164 resultados para sulphate


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The efficient fertilizer use contend micronutrient depends, also, of the interactions that occur with some nutrients. The objective was to study the interaction of zinc with the excessively nutrient ones in function of the application of different doses and sources of Zn saw seed in the culture of the rice. The experiment was carried through in conditions of vegetation house, in the FCAV/Unesp. The used experimental delineation was entirely cazualized, with three repetitions. The treatments had been five doses: 0; 1,0; 2,0; 4,0 and 8,0 g of Zn for kg of seed; e two zinc sources; sulphate of zinc (22% of Zn) and zinc oxide (50% of Zn). The experimental unit was a translucent polyethylene tray, filled with 5 washed thick sand, where 50 seeds of rice had been sown (to var. Caiapo). To the 30 days after the sowing, effected the cut of the plants, separating them in aerial part and roots. From the results of the dry substance and text of nutrients of the aerial part and root of the rice, the accumulation of the nutrients in the respective agencies of the plants was calculated. Becoming fullfilled it variance analysis and the when necessary unfoldings. It had effect of the interactions in distinguishing way between root and aerial part of rice, with regard to the doses and sources.

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The effect of zinc applied in seeds oil the nutrition of sorghum is affected by the sources and applied rate. The present work aimed to evaluate zinc application, front two sources, on the nutrition and initial growth of a culture of sorghum cv. BRS 304, cultivated in sand. The treatments consisted of five rites (0, 14.3, 28.6, 57.2 and 114.4 g kg(-1) of seed) and two zinc sources - sulphate (22% Zn) and oxide (50% Zn). At 25 days after sowing, the plants were cut. The aerial and root dry mass was evaluated, and the levels and accumulation of Zn in the plants were determined. The of seeds, in oxide form, provided adequate initial growth of application or 14 g Zn kg(-1) sorglitim cv. BRS 304. The sulphate source promoted greater absorption of Zn for the plants, reaching in its highest dosis, high levels of the nutrient in the aerial part (> 4170 mg kg(-1)) and developing characteristic symptoms of phytoxicity.

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Two experiments were carried out to evaluate the effect of supplementation with different nitrogenous compounds on the activities of carboxymethil cellulase (CMCase) and glutamate dehydrogenase (GDH). In the first experiment, four treatments were evaluated in vitro: cellulose, cellulose with casein, cellulose with urea, and cellulose with casamino acids. After 6, 12 and 24 hours of incubation, CMCase and GDH activity, pH, and concentrations of ammonia nitrogen (AN) and microbial protein were measured. In the three incubation periods, the concentration of AN was higher when urea was used as a supplemental source of nitrogen. The activity of CMCase was higher with the addition of urea and casamino acids when compared with the control and the casein treatment. Supplementation with casamino acids provided higher GDH activity when compared with the control at 6 hours of incubation. At 12 hours of incubation, the GHD activity was also stimulated by casein. At 24 hours, there was no difference in GHD activity among treatments. In the second experiment, three rumen-fistulated bulls were used for in situ evaluation. Animals were fed Tifton hay (Cynodon sp.) ad libitum. The treatments consisted of control (no supplementation), supplementation with non-protein nitrogenous compounds (urea and ammonium sulphate, 9:1) and supplementation with protein (albumin). In treatments with nitrogenous compound supplementation, 1 g of crude protein/kg of body weight was supplied. The experiment was conducted in a 3 × 3 Latin square design. The measurements were performed at 6, 12 and 24 hours after supplementation. No difference in GDH activity was observed among treatments. The control treatment showed higher CMCase activity when compared with the treatments containing supplemental sources of nitrogen. However, urea supplementation provided higher CMCase activity compared to albumin.

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The aim of this study was to evaluate the survival of a strain of Xanthomonas axonopodis pv. phaseoli var. fuscans (Xap), resistant to streptomycin sulphate, in common bean leaflets placed on the sod surface and buried at a depth of 10 and 15 cm. Four assays were carried out from November 1998 to December 2000 in Bandeirantes (Paran, Brazil). The leaflets were collected every 15 days, crushed and the dilution-plated on a semi-selective medium. Under mild temperatures and low rainfall, Xap survived for 65 to 180 days in the leaflets on the sod surface, and for 30 to 120 days in those incorporated in the soil, regardless of the depth. When higher rainfall and temperatures occurred, the survival was from 45 to 60 days in the leaflets on the sod surface and from 30 to 45 days in those buried 10 or 15 cm deep.

