193 resultados para fosfato de rocha reativo


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El ensayo se llevó a cabo en la finca El Cortijo (La Vega, Cundinamarca, Colombia [04°55'N y 74°18'W], 2350 m altitud, 17°C temperatura media, 1423 mm precipitación anual, 85% humedad relativa, 1377 horas brillo solar/año). Se utilizaron árboles de feijoa o goiabeira serrana de seis años, Clon 41 ('Quimba'), evaluando fertilizantes foliares KNO3 (Nitrato de Potasio 13-0-46® 1%, 1,5% y 2%) y KH2PO4 (fosfato de potasio; Cosmofoliar 0-32-43®; 0,5%, 0,75% y 1,0%) y la fitohormona ethephon (Ethrel® 48 SL; 100, 150 y 200 mg L-1). Se determinaron el número de botones florales inducidos, flores formadas, además, el porcentaje de flores formadas y nivel de eficacia de los productos inductores. El KH2PO4 al 0,5% obtuvo resultados favorables en cada una de las variables evaluadas, comparado con el 0,75% y 1% del mismo producto y, sin embargo hubo un alto número de flores inducidas y formadas, no se presentaron diferencias significativas con el testigo. Ethephon a 150 mg L-1 en la inducción de botones florales y a 100 mg L-1 en la de formación de flores mostró resultados favorables, pero tampoco pudo superar el testigo por falta de significancia. La respuesta generada por KNO3 mostró una baja inducción de botones florales, y una eficacia negativa en la proporción de flores formadas; asimismo fitotoxicidad, cuando se emplearon concentraciones al 2% de este producto.

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RESUMOO objetivo deste trabalho foi avaliar o efeito de diferentes condições de atmosfera controlada (AC) e da indução de perda de massa (IPM) sobre a qualidade de peras ‘Rocha’. Frutos provenientes do município de São Joaquim-SC, foram armazenados por oito meses e quinze dias a -0,5±0,1 ºC e UR de 96±1%. Os tratamentos foram constituídos em armazenamento refrigerado (AR; 21,0 kPa de O2 + <0,03 kPa de CO2), bem como de cinco condições de AC: 1,0 kPa de O2 + <0,03 kPa de CO2; 2,0 kPa de O2 + 1,0 kPa de CO2; 1,0 kPa de O2 + 1,0 kPa de CO2; 1,0 kPa de O2 + 2,0 kPa de CO2; e 1 kPa de O2 + 2,0 kPa de CO2 + IPM de 2,6%. O AR propiciou frutos com casca mais amarela, menor teor de sólidos solúveis, menor acidez titulável e baixa aceitação nos testes sensoriais para os atributos de textura e equilíbrio doçura/acidez. Os frutos mantidos em AR e em AC, com pressão parcial de CO2 de <0,03 kPa, apresentaram maior firmeza de polpa e de força para penetração da polpa após sete dias de exposição dos frutos em condições ambiente, não desenvolvendo textura amanteigada, própria para o consumo. Não houve incidência de escurecimento de polpa em nenhuma das condições avaliadas. A IPM de 2,6% não apresentou efeito na qualidade dos frutos. As condições de AC de 1,0 kPa de O2 + 1,0 kPa de CO2 e 1 kPa de O2 + 2,0 kPa de CO2 proporcionam melhor manutenção da qualidade de peras ‘Rocha’, permitindo o amadurecimento normal dos frutos após o armazenamento prolongado.

