29 resultados para Podzol
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Hydrochemical processes involved in the development of hydromorphic Podzols are a major concern for the upper Amazon Basin because of the extent of the areas affected by such processes and the large amounts of organic carbon and associated metals exported to the rivers. The dynamics and chemical composition of ground and surface waters were studied along an Acrisol-Podzol sequence lying in an open depression of a plateau. Water levels were monitored along the sequence over a period of 2 years by means of piezometers. Water was sampled in zero-tension lysimeters for groundwater and for surface water in the drainage network of the depression. The pH and concentrations of organic carbon and major elements (Si, Fe and Al) were determined. The contrasted changes reported for concentrations of Si, organic carbon and metals (Fe, Al) mainly reflect the dynamics of the groundwater and the weathering conditions that prevail in the soils. Iron is released by the reductive dissolution of Fe oxides, mostly in the Bg horizons of the upslope Acrisols. It moves laterally under the control of hydraulic gradients and migrates through the iron-depleted Podzols where it is exported to the river network. Aluminium is released from the dissolution of Al-bearing minerals (gibbsite and kaolinite) at the margin of the podzolic area but is immobilized as organo-Al complexes in spodic horizons. In downslope positions, the quick recharge of the groundwater and large release of organic compounds lead to acidification and a loss of metals (mainly Al), previously stored in the Podzols.
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This article reports major results from collaborative research between France and Brazil on soil and water systems, carried out in the Upper Amazon Basin. It reveals the weathering processes acting in the partly inundated, low elevation plateaus of the Basin, mostly covered by evergreen forest. Our findings are based on geochemical data and mineral spectroscopy that probe the crystal chemistry of Fe and Al in mineral phases (mainly kaolinite, Al- and Fe-(hydr)oxides) of tropical soils (laterites). These techniques reveal crystal alterations in mineral populations of different ages and changes of metal speciation associated with mineral or organic phases. These results provide an integrated model of soil formation and changes (from laterites to podzols) in distinct hydrological compartments of the Amazon landscapes and under altered water regimes. (C) 2010 Academie des sciences. Published by Elsevier Masson SAS. All rights reserved.
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A caracterização espectroscópica de substâncias húmicas do solo tem-se desenvolvido aceleradamente durante as últimas décadas. Entretanto, poucos são os trabalhos que associam esta técnica a estudos pedológicos envolvendo diferentes classes de solo, sobretudo em condições tropicais. Os ácidos húmicos extraídos de amostras de diferentes horizontes de um Latossolo Vermelho-Amarelo e de um Podzol, ambos situados na Serra do Brigadeiro, Araponga (MG), foram caracterizados, por meio da espectroscopia de absorção no infravermelho com transformada de Fourier (FTIR) e por análise termodiferencial. Os espectros de infravermelho indicaram diferenças qualitativas entre os ácidos húmicos extraídos dos diferentes solos e entre os ácidos húmicos extraídos de diferentes horizontes de um mesmo solo. Observou-se a redução de intensidade dos picos relativos a estruturas alifáticas com o aprofundamento nos perfis, sendo evidentes os picos relativos a polissacarídeos nos horizontes orgânicos. Impurezas minerais foram observadas em todos os espectros de ácido húmico não purificado, indicando a necessidade do processo de purificação. O tratamento com HF-HCl demonstrou-se eficiente na remoção dessas impurezas, tendo os espectros diferenciais de ácidos húmicos antes e depois do processo de purificação apresentado o padrão típico de minerais secundários como caulinita e gibbsita. Após a purificação, observou-se um aumento na intensidade dos picos referentes aos grupos carboxílicos, evidenciando sua participação nas ligações entre os ácidos húmicos e a matriz mineral. A análise termodiferencial indicou maior resistência à termodegradação dos ácidos húmicos extraídos do horizonte Bhs do Podzol, em relação ao ácido húmico extraído do horizonte A do Latossolo, o que concorda com a feição mais aromática do primeiro, revelada pela análise dos espectros de infravermelho.