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A mistura de sementes forrageiras com fertilizantes pode viabilizar o cultivo consorciado, por diminuir a competição com a cultura produtora de grãos. No entanto, se realizada muito antes da semeadura, pode prejudicar a emergência e o estabelecimento das forrageiras. Realizou-se trabalho em condições de laboratório e casa de vegetação, em Botucatu (SP), com o objetivo de avaliar a germinação de sementes de Brachiaria brizantha em razão do tempo de mistura com fertilizantes químicos. O delineamento experimental empregado foi o inteiramente casualizado, com quatro repetições. Os tratamentos constaram de um fatorial 6 x 8, constituído de diferentes períodos de contato das sementes de Brachiaria brizantha cultivar Marandu (0, 6, 12, 24, 48 e 96 h) com os fertilizantes uréia, sulfato de amônio, cloreto de potássio, sulfato de potássio, superfosfato simples, superfosfato triplo e formulado N-P-K (8-28-16) nas formas de mistura de grânulos e farelado. Não houve relação entre os testes de germinação em laboratório e a emergência a campo. No solo, a emergência das plântulas de Brachiaria brizantha não é afetada se realizada a mistura com fertilizantes minerais fosfatados, cloreto de potássio e formulado farelado até 96 h antes da semeadura.

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The black oat (Avena strigosa Schreber) has been commonly used as green manure, in crop rotation systems under no-tillage, fall-winter crop, and for cattle grazing, hay, and silage. The objective of this work was to evaluate the nutrient concentrations in the flag leaf and grains of black-oat affect by phosphate and potassium fertilization. The experiment was carried Out under field conditions on a Rhodic Nitosol, in Botucatu, São Paulo State, Brazil. Three doses of single superphosphate (0, 40 and 80 kg.ha(-1) of P(2)O(5)) and three of potassium chloride (0, 20 and 40 kg ha(-1) of K(2)O) were tested as a factorial (3 x 3), in a randomized complete block design, with four replicates. The fertilizers were applied in the sowing row. Ammonium sulphate was supplied for all plots (20 kg ha(-1) of N applied at sowing and 30 kg.ha(-1) after tillering stage). The concentrations of Ca, Mg, S, Fe, Mn, Cu and Zn in the flag leaf and the P and K concentrations in the grain were increased by phosphate fertilizer application. The potassic fertilization had no effect on the concentrations of nutrients in the flag leaf and grains of black-oat.

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No programa de pesquisa a respeito da adubação da cultura de trigo, utilizando isotopos (32P e 15N), o plano do ano 1971/1972 tinha, entre outros objetivos, a finalidade de determinar a porcentagem de aproveitamento do fósforo pelo trigo, em função do modo de aplicação e interação com fontes de nitrogênio. Oexperimento foi instalado em solo pertencente a ordem Ultisol e grande grupo Podzólico Vermelho-Amarelo (Pelotas-RS), contendo 9 ppm de P. Os adubos nitrogenados: sulfato de amônio, uréia e nitrato de amônio, na dose de 120 kg/ha, foram aplicados metade no plantio (ao lado e abaixo das sementes) e metade em cobertura, na fase do perfilhamento. O fósforo radioativo, na forma de superfosfato simples, foi aplicado na dose de 30 kg P2O5/ha de duas maneiras: junto com as sementes ou junto com o adubo nitrogenado aplicado no plantio. Amostras de plantas de trigo foram coletadas entre perfilhamento e espigamento e determinaram-se os pesos de matéria verde e seca, as porcentagens de P total e de P proveniente do fertilizante contidos na matéria seca e a porcentagem de utilização do fósforo aplicado (% UP). Pode-se concluir que a aplicação de nitrogênio é necessário para se obter maio res % UP, mas não há diferenças entre as fontes. Os modos de aplicação do fósforo não diferiram entre si quanto a % UP.

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Três fontes de nitrogênio - 15n foram utilizadas: sulfato de amônio, nitrato de amônio e uréia. Elas foram aplicadas no plantio de dois modos: a lanço e a seguir incorporadas ao solo, ou no sulco de plantio. Determinou-se a eficiência de utilização do nitrogênio - 15n aplicado no plantio e no perfilhamento, sendo respectivamente, em media 14 e 13% do nitrogênio aplicado e utilizados pelo trigo. Obtiveram-se valores de 16 e 12% de eficiência do nitrogênio - 15n aplicado no sulco de plantio ou a lanço e a seguir incorporado ao solo, respectivamente.

