Element Composition of Fractionated Water-Extractable Soil Colloidal Particles Separated by Track-Etched Membranes

Membrane fractionation with track-etched membranes was used to size-profile the microelement composition of water-extractable soil colloids (WESCs). The aim of the study is the element composition of narrow WESC fractions of typical chernozems in the range of 0.01–10 µm. Micro-/ultrafiltration throu...

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Main Authors: Dmitry S. Volkov, Olga B. Rogova, Svetlana T. Ovseenko, Aleksandr Odelskii, Mikhail A. Proskurnin
Format: Article
Language:English
Published: MDPI AG 2023-11-01
Series:Agrochemicals
Subjects:
Online Access:https://www.mdpi.com/2813-3145/2/4/32
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author Dmitry S. Volkov
Olga B. Rogova
Svetlana T. Ovseenko
Aleksandr Odelskii
Mikhail A. Proskurnin
author_facet Dmitry S. Volkov
Olga B. Rogova
Svetlana T. Ovseenko
Aleksandr Odelskii
Mikhail A. Proskurnin
author_sort Dmitry S. Volkov
collection DOAJ
description Membrane fractionation with track-etched membranes was used to size-profile the microelement composition of water-extractable soil colloids (WESCs). The aim of the study is the element composition of narrow WESC fractions of typical chernozems in the range of 0.01–10 µm. Micro-/ultrafiltration through a cascade of track-etched polycarbonate membrane filters with pore sizes of 5, 2, 1, 0.8, 0.4, 0.2, 0.1, 0.05, 0.03, and 0.01 µm at room temperature was used. ICP–AES using direct spraying of obtained fractions without decomposition was used; Al, Ba, Cd, Cr, Cu, Fe, Mn, Si, Sr, Ti, Zn, Ca, K, Mg, Na, P, and S were found. Narrow WESC fractions differ significantly. For macro- and microelements, maximum amounts of Si, Al, Fe, and Ti and their maximum percentages are observed in fractions with sizes above 1 µm, while Ca, Mg, Mn, Cu, Zn, K, and S are accumulated more in fractions with sizes below 1 µm. The developed approach provides preparative isolation of a detailed set of narrow WESC fractions in the micrometer–nanometer range. This provides element soil profiles that reveal distinct differences and the individual character of each fraction as well as trends in changes in the mineral matrix and microelement composition with fraction size.
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spelling doaj.art-dd810e282c5647e59d2532839c63cc682023-12-22T13:45:59ZengMDPI AGAgrochemicals2813-31452023-11-012456158010.3390/agrochemicals2040032Element Composition of Fractionated Water-Extractable Soil Colloidal Particles Separated by Track-Etched MembranesDmitry S. Volkov0Olga B. Rogova1Svetlana T. Ovseenko2Aleksandr Odelskii3Mikhail A. Proskurnin4Chemistry Department, M.V. Lomonosov Moscow State University, 119991 Moscow, RussiaChemistry Department, M.V. Lomonosov Moscow State University, 119991 Moscow, RussiaChemistry Department, M.V. Lomonosov Moscow State University, 119991 Moscow, RussiaChemistry Department, M.V. Lomonosov Moscow State University, 119991 Moscow, RussiaChemistry Department, M.V. Lomonosov Moscow State University, 119991 Moscow, RussiaMembrane fractionation with track-etched membranes was used to size-profile the microelement composition of water-extractable soil colloids (WESCs). The aim of the study is the element composition of narrow WESC fractions of typical chernozems in the range of 0.01–10 µm. Micro-/ultrafiltration through a cascade of track-etched polycarbonate membrane filters with pore sizes of 5, 2, 1, 0.8, 0.4, 0.2, 0.1, 0.05, 0.03, and 0.01 µm at room temperature was used. ICP–AES using direct spraying of obtained fractions without decomposition was used; Al, Ba, Cd, Cr, Cu, Fe, Mn, Si, Sr, Ti, Zn, Ca, K, Mg, Na, P, and S were found. Narrow WESC fractions differ significantly. For macro- and microelements, maximum amounts of Si, Al, Fe, and Ti and their maximum percentages are observed in fractions with sizes above 1 µm, while Ca, Mg, Mn, Cu, Zn, K, and S are accumulated more in fractions with sizes below 1 µm. The developed approach provides preparative isolation of a detailed set of narrow WESC fractions in the micrometer–nanometer range. This provides element soil profiles that reveal distinct differences and the individual character of each fraction as well as trends in changes in the mineral matrix and microelement composition with fraction size.https://www.mdpi.com/2813-3145/2/4/32water-extractable colloidssoil colloidschernozemsize fractionationultrafiltrationtrack-etched membranes
spellingShingle Dmitry S. Volkov
Olga B. Rogova
Svetlana T. Ovseenko
Aleksandr Odelskii
Mikhail A. Proskurnin
Element Composition of Fractionated Water-Extractable Soil Colloidal Particles Separated by Track-Etched Membranes
Agrochemicals
water-extractable colloids
soil colloids
chernozem
size fractionation
ultrafiltration
track-etched membranes
title Element Composition of Fractionated Water-Extractable Soil Colloidal Particles Separated by Track-Etched Membranes
title_full Element Composition of Fractionated Water-Extractable Soil Colloidal Particles Separated by Track-Etched Membranes
title_fullStr Element Composition of Fractionated Water-Extractable Soil Colloidal Particles Separated by Track-Etched Membranes
title_full_unstemmed Element Composition of Fractionated Water-Extractable Soil Colloidal Particles Separated by Track-Etched Membranes
title_short Element Composition of Fractionated Water-Extractable Soil Colloidal Particles Separated by Track-Etched Membranes
title_sort element composition of fractionated water extractable soil colloidal particles separated by track etched membranes
topic water-extractable colloids
soil colloids
chernozem
size fractionation
ultrafiltration
track-etched membranes
url https://www.mdpi.com/2813-3145/2/4/32
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