114 resultados para poly-k
Resumo:
O presente trabalho teve como objetivos estimar a dose de K para obter a máxima eficiência física e econômica, estimar o nível crítico foliar de K e relacionar o equilíbrio nutricional da bananeira 'Prata-Anã' com a incidência de plantas com mal-do-panamá no 4º ciclo. O experimento foi realizado em Latossolo Vermelho-Amarelo (LVA), textura média, na região semiárida do norte de Minas Gerais, Brasil. Os tratamentos consistiram nas aplicações de quatro doses de K (0; 400; 800 e 1.200 kg ha-1 ano de K2O). Estes foram distribuídos em blocos ao acaso, com cinco repetições. A adubação com K promoveu aumento na produção da bananeira no 4º ciclo. A máxima eficiência física (31 Mg ha-1) e a econômica (30,5 Mg ha-1) foram obtidas com as aplicações de 969 e 707 kg ha-1 ano-1 de K2O, respectivamente. Os níveis críticos foliares de K obtidos foram 29,5 e 27,1 g kg-1, para a máxima eficiência física e econômica, respectivamente. O aumento das doses de K proporcionou melhor equilíbrio nutricional à bananeira e reduziu a porcentagem de plantas infestadas com o mal-do-panamá.
Resumo:
A qualidade do fruto do abacaxizeiro é influenciada pelos macronutrientes, principalmente N e K. Este trabalho avaliou a influência de doses de N e K2O sobre as características de qualidade físico-químicas e sobre os defeitos externos e internos dos frutos de abacaxizeiro ‘BRS Imperial’. Aplicaram-se quatro doses de N (0; 160; 320; 550 kg ha-1) e quatro de K2O (0; 240;480 e 600 kg ha-1), em delineamento experimental em blocos ao acaso, com cinco repetições, em um fatorial completo 42. As doses de N e K2O influenciaram todas as variáveisfísico-químicasestudadas, exceto a firmeza dos frutos, que apresentaram média de 10,7 kgf. As doses de N reduziram a acidez titulável (AT) e os sólidos solúveis (SS) e aumentaram o pH e o ratio dos frutos, apresentando, na dose de 550 kg ha-1 de N, os valores médios de 0,31%, 17,9 oBrix, 4,02 e 57,7, respectivamente. As doses de K2O aumentaram AT e os SS, e reduziram o ratio dos frutos, apresentando, na dose de 600 kg ha-1 de K2O, os valores médios de 0,41%, 19,4 oBrix e 47,9, respectivamente. O pH respondeu de forma quadrática, com o valor mínimo de 3,95 na dose de 273 kg ha-1 de K2O. As correlações significativas de Pearson indicaram que plantas com maiores teores foliares de N na época da indução floral produziram frutos com menor AT e SS, enquanto aquelas com maiores teores foliares de K apresentaram maior AT e SS nos frutos. Com aplicação de 550 kg ha de-1 N, os frutos apresentaram translucidez entre 50 e 75% sem adubação potássica e de menos de 25% de translucidez na dose de 400 kg ha-1 de K2O.
Resumo:
RESUMO O abacaxizeiro ‘BRS Imperial’ é cultivar resistente à fusariose, com folhas sem espinhos, e que carece de informações técnicas específicas para o seu manejo. Este trabalho teve como objetivo avaliar o efeito de doses de N e K2O no desenvolvimento vegetativo, na floração e nos atributos de desenvolvimento da folha ‘D’ do ‘BRS Imperial’, buscando estabelecer parâmetros da planta para a indução artificial do florescimento. Em delineamento em blocos ao acaso e cinco repetições, testaram-se quatro doses de N (0; 160; 320; 550 kg ha-1) e quatro doses de K2O (0; 240; 480 e 600 kg ha-1), em esquema fatorial completo 4 x 4. A adubação potássica influenciou de forma positiva na massa fresca e no comprimento da planta, bem como no número de mudas por planta após a colheita dos frutos, enquanto a aplicação de N influenciou na emissão de folhas e na massa fresca de mudas. A adubação nitrogenada diminuiu o percentual de florescimento induzido artificialmente, enquanto a potássica aumentou esse parâmetro. A massa máxima estimada da folha ‘D’ foi de 56 g na dose de 364 kg ha-1 de N e na maior dose de K2O (600 kg ha-1). A massa da folha ‘D’ apresentou a melhor correlação com a massa do fruto, sendo estimada a massa mínima de 44 g para obtenção de frutos de 900 g, massa mínima exigida pelo mercado para comercialização.
