395 resultados para Typic Hapludox
Resumo:
Um experimento sobre perdas de água e solo por erosão foi desenvolvido, durante seis anos agrícolas (1973/74 a 1978/79), no Centro Experimental de Campinas do Instituto Agronômico do estado de São Paulo, Brasil, em um Typic Haplortox, com vistas em avaliar a Razão de Perdas de Solo (RPS) para três leguminosas utilizadas como adubos verdes. As leguminosas estudadas foram a Crotalaria juncea L. (crotalária); Stizolobium Aterrinum Piper et Tracy (mucuna-preta) e Dolichos lablab L. (labelabe). Para determinar a razão de perdas de solo, foram estabelecidos quatro períodos das culturas isolados de 0-30, 30-60, 60-90 e 60-120 dias após a semeadura e períodos cumulativos de 0-30, 0-60, 0-90 e 0-120 dias após a semeadura. Os resultados obtidos mostraram maior proteção oferecida pela mucuna-preta à erosão, com valores de RPS de 0,28; 0,37; 0,17; e 0,09 para os períodos isolados de 0-30, 30-60; 60-90 e 60-120 dias após a semeadura. O labelabe apresentou, para a mesma situação, os valores de 0,50; 0,45; 0,27 e 0,19; enquanto, para a crotalária, os valores foram de 0,30; 0,42; 0,26 e 0,24. Os resultados mostraram proteção mais efetiva do solo à erosão a partir dos 60 dias após a semeadura, por parte das espécies avaliadas. A mucuna-preta apresentou maior efetividade na proteção do solo, seguida da crotalária, especialmente no primeiro período, e do labelabe, no estádio mais próximo ao florescimento.
Resumo:
In the process of phosphate rock acidulation, several impure P compounds may be formed along with the desirable Ca and NH4 phosphates. Such compounds normally reduce the content of water-soluble P and thus the agronomic effectiveness of commercial fertilizers. In order to study this problem, a greenhouse experiment consisting of three consecutive corn crops was conducted in samples of a Red-Yellow Latosol (Typical Hapludox) in a completely randomized design (6 x 2 x 2), with four replicates. Six commercial fertilizers were added to 2 kg of soil at a rate of 70 mg kg-1 P, based on the content of soluble P in neutral ammonium citrate plus water (NAC + H2O) of the fertilizers. Fertilizer application occurred either in the original form or leached to remove the water-soluble fraction, either by mixing the fertilizer with the whole soil in the pots or with only 1 % of its volume. The corn plants were harvested 40 days after emergence to determine the shoot dry matter and accumulated P. For the first crop and localized application, the elimination of water-soluble P from the original fertilizers resulted in less bioavailable P for the plants. For the second and third crops, the effects of P source, leaching and application methods were not as evident as for the first, suggesting that the tested P sources may have similar efficiencies when considering successive cropping. The conclusion was drawn that the water-insoluble but NAC-soluble fractions of commercial P fertilizers are not necessarily inert because they can provide P in the long run.
Resumo:
O manejo influi nas propriedades físicas no campo, alterando a dinâmica do ar, da água e de solutos no solo. Propriedades físicas em sistemas de manejo conservacionista do solo foram avaliadas em um Argissolo Vermelho-Amarelo distrófico arênico (Typic Hapludalf) de textura franco-arenosa no horizonte A. Os tratamentos foram estabelecidos em solo com histórico de 10 anos de plantio direto, a saber: soja em sistema plantio direto; soja em solo escarificado; crotalária em cultivo mínimo e solo descoberto sem preparo. Foram determinadas: a resistência mecânica à penetração; a densidade do solo; a porosidade total; a distribuição do tamanho de poros; a condutividade hidráulica do solo saturado e não saturado; a infiltração de água no solo pelos métodos de anéis concêntricos e sob chuva natural; a variação da umidade volumétrica do solo durante o ciclo das culturas e a curva característica de água no solo. Observou-se que a resistência mecânica à penetração (RP) foi máxima na camada de 0,075 m, nos tratamentos sem preparo do solo, enquanto, no solo escarificado (Esc-soja), a RP máxima ocorreu em maior profundidade (0,175 m). A mobilização subsuperficial (escarificação) e a superficial (discagem e semeadura) do solo não se refletiram em redução na densidade do solo (Ds). O solo sob plantio direto de soja apresentou maior volume de macroporos que o solo sob cultivo de crotalária e descoberto, na profundidade 0,02 a 0,05 m, favorecendo a maior condutividade hidráulica do solo saturado e a menor retenção de água no solo em situação de déficit hídrico. Dentre as propriedades físico-mecânicas analisadas, a RP mostrou-se mais sensível em detectar a compactação do que a Ds e porosidades, especialmente para camadas de solo pouco espessas. A eficácia da ruptura da camada compactada do solo depende da propriedade hídrica ou mecânica do solo usada como indicadora. Usando a condutividade hidráulica do solo saturado, em médio prazo, a "escarificação biológica" (CM-crot) mostrou-se mais eficaz na ruptura da camada compactada e estabelecimento de poros condutores de água do que a escarificação mecânica (Esc-soja) do solo. Em contrapartida, se o indicador for a RP, o resultado é inverso. Assim, a propriedade hídrica ou mecânica do solo a ser usada como indicadora para a avaliação da eficácia da ruptura da camada compactada do solo depende do processo físico priorizado: a infiltração e redistribuição de água ou a penetração e crescimento de raízes.
