152 resultados para pH cycling


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A adsorção de B pelo solo é o principal fenômeno que afeta sua disponibilidade e seu potencial de contaminação. Os objetivos deste estudo foram: (a) investigar os efeitos do pH na adsorção de B em amostras superficiais e subsuperficiais de um Latossolo Vermelho Acriférrico (LVwf) e de um Latossolo Amarelo Ácrico (LAw) - ambos com balanço positivo de cargas no horizonte Bw - e de um Nitossolo Vermelho eutroférrico (NVef); (b) avaliar a adequação do modelo de Langmuir em simular os resultados experimentais de adsorção; e (c) correlacionar os atributos químicos, físicos e mineralógicos dos solos com os valores de adsorção máxima (Ads máx) e do coeficiente de afinidade (K L), derivados das isotermas. Experimentos do tipo "batch" foram realizados para determinação da quantidade de boro adsorvido, tendo como eletrólito-suporte soluções de NaCl 0,01 mol L-1 com 0,1; 0,2; 0,4; 0,8; 1,2; 1,6; 2,0; e 4,0 µg mL-1 de B. Houve aumento da adsorção de B com a elevação do pH e da concentração inicial de B adicionado. Maiores quantidades de B foram adsorvidas na amostra superficial do NVef e nos horizontes Bw positivamente carregados dos Latossolos ácricos. A adsorção de B foi representada por isotermas dos tipos C (linear) e L (exponencial) e adequadamente ajustada pelo modelo de Langmuir. Os parâmetros Ads máx e K L estimados por regressão não-linear não se correlacionaram com o pH. No pH natural, teores de matéria orgânica (MO) e de argila foram as variáveis que mais influenciaram a Ads máx nas camadas superficiais. Nas camadas subsuperficiais, a Ads máx correlacionou-se negativamente com os teores de MO e positivamente com os de gibbsita. Teores de (hidr)óxidos de Fe cristalinos e amorfos estiveram correlacionados aos valores de K L obtidos nas amostras subsuperficiais e ao pH natural, bem como à Ads máx das camadas superficiais após aumento do pH.

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Apesar do potencial para uso agrícola e das características edáficas peculiares, poucos trabalhos são desenvolvidos para estimar a acidez potencial dos solos com elevado teor de matéria orgânica. O objetivo deste trabalho foi definir um modelo matemático que estime a acidez potencial (H + Al) a partir do pH SMP após determinação do pH do solo em água ou em solução de CaCl2 10 mmol L-1, com leitura do pH na suspensão ou sobrenadante da solução SMP de equilíbrio, em determinada relação solo:tampão SMP, em Organossolos da Serra do Espinhaço Meridional (SdEM), Estado de Minas Gerais, situada entre 17 ° 30 ' a 20 ° 30 ' S e 43 ° a 44 ° W. Foram utilizadas 22 amostras de Organossolos classificados como Organossolo Háplico sáprico térrico, Organossolo Háplico fíbrico típico e Organossolo Háplico hêmico típico da SdEM. A acidez potencial dos Organossolos da SdEM pode ser estimada satisfatoriamente por meio do pH SMP na relação solo:tampão SMP de 10:10 medido na suspensão solo-solução SMP associada à rotina de determinação do pH do solo em água. O C orgânico foi o atributo químico que mais influenciou a acidez potencial dos Organossolos da SdEM.

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Knowledge on variations in vertical, horizontal and temporal characteristics of the soil chemical properties under eucalyptus stumps left in the soil is of fundamental importance for the management of subsequent crops. The objective of this work was to evaluate the effect of eucalyptus stumps (ES) left after cutting on the spatial variability of chemical characteristics in a dystrophic Yellow Argisol in the eastern coastal plain region of Brazil. For this purpose, ES left for 31 and 54 months were selected in two experimental areas with similar characteristics, to assess the decomposition effects of the stumps on soil chemical attributes. Soil samples were collected directly around these ES, and at distances of 30, 60, 90, 120 and 150 cm away from them, in the layers 0-10, 10-20 and 20-40 cm along the row of ES, which is in-between the rows of eucalyptus trees of a new plantation, grown at a spacing of 3 x 3 m. The soil was sampled in five replications in plots of 900 m² each and the samples analyzed for pH, available P and K (Mehlich-1), exchangeable Al, Ca and Mg, total organic carbon (TOC) and C content in humic substances (HS) and in the free light fraction. The pH values and P, K, Ca2+, Mg2+ and Al3+ contents varied between the soil layers with increasing distance from the 31 and 54-monthold stumps. The highest pH, P, K, Ca2+ and Mg2+ values and the lowest Al3+ content were found in the surface soil layer. The TOC of the various fractions of soil organic matter decreased with increasing distance from the 31 and 54-month-old ES in the 0-10 and 10-20 cm layers, indicating that the root (and stump) cycling and rhizodeposition contribute to maintain soil organic matter. The C contents of the free light fraction, of the HS and TOC fractions were higher in the topsoil layer under the ES left for 31 months due to the higher clay levels of this layer, than in those found under the 54-month-old stumps. However, highest C levels of the different fractions of soil organic matter in the topsoil layer reflect the deposition and maintenance of forest residues on the soil surface, mainly after forest harvest.

