首页> 外文期刊>Polish Journal of Soil Science >DETERMINING DISPERSION OF SELECTED MOUNTAIN SOILS USING ELECTRICAL POTENTIAL DIFFERENCES IN A SYSTEM OF CONJUGATED LTCC ELECTRODES
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DETERMINING DISPERSION OF SELECTED MOUNTAIN SOILS USING ELECTRICAL POTENTIAL DIFFERENCES IN A SYSTEM OF CONJUGATED LTCC ELECTRODES

机译:利用共轭LTCC电极系统中的电势差确定山地土壤的分散性

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摘要

The phenomena of colloid coagulation and peptization have a significant role in the circulation of elements in the surface layer of lithosphere, and in particular in the soil environment. Thanks to their structural properties, the mineral, mineral-organic and organic colloids that occur in colloidal systems largely influence the entire processes leading to erosion. The majority of issues related to the intensification of migration soil colloids and ions in the lithosphere are related to their electrokinetic properties. An attempt has been made in this paper to determine the dispersion state of soil colloidal systems exposed to water erosion by measuring the difference of electrical potentials generated in the gravimetric sedimentation process of colloidal particles. Preliminary results make it plausible to claim that, depending on the quantity and quality of ions in soil solutions and on the qualitative and quantitative composition of colloids, the potential difference determined using measurementelectrodes is proportional to the electrokinetic potential of the particles. Such measurements can be carried out in the field. The suggested method is based on recording the difference in potentials with a conjugated measurement electrode, which enablesdetermination of the state of soil colloidal dispersion in the biochemical processes, which occur in the surface layers of the lithosphere.
机译:胶体的凝结和胶溶现象在岩石圈表层的元素循环中,特别是在土壤环境中,具有重要作用。由于其结构特性,胶体系统中存在的矿物胶,矿物有机胶和有机胶在很大程度上影响了导致腐蚀的整个过程。与岩石圈中迁移的土壤胶体和离子的加剧有关的大多数问题都与它们的电动特性有关。本文尝试通过测量胶体颗粒的重力沉降过程中产生的电势差来确定暴露于水蚀的土壤胶体系统的分散状态。初步的结果使人们有理由断言,根据土壤溶液中离子的数量和质量以及胶体的定性和定量组成,使用测量电极确定的电势差与颗粒的电动势成正比。这样的测量可以在现场进行。所建议的方法是基于使用共轭测量电极记录电势差的,这可以确定生化过程中土壤胶体分散状态,该状态发生在岩石圈表层。

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