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Este trabalho foi conduzido visando avaliar as alterações na matéria orgânica (carbono e nitrogênio) de um Podzol Hidromórfico decorrentes da introdução de Brachiaria decumbens Stapf. Prain., em área de cerrado não-inundável, no Pantanal Mato-Grossense. A amostragem foi realizada em áreas sob pastagem cultivada com 10 e 20 anos de implantação e sob cerrado nativo. Foram abertas trincheiras de 1,5 m de profundidade no topo do terreno de cada área e coletadas amostras de solo até 1m de profundidade, para estudo das variações nos conteúdos de C e N no perfil. Também foram coletadas amostras até a profundidade de 40 cm ao longo de dois transectos, para cálculo dos estoques de C e N das áreas. Foram feitas determinações de C e N para todas as amostras, e fracionamento químico de C para uma amostra composta da camada 0-20 cm para cada área. Foi observada redução de 28% no conteúdo de C na camada de 0-40 cm após 20 anos de cultivo. A proporção relativa das frações húmicas também foi alterada em função da introdução da pastagem. No cerrado nativo predominou a fração ácido fúlvico; sob pastagem de dez anos, humina; e sob pastagem de 20 anos, ácido fúlvico novamente. Com relação ao nitrogênio, não foi observada diferença significativa nos conteúdos entre as áreas estudadas.
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A manipulated increase in acid deposition (15 kg S ha(-1)), carried out for three months in a mature Scots pine (Pinus sylvestris) stand on a podzol, acidified the soil and raised dissolved Al at concentrations above the critical level of 5 mg l(-1) previously determined in a controlled experiment with Scots pine seedlings. The induced soil acidification reduced tree fine root density and biomass significantly in the top 15 cm of soil in the field. The results suggested that the reduction in fine root growth was a response not simply to high Al in solution but to the depletion of exchangeable Ca and Mg in the organic layer, K deficiency, the increase in NH4:NO3 ratio in solution and the high proton input to the soil by the acid manipulation. The results from this study could not justify the hypothesis of Al-induced root damage under field conditions, at least not in the short term. However, the study suggests that a short exposure to soil acidity may affect the fine root growth of mature Scots pine.
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Morphological, geochemical and mineralogical studies were carried out in a representative soil catena of the low-elevation plateaux of the upper Amazon Basin to interpret the steps and mechanisms involved in the podzolization of low-activity clay soils. The soils are derived from Palaeozoic sandstones. They consist of Hydromorphic Podzols under tree savannah in the depressions of the plateaux and predominantly of Acrisols covered by evergreen forest elsewhere.Incipient podzolization in the uppermost Acrisols is related to the formation of organic-rich A and Bhs horizons slightly depleted in fine-size particles by both mechanical particle transfer and weathering. Weathering of secondary minerals by organic acids and formation of organo-metallic complexes act simultaneously over short distances. Their vertical transfer is limited. Selective dissolution of aluminous goethite, then gibbsite and finally kaolinite favour the preferential cheluviation of first Fe and secondly Al. The relatively small amount of organo-metallic complexes produced is related to the quartzitic parent materials, and the predominance of Al over Fe in the spodic horizons is due to the importance of gibbsite in these low-activity clay soils.Morphologically well-expressed podzols occur in strongly iron-depleted topsoils of the depression. Mechanical transfer and weathering of gibbsite and kaolinite by organic acids is enhanced and leads to residual accumulation of sands. Organo-metallic complexes are translocated in strongly permeable sandy horizons and impregnate at depth the macro-voids of embedded soil and saprolite materials to form the spodic Bs and 2BCs horizons. Mechanical transfer of black particulate organic compounds devoid of metals has occurred later within the sandy horizons of the podzols. Their vertical transfer has formed well-differentiated A and Bh horizons. Their lateral removal by groundwater favours the development of an albic E horizon. In an open and waterlogged environment, the general trend is therefore towards the removal of all the metals that have initially accumulated as a response to the ferralitization process and have temporarily been sequestrated in organic complexes in previous stages of soil podzolization.