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Compaction is one of the most destructive factors of soil quality, however the effects on the microbial community and enzyme activity have not been investigated in detail so far. The objective of this study was to evaluate the effects of soil compaction caused by the traffic of agricultural machines on the soil microbial community and its enzyme activity. Six compaction levels were induced by tractors with different weights driving over a Eutrustox soil and the final density was measured. Soil samples were collected after corn from the layers 0-0.10 and 0.10-0.20 m. The compaction effect on all studied properties was evident. Total bacteria counts were reduced significantly (by 22-30 %) and by 38-41 % of nitrifying bacteria in the soil with highest bulk density compared to the control. On the other hand, fungi populations increased 55-86 % and denitrifying bacteria 49-53 %. Dehydrogenase activity decreased 20-34 %, urease 44-46 % and phosphatase 26-28 %. The organic matter content and soil pH decreased more in the 0-0.10 than in the 0.10-0.20 m layer and possibly influenced the reduction of the microbial counts, except denitrifying bacteria, and all enzyme activities, except urease. Results indicated that soil compaction influences the community of aerobic microorganisms and their activity. This effect can alter nutrient cycling and reduce crop yields.

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Alterações no pH da rizosfera de plantas fixadoras de N2 parecem exercer papel fundamental na absorção de micronutrientes que têm sua disponibilidade dependente de alterações da acidez do solo. Estudaram-se variações na absorção de B, Cu, Fe, Mn e Zn durante o ciclo de crescimento e desenvolvimento da soja, induzidas pela fixação biológica de N2 e pelo pH inicial de amostras de dois solos (um LV argiloso e outro arenoso), em um ensaio conduzido em casa de vegetação. Essas amostras foram incubadas com doses de CaCO3 + MgCO3 (4:1) para elevar o pH (H2O) a valores de 5,2, 5,6, 6,2 e 6,6 no solo argiloso e 5,3, 5,6, 5,9 e 6,3 no solo arenoso. Após 60 dias de incubação, essas amostras receberam 450 mg dm-3 de P e 120 mg dm-3 de K no solo. Sementes de soja (Glycine max (L) Merrill), variedade Paranaíba, inoculadas com Bradyrhizobium japonicum, estirpes SEMIA 587 e SEMIA 5019, foram colocadas para germinar. Foram cultivadas quatro plantas por vaso (2,2 dm³) e colhidas aos 16, 20, 24, 28, 32, 36, 40, 46 e 54 dias após a emergência. Determinaram-se o pH da rizosfera (pHr), o pH do solo entre raízes - não rizosférico (pHnr), os teores de B, Cu, Fe, Mn e de Zn na parte aérea e raiz, o N apenas na parte aérea, o número de nódulos e o peso da matéria seca de parte aérea, raiz e nódulos. Observou-se que as mudanças ocorridas no pHr e pHnr foram dependentes do pH inicial dos solos (pHs) e da fixação biológica de N2. O acúmulo de B e de Fe na parte aérea não foi alterado pelos valores de pHr, modificados em função do pHs, exceto para o Fe no solo argiloso. Todavia, aumentos significativos no acúmulo destes nutrientes na parte aérea ocorreram com o aparecimento dos nódulos, a partir de 24 dias após a emergência. Para Cu, Mn e Zn, as diferenças apareceram sobretudo quanto ao pHs. O conteúdo de micronutrientes na planta revelou-se sensível a mudanças no pH rizosférico, principalmente após a nodulação.

