518 resultados para Cerrado soil
Resumo:
As modificações nas comunidades de fungos micorrízicos arbusculares (FMAs) induzidas por mudança de uso do solo e por diferentes usos agrícolas ainda são insuficientemente estudadas, particularmente no Cerrado. O presente estudo teve como objetivo avaliar como a interferência antrópica pelo manejo e mudança de uso do solo atua sobre a densidade de esporos e diversidade dos FMAs em um Latossolo Vermelho distroférrico de Cerrado. O estudo avaliou cinco áreas: Mata Ciliar (MC), Borda da Mata (BM), Pastagem (Past), Plantio Direto (PD) e Área Desmatada (AD). Foram retirados 20 pontos amostrais, em delineamento inteiramente casualizado, para avaliação da densidade de esporos e diversidade de FMAs. Cada ponto amostral representava uma área de 250 m² dentro de cada área. A área com o sistema de PD e a AD apresentaram menor densidade de esporos recuperados e baixa colonização micorrízica em relação às demais áreas devido à baixa quantidade de plantas vegetando nelas. As famílias de FMAs que apresentaram maior ocorrência nas áreas estudadas foram Acaulosporaceae, Glomeraceae e Gigasporaceae, sendo as duas primeiras dominantes nos ambientes menos antropizados de MC e BM. As espécies de FMAs de maior ocorrência foram Acaulospora scrobiculata, Glomus macrocarpum e Acaulospora tuberculata; as duas primeiras apareceram em todas as áreas, e a terceira apenas não ocorreu na área de PD. Essas espécies mostraram grande capacidade de adaptação aos ambientes alterados. As espécies Acaulospora rehmii, Acaulospora sp.3, Glomus etunicatum, Glomus tortuosum, Glomus sp.1, Gigaspora sp.2 e Scutellospora heterogama apresentaram baixa ocorrência, sendo recuperadas somente em uma das áreas estudadas. A área com maior densidade e ocorrência de espécies foi a Past, com 414 esporos (indivíduos) e 11 espécies. As áreas extremas quanto à diversidade de Shannon (H') foram a Past e a BM, com maior e menor índices, respectivamente. A análise de componentes principais indicou a formação de três grupos, sendo o primeiro formado pela MC e BM; o segundo, por AD e PD; e o terceiro, somente por Past. Conclui-se que a mudança no uso do solo promove alterações na comunidade de FMAs, podendo a densidade e diversidade de esporos ser ampliadas, no caso da pastagem, ou reduzidas, no caso de desmatamento.
Resumo:
Sugarcane, which involves the use of agricultural machinery in all crop stages, from soil preparation to harvest, is currently one of the most relevant crops for agribusiness in Brazil. The purpose of this study was to investigate soil physical properties and root growth in a eutroferric red Oxisol (Latossolo Vermelho eutroférrico) after different periods under sugarcane. The study was carried out in a cane plantation in Rolândia, Paraná State, where treatments consisted of a number of cuts (1, 3, 8, 10 and 16), harvested as green and burned sugarcane, at which soil bulk density, macro and microporosity, penetration resistance, as well as root length, density and area were determined. Results showed that sugarcane management practices lead to alterations in soil penetration resistance, bulk density and porosity, compared to native forest soil. These alterations in soil physical characteristics impede the full growth of the sugarcane root system beneath 10 cm, in all growing seasons analyzed.
Resumo:
Soil penetration resistance is an important property that affects root growth and elongation and water movement in the soil. Since no-till systems tend to increase organic matter in the soil, the purpose of this study was to evaluate the efficiency with which soil penetration resistance is estimated using a proposed model based on moisture content, density and organic matter content in an Oxisol containing 665, 221 and 114 g kg-1 of clay, silt and sand respectively under annual no-till cropping, located in Londrina, Paraná State, Brazil. Penetration resistance was evaluated at random locations continually from May 2008 to February 2011, using an impact penetrometer to obtain a total of 960 replications. For the measurements, soil was sampled at depths of 0 to 20 cm to determine gravimetric moisture (G), bulk density (D) and organic matter content (M). The penetration resistance curve (PR) was adjusted using two non-linear models (PR = a Db Gc and PR' = a Db Gc Md), where a, b, c and d are coefficients of the adjusted model. It was found that the model that included M was the most efficient for estimating PR, explaining 91 % of PR variability, compared to 82 % of the other model.
