998 resultados para métodos de preparo do solo
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Pós-graduação em Agronomia - FEIS
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The soil is one of the main C pools in terrestrial ecosystem, capable of storing significant C amounts. Therefore, understanding the factors that contribute to the loss of CO2 from agricultural soils is critical to determine strategies reducing emissions of this gas and help mitigate the greenhouse effect. The purpose of this study was to investigate the effect of soil tillage and sugarcane trash on CO2 emissions, temperature and soil moisture during sugarcane (re)planting, over a study period of 15 days. The following managements were evaluated: no-tillage with crop residues left on the soil surface (NTR); without tillage and without residue (NTNR) and tillage with no residue (TNR). The average soil CO2 emission (FCO2) was lowest in NTR (2.16 µmol m-2 s-1), compared to the managements NTNR (2.90 µmol m-2 s-1) and TNR (3.22 µmol m-2 s-1), indicating that the higher moisture and lower soil temperature variations observed in NTR were responsible for this decrease. During the study period, the lowest daily average FCO2 was recorded in NTR (1.28 µmol m-2 s-1), and the highest in TNR (6.08 µmol m-2 s-1), after rainfall. A loss of soil CO2 was lowest from the management NTR (367 kg ha-1 of CO2-C) and differing significantly (p<0.05) from the managements NTNR (502 kg ha-1 of CO2-C) and TNR (535 kg ha-1 of CO2-C). Soil moisture was the variable that differed most managements and was positively correlated (r = 0.55, p<0.05) with the temporal variations of CO2 emission from NTR and TNR. In addition, the soil temperature differed (p<0.05) only in management NTR (24 °C) compared to NTNR (26 °C) and TNR (26.5 °C), suggesting that under the conditions of this study, sugarcane trash left on the surface induced an average rise in the of soil temperature of 2 ºC.
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Pós-graduação em Agronomia (Ciência do Solo) - FCAV
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Pós-graduação em Agronomia (Agricultura) - FCA
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Pós-graduação em Agronomia (Ciência do Solo) - FCAV
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Soil tillage is one of the agricultural practices that may contribute to increase the loss of carbon through emission of CO2 (FCO2). The aim of this study was to investigate the effect of three soil tillage systems on FCO2, soil temperature and soil moisture in a sugarcane area under reform. The experimental area consisted of three tillage plots: conventional tillage (CT), conventional subsoiling (CS), and localized subsoiling (LS). FCO2, soil temperature and soil moisture were measured over a period of 17 days. FCO2 showed the highest value in CT (0.75 g CO2 m(-2) h(-1)). Soil temperature presented no significant difference (p > 0.05) between LS (26.2 degrees C) and CS (25.9 degrees C). Soil moisture was higher in LS (24%), followed by CS (21.8%) and CT (18.3%). A significant correlation (r = -0.71; p < 0.05) between FCO2 and soil temperature was observed only in CT. The conventional tillage presented a total emission (2,864.3 kg CO2 ha(-1)) higher than the emissions observed in CS (1,970.9 kg CO2 ha(-1)) and LS (1,707.7 kg CO2 ha(-1)). The conversion from CT to LS decreased soil CO2 emissions, reducing the contribution of agriculture in increasing the concentration of greenhouse gases in the atmosphere.
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Currently, the efficiency in field operations and the increased productivity of crops is only possible with the use of agricultural machinery and equipment. This intensification of mechanized activities in agriculture, however, led to higher energy costs on farms mainly in the fuel consumption of agricultural tractors. The objective was to compare the fuel consumption of a tractor on tillage operations for irrigated cotton in semi-arid region varying two tire inflation pressures. The tests were conducted in Maricopa Agricultural Center (MAC), an experimental farm belonging to The University of Arizona using a 4x2 TDA Case tractor equipped with a 88kw autopilot system. The results showed lower values in the hourly fuel consumption by using the minimum tire inflation pressure of 124 kPa for all tillage equipment used.
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The aim of this study was to evaluate the influence of preparation: intermediate grade, minimum tillage and no-till on the agronomic characteristics and energy demand of transgenic soybean cultivars and non-GMO soybeans. Soil preparation aims at improving physical, chemical and biological conditions, aiming at good emergence and plant development. The different types of tillage may interfere with the agronomic characteristics and productivity of plants, and in energy use which can cause variation in production costs. Genetically modified plants can be one of the alternatives for reduction of production costs in crops by reducing pesticide applications, enabling higher productivity with less environmental impact. The test was conducted in 2010/2011 at the agricultural Experimental Farm Lageado, belonging to the Faculty of Agronomic Sciences – UNESP, located in the city of Botucatu, SP in an area using no-till systems for the past 12 years. The experiment was carried out in a 3 x 2 factorial, randomized treatments were comprised of three soil preparation systems, minimum cultivation, intermediate grade preparation and no-till, with two cultivars of soybeans: MGBR-46 Conquest (conventional), Valuable RR (Transgenic). The data obtained was submitted to variance analysis using Tukey test at a 5% probability. With the results analyzed it might be observed that there was no significant difference between treatments, in the variables, the percentage of soil cover, final soybean plant population, grain yield and plant height. The results obtained show that the no-till system resulted in higher productivity than conventional tillage and minimum cultivation. The higher specific energy use per area was observed in minimum cultivation with a chisel plough, when compared to the preparation across the grid. The greatest fuel consumption was to treat minimum cultivation with chisel plough. The highest values were found in the skating system of minimum cultivation, being greater in conventional tillage system. It is more satisfactory for the producer to sow transgenic soy using a no-till system, because productivity retrieved from that system compensates for fuel expenditure.