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Especially under no-tillage, subsuface soil acidity has been a problem, because it depends on base leaching, which has been associated with the presence of low molecular weigth organic acids and companion anions. The objective of this study was to evaluate exchangeable base cation leaching as affected by surface liming along with annual urea side-dressing of maize and upland rice. Treatments consisted of four lime rates (0, 1500, 3000, and 6000 kg ha-1) combined with four nitrogen rates (0, 50, 100, and 150 kg ha-1) applied to maize (Zea mays) and upland rice (Oryza sativa), in two consecutive years. Maize was planted in December, three months after liming. In September of the following year, pearl millet (Pennisetum glaucum) was planted without fertilization and desiccated 86 days after plant emergence. Afterwards, upland rice was grown. Immediately after upland rice harvest, 18 months after surface liming, pH and N-NO3-, N-NH4+, K, Ca, and Mg levels were evaluated in soil samples taken from the layers 0-5, 5-10, 10-20 and 20-40 cm. Higher maize yields were obtained at higher N rates and 3000 kg ha-1 lime. Better results for upland rice and pearl millet yields were also obtained with this lime rate, irrespective of N levels. The vertical mobility of K, Ca and Mg was higher in the soil profiles with N fertilization. Surface liming increased pH in the upper soil layers causing intense nitrate production, which was leached along with the base cations.

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Rice in Rio Grande do Sul State is grown mostly under flooding, which induces a series of chemical, physical and biological changes in the root environment. These changes, combined with the presence of rice plants, affect the availability of exchangeable ammonium (NH4+) and pH of soil solution, whereas the dynamics of both variables can be influenced by soil salinity, a common problem in the coastal region. This study was conducted to evaluate the dynamics of exchangeable NH4+ and pH in the soil solution, and their relation in the solution of Albaqualf soils with different salinity levels, under rice. Four field experiments were conducted with soils with exchangeable Na percentage (ESP) of 5.6, 9.0, 21.2, and 32.7 %. Prior to flooding, soil solution collectors were installed at depths of 5, 10 and 20 cm. The soil solution was collected weekly, from 7 to 91 days after flooding (DAF), to analyze exchangeable NH4+ and pH in the samples. Plant tissue was sampled 77 DAF, to determine N uptake and estimate the contribution of other N forms to rice nutrition. The content of exchangeable NH4+ decreased over time at all sites and depths, with a more pronounced reduction in soils with lower salinity levels, reaching values close to zero. A possible contribution of non-exchangeable NH4+ forms and N from soil organic matter to rice nutrition was observed. Soil pH decreased with time in soils with ESP 5.6 and 9.0 %, being positively correlated with the decreasing NH4+ levels at these sites.

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The use of SMP pH to estimate the potential acidity (H + Al) is more practical than the method of 0.5 mol L-1 calcium acetate for routine laboratory analyses. The objective was to fit an equation to estimate the H + Al from SMP pH values of soils of the State of Pará. From various regions of the state, 177 soil samples were collected, in which the SMP pH was determined in 0.01 mol L-1 CaCl2 solution and H + Al in 0.5 mol L-1 calcium acetate and the results were related by regression analysis. The equation H + Al = 77.77 + 20.61 SMP pH - 1.435 SMP pH² (R² = 0.90) expressed the H + Al values (in cmol c dm-3) best. When the SMP pH values were used in equations referring to other regions or states in Brazil, the H +Al values were over- or underestimated. The potential acidity in soils of Pará can be estimated by the method of SMP pH.

