984 resultados para Mineral fertilization


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A retenção, no perfil do solo, de elementos minerais aplicados em sua superfície é fundamental para a manutenção da qualidade da água. Nesse sentido, o objetivo deste trabalho foi avaliar o efeito da aplicação de dejeto líquido de suíno e adubo mineral na lixiviação do P, Cu e Zn em colunas indeformadas de solo (25 cm de altura e 20,3 cm de diâmetro) retiradas de uma área de Latossolo Vermelho eutroférrico típico sob semeadura direta. A água foi aplicada nas colunas de forma ininterrupta, na quantidade correspondente a três volumes da porosidade total do solo (10.020 cm³), sendo a coleta e análise dos elementos subdivididas em cinco frações. Cada volume de poros (3.340 cm³) corresponde a um turno de água percolada, e o primeiro volume foi fracionado em três coletas. A concentração dos elementos no solo foi determinada nas camadas de 0 a 2,5, 2,5 a 10 e 10 a 20 cm. A retenção de P, Cu, e Zn no solo, em relação ao aplicado via dejeto líquido de suíno, foi de 99,6, 98,8 e 100 %, respectivamente. Para o P aplicado via adubo mineral, a retenção foi de 89,7 %. Independentemente do tipo de adubo, as concentrações de P, Cu e Zn no solo foram maiores na camada de 0 a 2,5 cm. Esses resultados indicam o baixo potencial de lixiviação desses elementos, o que sugere ser importante o uso de práticas de manejo e conservação do solo e da água que proporcionem a contenção e a infiltração do escoamento superficial.

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Adequate nutrient levels in plants vary according to the species or clone, age and management practice. Therefore, adjustments of the nutrient solution are often necessary according to the plant material for multiplication. This study aimed to evaluate the influence of NPK fertilization on production and leaf nutrient contents of eucalyptus cuttings in nutrient solution. The study was conducted from November 2008 to January 2009 in a greenhouse. The experimental design was completely randomized fractional factorial (4 x 4 x 4)½, with a total of 32 treatments with three replications. The treatments consisted of four doses of N (50, 100, 200 and 400 mg L-1) as urea, P (7.5, 15, 30 and 60 mg L-1) in the form of phosphoric acid and K (50, 100, 200 and 400 mg L-1) in the form of potassium chloride in the nutrient solution. Only the effect of N alone was significant for the number and dry weight of minicuttings per ministump, with a linear decreasing effect with increasing N levels. The highest number of cuttings was obtained at a dose of 50, 7.5 and 50 mg L-1 of N, P and K, respectively.

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Os solos arenosos utilizados para o cultivo da batatinha (Solanum tuberosum) no agreste da Paraíba têm baixo teor de N. Adubações anuais com esterco e N mineral, realizadas empiricamente, têm resultado na acumulação e,ou, perda de nutrientes do solo. Por esse motivo, objetivou-se determinar a eficiência do sulfato de amônio (15N) mais esterco na adubação da batatinha e do efeito residual dessa adubação na produção e absorção de N pelo milheto (Pennisetum glaucum) cultivado em sequência. Em experimento de campo em Neossolo regolítico, foi comparada a combinação de 16 t ha-1 de esterco + 80 kg ha-1 de N, utilizada mais frequentemente na região, com doses de 11 t ha-1 de esterco combinadas com 0, 40 e 80 kg ha-1 de N em aplicação única ou parcelada. O sulfato de amônio utilizado foi enriquecido em 15N (2,5 % de abundância). Em todos os tratamentos, avaliou-se a produtividade de matéria seca de tubérculos e parte aérea do milheto, assim como a composição isotópica do N nesses materiais. Demonstrou-se que a adubação tradicional é excessiva nesse solo, uma vez que a redução para 11 t ha-1 de esterco e 40 kg ha-1 de N mineral não resultou em queda de produtividade das culturas; no entanto, houve queda com a aplicação isolada de esterco. O milheto recuperou grande parte do N mineral adicionado à batatinha e mostrou ser uma alternativa como forrageira em condições de semiárido.