Resumo:
Este trabalho teve o objetivo de caracterizar os principais solos explorados com a cultura do melão na Chapada do Apodi, Estado do Rio Grande do Norte, no tocante aos aspectos mineralógicos, visando fornecer subsídios para implantação de um manejo adequado à cultura e ao solo. Foram selecionados três solos: Cambissolo Háplico Ta eutrófico típico - CXve (Typic Haplocambids), Latossolo Vermelho-Amarelo eutrófico argissólico - LVAe (Typic Eutrotorrox) e Argissolo Vermelho distrófico arênico - PVd (Arenic Kandiustults). Foram realizadas análises mineralógicas nas frações areia, silte e argila, por difratometria de raios X, além de estudos complementares em amostras indeformadas por meio da microscopia eletrônica de varredura. A composição mineralógica é semelhante nos perfis estudados; o quartzo predomina nas frações areia e silte, enquanto a fração argila é constituída predominantemente por caulinita. O perfil 1 (CXve), comparado com os outros dois, é o menos evoluído na escala pedogenética. Os perfis 2 (LVAe) e 3 (PVd) apresentam praticamente a mesma maturidade, embora o primeiro seja um pouco mais evoluído. O fato de o perfil 1 (CXve) apresentar química de solo jovem e mineralogia de solo muito evoluído revela incoerência entre os atributos químicos e mineralógicos daquele solo. Pelas condições de semi-aridez do local em que os três perfis estão inseridos, o domínio da caulinita na fração argila sugere que os solos foram originados em condições climáticas diferentes das atuais, provavelmente mais úmidas, ou que eles tenham se desenvolvido a partir de um material pré-intemperizado.
Resumo:
Este trabalho teve o objetivo de caracterizar os principais solos explorados com a cultura do melão na Chapada do Apodi - RN, no qual se refere aos aspectos físicos, visando fornecer subsídios para adequado manejo da cultura e do solo. Foram estudados, em setembro de 2003, três solos: Cambissolo Háplico Ta eutrófico típico - CXve (Typic Haplocambids), Latossolo Vermelho-Amarelo eutrófico típico - LVAe (Typic Eutrotorrox) e Argissolo Vermelho distrófico arênico - PVd (Arenic Kandiustults). Uma análise geral dos atributos físicos revelou que os perfis apresentam densidade acima dos valores normais para solos afins, com maiores agravantes para os perfis 2 (LVAe) e 3 (PVd), que se refletem na porosidade total e no desbalanço da proporção macro:microporosidade; o manejo da irrigação dos três solos deve ser diferenciado, obedecendo às relações macro:microporo-sidade; a estabilidade de agregados em água é relativamente boa em todos os perfis; a capacidade de água disponível para a profundidade de 30 cm (profundidade efetiva para as raízes do meloeiro) é decrescente do perfil 1 (CXve) para o perfil 3 (PVd); o uso e manejo do solo diminuiu o grau de floculação dos horizontes superficiais dos perfis 1 (CXve) e 2 (LVAe); e, considerando o índice de plasticidade, o risco de degradação pelo uso de máquinas e implementos é acentuado no perfil 1 (CXve) e baixo nos perfis 2 (LVAe) e 3 (PVd).