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O desbalanço entre Ca2+, Mg2+ e K+ no solo como consequência das aplicações elevadas de gesso deve-se às relações de tamanho (raio iônico) e densidades de cargas (relação carga/raio) de cada espécie iônica. Quanto maior a densidade de carga, mais intensa será a ligação iônica do cátion com íons de cargas opostas como OH- e SO4-2. Dessa maneira, o uso excessivo de gesso agrícola, sem considerar o balanço de cargas das partículas do solo; o equilíbrio iônico; e a CTC podem resultar em expressiva lixiviação ao longo do perfil do solo. O objetivo deste estudo foi avaliar o efeito de elevadas doses de gesso (0, 7 e 56 t ha-1) nos teores de Ca2+, Mg2+, K+ e pH na solução de um Latossolo Vermelho distrófico cultivado com cafeeiro, obtida pelo método adaptado do extrato aquoso. O solo foi amostrado nas profundidades de 0,15-0,25; 0,35-0,45; 0,75-0,85; 1,15-1,25 e 2,35-2,45 m na linha de plantio, em quatro tratamentos: G-0 - gesso no preparo (aplicação ocorreu em setembro de 2008, distribuído a lanço, na quantidade de 2 t ha-1) e sem gesso na linha de plantio; G-7 - gesso adicionado durante a preparação do solo (2 t ha-1), na mesma condição do G-0 e 7,0 t ha-1 de gesso na linha de plantio; G-56 - gesso adicionado durante a preparação do solo (2 t ha-1), na mesma condição do G-0 e 56 t ha-1 de gesso na linha de plantio (nessas parcelas experimentais as entrelinhas de plantio foram cobertas com braquiária); e CV-7: ausência de braquiária na entrelinha, com gesso no preparo e 7 t ha-1 de gesso na linha, com três repetições distribuídas em blocos ao acaso, totalizando 60 amostras. Após 16 meses da adição de gesso, observou-se redução do pH na solução do solo nas profundidades de 0,15-0,25; 0,35-0,45 e 0,75-0,85 m. A aplicação de gesso agrícola foi eficiente na melhoria do ambiente radicular no subsolo, aumentou a concentração de Mg2+ e Ca2+ na solução do solo, mas reduziu o K+ em profundidade, a partir de 0,85 m. Os teores de Ca2+ e Mg2+ trocáveis na solução do solo estiveram acima do nível crítico; entretanto, os teores de K+ trocável se mantiveram na faixa do valor crítico, indicado para o desenvolvimento da cultura.

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In a no-tillage system, cover crops must be used that combine shoot dry matter production and nutrient recycling. The aim of this study was to evaluate shoot dry matter production, decomposition rate and macronutrient and silicon release from pigeonpea and pearl millet in monoculture and intercropping systems. A randomized block design was used with a 3 x 6 factorial arrangement, with four replications. The first factor consisted of three cover crops (pigeonpea, pearl millet and intercropping of these cover crops) and the second consisted of six sampling times [0, 18, 32, 46, 74 and 91 days after desiccation (DAD)]. Pearl millet produced greater amounts of shoot dry matter and content of N, P, K, Ca, Mg, S, C and Si and had a higher decomposition rate and macronutrient and Si release than the other cover crops. The rates of decomposition and daily nutrient release from shoot dry matter were highest in the first period of evaluation (0-18 DAD). Over time, the C/N, C/P and C/S ratios increased, while C/Si and the decomposition rate decreased. Potassium was the nutrient most quickly released to the soil, especially from pearl millet residue. Silicon had the lowest release rate, with 62, 82 and 74 % of the total content in the shoot dry matter remaining in the last evaluation of pearl millet, pigeonpea and in the intercrop system, respectively. The shoot dry matter from the intercrop system had a different decomposition rate than that from the pearl millet monoculture and pigeonpea. Plants with greater shoot dry matter production and lower C/Si ratio are more effective in a no-tillage system for providing a more complete and persistent soil cover.

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Visible and near infrared (vis-NIR) spectroscopy is widely used to detect soil properties. The objective of this study is to evaluate the combined effect of moisture content (MC) and the modeling algorithm on prediction of soil organic carbon (SOC) and pH. Partial least squares (PLS) and the Artificial neural network (ANN) for modeling of SOC and pH at different MC levels were compared in terms of efficiency in prediction of regression. A total of 270 soil samples were used. Before spectral measurement, dry soil samples were weighed to determine the amount of water to be added by weight to achieve the specified gravimetric MC levels of 5, 10, 15, 20, and 25 %. A fiber-optic vis-NIR spectrophotometer (350-2500 nm) was used to measure spectra of soil samples in the diffuse reflectance mode. Spectra preprocessing and PLS regression were carried using Unscrambler® software. Statistica® software was used for ANN modeling. The best prediction result for SOC was obtained using the ANN (RMSEP = 0.82 % and RPD = 4.23) for soil samples with 25 % MC. The best prediction results for pH were obtained with PLS for dry soil samples (RMSEP = 0.65 % and RPD = 1.68) and soil samples with 10 % MC (RMSEP = 0.61 % and RPD = 1.71). Whereas the ANN showed better performance for SOC prediction at all MC levels, PLS showed better predictive accuracy of pH at all MC levels except for 25 % MC. Therefore, based on the data set used in the current study, the ANN is recommended for the analyses of SOC at all MC levels, whereas PLS is recommended for the analysis of pH at MC levels below 20 %.