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To synchronize nutrient availability with the requirements of eucalyptus during a cultivation cycle, the nutrient flow of this system must be well understood. Essential, for example, is information about nutrient dynamics in eucalyptus plantations throughout a cultivation cycle, as well as impacts on soil nutrient reserves caused by the accumulation and subsequent export of nutrients via biomass. It is also important to quantify the effect of some management practices, such as tree population density (PD) on these fluxes. Some nutrient relations in an experiment with Eucalyptus grandis, grown at different PDs in Santa Barbara, state of Minas Gerais, Brazil, were evaluated for one cultivation cycle. At forest ages of 0.25, 2.5, 4.5, and 6.75 years, evaluations were carried out in the stands at seven different PDs (between 500 and 5,000 trees ha-1) which consisted in chemical analyses of plant tissue sampled from components of the aboveground parts of the tree, from the forest floor and the litterfall. Nutrient contents and allocations of the different biomass components were estimated. In general, there were only small and statistically insignificant effects of PD on the nutrient concentration in trees. With increasing forest age, P, K, Ca and Mg concentrations were reduced in the aboveground components and the forest floor. The magnitud of biochemical nutrient cycling followed the sequence: P > K > N > Mg. At the end of the cycle, the quantities of N, P, Ca and Mg immobilized in the forest floor were higher than in the other components.

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A retenção, no perfil do solo, de elementos minerais aplicados em sua superfície é fundamental para manter a qualidade da água e diminuir prejuízos econômicos e ambientais. Este trabalho avaliou a mobilidade do K, Ca, Mg, teores de Al e matéria orgânica, as alterações de pH, em Latossolo Vermelho eutroférrico cultivado sob sistema de semeadura direta, bem como a demanda química de oxigênio (DQO) da água de percolação. A mobilidade foi medida em colunas de solo com estrutura preservada e submetidas a adubação mineral (100 kg ha-1) ou orgânica (150 m³ ha-1). Com uso de adubo mineral houve maior lixiviação de K, Ca e Mg, mesmo com maior quantidade de K aplicado via adubo orgânico do que via adubo mineral. A DQO da água percolada no sistema com adubação orgânica foi menor do que com adubação mineral. Os teores de Ca2+ e de Mg2+ foram maiores na camada de 0 a 2,5 cm, principalmente para a adubação orgânica. O adubo orgânico não aumentou o teor de matéria orgânica no solo, porém, na camada de 0 a 2,5 cm, elevou o pH do solo em uma unidade e neutralizou o Al3+. Os resultados deste trabalho mostram o efeito depurador do solo sobre águas contaminadas, evidenciando os benefícios econômicos e ambientais que poderão advir com a infiltração no solo da água de enxurrada que venha a se formar em lavouras.

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O selênio (Se) é um importante elemento ligado a processos fisiológicos na planta, microrganismos, animais e seres humanos. No entanto, para as plantas, seu modo de ação e sua essencialidade são ainda motivos de controvérsia. No Brasil, é relevante a falta de informações sobre o Se nas culturas agrícolas, havendo ainda indicativo de baixa ingestão desse elemento pela população. Assim, este estudo objetivou avaliar a influência da aplicação de selenato e selenito na biofortificação com Se e o efeito dessas formas de Se nos teores de macro e micronutrientes em cultivares de alface. Utilizou-se o delineamento experimental inteiramente casualizado, em esquema fatorial 5 x 3 x 2, sendo cinco cultivares de alface (Maravilha de Verão, Rafaela, Great Lakes, Veneranda e Vera), três concentrações de Se (0, 10 e 20 μmol L-1) e duas formas de Se (selenato e selenito), com quatro repetições. Os resultados encontrados mostram que, para o cultivo de alface em solução nutritiva, o selenato foi mais indicado para a biofortificação com Se, enquanto o selenito mostrou ser mais tóxico. A aplicação do selenato resultou em aumento no teor de S na parte aérea, enquanto o selenito reduziu o teor de P, e ambas as formas de Se diminuíram os teores de micronutrientes. Entre as cultivares de alface, não se observou variação genotípica para o teor de Se, e pequena variação foi verificada para produção de matéria seca da parte aérea e teores de S, Mg, Mn e Fe.