Resumo:
Maize root growth is negatively affected by compacted layers in the surface (e.g. agricultural traffic) and subsoil layers (e.g. claypans). Both kinds of soil mechanical impedances often coexist in maize fields, but the combined effects on root growth have seldom been studied. Soil physical properties and maize root abundance were determined in three different soils of the Rolling Pampa of Argentina, in conventionally-tilled (CT) and zero-tilled (ZT) fields cultivated with maize. In the soil with a light Bt horizon (loamy Typic Argiudoll, Chivilcoy site), induced plough pans were detected in CT plots at a depth of 0-0.12 m through significant increases in bulk density (1.15 to 1.27 Mg m-3) and cone (tip angle of 60 º) penetrometer resistance (7.18 to 9.37 MPa in summer from ZT to CT, respectively). This caused a reduction in maize root abundance of 40-80 % in CT compared to ZT plots below the induced pans. Two of the studied soils had hard-structured Bt horizons (clay pans), but in only one of them (silty clay loam Abruptic Argiudoll, Villa Lía site) the expected penetrometer resistance increases (up to 9 MPa) were observed with depth. In the other clay pan soil (silty clay loam Vertic Argiudoll, Pérez Millán site), penetrometer resistance did not increase with depth but reached 14.5 MPa at 0.075 and 0.2 m depth in CT and ZT plots, respectively. However, maize root abundance was stratified in the first 0.2 m at the Villa Lía and Pérez Millán sites. There, the hard Bt horizons did not represent an absolute but a relative mechanical impedance to maize roots, by the observed root clumping through desiccation cracks.
Resumo:
In Rio Grande do Sul State (RS), Southern Brazil, aluminum saturation in many areas under no-till system is high and base saturation low in the 0.10-0.20 m layer (subsurface), which may reduce the grain yield of annual crops. The objective of this study was to evaluate if the occurrence of high aluminum saturation and low base saturation in the subsurface, under a no-till system, represents a restrictive environment for crop production, as well as to evaluate forms of lime incorporation for soil acidity correction in the subsurface. For this purpose, an experiment was carried out with soybean (2005/2006), corn (2006/2007), wheat (2007) and soybean (2007/2008) crops, in a Rhodic Hapludox (USDA, 1999) with sandy loam texture, under no-till for four years in the county of Tupanciretã (RS). The six treatments were: no-tillage with and without lime, plowing with and without lime, and chiseling with and without lime. The values of pH-H2O, aluminum saturation and base saturation were evaluated 24 months after treatment application in the layers 0-0.05; 0.05-0.10; 0.10-0.15; 0.15-0.20 and 0.20-0.30 m. The yields of soybean (2005/2006), corn (2006/2007), wheat (2007) and soybean (2007/2008) were evaluated. Soil acidity in the subsurface did not affect crop yield when the acidity in the layer from 0-0.10 m was at levels for which lime application is not recommended, according to CQFSRS/SC (2004). Lime incorporation through plowing was the most efficient way of correcting acidity at deeper levels.
Resumo:
Soil water properties are related to crop growth and environmental aspects and are influenced by the degree of soil compaction. The objective of this study was to determine the water infiltration and hydraulic conductivity of saturated soil under field conditions in terms of the compaction degree of two Oxisols under a no-tillage (NT). Two commercial fields were studied in the state of Rio Grande do Sul, Brazil: one a Haplortox after 14 years under NT; the other a Hapludox after seven years under NT. Maps (50 x 30 m) of the levels of mechanical penetration resistance (PR) were drawn based on the kriging method, differentiating three compaction degrees (CD): high, intermediate and low. In each CD area, the infiltration rate (initial and steady-state) and cumulative water infiltration were measured using concentric rings, with six replications, and the saturated hydraulic conductivity (K(θs)) was determined using the Guelph permeameter. Statistical evaluation was performed based on a randomized design, using the least significant difference (LSD) test and regression analysis. The steady-state infiltration rate was not influenced by the compaction degree, with mean values of 3 and 0.39 cm h-1 in the Haplortox and the Hapludox, respectively. In the Haplortox, saturated soil hydraulic conductivity was 26.76 cm h-1 at a low CD and 9.18 cm h-1 at a high CD, whereas in the Hapludox, this value was 5.16 cm h-1 and 1.19 cm h-1 for the low and high CD, respectively. The compaction degree did not affect the initial and steady-state water infiltration rate, nor the cumulative water infiltration for either soil type, although the values were higher for the Haplortox than the Hapludox.
