Impact of an integrated no-till soybean–beef cattle production system on Oxisol mineralogy in southern Brazil

Agricultural activities in the state of Rio Grande do Sul (RS), southern Brazil, have traditionally been quite intensive and led to decreased overall soil quality, and to depletion of soil organic matter and nutrients. There have been attempts at restoring soil quality by using integrated crop–lives...

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Published in:Applied clay science Vol. 149; pp. 67 - 74
Main Authors: Bertolazi, Vanessa Thoma, Inda, Alberto Vasconcellos, Caner, Laurent, Martins, Amanda Posselt, Vaz, Marcos André B., Bonnet, Marine, Anghinoni, Ibanor, Carvalho, Paulo César F.
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Language:English
Published: Elsevier B.V 01-12-2017
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Abstract Agricultural activities in the state of Rio Grande do Sul (RS), southern Brazil, have traditionally been quite intensive and led to decreased overall soil quality, and to depletion of soil organic matter and nutrients. There have been attempts at restoring soil quality by using integrated crop–livestock systems (ICLS). ICLS in association with no-tillage (NT) potentially increase soil organic matter content and nutrient supplies. The aim of this work was to assess the influence of grazing intensity in three different treatments [viz., intensive grazing (IG), moderate grazing (MG) and no grazing (NG)] on the mineralogy of an Oxisol in an integrated soybean–cattle beef production system in southern Brazil by using various types of methods and tests. Mineralogical XRD analyses of the clay fraction (<2μm) showed it to consist mainly of kaolinite and 2:1 clay minerals of the hydroxy-interlayered mineral (HIM) type. The reflections for 2:1 clay minerals under the IG treatment were better defined than those for the minerals under NG, which suggests the prevalence of HIMs. The 2:1 clay minerals in the IG group exhibited expandable layers. Splitting the clay fraction into three subfractions according to size (<0.05μm, 0.05–0.1μm and 0.1–2μm) exposed considerable alterations. Thus, hydroxy-aluminum interlayered vermiculite (HIV-Al) was present irrespective of treatment. Also, the HIV-Al reflection was better defined under IG and MG than under NG, which suggests strong aluminization of 2:1 clay minerals. Chemical analyses revealed a decrease in total organic carbon (TOC) with increasing depth in all treatments. The decrease was especially marked under NG by effect of the absence of animals favoring accumulation of plant shoots. pHwater was higher under IG as a result of the removal of aluminum from the soil solution increased aluminization of 2:1 clay minerals. K concentrations in solution were low under IG as a result of the formation of HIMs and/or swelling layers with exchangeable K; by contrast, solution K levels under NG where high owing to the absence of HIMs. The presence of animals, which increases K availability through animal wastes, may have resulted in competition between exchangeable K+ and Al3+ to form HIMs. Without splitting the clay fraction it would have been impossible to confirm the mineralogical alteration in 2:1 phyllosilicates due to the impact of ICLS systems. •Integrated crop–livestock systems increase soil organic C and nutrient supplies.•Integrated crop–livestock systems can affect soil mineralogy.•It is highly advisable to fractionate clay when studying 2:1 phyllosilicates.
AbstractList Agricultural activities in the state of Rio Grande do Sul (RS), southern Brazil, have traditionally been quite intensive and led to decreased overall soil quality, and to depletion of soil organic matter and nutrients. There have been attempts at restoring soil quality by using integrated crop–livestock systems (ICLS). ICLS in association with no-tillage (NT) potentially increase soil organic matter content and nutrient supplies. The aim of this work was to assess the influence of grazing intensity in three different treatments [viz., intensive grazing (IG), moderate grazing (MG) and no grazing (NG)] on the mineralogy of an Oxisol in an integrated soybean–cattle beef production system in southern Brazil by using various types of methods and tests. Mineralogical XRD analyses of the clay fraction (<2μm) showed it to consist mainly of kaolinite and 2:1 clay minerals of the hydroxy-interlayered mineral (HIM) type. The reflections for 2:1 clay minerals under the IG treatment were better defined than those for the minerals under NG, which suggests the prevalence of HIMs. The 2:1 clay minerals in the IG group exhibited expandable layers. Splitting the clay fraction into three subfractions according to size (<0.05μm, 0.05–0.1μm and 0.1–2μm) exposed considerable alterations. Thus, hydroxy-aluminum interlayered vermiculite (HIV-Al) was present irrespective of treatment. Also, the HIV-Al reflection was better defined under IG and MG than under NG, which suggests strong aluminization of 2:1 clay minerals. Chemical analyses revealed a decrease in total organic carbon (TOC) with increasing depth in all treatments. The decrease was especially marked under NG by effect of the absence of animals favoring accumulation of plant shoots. pHwater was higher under IG as a result of the removal of aluminum from the soil solution increased aluminization of 2:1 clay minerals. K concentrations in solution were low under IG as a result of the formation of HIMs and/or swelling layers with exchangeable K; by contrast, solution K levels under NG where high owing to the absence of HIMs. The presence of animals, which increases K availability through animal wastes, may have resulted in competition between exchangeable K+ and Al3+ to form HIMs. Without splitting the clay fraction it would have been impossible to confirm the mineralogical alteration in 2:1 phyllosilicates due to the impact of ICLS systems. •Integrated crop–livestock systems increase soil organic C and nutrient supplies.•Integrated crop–livestock systems can affect soil mineralogy.•It is highly advisable to fractionate clay when studying 2:1 phyllosilicates.
Author Martins, Amanda Posselt
Bonnet, Marine
Carvalho, Paulo César F.
Bertolazi, Vanessa Thoma
Anghinoni, Ibanor
Caner, Laurent
Vaz, Marcos André B.
Inda, Alberto Vasconcellos
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  givenname: Marcos André B.
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  organization: Department of Statistics, Federal University of Santa Maria, Roraima 1000, 97105-900 Santa Maria, Rio Grande do Sul, Brazil
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  givenname: Paulo César F.
  surname: Carvalho
  fullname: Carvalho, Paulo César F.
  organization: Department of Forage Plants and Agrometeorology, Federal University of Rio Grande do Sul, Av. Bento Gonçalves 7712, Porto Alegre, Rio Grande do Sul 91540-000, Brazil
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Keywords Aluminization
Hydroxy-interlayered minerals
Clay mineralogy
Subfractionation
Language English
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Snippet Agricultural activities in the state of Rio Grande do Sul (RS), southern Brazil, have traditionally been quite intensive and led to decreased overall soil...
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elsevier
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Publisher
StartPage 67
SubjectTerms Aluminization
Clay mineralogy
Earth Sciences
Hydroxy-interlayered minerals
Sciences of the Universe
Subfractionation
Title Impact of an integrated no-till soybean–beef cattle production system on Oxisol mineralogy in southern Brazil
URI https://dx.doi.org/10.1016/j.clay.2017.08.028
https://hal.science/hal-01659473
Volume 149
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