哥伦比亚安第斯泥岩的综合表征:了解其复杂性以降低风险

IF 1.5 4区 材料科学 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY Micro & Nano Letters Pub Date : 2023-01-23 DOI:10.3390/micro3010007
German Alfonso Reyes-Mendoza, J. Henao-Martínez, Eduardo Castro Marín
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引用次数: 0

摘要

本文结合个人、机构和学术经验,包括一篇即将完成的博士论文(地貌学和风险研究方向),全面介绍了哥伦比亚安第斯山脉北部Paja地层的特殊性和局限性。这种细粒海相岩石在不同的地区造成严重的破坏,几乎没有蔓延,而且非常不利,特别是在东科迪勒拉(桑坦德省和昆迪纳马拉省),其社会环境问题引发了vacimlez市的一项受欢迎的法律行动,因为房屋开裂和倒塌,道路损坏和城市地区的山体滑坡,以及流动,下沉和高水文地球化学动力或稀土。虽然在农村地区也出现了自燃现象。了解这些问题的起源和相互关系是这项工作的主要目标。首先,我们将包括一些简要的定义、术语和关键方法,以了解固结岩土材料、位置和问题的背景;然后,介绍了纳米科学家通过现场技术和常规仪器实验室分析(水和土壤化学测试,用放大镜描述样品,用偏振光显微镜岩石学,风化岩的微观形貌)(重点是RXD-RXF, SEM, ir -拉曼光谱,TOC-TS)获得的中观-宏观-微观研究结果。这些特征和新知识必须在社会和制度上加以利用,并应用于土地利用规划和风险管理,以便在人口稠密的山区具有下白垩纪岩石地层和相关第四纪沉积物的挑战性环境的可持续性,以及对比的热带水文气候制度,地质活跃,因此不稳定和不安全。
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Integrated Characterization of Mudstones in the Andes of Colombia: Understanding Its Complexities for Risk Mitigation
This article presents a comprehensive vision of particularities and constraints of the Paja Formation in the Northern Andes of Colombia, supported by personal, institutional, and academic experiences, including a doctoral thesis in completion (geomorphology and risks research line). Such fine-grained marine rocks cause severe damage in diverse zones, with little spread, and are very unfavorable, especially within the Eastern Cordillera (departments of Santander and Cundinamarca), whose socio-environmental problems motivated a popular legal action in the municipality of Vélez due to the cracking and collapse of houses, damage to roads and landslides in the urban area, as well as flows, subsidence, and high hydrogeochemical dynamism or rare earths, although they also presented spontaneous ignition at the rural area. Understanding how these problems originate and interrelate is the main objective of the work. At the beginning, we include some brief definitions, terms, and key approaches to understand the consolidated geomaterials, location, and background of the problem; then, the results of meso–macro–micro studies, obtained by combining the field techniques and conventional instrumental laboratory analyses (tests on the chemistry of water and soil, description of samples with magnifying glasses, petrography with a polarized light microscope, micromorphology of regoliths–colluvions) of nanoscientists (emphasizing RXD-RXF, SEM, IR-Raman spectroscopy, TOC-TS) are presented. These characterizations and new knowledge must be socially and institutionally appropriated and applied in land use planning and risk management for the sustainability of challenging environments with the stratiforms of Lower Cretaceous rocks and associated Quaternary deposits in populated mountainous areas and contrasting intertropical hydroclimatological regimes, geologically active, so unstable and insecure.
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来源期刊
Micro & Nano Letters
Micro & Nano Letters 工程技术-材料科学:综合
CiteScore
3.30
自引率
0.00%
发文量
58
审稿时长
2.8 months
期刊介绍: Micro & Nano Letters offers express online publication of short research papers containing the latest advances in miniature and ultraminiature structures and systems. With an average of six weeks to decision, and publication online in advance of each issue, Micro & Nano Letters offers a rapid route for the international dissemination of high quality research findings from both the micro and nano communities. Scope Micro & Nano Letters offers express online publication of short research papers containing the latest advances in micro and nano-scale science, engineering and technology, with at least one dimension ranging from micrometers to nanometers. Micro & Nano Letters offers readers high-quality original research from both the micro and nano communities, and the materials and devices communities. Bridging this gap between materials science and micro and nano-scale devices, Micro & Nano Letters addresses issues in the disciplines of engineering, physical, chemical, and biological science. It places particular emphasis on cross-disciplinary activities and applications. Typical topics include: Micro and nanostructures for the device communities MEMS and NEMS Modelling, simulation and realisation of micro and nanoscale structures, devices and systems, with comparisons to experimental data Synthesis and processing Micro and nano-photonics Molecular machines, circuits and self-assembly Organic and inorganic micro and nanostructures Micro and nano-fluidics
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