抗压强度和矿物组成。柱的碳稳定同位素分析表明,微生物凝固现象可能与柱的形成有关。随后提出了立柱的形成方案,我们发现,过去基于化学和生物反应的分层过程与砂土上的干燥裂缝直接影响了现代动态岩石崩塌。

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