Resumo:
Apesar da grande quantidade de N acumulada em plantações de eucalipto de alta produtividade, o aumento em volume do tronco em resposta à aplicação de N não tem sido expressivo nem consistente. O objetivo deste trabalho foi verificar o efeito de doses e fontes de N sobre o crescimento e o acúmulo de N em plantas de eucalipto, na serapilheira, além do impacto nas frações da matéria orgânica do solo (MOS). O experimento foi instalado em campo, no município de Itamarandiba-MG, em blocos ao acaso com três repetições, consistindo da aplicação em cobertura de doses (0, 60, 120 e 240 kg ha-1) e fontes de N distintas (sulfato de amônio e nitrato de amônio) em clone de eucalipto (AEC1528®). O efeito dos tratamentos sobre o crescimento e acúmulo de N nas plantas foi avaliado aos 30 meses de idade, abatendo-se árvores com DAP médio e separando-as em lenho, casca, galhos e folhas, para determinação da produção de matéria seca e dos teores e conteúdos de nutrientes das plantas. Amostras de solo e de serapilheira foram coletadas para análises de nutrientes. Os teores de C e N total da matéria orgânica particulada (MOP) e da matéria orgânica associada à fração mineral (MOAM) foram determinados por espectrometria de massa de razão isotópica, após separação física da MOS. As análises estatísticas consistiram de análise de variância e de regressão. A aplicação de adubos nitrogenados promoveu aumento no crescimento volumétrico do tronco e na matéria seca da parte aérea. A dose de N como sulfato de amônio para obter 90 % da produção máxima foi de 74 kg ha-1, a qual resultou em incremento de 42,3 % no volume de tronco em relação à testemunha sem adubação nitrogenada. Na dose de 120 kg ha-1 de N, não houve diferença de resposta à aplicação de sulfato de amônio e nitrato de amônio. Não foram detectadas alterações nos estoques de C e N da MOS com a adubação nitrogenada. No entanto, houve aumento da absorção de Ca, Mg e S. A taxa de recuperação aparente de N no campo foi maior na dose de 120 kg ha-1 de N, atingindo 34,4 %.
Resumo:
Gypsum does not affect the soil negative charges and maintains sulfate in the soil solution, making it one of the cheapest products to increase Ca activity in soil solution, especially in the deeper soil layers. Higher Ca levels in the soil solution can increase the uptake of this nutrient by apple trees, reducing the risk of physiological disorders caused by Ca deficiency. This study assessed the effect of long-term gypsum application on some soil properties and on the chemical composition of leaves and fruits of an apple cultivar susceptible to fruit disorders associated with low Ca. The experiment was conducted in São Joaquim, in the South of Brazil, from 2001 to 2009. Gypsum rates of 0, 1.0, 2.0 and 3.0 t ha-1 were annually broadcast over the soil surface, without incorporation, in an apple orchard with cultivar ´Catarina´, planted in 1997. Gypsum application over eight consecutive years had no effect on soil exchangeable K and Al to a depth of 80 cm, but increased exchangeable Ca in the sampled layers (0-10, 10-20, 40-60 and 60-80 cm), while exchangeable Mg decreased only in the surface layer (0-20 cm). Gypsum did not affect the concentration of any nutrient in the fruits, including Ca. The same was verified in the leaves, except for Mg which decreased with increased gypsum rate. Despite increasing the availability of Ca in the soil profile to a depth of 80 cm, gypsum was not effective to increase the Ca content in leaves and fruits of an apple cultivar susceptible to Ca deficiency grown in an appropriately limed soil.
Resumo:
The cultivation of crops with different capacity of P uptake and use under long-term soil tillage systems can affect the distribution of P cycling and inorganic forms in the soil, as a result of higher or lower use efficiency of P applied in fertilizers. The purpose of this study was to evaluate the effect of long-term cultivation of different winter species under tillage systems on the distribution of inorganic P forms in the soil. In 1986, the experiment was initiated with six winter crops (blue lupin, hairy vetch, oat, oilseed radish, wheat and fallow) on a Rhodic Hapludox in southwestern Paraná, under no-tillage (NT) and conventional tillage (CT). The application of phosphate fertilizer in NT rows increased inorganic P in the labile and moderately labile forms, and soil disturbance in CT redistributed the applied P in the deeper layers, increasing the moderately labile P concentration in the subsurface layers. Black oat and blue lupin were the most efficient P-recyclers and under NT, they increased the labile P content in the soil surface layers.