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The podzol-ferralsol soil systems, which cover great areas of Amazonia and other equatorial regions, are frequently associated with kaolin deposits and store and export large amounts of carbon. Although natural organic matter (NOM) plays a key role in their dynamics, little is known about their biogeochemistry. In order to assess the specific role of dissolved organic matter (DOM) on NOM storage in deep horizons and to determine possible relationships between kaolin formation and DOM properties, we studied the groundwater composition of a typical podzol-ferralsol soil catena from the Alto Rio Negro region, Brazil. Groundwater was sampled using tension-free lysimeters placed according to soil morphology. DOC, E-H, p(H), and dissolved Si, Al3+, Fe2+, and Fe3+ were analyzed for all samples and values are given in a database. Quantification of other dissolved ions, small carboxylic acids and SUVA(254) index and acid-base microtitration was achieved on selected samples. Part of the DOM produced by the hydromorphic podzols is directly exported to the blackwater streams; another part percolates at greater depth, and more than 90% of it adsorbs in the Bh-Bhs horizons, allowing carbon storage at depth. Humic substances are preferentially adsorbed with regard to small carboxylic compounds. With regard to kaolin genesis, kaolinite precipitation is favored by Al release from NOM mineralization within the Bh-Bhs and kaolin bleaching is ensured by iron reduction due to acidity and relatively low E-H. Fe2+ mobility can be related to small E-H variations and enhanced by the significant concentration of small carboxylic acids. The long-term result of these processes is the thickening of the kaolin, and it can be inferred that kaolin is likely to occur where active, giant podzols are close to a slope gradient sufficient enough to lower the deep water table.
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Hydromorphic Podzol soils in the Amazon Basin generally support low-stature forests with some of the lowest amounts of aboveground net primary production (NPP) in the region. However, they can also exhibit large values of belowground NPP that can contribute significantly to the total annual inputs of organic matter into the soil. These hydromorphic Podzol soils also exhibit a horizon rich in organic matter at around 1?2m depth, presumably as a result of eluviation of dissolved organic matter and sesquioxides of Fe and Al. Therefore, it is likely that these ecosystems store large quantities of carbon by (1) large amounts of C inputs to soils dominated by their high levels of fine-root production, (2) stabilization of organic matter in an illuviation horizon due to significant vertical transfers of C. To assess these ideas we studied soil carbon dynamics using radiocarbon in two adjacent Amazon forests growing on contrasting soils: a hydromorphic Podzol and a well-drained Alisol supporting a high-stature terra firme forest. Our measurements showed similar concentrations of C and radiocarbon in the litter layer and the first 5 cm of the mineral soil for both sites. This result is consistent with the idea that the hydromorphic Podzol soil has similar soil C storage and cycling rates compared to the well-drained Alisol that supports a more opulent vegetation. However, we found important differences in carbon dynamics and transfers along the vertical profile. At both soils, we found similar radiocarbon concentrations in the subsoil, but the carbon released after incubating soil samples presented radiocarbon concentrations of recent origin in the Alisol, but not in the Podzol. There were no indications of incorporation of C fixed after 1950 in the illuvial horizon of the Podzol. With the aid of a simulation model, we predicted that only a minor fraction (1.7 %) of the labile carbon decomposed in the topsoil is transferred to the subsoil of the Podzol, while this proportional transfer is about 30% in the Alisol. Furthermore, our estimates were 8 times lower than previous estimations of vertical C transfers in Amazon Podzols, and question the validity of these previous estimations for all Podzols within the Amazon Basin. Our results also challenge our previous ideas about the genesis of these particular soils and suggest that either they are not true Podzols or the podzolization processes had already stopped.