Resumo:
Assessing the spatial variability of soil chemical properties has become an important aspect of soil management strategies with a view to higher crop yields with minimal environmental degradation. This study was carried out at the Centro Experimental of the Instituto Agronomico, in Campinas, São Paulo, Brazil. The aim was to characterize the spatial variability of chemical properties of a Rhodic Hapludox on a recently bulldozer-cleaned area after over 30 years of coffee cultivation. Soil samples were collected in a 20 x 20 m grid with 36 sampling points across a 1 ha area in the layers 0.0-0.2 and 0.2-0.4 m to measure the following chemical properties: pH, organic matter, K+, P, Ca2+, Mg2+, potential acidity, NH4-N, and NO3-N. Descriptive statistics were applied to assess the central tendency and dispersion moments. Geostatistical methods were applied to evaluate and to model the spatial variability of variables by calculating semivariograms and kriging interpolation. Spatial dependence patterns defined by spherical model adjusted semivariograms were made for all cited soil properties. Moderate to strong degrees of spatial dependence were found between 31 and 60 m. It was still possible to map soil spatial variability properties in the layers 0-20 cm and 20-40 cm after plant removal with bulldozers.
The combined use of reflectance, emissivity and elevation Aster/Terra data for tropical soil studies
Resumo:
Reflectance, emissivity and elevation data of the sensor ASTER (Advanced Spaceborne Thermal Emission and Reflection Radiometer)/Terra were used to characterize soil composition variations according to the toposequence position. Normalized data of SWIR (shortwave infrared) reflectance and TIR (thermal infrared) emissivity, coupled to a soil-fraction image from a spectral mixture model, were evaluated to separate bare soils from nonphotosynthetic vegetation. Regression relationships of some soil properties with reflectance and emissivity data were then applied on the exposed soil pixels. The resulting estimated values were plotted on the ASTER-derived digital elevation model. Results showed that the SWIR bands 5 and 6 and the TIR bands 10 and 14 measured the clay mineral absorption band and the quartz emissivity feature, respectively. These bands improved also the discrimination between nonphotosynthetic vegetation and soils. Despite the differences in pixel size and field sampling size, some soil properties were correlated with reflectance (R² of 0.65 for Al2O3 in band 6; 0.61 for Fe2O3 in band 3) and emissivity (R² of 0.65 for total sand fraction in the 10/14 band ratio). The combined use of reflectance, emissivity and elevation data revealed variations in soil composition with topography in specific parts of the landscape. From higher to lower slope positions, a general decrease in Al2O3 and increase in total sand fraction was observed, due to the prevalence of Rhodic Acrustox at the top and its gradual transition to Typic Acrustox at the bottom.
Resumo:
The current high price of KCl and great dependence on importation to satisfy the Brazilian demand indicate the need for studies that evaluate the efficiency of other K sources, particularly those based on domestic raw material. For this purpose, a greenhouse experiment was conducted with samples of a sandy clay loam Typic Haplustox, in a completely randomized 4 x 3 x 2 factorial design: four K rates (0, 60, 120, and 180 mg kg-1), three sources (potassium chloride (KCl), fused magnesium potassium phosphate (FMPP) and a mixture of 70 % FMPP + 30 % KCl) and two particle sizes (100 and 60 mesh), with three replications. Potassium fertilization resulted in significant increases in shoot dry matter production and in K concentrations, both in soil and plants. The K source and particle size had no significant effect on the evaluated characteristics. Potassium critical levels in the soil and the shoots were 1.53 mmol c dm-3 and 19.1 g kg-1, respectively.
Resumo:
Nitrous oxide (N2O) is the most important non-CO2 greenhouse gas and soil management systems should be evaluated for their N2O mitigation potential. This research evaluated a long-term (22 years) experiment testing the effect of soil management systems on N2O emissions in the postharvest period (autumn) from a subtropical Rhodic Hapludox at the research center FUNDACEP, in Cruz Alta, state of Rio Grande do Sul. Three treatments were evaluated, one under conventional tillage with soybean residues (CTsoybean) and two under no-tillage with soybean (NTsoybean) and maize residues (NTmaize). N2O emissions were measured eight times within 24 days (May 2007) using closed static chambers. Gas flows were obtained based on the relations between gas concentrations in the chamber at regular intervals (0, 15, 30, 45 min) analyzed by gas chromatography. After soybean harvest, accumulated N2O emissions in the period were approximately three times higher in the untilled soil (164 mg m-2 N) than under CT (51 mg m-2 N), with a short-lived N2O peak of 670 mg m-2 h-1 N. In contrast, soil N2O emissions in NT were lower after maize than after soybean, with a N2O peak of 127 g m-2 h-1 N. The multivariate analysis of N2O fluxes and soil variables, which were determined simultaneously with air sampling, demonstrated that the main driving variables of soil N2O emissions were soil microbial activity, temperature, water-filled pore space, and NO3- content. To replace soybean monoculture, crop rotation including maize must be considered as a strategy to decrease soil N2O emissions from NT soils in Southern Brazil in a Autumn.