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O método do pH SMP, em virtude de sua praticidade analítica, tem sido amplamente utilizado na estimativa da acidez potencial (H+Al), em substituição à solução de acetato de cálcio 0,5 mol L-1 a pH 7,0, em laboratórios de análise de solo no Brasil. No entanto, tornam-se imprescindíveis estudos regionalizados para estimar com segurança os valores da acidez potencial. Este trabalho objetivou ajustar uma equação de regressão com boa capacidade preditiva dos valores de H+Al, a partir da medida do pH(SMP), para solos do Estado da Paraíba, visando sua utilização em análises de rotina para estimar a acidez potencial. Foram utilizadas 90 amostras de solo coletadas nas várias regiões do Estado. Essas amostras foram analisadas para pH(H2O), pH(SMP), H+Al e pH do sobrenadante da solução de acetato de cálcio. Foram observadas estreitas correlações quadrática simples do pH de equilíbrio da suspensão de acetato de cálcio com a acidez potencial e linear simples com o pH(SMP), com elevada capacidade preditiva (R2 = 0,93 e R2 = 0,95, respectivamente). Os resultados permitiram concluir que a acidez potencial (H+Al), expressa em cmolc dm-3 pode ser estimada pelo método do pH(SMP), por meio da equação H+Al = 57,108 -13,338** SMP + 0,7637** SMP2 (R2 = 0,87).

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ABSTRACT Management of boron fertilization depends on the magnitude of B leaching in the soil profile, which varies proportionally with the concentration of B in the soil solution, which, in turn, decreases as the soil pH increases due to the higher sorption of B on soil solid surfaces. The objective of this study was to quantify the effect of liming and rates of B applied to the soil on B leaching. The experiment was carried out in the laboratory in 2012, and treatments consisted of a factorial combination of two rates of liming (without and with lime to raise the soil pH to 6.0) and five rates of B (0, 10, 20, 50 and 100 mg kg-1, as boric acid). A Typic Rhodudalf was used, containing 790 g kg-1 clay and 23 g kg-1 organic matter; the pH(H2O) was 4.6. Experimental units were composed of PVC leaching columns (0.10 m in diameter) containing 1.42 kg of soil (dry base). Boron was manually mixed with the top 0.15 m of the soil. After that, every seven days for 15 weeks, 300 mL of distilled water were added to the top of each column. In the percolated solution, both the volume and concentration of B were measured. Leaching of B decreased with increased soil pH and, averaged across the B rates applied, was 58 % higher from unlimed (pH 4.6) than from limed (pH 6.6) samples as a result of the increase in B sorption with higher soil pH. In spite of its high vertical mobility, the residual effect of B was high in this oxisol, mainly in the limed samples where 80 % of B applied at the two highest rates remained in the soil, even after 15 water percolations. Total recovery of applied B, including leached B plus B extracted from the soil after all percolations, was less than 50 %, showing that not all sorbed B was quantified by the hot water extraction method.

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The objective of this work was to evaluate the effect of coffee (Coffea arabica L.) population densities on the chemical and microbiological properties of an Oxisol. The work was carried out on soil samples of 0-20 cm depth originated from an experimental site which had been used for coffee tree spacing studies during 15 years, in Paraná State, Brazil. Eight coffee tree populations were evaluated: 7143, 3571, 2381, 1786, 1429, 1190, 1020, and 893 trees/ha. Increasing plant population increased soil pH, exchangeable Ca, Mg, K, extractable P, organic carbon, moisture content and coffee root colonization by vesicular arbuscular mycorrhizal fungi, and decreased exchangeable Al and microbial biomass. Such results were attributed to better erosion control, improved plant residue management and nutrient cycling, and decreased leaching losses. Increasing coffee tree population per unit of area has shown to be an important reclamation recuperation strategy for improving fertility of the acid soils in Paraná, Brazil.

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O objetivo deste trabalho foi definir um modelo matemático que estime o H+Al a partir do pH SMP medido em água e em solução de CaCl2 0,01 mol L-1 nas condições edafoclimáticas locais. Foram utilizadas 246 amostras de solo provenientes de diversas localidades. Mesmo apresentando menor coeficiente da correlação (r = 0,89*), a equação H+Al = 30,646 - 3,848pH SMP obtida em H2O foi mais eficiente que a obtida em solução CaCl2 (H+Al = 30,155 - 3,834pH SMP, r = 0,91*), a qual subestima os valores da acidez potencial.