Resumo:
Sugarcane production should be integrated with crop diversification with a view to competitive and sustainable results in economic, social and environmental aspects. The purpose of this study was to assess the influence of different soil uses during the sugarcane fallow period on the chemical and physical properties of eutroferric Red Latosol - LVef (Oxisol) and Acric Latosol - LVw (Acric Oxisol), in Jaboticabal, São Paulo State, Brazil (21º14'05'' S, 48º17'09'' W, 600 m asl). A randomized block design was used with five replications and four treatments, consisting of different soil uses (crops) in the sugarcane fallow period: soybean only, soybean/fallow/soybean, soybean/millet/soybean, and soybean/sunn hemp/soybean. After two soybean crops, the LVef chemical properties remained at intermediate to high levels; while those of the LVw, classified as intermediate to high in the beginning, increased to high levels. Thus, the different soil uses during the sugarcane fallow period allowed the maintenance of LVef fertility levels and the improvement of those of the LVw. Two soybean crops increased macroporosity in the 0.0-0.1 m layer of the LVef; reduced soil aggregates in the 0.0-0.1 and 0.1-0.2 m layers of both soils, and reduced aggregate stability in these two layers of the LVw. Planting pearl millet or sunn hemp between the two soybean growing seasons promoted the formation of larger soil aggregates in the surface layer (0.0-0.1 m) of the LVw.
Resumo:
The rate of carbon dioxide production is commonly used as a measure of microbial activity in the soil. The traditional method of CO2 determination involves trapping CO2 in an alkali solution and then determining CO2 concentration indirectly by titration of the remaining alkali in the solution. This method is still commonly employed in laboratories throughout the world due to its relative simplicity and the fact that it does not require expensive, specific equipment. However, there are several drawbacks: the method is time-consuming, requires large amounts of chemicals and the consistency of results depends on the operator's skills. With this in mind, an improved method was developed to analyze CO2 captured in alkali traps, which is cheap and relatively simple, with a substantially shorter sample handling time and reproducibility equivalent to the traditional titration method. A comparison of the concentration values determined by gas phase flow injection analysis (GPFIA) and titration showed no significant difference (p > 0.05), but GPFIA has the advantage that only a tenth of the sample volume of the titration method is required. The GPFIA system does not require the purchase of new, costly equipment but the device was constructed from items commonly found in laboratories, with suggestions for alternative configurations for other detection units. Furthermore, GPFIA for CO2 analysis can be equally applied to samples obtained from either the headspace of microcosms or from a sampling chamber that allows CO2 to be released from alkali trapping solutions. The optimised GPFIA method was applied to analyse CO2 released from degrading hydrocarbons from a site contaminated by diesel spillage.
Resumo:
A large variety of techniques have been used to measure soil CO2 released from the soil surface, and much of the variability observed between locations must be attributed to the different methods used by the investigators. Therefore, a minimum protocol of measurement procedures should be established. The objectives of this study were (a) to compare different absorption areas, concentrations and volumes of the alkali trapping solution used in closed static chambers (CSC), and (b) to compare both, the optimized alkali trapping solution and the soda-lime trapping using CSC to measure soil respiration in sugarcane areas. Three CO2 absorption areas were evaluated (7; 15 and 20 % of the soil emission area or chamber); two volumes of NaOH (40 and 80 mL) at three concentrations (0.1, 0.25 and 0.5 mol L-1). Three different types of alkaline traps were tested: (a), 80 mL of 0.5 mol L-1 NaOH in glass containers, absorption area 15 % (V0.5); (b) 40 mL of 2 mol L-1 NaOH retained in a sponge, absorption area 80 % (S2) and (c) 40 g soda lime, absorption area 15 % (SL). NaOH concentrations of 0.5 mol L-1 or lower underestimated the soil CO2-C flux or CO2 flux. The lower limit of the alkali trap absorption area should be a minimum of 20 % of the area covered by the chamber. The 2 mol L-1 NaOH solution trap (S2) was the most efficient (highest accuracy and highest CO2 fluxes) in measuring soil respiration.
Resumo:
Soil properties play an important role in spatial variability of crop yield. However, a low spatial correlation has generally been observed between maps of crop yield and of soil properties. The objectives of the present investigation were to assess the spatial pattern variability of soil properties and of corn yield at the same sampling intensity, and evaluate its cause-and-effect relationships. The experimental site was structured in a grid of 100 referenced points, spaced at 10 m intervals along four parallel 250 m long rows spaced 4.5 m apart. Thus, points formed a rectangle containing four columns and 25 rows. Therefore, each sampling cell encompassed an area of 45 m² and consisted of five 10 m long crop rows, in which the referenced points represented the center. Samples were taken from the layers 0-0.1 m and 0.1-0.2 m. Soil physical and chemical properties were evaluated. Statistical analyses consisted of data description and geostatistics. The spatial dependence of corn yield and soil properties was confirmed. The hypothesis of this study was confirmed, i.e., when sampling the soil to determine the values of soil characteristics at similar to sampling intensity as for crop yield assessments, correlations between the spatial distribution of soil characteristics and crop yield were observed. The spatial distribution pattern of soil properties explained 65 % of the spatial distribution pattern of corn yield. The spatial distribution pattern of clay content and percentage of soil base saturation explained most of the spatial distribution pattern of corn yield.