ADUBAÇÃO N-K NO ABACAXIZEIRO ‘BRS IMPERIAL’ – II EFEITO NO SOLO, NA NUTRIÇÃO DA PLANTA E NA PRODUÇÃO
Resumo:
RESUMO O abacaxizeiro ‘BRS Imperial’ é uma cultivar resistente à fusariose, apresenta frutos saborosos, mas ainda é pouco conhecido dos fruticultores. Este trabalho teve como objetivo avaliar o efeito de diferentes doses de N e K nas características químicas do solo, nos teores foliares de nutrientes e nas variáveis de produção de um cultivo de ‘BRS Imperial’. O experimento foi instalado no espaçamento 0,90 x 0,40 x 0,40 m, com quatro doses de N (0; 160; 320 e 550 kg ha-1) e quatro de K2O (0; 240; 480 e 600 kg ha-1), em blocos ao acaso, com cinco repetições, em fatorial completo 4 x 4. Foram realizadas análises químicas das folhas e do solo, e mensuradas as variáveis de produção. O cultivo do abacaxizeiro sem N e K ou apenas com adubação nitrogenada resultaram em menores índices de pH, K+, Ca e 2+Mg2+ no solo, no final do ciclo de cultivo, em relação aos teores iniciais. Mesmo na maior dose de K aplicada, o teor deste nutriente no solo ficou baixo. Os teores foliares de N e K estimados, nas doses máximas testadas, foram 12,8 e 31,8 g kg-1, respectivamente. As variáveis de colheita mostraram significância para as doses de N em todas as avaliações, enquanto as doses de K2O influenciaram apenas na relação comprimento/diâmetro do fruto. Pela análise de regressão, as doses de N mostraram efeito quadrático na massa dos frutos com coroa, a qual se apresentou com 1.086 g na dose máxima física de 365 kg ha-1 e produtividade estimada de 42 t ha-1.
Estudo microcalorimétrico da interação de tensoativos n-alquil-sulfato de sódio com tripsina a 298 k
Resumo:
Systematic study of the interactions of ionic surfactants with protein trypsin in buffer solution pH 3.5, 7.0 and 9.0, ionic strength 10 mM at 298 K was done using the microcalorimetric technique. In this study, anionic surfactant solutions of the sodium n-alkyl sulfates series (C8, C10, C12 and C14) were used. The enthalpy of interaction (ΔintHº) shows that the interaction of the surfactants C8, C10, C12 and C14 with trypsin in the solution pH 3.5 is an endothermic process with the value of ΔintHº decreasing linearly with increasing carbon chain length, which is attributed to the unfolding of the polypeptide chain. In the solution pH 7.0, we observed the same trend except for C14. In the solution pH 9.0, from C10 the enthapy of interaction didn't change with the increasing of the carbon chain length due to unfolding of the polypeptide. We concluded that when trypsin is folded, the enthalpy of interaction shows a linear relationship with the surfactant's hydrophobicity, in agreement with Traube's rule.
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The calorimetric experiments based on technique breaking ampoule were carried out by measuring of the heat of solution of alcohol in isotonic solution (NaCl 0.10 M) and alcohol in suspension of Sc at 298 K. From these data the enthalpy of interaction alcohol with suspension of Sc (DtrsH°) was calculate by Hess law. In this study, the results indicate that the enthalpy of interaction of aliphatic alcohol (C2-C8) with suspensions of Sc is a process exothermic and becomes more exothermic with increasing of -CH2 group of alcohol in range -1,14 to -4,0 kJ.mol-1. We concluded that enthalpy of interaction shows a linear relationship with increasing of alcohol's lipophilicity, in agreement with Traube's rule.
Resumo:
Chromatographic fractionation of bark extracts from Simira glaziovii (Rubiaceae) afforded the steroids beta-sitostenone, stigmastenone, beta-sitosterol and stigmasterol, methyl trans-4-hidroxy-3-methoxycinamate (1), the alkaloids harmane (2) and the new stereoisomer of ophiorine B (3). The structures were established by ¹H and 13C NMR, including 2D techniques and mass spectral analysis, of the natural products and pentaacetyllyalosidic acid (4a) and beta-carboline monoterpene tetraacetylglucoside (5, 1,22-lactamlyaloside) derivatives obtained by chemical transformations.
