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Physicochemical Bases of Differences between the Sedimentometric and Laser-Diffraction Techniques of Soil Particle-Size Analysis

机译:粒径分析中沉降与激光衍射技术差异的理化基础

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Comparison of the particle-size distributions in different soils showed that the sedimentation method (Kachinskii pipette method) gives higher (by 1.5-5 times) values of the clay content than the laser diffraction method. This is related to the significant variation in density of soil solids, which is taken to be constant in the sedimentation method. Therefore, particles of significantly larger size and lower density fall into this fraction. Using optical, electron, and confocal microscopy, it was shown that the low density of soil particles of silt size falling into the sedimentometric clay fraction is related to the organomineral shell (film) around the soil micro-particles. This shell contributes to the linking of microparticles into aggregates at the lower average density. As a result, these aggregates have significantly larger size and lower density and settle with the same velocity as the small particles with the average density of the solid phase during the sedimentation particle-size analysis.
机译:比较不同土壤中的粒度分布表明,沉降法(Kachinskii移液管法)比激光衍射法得到的粘土含量更高(1.5-5倍)。这与土壤固体密度的显着变化有关,在沉降方法中,该变化被认为是恒定的。因此,具有较大尺寸和较低密度的颗粒落入该部分。使用光学,电子和共聚焦显微镜,结果表明,落入沉积黏土级分的淤泥大小的土壤颗粒的低密度与土壤微粒周围的有机矿物壳(膜)有关。该壳有助于以较低的平均密度将微粒连接成聚集体。结果,这些聚集体具有大得多的尺寸和更低的密度,并且在沉降粒度分析期间以与固相平均密度的小颗粒相同的速度沉降。

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