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Application of Flow Field-Flow Fractionation and Laser Sizing to Characterize Soil Colloids in Drained and Undrained Lysimeters

机译:流场分流和激光定径在排水和不排水测渗仪中土壤胶体表征中的应用

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摘要

This paper reports the use of a new technique, flow field-flow fractionation (FlFFF), for the characterization of soil sampled under grassland. FlFFF can be used to determine the fine colloidal material in the <1 µm fraction obtained by gravitational settling of 1% m/v soil suspensions. The aim of this work was to determine the potential of FIFFF to characterize soil colloids in drained and undrained field lysimeters from soil cores sampled at different depths. Two different grassland lysimeter plots of 1 ha, one drained and one undrained, were investigated, and the soil was sampled at 20-m intervals along a single diagonal transect at three different depths (0–2, 10–12, and 30–32 cm). The results showed that there was a statistically significant (P = 0.05) increase in colloidal material at 30- to 32-cm depth along the transect under the drained lysimeter, which correlates with disturbance of the soil at this depth due to the installation of tile drains at 85-cm depth backfilled to 30-cm depth with gravel. Laser sizing was also used to determine the particles in the size range 1 to 2000 µm and complement the data obtained using FlFFF because laser sizing lacks resolution for the finer colloidal material (0.1–1.0 µm). The laser sizing data showed increased heterogeneity at 30- to 32-cm depth, particularly in the 50 to 250 µm size fraction. Therefore FIFFF characterized the finer material and laser sizing the coarser soil fraction (<2000 µm) at depth in drained and undrained grassland. This is of importance as colloidal material is more mobile than the larger material and consequently an important vector for contaminant transport from agricultural land to catchments.
机译:本文报道了使用一种新技术流场流分级法(FlFFF)表征草地下采样的土壤的特征。 FlFFF可用于通过重力沉降1%m / v的土壤悬浮液获得的<1 µm比例的精细胶体材料。这项工作的目的是确定FIFFF的潜力,以表征在不同深度取样的土壤核心中排水和不排水野外测渗仪中的土壤胶体。调查了两个不同的1公顷的草地蒸渗仪样地,一个排水了,一个排水不了,沿着一个对角线样条以20 m的间隔在三个不同的深度(0–2、10–12和30–32)对土壤进行了采样。厘米)。结果表明,在排水渗漏仪下,沿着样带在30-32 cm深度处,胶体材料在统计学上有显着增长(P = 0.05),这与由于安装瓷砖而在该深度处的土壤扰动有关排水深度为85厘米,用砾石回填至深度30厘米。激光上浆还用于确定1至2000 µm尺寸的颗粒,并补充了使用FFFFF获得的数据,因为激光上浆缺乏对较细的胶体材料(0.1–1.0 µm)的分辨率。激光定径数据显示,在30到32厘米深度处,特别是在50到250 µm尺寸级分中,异质性增加。因此,FIFFF对较细的物料进行了表征,并对在排水和不排水的草原上较深的土壤部分(<2000 µm)进行了激光定径。这一点很重要,因为胶体材料比较大的材料更具流动性,因此是污染物从农田到集水区的重要载体。

著录项

  • 来源
    《Journal of Enviromental Quality》 |2008年第4期|p.1656-1660|共5页
  • 作者单位

    a School of Earth, Ocean and Environmental Sciences, Univ. of Plymouth, Drake Circus, Plymouth, Devon, PL4 8AA, UKb Cross Institute Programme for Sustainable Soil Function (SoilCIP), Inst. of Grassland and Environmental Research (IGER), North Wyke, Okehampton, Devon, EX20 2SB, UK;

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

    FlFFF;

    机译:FFFF;
  • 入库时间 2022-08-17 23:22:45

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