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In recent years, physic nut (Jatropha curcas L.) has attracted attention because of its potential for biofuel production. Although it is adapted to low-fertility soils, physic nut requires soil acidity corrections and addition of a considerable amount of fertilizer for high productivity. The objective of this research was to evaluate the effectiveness of arbuscular mycorrhizal fungi (AMF) (control without AMF inoculation, Gigaspora margarita inoculation or Glomus clarum inoculation) on increasing growth and yield of physic nut seedlings under different rates of P fertilization (0, 25, 50, 100, 200, and 400 mg kg-1 P soil) in greenhouse. The experiment was arranged in a completely randomized, block in a factorial scheme design with four replications. The physic nut plants were harvested 180 days after the beginning of the experiment. Mycorrhizal inoculation increased physic nut growth, plant P concentration and root P uptake efficiency at low soil P concentrations. The P use quotient of the plants decreased as the amount of P applied increased, and the P use efficiency index increased at low P levels and decreased at high P levels. Mycorrhizal root colonization and AMF sporulation were negatively affected by P addition. The highest mycorrhizal efficiency was observed when the soil contained between 7.8 and 25 mgkg-1 of P. The physic nut plants responded strongly to P application, independent of mycorrhizal inoculation.

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Chlorophyll determination with a portable chlorophyll meter can indicate the period of highest N demand of plants and whether sidedressing is required or not. In this sense, defining the optimal timing of N application to common bean is fundamental to increase N use efficiency, increase yields and reduce the cost of fertilization. The objectives of this study were to evaluate the efficiency of N sufficiency index (NSI) calculated based on the relative chlorophyll index (RCI) in leaves, measured with a portable chlorophyll meter, as an indicator of time of N sidedressing fertilization and to verify which NSI (90 and 95 %) value is the most appropriate to indicate the moment of N fertilization of common bean cultivar Perola. The experiment was carried out in the rainy and dry growing seasons of the agricultural year 2009/10 on a dystroferric Red Nitosol, in Botucatu, São Paulo State, Brazil. The experiment was arranged in a randomized complete block design with five treatments, consisting of N managements (M1: 200 kg ha-1 N (40 kg at sowing + 80 kg 15 days after emergence (DAE) + 80 kg 30 DAE); M2: 100 kg ha-1 N (20 kg at sowing + 40 kg 15 DAE + 40 kg 30 DAE); M3: 20 kg ha-1 N at sowing + 30 kg ha-1 when chlorophyll meter readings indicated NSI < 95 %; M4: 20 kg ha-1 N at sowing + 30 kg ha-1 N when chlorophyll meter readings indicated NSI < 90 % and, M5: control (without N application)) and four replications. The variables RCI, aboveground dry matter, total leaf N concentration, production components, grain yield, relative yield, and N use efficiency were evaluated. The RCI correlated with leaf N concentrations. By monitoring the RCI with the chlorophyll meter, the period of N sidedressing of common bean could be defined, improving N use efficiency and avoiding unnecessary N supply to common bean. The NSI 90 % of the reference area was more efficient to define the moment of N sidedressing of common bean, to increase N use efficiency.

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Leaf analysis is the chemical evaluation of the nutritional status where the nutrient concentrations found in the tissue reflect the nutritional status of the plants. Thus, a correct interpretation of the results of leaf analysis is fundamental for an effective use of this tool. The purpose of this study was to propose and compare the method of Fertilization Response Likelihood (FRL) for interpretation of leaf analysis with that of the Diagnosis and Recommendation Integrated System (DRIS). The database consisted of 157 analyses of the N, P, K, Ca, Mg, S, Cu, Fe, Mn, Zn, and B concentrations in coffee leaves, which were divided into two groups: low yield (< 30 bags ha-1) and high yield (> 30 bags ha-1). The DRIS indices were calculated using the method proposed by Jones (1981). The fertilization response likelihood was computed based on the approximation of normal distribution. It was found that the Fertilization Response Likelihood (FRL) allowed an evaluation of the nutritional status of coffee trees, coinciding with the DRIS-based diagnoses in 84.96 % of the crops.

