02726naa a2200373 a 450000100080000000500110000800800410001902400540006010000170011424501740013126000090030552015560031465000200187065000270189065000150191765000250193265000220195765300200197965300260199965300270202565300200205265300280207265300240210070000200212470000190214470000190216370000290218270000280221170000190223970000210225870000170227970000170229677300390231321460802022-09-06 2022 bl uuuu u00u1 u #d7 ahttps://doi.org/10.1016/j.catena.2022.1065812DOI1 aALVES, A. C. aComparison of solution extraction methods for estimating electrical conductivity in soils with contrasting mineralogical assemblages and textures.h[electronic resource] c2022 aCharacterization of the soil solution is of fundamental importance for monitoring plant nutrient availability, environmental contamination, and evaluation of salt-affected soils. Due to the diversity of methodologies adopted in various parts of the world, comparison of the most common extraction methods in different types of soils is warranted. This study compared the efficiency of five soil solution extraction methods for five soils with different mineralogical assemblages and textures with the most commonly used saturated paste extract method. The extraction methods compared were: centrifugation, porous extractor capsules, and soil-water extracts (soil:water ratio of 1:2, 1:5, or 1:10). The soil types evaluated were: Regosol, Luvisol, Gleysol, Nitisol and Ferrosol in the soil surface and subsurface horizons. Linear regression equations were developed that allowed accurate estimation of electrical conductivity of the saturated paste extract (ECse). Ten equations were developed for the porous capsule method, eight were developed for the centrifugation method (with the exception of the Regosol with 900 g k-1 of total sand, which was not suitable for this method due to the high sand content), and 30 equations were developed for the soil-water extract method (at each of the soil:water ratios tested). The diversity of equations developed for soils with different mineralogical assemblages and textures should assist growers and extension workers who need to know the soil electrical conductivity for making soil management decisions. aCentrifugação aCondutividade Eletrica aExtração aRelação Solo-Água aSolução do Solo aCápsula porosa aCentrifugation method aMétodos de extração aPorous capsules aSaturated paste extract aSoil-water extracts1 aSOUZA, E. R. de1 aMELO, H. F. de1 aPINTO, J. G. O1 aREGO JUNIOR, F. E. de A.1 aSOUZA JÚNIOR, V. S. de1 aMARQUES, F. A.1 aSANTOS, M. A. do1 aSCHAFFER, B.1 aGHEYI, H. R. tCatenagv. 218, 106581, Nov. 2022.