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“铁离子相对风化指数”:一种识别红砂岩风化程度的新指标。

"Iron Ion Relative Weathering Index": A New Index for Identifying the Weathering Degree in Red Sandstone.

作者信息

Li Saidong, Yang Genlan, Jiang Wenjie, Xiang Xiqiong, Huang Chongping

机构信息

College of Resources and Environmental Engineering, Guizhou University, Guiyang 550025, China.

Key Laboratory of Karst Geological Resources and Environment, Ministry of Education, Guizhou University, Guiyang 550025, China.

出版信息

ACS Omega. 2024 Feb 21;9(9):10233-10242. doi: 10.1021/acsomega.3c07417. eCollection 2024 Mar 5.

Abstract

The red bed region in west central and southern China is affected by hot and humid climate, where sandstone is intensely weathered. The weathered hazardous rocks seriously threaten the road and slope, making it challenging to protect the Danxia red bed. After considering the red sandstone's material composition and the local area's main weathering effects. We noticed that iron ions in red sandstone are susceptible to weathering, which leads to changes in the valence and content of iron ions. This study attempts to establish a new chemical weathering index called the "iron ion relative weathering index" (IRWI) to classify the weathering degree of red sandstone. This paper mainly explores the changes of physical characteristics (mineral composition, physical indicator, microstructure, and pore structure) from the surface to the interior of red sandstone in the actual environment and their correlation with IRWI. The study on the correlation between the physical indicators such as longitudinal wave velocity, resistivity, density, water absorption, and IRWI reveals that they have the same trends and are closely related to the weathering degree. The shallow weathering zone of Chishui red sandstone is divided into strong, medium, and slight weathering zones. Microscopically, the cementation and pore distribution of the red sandstone are consistent with the characteristics of the weathering zone. Therefore, IRWI not only is a reliable chemical quantitative method in indicating the weathering of red sandstone but also takes into account the controlling role of iron in the color development of red beds, which provides a new research idea for the quantitative identification of weathering degree and color mechanism of red sandstone.

摘要

中国中西部和南部的红层地区受炎热潮湿气候影响,砂岩遭受强烈风化。风化后的危岩严重威胁道路和边坡,给丹霞红层的保护带来挑战。在考虑红砂岩的物质组成和当地主要风化作用后,我们注意到红砂岩中的铁离子易风化,这导致铁离子的价态和含量发生变化。本研究试图建立一种新的化学风化指标——“铁离子相对风化指数”(IRWI),用于划分红砂岩的风化程度。本文主要探讨了实际环境中红砂岩从表面到内部的物理特性(矿物组成、物理指标、微观结构和孔隙结构)变化及其与IRWI的相关性。对纵波速度、电阻率、密度、吸水率等物理指标与IRWI之间相关性的研究表明,它们具有相同的趋势,且与风化程度密切相关。赤水红砂岩的浅风化带分为强风化带、中风化带和弱风化带。微观上,红砂岩的胶结和孔隙分布与风化带特征一致。因此,IRWI不仅是一种可靠的化学定量方法,可用于指示红砂岩的风化情况,还考虑了铁在红层颜色形成中的控制作用,为红砂岩风化程度的定量识别和颜色机制研究提供了新的思路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/13e0/10918807/d7c11daa85ec/ao3c07417_0001.jpg

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