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Standard state of soil dispersions for rheological measurements

机译:流变学测量的土壤分散体的标准状态

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摘要

The structural degradation of land is increasing all over the world; hence any effort to characterize it effectively is of great practical importance. By rheology we were able to compare the stability and resilience of structured soils containing the same clay minerals. The shear resistance of soil dispersions can be measured over a limited range of solid to water ratios. A precise methodology for rheological characterization of soil dispersions which contain as much water as they can hold in equilibrium, introduced here as standard state, was developed within a European specific targeted research project (acronym: INDEX-GOCE-CT-2003-505450) to determine parameters indicating structural degradation of European soils. We also aimed to find a measuring method for non specialists to follow structural changes in soils. Based on the entire INDEX sample pool, it was shown that soils with particles smaller than 1 mm can be measured in a reproducible way. First the water content of dispersions in a standard state (WCSDinStS) containing the maximum occluded water had to be determined, which itself is a characteristic of soil quality. Then the method for preparation of dispersions was standardized at 25 + 0.1 ℃ and 1 bar, and the rheological measurements were performed with a stress controlled rheometer using plate-to-plate and vane sensors. The flow character of all concentrated soil dispersions was viscoplastic and showed thixotropy, with two exceptions. Rheological parameters, I.e., initial stress, thixotropic hysteresis area, extrapolated (Bingham) yield value, plastic viscosity and absolute yield stress, of soil dispersions were determined. They changed in parallel, and were related to the particle adhesion, sensitivity to mechanical effects, and the strength of the physical network built up during the gradual aggregation of particles in soil dispersions. It was shown that the fragile networks of particles are thixotropic, so that external forces above the measurable limits destroy them, but they recover on standing for a longer time period. In the present paper, the development of a precise methodology for structural characterization of several clayey systems is described in detail showing only some examples from the thousands of rheological measurements, and in the end a useful comparison with field test measurements is shown.
机译:全世界土地的结构退化正在加剧;因此,任何有效地表征它的努力都是非常重要的。通过流变学,我们能够比较包含相同粘土矿物的结构化土壤的稳定性和回弹性。可以在有限的固水比范围内测量土壤分散体的抗剪切力。在一项针对欧洲的针对性研究项目(简称:INDEX-GOCE-CT-2003-505450)中,开发了一种精确的方法,用于流变学表征土壤分散液,该分散液含有尽可能多的水分以达到平衡状态,此处以标准状态引入。确定指示欧洲土壤结构退化的参数。我们还旨在为非专业人员找到一种测量方法,以跟踪土壤的结构变化。基于整个INDEX样品池,结果表明可以以可重复的方式测量粒径小于1 mm的土壤。首先,必须确定包含最大吸留水的标准状态下的分散体(WCSDinStS)的水含量,这本身就是土壤质量的特征。然后将分散体的制备方法在25 + 0.1℃和1 bar下标准化,并使用板对板和叶片传感器,通过应力控制流变仪进行流变学测量。除了两个例外,所有浓缩的土壤分散体的流动特性都是粘塑性的,并具有触变性。测定了流变参数,即初始应力,触变滞后面积,外推(宾汉姆)屈服值,塑性粘度和绝对屈服应力。它们平行变化,并且与颗粒附着力,对机械作用的敏感性以及在土壤分散体中颗粒逐渐聚集过程中建立的物理网络的强度有关。结果表明,易碎的粒子网络是触变的,因此超过可测量极限的外力会破坏它们,但它们在静置较长时间后会恢复。在本文中,详细描述了开发精确的方法来表征几种黏土系统的方法,仅显示了数千种流变学测量中的一些示例,最后显示了与现场测试测量的有用比较。

著录项

  • 来源
    《Applied clay science》 |2010年第4期|p.594-601|共8页
  • 作者单位

    Department of Physical Chemistry and Material Science, University of Szeged, H-6720 Szeged, Aradi Vt. 1., Hungary;

    rnDepartment of Physical Chemistry and Material Science, University of Szeged, H-6720 Szeged, Aradi Vt. 1., Hungary;

    rnDepartment of Soil Science and Agrochemistry, Szent Istvan University, H-2100 Goedoelloe, Pater Karoly 1., Hungary;

    rnDepartment of Soil Science and Agrochemistry, Szent Istvan University, H-2100 Goedoelloe, Pater Karoly 1., Hungary;

    rnHelmholtz Zentrum Muenchen-German Research Center for Environmental Health (GmbH), Institute of Soil Ecology, Ingolstaedter Landstrasse 1, D-85764, Neuherberg, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    deformation; equilibrium sediments; soil structure; rheology; thixotropy;

    机译:形变;平衡沉积物;土壤结构流变学触变性;
  • 入库时间 2022-08-17 13:55:25

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