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A mistura de uréia com fertilizantes de características ácidas aplicada ao solo pode aumentar a concentração de íons H+ próximos do grânulo e promover a redução da perda de N por volatilização. O experimento foi desenvolvido em vasos com 15 kg de Latossolo Vermelho textura média, sob túnel plástico, em Botucatu (SP), nos quais foram crescidas plantas de milho (duas plantas por vaso) até o pendoamento (66 dias após a emergência - DAE). Como tratamentos foi realizada a adubação (100 mg dm-3 N), no estádio de cinco folhas (30 DAE) utilizando os seguintes fertilizantes ou misturas físicas: (1) uréia (UR), enriquecida com 15N; (2) sulfato de amônio (SA), enriquecido com 15N; (3) sulfnitro (80% de N-UR e 20% de N-SA no mesmo grânulo); (4) mistura de UR (80% N) e SA (20% N e enriquecido com 15N); (5) mistura de UR (50% N) e SA (50% N), enriquecidos com 15N; (6) mistura de UR (50% N) e SA (50% N e enriquecido com 15N), (7) mistura de UR (50% N) e SA (50% N), enriquecido com 15N, diluídos em água (solução contendo 3% de N) e mais um tratamento que não recebeu N. A mistura de UR e SA não promoveu aumento na recuperação do N da uréia na planta de milho. do total de 15N-fertilizante aplicado, aproximadamente, 67% foram recuperados pela planta de milho (29% nas folhas, 25% no caule e 13% nas raízes) e 6% no solo, com uma perda estimada de 27%. O 15N da uréia foi recuperado em menor quantidade no caule em relação ao N do sulfato de amônio.

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Dentre os micronutrientes, o Zn e o Mn limitam a produção dos citros, no Brasil. A aplicação foliar tem sido a forma tradicional de fornecimento, contudo, a eficiência desta adubação depende de uma série de fatores, entre eles o tipo de fertilizante. Foram realizados dois experimentos em pomar com laranjeiras Pêra, enxertadas em limão cravo, com sete anos de idade, em Botucatu, SP. No primeiro experimento foram avaliadas três fontes de Mn via foliar: carbonato de manganês A, carbonato de manganês B e sulfato manganoso, em duas doses para cada fertilizante, correspondente a 250 e 500 g ha-1 de Mn, mais o controle, pulverizado somente com água. No segundo experimento foram testadas três fontes de Zn para aplicação foliar: óxido de zinco A, óxido de zinco B e sulfato de zinco, em duas doses para cada fertilizante, correspondente a 375 e 750 g ha-1 de Zn, mais o controle. As amostragens de folhas foram realizadas mensalmente, iniciando aos 30 dias após aplicação dos tratamentos. A aplicação foliar com carbonato de manganês B, na dose de 500 g ha-1 Mn, e com óxido de zinco B, na dose de 750 g ha-1, proporcionaram, respectivamente, níveis nutricionais adequados de Mn e Zn nas folhas de laranjeira. Na ausência de chuvas, os teores adequados de Mn e Zn no solo, não permitem suprir satisfatoriamente as laranjeiras Pêra enxertadas em limoeiro cravo.

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Electrodeposition of thin copper layer was carried out on titanium wires in acidic sulphate bath. The influence of titanium surface preparation, cathodic current density, copper sulphate and sulphuric acid concentrations, electrical charge density and stirring of the solution on the adhesion of the electrodeposits was studied using the Taguchi statistical method. A L(16) orthogonal array with the six factors of control at two levels each and three interactions was employed. The analysis of variance of the mean adhesion response and signal-to-noise ratio showed the great influence of cathodic current density on adhesion. on the contrary, the other factors as well as the three investigated interactions revealed low or no significant effect. From this study optimized electrolysis conditions were defined. The copper electrocoating improved the electrical conductivity of the titanium wire. This shows that copper electrocoated titanium wires could be employed for both electrical purpose and mechanical reinforcement in superconducting magnets. (C) 2008 Elsevier B.V. All rights reserved.

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The common bean is a leguminous of great importance in the Brazilian economy and nitrogen is the taken up nutrient in larger amount. Nitrogen fertilization management is of extreme importance to offer larger economical viability, besides increasing the efficiency of plant in the use of the available resources. The objective this study was to evaluate the effect of sources and doses of sidedressing nitrogen in the development and yield of winter common bean in no tillage system, as well as evaluate its economical viability. A randomized blocks design was used, in a factorial scheme 3x3 with 9 treatments constituted by three sources of nitrogen (ammonium sulphate, urea and ammonium sulphate 1/2 of N + urea 1/2 of N, applied at V(4-3) stadium) and different doses of sidedressing nitrogen (0, 40, 80 kg ha(-1)) in four replications. The study was conducted in Selviria county, MS State in 2004 in no season crop period, in a dystrophic Haplustox soil. The conclusion: independent of nitrogen source, nitrogen fertilization increasing provides increment in yield of winter common bean up to dose 80 kg/ha, and this provides, on average, an increase of 20% in yield compared with control (without sidedressing nitrogen). The urea is the nitrogen source of larger economical efficiency.