Resumo:
Soil moisture is the property which most greatly influences the soil dielectric constant, which is also influenced by soil mineralogy. The aim of this study was to determine mathematical models for soil moisture and the dielectric constant (Ka) for a Hapludalf, two clayey Hapludox and a very clayey Hapludox and test the reliability of universal models, such as those proposed by Topp and Ledieu and their co-workers in the 80's, and specific models to estimate soil moisture with a TDR. Soil samples were collected from the 0 to 0.30 m layer, sieved through a mesh of 0.002 m diameter and packed in PVC cylinders with a 0.1 m diameter and 0.3 m height. Seven samples of each soil class were saturated by capillarity and a probe composed of two rods was inserted in each one of them. Moisture readings began with the saturated soil and concluded when the soil was near permanent wilting point. In each step, the samples were weighed on a precision scale to calculate volumetric moisture. Linear and polynomial models were adjusted for each soil class and for all soils together between soil moisture and the dielectric constant. Accuracy of the models was evaluated by the coefficient of determination, the standard error of estimate and the 1:1 line. The models proposed by Topp and Ledieu and their co-workers were not adequate for estimating the moisture in the soil classes studied. The adjusted linear and polynomial models for the entire set of data of the four soil classes did not have sufficient accuracy for estimating soil moisture. The greater the soil clay and Fe oxide content, the greater the dielectric constant of the medium for a given volumetric moisture. The specific models, θ = 0.40283 - 0.04231 Ka + 0.00194 Ka² - 0.000022 Ka³ (Hapludox) θ = 0.01971 + 0.02902 Ka - 0.00086 Ka² + 0.000012 Ka³ (Hapludox -PF), θ = 0.01692 - 0.00507 Ka (Hapludalf) and θ = 0.08471 + 0.01145 Ka (Hapludox-CA), show greater accuracy and reliability for estimating soil moisture in the soil classes studied.
Resumo:
Studies of soils in Environmental Protection Areas (EPAs) are of great importance, because they are an essential component of ecosystems, directly interfering in environmental sustainability. The objective of this study was to evaluate the structural quality of soil cultivated with coffee and used as pasture in the Capituva's River microbasin, which is located in the Environmental Protection Area in Coqueiral, south of the state of Minas Gerais. Uniaxial compression test (preconsolidation test) and soil resistance to penetration were used. Undisturbed samples were taken from the surface layer (0-5 cm) of the soils in the area: a typic dystrophic Red Latosol (LVd - Oxisol), a typic eutrophic Red Argisol (PVe - Ultisol), and a typic dystrophic Haplic Cambisol (CXbd - Inceptisol). A significant linear positive correlation was observed between the results of the preconsolidation test and soil resistance to penetration. Load bearing capacity of soil could be estimated accordingly by means of penetration resistance for LVd, PVe, and CXbd. Cambisol - CXbd showed lower loading support capacity and resistance to penetration than LVd and PVe, due to the better crop management in this soil that resulted in higher physical quality which accounts for higher production and environmental sustainability.
Resumo:
Microbial activity and biochemical properties are important indicators of the impact of organic composting on soil. The objective of this study was to evaluate some indicators of soil microbial and biochemical processes after application of compost (household waste). A Typic Acrustox, sampled at a depth of 10 cm under Cerrado biome vegetation, was evaluated in three treatments: control (soil without organic compost amendment) and soil with two doses of domestic organic compost (10 and 20 g kg-1 soil). The following properties were evaluated: released C (C-CO2): microbial respiration 15 days after incubation; microbial biomass C (MBC); total glucose (TG); metabolic quotient (qCO2); and enzyme activity of β-glucosidase and acid and alkaline phosphatase. The application of household compost, at doses of 10 and 20 g kg-1 Typic Acrustox, resulted in significant gains in microbial activity, organic C and C stock, as evidenced by increased MBC and TG levels. On the other hand, qCO2 decreases indicated greater microbial diversity and more efficient energy use. The addition of compost, particularly the 20 g kg-1 dose, strongly influenced the enzyme β-glucosidase and phosphatase (acid and alkaline). The β-glucosidase activity was significantly increased and acid phosphatase activity increased more than the alkaline. The ratio of β-glucosidase to MBC was greater in the control than in the composted treatments which suggests that there were more enzymes in the control than in the substrate or that the addition of compost induced a great MBC increase.