Resumo:
The Technologies setting at Agricultural production system have the main characteristics the vertical productivity, reduced costs, soil physical, chemical and biological improvement to promote production sustainable growth. Thus, the study aimed to determine the variability and the linear and special correlations between the plant and soil attributes in order to select and indicate good representation of soil physical quality for forage productivity. In the growing season of 2006, on the Fazenda Bonança in Pereira Barreto (SP), the productivity of autumn corn forage (FDM) in an irrigated no-tillage system and the soil physical properties were analyzed. The purpose was to study the variability and the linear and spatial correlations between the plant and soil properties, to select an indicator of soil physical quality related to corn forage yield. A geostatistical grid was installed to collect soil and plant data, with 125 sampling points in an area of 2,500 m². The results show that the studied properties did not vary randomly and that data variability was low to very high, with well-defined spatial patterns, ranging from 7.8 to 38.0 m. On the other hand, the linear correlation between the plant and the soil properties was low and highly significant. The pairs forage dry matter versus microporosity and stem diameter versus bulk density were best correlated in the 0-0.10 m layer, while the other pairs - forage dry matter versus macro - and total porosity - were inversely correlated in the same layer. However, from the spatial point of view, there was a high inverse correlation between forage dry matter with microporosity, so that microporosity in the 0-0.10 m layer can be considered a good indicator of soil physical quality, with a view to corn forage yield.
Resumo:
A utilização do solo sob Cerrado tem acarretado modificações nas suas propriedades, bem como no comportamento e qualidade da sua matéria orgânica. O Cerrado piauiense vem sendo alvo de exploração sem a devida preocupação com a manutenção dos recursos naturais, onde os sistemas de produção têm se caracterizado pelo uso intensivo do solo. O objetivo desta pesquisa foi avaliar o efeito da utilização agrícola na alteração dos atributos biológicos e na dinâmica da matéria orgânica em Latossolos Amarelos distróficos típicos, cultivados com soja. O trabalho foi realizado na Serra do Quilombo, localizada no Cerrado piauiense. Foram verificadas as alterações nos atributos do solo em decorrência da utilização agrícola, que foi iniciada com plantio convencional, posteriormente substituído pelo sistema plantio direto. Foram amostrados solos com diferentes históricos de uso: PC7/PD8 - sete anos de plantio convencional e oito de plantio direto; PC5/PD4 - cinco anos de plantio convencional e quatro de plantio direto; PC3/PD3 - três anos de plantio convencional e três de plantio direto; e CN - solo com Cerrado nativo. Os atributos avaliados foram: respiração basal do solo, carbono da biomassa microbiana, quociente metabólico, quociente microbiano, carbono orgânico total e nitrogênio total. Para avaliar a dinâmica da matéria orgânica, foi feito o fracionamento físico. Os dados foram submetidos à análise de variância. Os resultados indicaram que o manejo imposto ao solo com cultivo convencional e posterior implantação do sistema plantio direto contribuiu para alterar as propriedades biológicas do solo, em comparação com o Cerrado nativo. A substituição do Cerrado nativo por culturas anuais sob o sistema plantio direto reduz os teores de carbono da biomassa microbiana e de nitrogênio total e eleva a respiração basal nos tratamentos com três e quatro anos de implantação do plantio direto, indicando que esse tempo é insuficiente para melhoria desses atributos. O aumento do tempo de uso do solo com plantio direto diminui o teor de C particulado e mantém o de C associado aos minerais, em comparação ao solo do Cerrado nativo.
