Laser Diffraction as An Innovative Alternative to Standard Pipette Method for Determination of Soil Texture Classes in Central Europe

Author:

Igaz Dušan,Aydin ElenaORCID,Šinkovičová Miroslava,Šimanský Vladimír,Tall AndrejORCID,Horák Ján

Abstract

The paper presents the comparison of soil particle size distribution determined by standard pipette method and laser diffraction. Based on the obtained results (542 soil samples from 271 sites located in the Nitra, Váh and Hron River basins), regression models were calculated to convert the results of the particle size distribution by laser diffraction to pipette method. Considering one of the most common soil texture classification systems used in Slovakia (according to Novák), the emphasis was placed on the determination accuracy of particle size fraction <0.01 mm. Analysette22 MicroTec plus and Mastersizer2000 devices were used for laser diffraction. Polynomial regression model resulted in the best approximation of measurements by laser diffraction to values obtained by pipette method. In the case of particle size fraction <0.01 mm, the differences between the measured values by pipette method and both laser analyzers ranged in average from 3% up to 9% and from 2% up to 11% in the case of Analysette22 and Mastersizer2000, respectively. After correction, the differences decreased to average 3.28% (Analysette22) and 2.24% (Mastersizer2000) in comparison with pipette method. After recalculation of the data, laser diffraction can be used alongside the sedimentation methods.

Publisher

MDPI AG

Subject

Water Science and Technology,Aquatic Science,Geography, Planning and Development,Biochemistry

Reference60 articles.

1. Laser diffractometry in the measurements of soil and sediment particle size distribution;Bieganowski;Adv. Agron.,2018

2. Evaluation of soil texture determination using soil fraction data resulting from laser diffraction method

3. Is the Laser Diffraction Method Reliable for Soil Particle Size Distribution Analysis?

4. Fyzikálne Vlastnosti Pôdy [Physical Properties of Soil];Fulajtár,2006

5. Základné Merania v Hydropedológii [Basic Measurements in Hydropedology];Igaz,2017

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