Resumo:
We synthesized Poly(decamethylene sebacate) - P10MS - and studied its overall crystallization rates in a range of temperatures using Differential Scanning Calorimetry in isothermal conditions, which enabled us to identify the crystallization mechanism by means of the Johnson-Mehl-Avrami-Kolmogorov equation. The critical cooling rate (Rc) to vitrify the P10MS was determined using a non-isothermal method proposed by Barandiarán & Colmenero (BC). The value of Rc is around 50-250 K/s, which confirms the experimentally observed difficulty to vitrify this polymer.
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An aliphatic-aromatic copolyester of poly(ethylene terephthalate), PET, and poly(ethylene adipate), PEA, PET-co-PEA, was synthesized by the high temperature melt reaction of post-consumer PET and PEA. As observed by NMR spectroscopy, the reaction yielded random copolyesters in a few minutes through ester-interchange reactions, even without added catalyst. The copolyesters obtained in the presence of a catalyst presented higher intrinsic viscosity than that obtained without the addition of catalyst, due to simultaneous polycondensation and ester-interchange reactions. The structure of the aliphatic-aromatic copolyesters obtained in different PET/PEA ratio is random as observed by NMR analysis.
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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 present work analyzed the effect of the temperature and type of salt on the phase equilibrium of aqueous two-phase systems (ATPS) formed by poly (ethylene glycol) (PEG) 1500 + potassium phosphate, from (278.15 to 318.15) K, and PEG 1500 + sodium citrate, from (278.15 to 298.15) K. The rise of the temperature normally increased the slope of the tie line (STL). With respect to the influence of the type of salt, sodium citrate showed better capability to induce phase separation, when compared to potassium phosphate.
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The yields and chemical compositions of the essential oils obtained by steam distillation of the fresh and dried (30 and 40 ºC) leaves, stems and roots of Tanaecium nocturnum are reported. The identification and quantification of the volatile constituents were accomplished by GC/MS and GC/FID, respectively. The essential oils obtained from the various parts of the plant were constituted mainly of benzaldehyde. Large losses and variations in the quantities of the components during the drying process were observed. The presence of mandelonitrile in higher concentration in the stem and roots indicates that this species produces cyanogenic glycosides.
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The crude methanol extract and hexane, ethyl acetate, chloroform and methanol fractions from leaves of S. garckeana were examined in vitro for their antiproliferative activity on MCF-7, NCI-ADR, NCI-460, UACC-62, 786-0, OVCAR-03, PCO-3 and HT-29 human cancer cell lines. Among the assayed fractions, the ethyl acetate fraction showed to be cytotoxic against 786-0, UACC-62, OVCAR-03 and NCI-ADR cell lines with IC50 values of 12 µg/mL, 42 µg/mL, 53 µg/mL and 51 µg/mL, respectively. Through fractionation and isolation procedures compound (1) was obtained from the EtOAc fraction and its structure was elucidated by spectral techniques.
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The present research highlights the macronutrient abundance in the sediments of beaches and cliffs and cultivates in the river Purus and flowing, southwest of Amazon. The concentrations found in leaves and bean seeds and corn leaves reflect the mineralogical and chemical nature of those rich sediments in K2O and Na2O, which are formed by smectite, illite and K-feldspar. The factors of transfer of the elements in the corn leaves and bean (Ca>K>Na) and bean seeds (Na>K>Ca) demonstrate that the nutrient needs of the cultivate were found appropriately in the sediments (soils) of the beaches and cliffs.
Resumo:
Water-in-crude oil emulsions are formed during petroleum production and asphaltenes play an important role in their stabilization. Demulsifiers are added to destabilize such emulsions,however the demulsification mechanism is not completely known. In this paper, the performances of commercial poly(ethylene oxide-b-propylene oxide) demulsifiers were studied using synthetic water-in-oil emulsions and model-systems (asphaltenes in organic solvent). No change in the asphaltene aggregate size induced by the demulsifier was observed. The demulsification performance decreased as the asphaltene aggregate size increased, so it can be suggested that the demulsification mechanism is correlated to the voids between the aggregates adsorbed on the water droplets surface.