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首页> 外文期刊>Journal of South American earth sciences >Computed tomography assessment of soil and sediment porosity modifications from exposure to an acid copper sulfate solution
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Computed tomography assessment of soil and sediment porosity modifications from exposure to an acid copper sulfate solution

机译:从暴露于酸铜硫酸铜溶液的土壤和沉积物孔隙率修饰的计算机断层扫描评估

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摘要

Mine spills, like acidified copper sulfate solutions, are known for the contaminating effects in soils and sediments, chemically altering them. However, little is known about the physical effects of this process. Therefore, we investigated the response of the soil and sediments porosity to the infiltration of an acid copper sulfate solution (ACSS) generated for mining purposes. The samples used consisted of intact/undisturbed soil and sediment columns extracted in the upper Rio Sonora basin, located in northern Mexico in the state of Sonora, where extensive mining activity has been carried out since 1880's. Three infiltration and solute transport experiments were conducted to monitor the changes in pH, electrical conductivity (EC) and flow velocity in the collected leachate. Computed X-Ray Tomography was used to microscopically analyze a series of soil porosity images before and after each irrigation with ACSS. We observed that the interactions of soil/sediment matrices with ACSS, promoted changes in the flow velocity, which can be related to the modification of the original porosity. The computed X-Ray Tomography showed that the passage of the ACSS through the soil and sediment caused different effects in both matrices: (1) a decrease in the number and size of pores in the soil column and (2) an increase in the number and size of pores in the sediment, showing that the passage of the solution in both matrices had opposite effects, causing a decrease in soil porosity as a possible response to the presence of suspended particles related to the ACSS, and the formation of new minerals that caused the sealing of pores in the soil and the erosion of the walls of the pores in the sediment creating preferential flows. This work shows that soils and sediments that interact with the ACSS are not only affected chemically, but also that there may appear modifications in porosity, leading to study also the physical effects that occur in sites affected by this type of events.
机译:矿井溢出,如酸化硫酸铜溶液,以土壤和沉积物中的污染效果,化学改变。但是,关于该过程的物理效果很少。因此,我们研究了土壤和沉积物孔隙率的响应,以进行采矿目的产生的酸铜硫酸铜溶液(ACSS)的浸润。使用的样品由位于墨西哥北部的上部里约索诺拉盆地中提取的完整/未受干扰的土壤和沉积物柱组成,该栏中于墨西哥北部的索诺拉,自1880年以来已经进行了广泛的采矿活动。进行三种渗透和溶质运输实验以监测收集的渗滤液中pH,导电性(EC)和流速的变化。计算的X射线层析造影用于在每次灌溉之前和之后进行微观分析一系列土壤孔隙率图像。我们观察到,土壤/沉积物矩阵与ACS的相互作用,促进了流速的变化,这可能与原始孔隙率的改性有关。计算的X射线断层扫描表明,ACS通过土壤和沉积物的通过在两种矩阵中引起不同的效果:(1)土壤柱中孔的数量和尺寸的减少和(2)增加数量沉积物中孔的尺寸,表明在两个基质中的溶液通过效果相反,导致土壤孔隙率的降低作为与与ACS相关的悬浮颗粒存在的可能反应,以及形成新的矿物质引起了土壤中毛孔的密封和沉积物中孔壁的侵蚀,从而产生优先流动。这项工作表明,与ACSS相互作用的土壤和沉积物不仅影响了化学影响,而且也可能出现孔隙率的修饰,导致研究受此类事件影响的部位中发生的物理效果。

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  • 来源
    《Journal of South American earth sciences 》 |2021年第6期| 103194.1-103194.13| 共13页
  • 作者单位

    Univ Nacl Autonoma Mexico Posgrado Ciencias Tierra Ciudad Univ Circuito Exterior S-N Mexico City DF Mexico;

    Univ Nacl Autonoma Mexico Inst Geol Ciudad Univ Circuito Exterior S-N Mexico City DF Mexico;

    Univ Nacl Autonoma Mexico Inst Ciencias Aplicadas & Tecnol Ciudad Univ Circuito Exterior S-N Mexico City DF Mexico;

    Univ Nacl Autonoma Mexico Inst Ciencias Aplicadas & Tecnol Ciudad Univ Circuito Exterior S-N Mexico City DF Mexico;

    Univ Nacl Autonoma Mexico Inst Geol Ciudad Univ Circuito Exterior S-N Mexico City DF Mexico;

    Inst Tecnol Sonora Dept Ciencias Agua & Med Ambiente Sonora Mexico;

    CONACYT CDMX Insurgentes 1582 Credito Constructor Benito Juarez 03940 Mexico|Univ Nacl Autonoma Mexico Estac Reg Noroeste IGL Colosio & Madrid S-N Hermosillo 83000 Sonora Mexico;

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

    oil/sediment porosity; X-ray computer tomography scan analysis; Acidity;

    机译:油/沉积物孔隙;X射线计算机断层扫描扫描分析;酸度;

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