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RESUMO O objetivo deste trabalho foi verificar a influência de diferentes espaçamentos de plantio sobre o crescimento vegetativo de pereiras das cvs. Rocha e Hosui, em sistema orgânico de produção. As mudas das pereiras ‘Rocha’ e ‘Hosui’ enxertadas sobre o marmeleiro ‘CP’ foram plantadas em setembro de 2009. Os espaçamentos utilizados foram: 1,0; 0,8; 0,6 e 0,4 m, entre plantas por 3,5 m entre linhas, equivalendo às densidades de plantio de 2.857; 3.571; 4.762 e 7.143 plantas ha-1, respectivamente. Por dois ciclos consecutivos - 2011/2012 e 2012/2013 -, referentes ao terceiro e ao quarto anos após o plantio, respectivamente, foram avaliadas as variáveis diâmetro detronco, diâmetro de ramos e número de ramos. No segundo ciclo, foram avaliados o volume de copa, a área foliar estimada, a cobertura do dossel e os teores de clorofila a, b e total. Considerando as variáveis: projeção vertical de área foliar estimada, volume de copa e diâmetro de tronco e ramos, para a cv. Hosui, observou-se maior vigor vegetativo em relação à cv. Rocha. A cv. Rocha apresentou redução dos teores de clorofila no menor espaçamento entre plantas, enquanto na cv. Hosui os teores de clorofila não variaram com o espaçamento. Ocorreu aumento da área foliar estimada em função do adensamento para as duas cultivares; para o volume de copa, porém, este efeito foi observado apenas para a cv. Hosui, e para o índice de cobertura de dossel, apenas para a cv. Rocha. O maior adensamento de plantio favoreceu as pereiras da cv. Hosui, proporcionando maior volume de copa por área de terreno, sem ocorrer redução dos teores foliares de clorofila, mas com aumento da cobertura do dossel. Para a cv. Rocha, no entanto, adensamentos maiores do que 4.700 plantas ha-1 parecem ser prejudiciais, visto promoverem redução dos teores foliares de clorofila, porém com maior cobertura do dossel, podendo indicar autossombreamento.

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We present a new binuclear complex, Fe2III(BBPMP)(OH)(O2 P(OPh)2) ClO4.CH3OH, 3, where BBPMP is the anion of 2,6-bis(2-hydroxybenzyl)(2-pyridylmethyl) aminomethyl-4-methylphenol, as a suitable model for the chromophoric site of purple acid phosphatases coordinated to phosphate. The complex was obtained by the reaction of complex 2, Fe2III(BBPMP)(O2P(OPh) 2)2 ClO4.H2O, in CH3CN with one equivalent of triethylamine. Based on the chromophoric properties of the model complex, lmax = 560 nm/ e = 4480 M-1 cm-1/Fe2 compared to the enzyme coordinated to phosphate, we can speculate about a possible mechanism of fixing this oxyanion by the oxidized form of the enzymes.

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Anionic collagen: calcium phosphate composite was obtained by controlled mixing of collagen and calcium phosphate until the consistence of a past. Material was characterized by a Ca/P ratio of 1.55, with a X-ray diffraction pattern similar to that for hydroxyapatite. Differential Scanning Calorimetry showed that the protein is not denatured under the processing conditions. Scanning Electronic Microscopy showed that the mineral phase are regularly covered with collagen fibers, indicating that anionic collagen is efficient in the preparation of stable form of calcium phosphate ceramic paste.

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A flow injection spectrophotometric method was developed for determining aspartame in sweeteners. Sample was dissolved in water and 250 µL of the solution was injected into a carrier stream of 5.0 x 10-5 mol L-1 sodium borate solution. The sample flowed through a column (14 cm x 2.0 mm) packed with Zn3(PO4)2 immobilized in a polymeric matrix of polyester resin and Zn(II) ions were released from the solid-phase reactor by formation of the Zn(II)-aspartame complex. The mixture merged with a stream of borate buffer solution (pH 9.0) containing 0.030 % (m/v) alizarin red S and the Zn(II)-alizarin red complex formed was measured spectrophotometrically at 540 nm. The calibration graph for aspartame was linear in the concentration range from 10 to 80 µg mL-1 with a detection limit of 4 µg mL-1 of aspartame. The RSD was 0.3 % for a solution containing 40 µg mL-1 aspartame (n = 10) and seventy results were obtained per hour. The proposed method was applied for determining aspartame in commercial sweeteners.

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Phenil glycidyl ether (PGE), a monofunctional diluent, has been used in epoxy resins formulations in order to increase the toughness of the epoxy molded composite. In a systematic study concerning its influence in the cure kinetics of the epoxy resin, it was used in concentrations of 2,5; 5,0; 10 and 20% in relation to a diglycidyl ether bisphenol-A (DGEBA)/diamino diphenil-sulfone (DDS) base matrix. Dynamic and isothermal scanning analysis were carried out using a differential scanning calorimety (DSC) equipment. For all the concentrations of PGE, a n order kinetics was observed, with n varing between 0,35 -- 0,91 as a function of the increase in the PGE concentration.