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Hypomagnesemia and hypophosphatemia are frequent after severe burns; however, increased urinary excretion does not sufficiently explain the magnitude of the mineral depletion. We measured the mineral content of cutaneous exudates during the first week after injury. Sixteen patients aged 34 +/- 9 y (mean +/- SD) with thermal burns were studied prospectively and divided in 3 groups according to the extent of their burn injury and the presence or absence of mineral supplements: group 1 (n = 5), burns covering 26 +/- 5% of body surface; group 2 (n = 6), burns covering 41 +/- 10%; and group 3 (n = 5), burns covering 42 +/- 6% with prescription of magnesium and phosphate supplements. Cutaneous exudates were extracted from the textiles (surgical drapes, dressings, sheets, etc) surrounding the patients from day 1 to day 7 after injury. Mean magnesium serum concentrations decreased below reference ranges in 12 patients between days 1 and 4 and normalized thereafter. Phosphate, normal on day 0, was low during the first week. Albumin concentrations, normal on day 0, decreased and remained low. Urinary magnesium and phosphate excretion were within reference ranges and not larger in group 3. Mean daily cutaneous losses were 16 mmol Mg/d and 11 mmol P/d (largest in group 2). Exudative magnesium losses were correlated with burn severity (r = 0.709, P = 0.003). Cutaneous magnesium losses were nearly four times larger than urinary losses whereas cutaneous phosphate losses were smaller than urinary phosphate losses. Mean daily losses of both magnesium and phosphate were more than the recommended dietary allowances. Exudative losses combined with urinary losses largely explained the increased mineral requirements after burn injury.

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Successive applications of pig slurry to soils under no-tillage can increase the nutrient levels in the uppermost soil layers and part of the nutrients may be transferred to deeper layers. The objective was to evaluate the distribution of nutrients in the profile of a soil after 19 pig slurry applications under no-tillage for 93 months. The experiment was conducted from May 2000 to January 2008 in an experimental area of the Federal University of Santa Maria, southern Brazil, on a Typic Hapludalf. The treatments consisted of pig slurry applications (0, 20, 40 and 80 m³ ha-1) and at the end of the experiment, soil samples were collected (layers 0-2, 2-4, 4-6, 6-8, 8-10, 10-12, 12-14, 14-16, 16-18, 18-20, 20-25, 25-30, 30-35, 35-40, 40-50 and 50-60 cm). The levels of mineral N, available P and K and total N, P and K were evaluated. The 19 pig slurry applications in 93 months promoted migration of total N and P down to 30 cm and available P and K to the deepest layer analyzed. At the end of the experiment, no increase was observed in mineral N content in the deeper layers, but increased levels of available P and K, showing a transfer of N, P and K to layers below the sampled. This evidences undesirable environmental and economic consequences of the use of pig slurry and reinforces the need for a more rational use, i.e., applications of lower manure doses, combined with mineral fertilizers.

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In addition to the more reactive forms, metals can occur in the structure of minerals, and the sum of all these forms defines their total contents in different soil fractions. The isomorphic substitution of heavy metals for example alters the dimensions of the unit cell and mineral size. This study proposed a method of chemical fractionation of heavy metals, using more powerful extraction methods, to remove the organic and different mineral phases completely. Soil samples were taken from eight soil profiles (0-10, 10-20 and 20-40 cm) in a Pb mining and metallurgy area in Adrianópolis, Paraná, Brazil. The Pb and Zn concentrations were determined in the following fractions (complete phase removal in each sequential extraction): exchangeable; carbonates; organic matter; amorphous and crystalline Fe oxides; Al oxide, amorphous aluminosilicates and kaolinite; and residual fractions. The complete removal of organic matter and mineral phases in sequential extractions resulted in low participation of residual forms of Pb and Zn in the total concentrations of these metals in the soils: there was lower association of metals with primary and 2:1 minerals and refractory oxides. The powerful methods used here allow an identification of the complete metal-mineral associations, such as the occurrence of Pb and Zn in the structure of the minerals. The higher incidence of Zn than Pb in the structure of Fe oxides, due to isomorphic substitution, was attributed to a smaller difference between the ionic radius of Zn2+ and Fe3+.