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O uso de coquetéis vegetais no manejo agrícola pode aumentar o teor de carbono e melhorar a qualidade do solo. O objetivo deste estudo foi avaliar o efeito de diferentes sistemas de manejo do solo e do uso de coquetéis vegetais como cultura de cobertura sobre o teor de carbono total do mesmo. As amostras de solo foram coletadas, nas camadas de 0-5 cm, 5-10 cm, 10-20 cm e 20-40 cm, após o quarto ciclo de produção de melão, em um experimento de longa duração, instalado no Campo Experimental Bebedouro, na Embrapa Semiárido, com arranjo de parcelas subdivididas, tendo nas parcelas dois sistemas de manejo de solo (com revolvimento e sem revolvimento) e nas subparcelas dois coquetéis vegetais (CV1- 75% leguminosas + 25% gramíneas e oleaginosas; CV2- 25% leguminosas + 75% gramíneas e oleaginosas) e uma vegetação espontânea (VE), com delineamento em blocos casualizados, com quatro repetições. Determinou-se o carbono total do solo por meio do analisador elementar modelo TruSpec CN Leco. Verificou-se que o uso de diferentes coberturas vegetais sob manejo do solo sem revolvimento promove aumento do teor de carbono total do mesmo na camada 0-5 cm.
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Objetivou-se avaliar a influência do método de manejo do solo e densidade de plantio sobre a composição botânica do pasto (CBP) e evolução da cobertura do solo (CS).
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A biomassa microbiana assume papel importante na reciclagem do fósforo em solos tropicais e subtropicais. Este trabalho teve por objetivo quantificar o teor de fósforo armazenado na biomassa microbiana em solos submetidos a diferentes métodos de preparo e sucessões de culturas. Para tal, foram utilizados quatro experimentos, instalados em diferentes locais no Rio Grande do Sul a partir de 1979, envolvendo métodos de preparo do solo e sucessões de culturas. Em 1997, coletaram-se amostras de solos nos sistemas plantio direto e cultivo convencional, com várias sucessões de culturas, em três camadas de solo. O fósforo acumulado na biomassa microbiana foi determinado por fumigação-extração. O fósforo na biomassa não diferiu entre os métodos de preparo do solo no Latossolo Vermelho Distroférrico típico, mas foi maior no sistema plantio direto em comparação ao cultivo convencional no Latossolo Vermelho Distrófico típico e Argissolo Vermelho Distrófico típico. O cultivo de diferentes plantas anuais não afetou os teores de fósforo microbiano. O fluxo anual de P através da biomassa microbiana variou de 8 a 22 mg dm-3 ano-1 e, no Argissolo Vermelho Distrófico típico, foi maior no sistema plantio direto do que no cultivo convencional.
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A relação entre o P sorvido/P solução do solo pode ser influenciada pelo teor de P previamente sorvido e pelos sistemas de manejo. Este trabalho teve o objetivo de avaliar as modificações na capacidade de sorção máxima (Pmax) e na constante relacionada com a energia de ligação de P com os colóides (k) da isoterma de Langmuir, provocadas (a) pela inclusão do teor de P previamente sorvido (Ppre) e (b) por sistemas de manejo de solos. Coletaram-se, em maio de 1997, amostras de solo (Latossolo Vermelho distroférrico típico, Latossolo Vermelho distrófico típico e Argissolo Vermelho distrófico típico), em três camadas (0-2,5, 2,5-7,5 e 7,5-17,5 cm), de três experimentos instalados a partir de 1979, envolvendo os sistemas plantio direto e cultivo convencional com diferentes sucessões de cultura. O solo foi equilibrado com oito concentrações de P em solução de CaCl2 0,001 mol L-1. Após a agitação por 16 h, avaliou-se a concentração de P no sobrenadante. Os dados de P-sorvido e P-solução foram ajustados à equação de Langmuir, obtendo-se a Pmax e a k, considerando ou não o Ppre. A inclusão do Ppre no modelo de Langmuir aumenta, em média, 2,9 vezes o valor da k e não afeta a Pmax, no LVdf, e aumenta em todas as camadas, no LVd, e na camada superficial, no PVd. A Pmax é pouco influenciada pelos métodos de preparo do solo, sucessões de culturas e camadas amostradas.