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This work summarizes important aspects of the chemistry of phosphate esters, with special emphasis on: i) advances in the design of enzymatic models for phosphatases; and ii) nerve agents and currently used strategies for detoxification. The physical organic chemical aspects that are responsible by the reactivity of phosphate esters are also discussed.

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Procion Green HE-4BD is a reactive dye currently used in affinity purification, and commonly present as a contaminant in the final biological preparation. An assay method is described to determine trace amounts of the dye in the presence of human serum albumin(HSA) and leakage from agarose as affinity sorbent by cathodic stripping voltammetry. The proposed method is based on the reductive peak at -0.55V in B-R buffer pH 3 (E=0V and t= 240s), obtained when samples of HSA 2% (m/v) containing dye concentrations in sodium hydroxide pH 12 are submitted to a heating time of 330 min at 80 ºC. Linear calibration curves can be obtained for RG19 dye concentrations from 5x10-9 mol L-1 to 8 x10-8 mol L-1. The detection limit (3sigma) is 1x10-9 mol L-1.

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The alpha-zirconium (IV) hydrogenphosphate (alpha-ZrP) has received great attention in the last years due to its properties like ion exchange, intercalation, ionic conductivity and catalytic activity. This work reports a method to produce metallic copper clusters on alpha-ZrP to be used as catalysts in petrochemical processes. It was found that the solids were non-crystalline regardless of the uptake of copper and the reduction. The specific surface area increased as a consequence of the increase of the interlayer distance to accept the copper ions between the layers. During the reduction, big clusters of copper (0,5-11µ) with different sizes and shapes were produced.

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A new white pigment made out of nano-structured non-crystalline aluminum phosphate was recently launched as an industrial product. Pigment opacifying properties are not intrinsic to aluminum phosphate but they arise as the result of a rare hollow particle nano-structure. This is in turn derived from the core-and-shell structure of amorphous aluminum phosphate precipitated under well-defined conditions. The new pigment is a product of the often neglected chemistry of non-crystalline ionic solids that can probably be a rich source of new successful products. The text describes a short account of the R&D activities, from the initial ideas to the present.

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The crystallization of hydroxyapatite (HA) in aqueous solution can be described by the mechanism ACP -> OCP -> HA. In this work, it was studied the influence of K+, Mg2+, SO4(2-) and CO3(2-) ions in the formation of ACP and in its conversion to OCP, using biomimetic coatings on metallic substrates of commercially pure titanium (Ti c.p.). The results showed that Mg2+ and CO3(2-) ions favored both the formation of ACP and its conversion to OCP. Differently, K+ and SO4(2-) ions did not influence the formation of ACP and, consequently, interfered in the conversion to OCP.

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The ornamental rock industry generates huge amounts of wastes during the process of extraction and sawing of rock blocks. The ornamental rock powder waste is a non-biodegradable material, which represents the increase in environmental problem. The waste was collected from a granitic rock sawing plant located in Santo Antônio de Pádua, Rio de Janeiro. The chemical-environmental characterization and classification of the waste were done according to ABNT standards. The results showed that the granitic rock powder waste should be classified as Class II A - "No Inert", because of its high concentrations of lead, chrome, iron and manganese.

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The synthesis of -5-(D-arabino-1,2,3,4-tetrahydroxybutyl)tetrazole and -2-(D-arabino-1,2,3,4-tetra-acetoxybutyl)-5-methyl-1,3,4-oxadiazole from D-arabinose is described. Attempts at removing the protecting groups of the oxadiazole derivative were unsuccessful, leading to products resulting from the opening of the oxadiazole ring. The unprotected tetrazole derivative was selectively phosphorylated at the primary hydroxyl group with diethylphosphoryl chloride. The resulting 5-[D-arabino-4-(diethylphosphoryloxy)-1,2,3-trihydroxybutyl]tetrazole is a protected form of a potential inhibitor of the enzymes glucose-6-phosphate isomerase and glucosamine synthase.

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This work describes the study the adsorption of a cationic surfactant, cetyl trimethyl ammonium bromide (CTAB) in the hydrous niobium phosphate matrix. The matrix was characterized by powder X-ray diffraction (DRX), thermal analysis (TG), differential scanning calorimetry (DSC), scanning electron microscopy (SEM) and surface area measurements (BET). The Langmuir and Freundlich isothermal models were used in the CTAB adsorption study. The adsorption process wasn`t favorable for the NbOPO4.nH2O in both studied models.