Resumo:
The species Salix x rubens is being grown on the Southern Plateau of Santa Catarina since the 1940s, but so far the soil fertility requirements of the crop have not been assessed. This study is the first to evaluate the production profile of willow plantations in this region, based on the modified method of Summer & Farina (1986), for the recommendation of fertility levels for willow. By this method, based on the law of Minimum and of Maximum for willow production for the conditions on the Southern Plateau of Santa Catarina, the following ranges could be recommended: pH: 5.0-6.5; P: 12-89 mg dm-3; Mg: 3.2-7.5 mg; Zn: 5.0-8.3 mg dm-3; Cu: 0.8-4.6 mg dm-3; and Mn; 20-164 mg dm-3. The Ca/Mg ratio should be between 1.2 and 2.9. For K and Ca only the lower (sufficiency level), but not the upper threshold (excess) was established, with respectively 114 mg dm-3 and 5.3 cmol c dm-3. It was also possible to determine the upper threshold for Al and the Al/Ca ratio, i.e., 1.7 cmol c dm-3 and 0.28, respectively. For maximum yields, the clay in the soil surface layer should be below 320 g dm-3.
Resumo:
O sistema plantio direto (SPD), em função de seu tempo de estabelecimento, pode promover aumento na quantidade de resíduos vegetais adicionados à superfície do solo e, consequentemente, modificações nos seus atributos químicos e físicos. O trabalho teve por objetivo quantificar a deposição de resíduos vegetais na superfície do solo (RVS) e as modificações nos teores de matéria orgânica leve (MOL), nos estoques de carbono e nitrogênio, nos teores de fósforo remanescente (Prem) e nos atributos físicos do solo - densidade de partículas (Dp), densidade do solo (Ds) e volume total de poros (VTP) -, bem como avaliar a origem do carbono por meio de técnicas isotópicas (13C). Para isso, em Montividiu (GO) foram selecionadas áreas sob SPD com diferentes tempos de implantação: SPD com três anos de implantação (SPD3), SPD com 15 anos de implantação (SPD15) e SPD com 20 anos de implantação (SPD20), as quais foram comparadas a uma área de Cerrado nativo stricto sensu (CE) e a uma área de pastagem plantada de Brachiaria decumbens (PA). Em cada uma das áreas, foram coletadas amostras nas profundidades de 0-5, 5-10 e 10-20 cm. O solo das áreas de estudo foi classificado como Latossolo Vermelho distroférrico. O delineamento utilizado foi inteiramente casualizado. Foi observado aumento nos teores de RVS, MOL, VTP, Prem, C e N em função do tempo de implantação do SPD. A área de SPD com 20 anos apresentou maiores valores de C e N e valores semelhantes de Ds e MOL, em relação ao CE. As análises de 13C demonstraram que as leguminosas estão contribuindo de forma significativa para a composição da matéria orgância nas áreas sob SPD. Nas áreas sob SPD, verificou-se aumento dos valores de estoque de C e de N em função do tempo de implantação em todas as profundidades analisadas; as áreas SPD15 e SPD20 apresentaram nas camadas superficiais valores semelhantes e, ou, superiores aos da área de CE. A área de PA apresentou os piores valores dos atributos analisados, demonstrando estar em estádio mais avançado de degradação.
Resumo:
In Brazil extensive areas are covered with pine forests, planted for pulp and paper production. This industry generates solid alkaline waste, such as dregs. The application of this dregs to forest soils is an alternative for soil acidity correction and plant nutrient supply, as well as a solution for its proper disposal. The purpose of this study was to compare the residual effect of surface application of dregs and dolomitic lime on (a) changes in the physical and chemical properties of an acidic soil and (b) pine tree development. The experiment was carried out in 2004 in Bocaina do Sul, Santa Catarina, consisting of the application of increasing dreg and lime rates to a Pinus taeda L. production area, on a Humic Cambisol, in a randomized block design with four replications and 10 x 10 m plots. The treatments consisted of levels of soil acidity amendments corresponding to the recommendations by the SMP method to reach pH 5.5 in the 0-20 cm layer, as follows: no soil amendment; dregs at 5.08 (1/4 SMP), 10.15 (1/2 SMP) and 20.3 Mg ha-1 (1 SMP); and lime at 8.35 (1/2 SMP) and 16.7 Mg ha-1 (1 SMP). Soil layers were sampled in 2010 for analyses of soil chemical and physical properties. The diameter at breast height of the 6.5 year old pine trees was also evaluated. Surface application of dregs improved soil chemical fertility by reducing acidity and increasing base saturation, similar to liming, especially in surface layers. Dregs, comparable to lime, reduced the degree of clay flocculation, but did not affect the soil physical quality. There was no effect of the amendments on increase in pine tree diameter. Thus, the alternative to raise the pH in forest soils to 5.5 with dregs is promising for the forestry sector with a view to dispose of the waste and increase soil fertility.