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Mémoire numérisé par la Direction des bibliothèques de l'Université de Montréal.
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Mémoire numérisé par la Direction des bibliothèques de l'Université de Montréal.
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Equatorial podzols are soils characterized by thick sandy horizons overlying more clayey horizons. Organic matter produced in the topsoil is transferred in depth through the sandy horizons and accumulate at the transition, at a depth varying from 1 to more than 3 m, forming deep horizons rich in organic matter (Bh horizons). Although they cover great surfaces in the equatorial zone, these soils are still poorly known. Studying podzols from Amazonia, we found out that the deep Bh horizons in poorly drained podzol areas have a thickness higher than 1m and store unexpected amounts of carbon. The average for the studied area was 66.7 +/- 5.8 kgCm(-2) for the deep Bh and 86.8 +/- 7.1 kgCm(-2) for the whole profile. Extrapolating to the podzol areas of the whole Amazonian basin has been possible thanks to digital maps, giving an order of magnitude around 13.6 +/- 1.1 PgC, at least 12.3 PgC higher than previous estimates. This assessment should be refined by additional investigations, not only in Amazonia but in all equatorial areas where podzols have been identified. Because of the lack of knowledge on the quality and behaviour of the podzol organic matter, the question of the feedback between the climate and the equatorial podzol carbon cycle is open.
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Estudou-se a ciclagem de nutrientes de duas formações florestais ("floresta baixa", com dossel atingindo 15 m de altura, e "floresta alta", 25 m de altura), características dos cordões arenosos da planície litorânea da Ilha do Mel, Paranaguá, Paraná, de 14 de junho de 1991 a 12 de junho de 1993. Nesta primeira parte, foram analisadas as características químicas e físicas dos solos, relacionando-as com o meio físico e com o material de origem. Os solos foram classificados como podzóis, distróficos e álicos, fortemente ácidos, de textura arenosa, estando a profundidade do horizonte B iluvial relacionada com a faixa de oscilação do lençol freático. Nas duas áreas, os solos apresentam fertilidade semelhante, caracterizando-se pela baixa CTC, alto potencial de lixiviação, fazendo com que a matéria orgânica seja a principal responsável pela retenção de íons no solo. Ocorrem, também, dois compartimentos distintos de nutrientes, um no horizonte A1 e outro no B iluvial. Embora a fertilidade dos solos seja considerada bastante baixa, a vegetação apresenta-se bem desenvolvida. As diferenças no desenvolvimento entre as duas florestas estudadas podem estar relacionadas com a disponibilidade de água e de nutrientes do horizonte B. Na floresta alta, tanto o lençol freático como o horizonte B estão mais próximos da superfície, possibilitando que essa formação esteja menos sujeita ao estresse hídrico, além de poder aproveitar, mais facilmente, os nutrientes acumulados no horizonte B.
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A condição de adensamento do solo tem importância para orientar o manejo de uma área. Em solos derivados de sedimentos recentes, a propensão ao adensamento pode estar relacionada com as características herdadas das condições de sedimentação. Em uma toposseqüência de solos desenvolvidos de sedimentos arenosos do grupo geológico Barreiras, no município de Caravelas (BA), selecionaram-se oito perfis de solos, sendo cinco deles sob Eucalyptus, abrangendo Gley Pouco Húmico, Podzol Hidromórfico, Podzólico Amarelo e Plintossolo. Foi determinada a densidade aparente, a qual foi posicionada entre a densidade aparente mínima e a máxima, definindo-se, assim, a compacidade relativa para cada um dos 41 horizontes. A areia foi fracionada em 21 classes de tamanho, mediante peneiramento, determinando-se o diâmetro médio, o desvio-padrão gráfico inclusivo, a assimetria gráfica inclusiva e a curtose gráfica. Observou-se que o maior teor de areia fina e mal selecionada facilitou o arranjo mais compacto das partículas, provocando aumento na compacidade relativa nos horizontes de maior resistência à penetração.