991 resultados para Amount h-b CH4


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Polyelectrolyte multilayer (PEM) thin film composed of weak polyelectrolytes was designed by layer-by-layer (LbL) assembly of poly(allylamine hydrochloride) (PAH) and poly(methacrylic acid) (PMA) for multi-drug delivery applications. Environmental stimuli such as pH and ionic strength showed significant influence in changing the film morphology from pore-free smooth structure to porous structure and favored triggered release of loaded molecules. The film was successfully loaded with bovine serum albumin (BSA) and ciprofloxacin hydrochloride (CH) by modulating the porous polymeric network of the film. Release studies showed that the amount of release could be easily controlled by changing the environmental conditions such as pH and ionic strength. Sustained release of loaded molecules was observed up to 8 h. The fabricated films were found to be biocompatible with epithelial cells during in-vitro cell culture studies. PEM film reported here not only has the potential to be used as self-responding thin film platform for transdermal drug delivery, but also has the potential for further development in antimicrobial or anti-inflammatory coatings on implants and drug-releasing coatings for stents. (C) 2015 Elsevier B.V. All rights reserved.

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New molecular beam scattering experiments have been performed to measure the total ( elastic plus inelastic) cross sections as a function of the velocity in collisions between water and hydrogen sulfide projectile molecules and the methane target. Measured data have been exploited to characterize the range and strength of the intermolecular interaction in such systems, which are of relevance as they drive the gas phase molecular dynamics and the clathrate formation. Complementary information has been obtained by rotational spectra, recorded for the hydrogen sulfide-methane complex, with a pulsed nozzle Fourier transform microwave spectrometer. Extensive ab initio calculations have been performed to rationalize all the experimental findings. The combination of experimental and theoretical information has established the ground for the understanding of the nature of the interaction and allows for its basic components to be modelled, including charge transfer, in these weakly bound systems. The intermolecular potential for H2S-CH4 is significantly less anisotropic than for H2O-CH4, although both of them have potential minima that can be characterized as `hydrogen bonded'.

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The expression of a biologically active human IFN4 depends on the presence of a frameshift deletion polymorphism within the first exon of the interferon lambda 4 (IFNL4) gene. In this report, we use the lung carcinoma-derived cell line, A549, which is genetically viable to express a functional IFN4, to address transcriptional requirements of the IFNL4 gene. We show that the GC-rich DNA-binding transcription factor (TF) specificity protein 1 (Sp1) is recruited to the IFNL4 promoter and has a role in induction of gene expression upon stimulation with viral RNA mimic poly(I:C). By using RNAi and overexpression strategies, we also show key roles in IFNL4 gene expression for the virus-inducible TFs, nuclear factor kappa-light-chain-enhancer of activated B cells (NF-B), IFN regulatory factor 3 (IRF3), and IRF7. Interestingly, we also observe that overexpression of IFN4 influences IFNL4 promoter activity, which may further be dependent on the retinoic acid-inducible gene-I (RIG-I)-like receptor pathway. Together, our work for the first time reports on the functional characterization of the human IFNL4 promoter.

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Recently, much research has been focused on finding new thermoelectric materials. Cu-based quaternary chalcogenides that belong to A(2)BCD(4) (A = Cu; B = Zn, Cd; C = Sn, Ge; D = S, Se, Te) are wide band gap materials and one of the potential thermoelectric materials due to their complex crystal structures. In this study, In-doped quaternary compounds Cu2ZnGe1-xInxSe4 (x = 0, 0.025, 0.05, 0.075, 0.1) were prepared by a solid state synthesis method. Powder x-ray diffraction patterns of all the samples showed a tetragonal crystal structure (space group I-42m) of the main phase with a trace amount of impurity phases, which was further confirmed by Rietveld analysis. The elemental composition of all the samples showed a slight deviation from the nominal composition with the presence of secondary phases. All the transport properties were measured in the temperature range 373-673 K. The electrical resistivity of all the samples initially decreased up to similar to 470 K and then increased with increase in temperature upto 673 K, indicating the transition from semiconducting to metallic behavior. Positive Seebeck coefficients for all the samples revealed that holes are the majority carriers in the entire temperature range. The substitution of In3+ on Ge4+ introduces holes and results in the decrease of resistivity as well as the Seebeck coefficient, thereby leading to the optimization of the power factor. The lattice thermal conductivity of all the samples decreased with increasing temperature, indicating the presence of phonon-phonon scattering. As a result, the thermoelectric figure of merit (zT) of the doped sample showed an increase as compared to the undoped compound.

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We report on the observation of stable p-type conductivity in B and N co-doped epitaxial ZnO thin films grown by pulsed laser deposition. Films grown at higher oxygen partial pressure (similar to 10(-1) Torr) shows p-type conductivity with a carrier concentration of similar to 3 x 10(16) cm(-3). This p-type conductivity is associated with the significant decrease in defect emission peaks due to the vacancy oxygen (V-O) and Schottky type-I native defects compared to films grown at low oxygen partial pressure (similar to 10(-5) Torr). The p-type conductivity is explained with the help of density functional theory (DFT) calculation considering off-stoichiometric BN1+x in the ZnO lattice. (C) 2015 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim

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Micro-arc oxidation (MAO) coatings were prepared on AZ31B magnesium alloy using alkaline silicate electrolyte at different current densities (0.026, 0.046 and 0.067 A/cm(2)). Field Emission Scanning Electron Microscopy (FESEM) analysis of the coating revealed an irregular porous structure with cracked morphology. Compositional analysis carried out for MAO coating showed the presence of almost an equal amount of Mg and 0 (34 wt.%) apart from other elements such as F, Si and AI. The cross-sectional FESEM images clearly portrayed that the MAO coating was dense along with the presence of very few fine pores. The surface roughness (R-a) of the coatings increased with an increase in the current density. Potentiodynamic polarization and electrochemical impedance spectroscopic (EIS) studies were carried out for both the bare and MAO coated AZ31B Mg alloy in 3.5% NaCl solution. The corrosion potential (E-corr) and corrosion current density (i(corr)) values obtained for the bare substrate were -1.49 V and 46 mu A/cm(2), respectively. The coating prepared at 0.046 A/cm(2) exhibited the lowest i(corr) value of 7.79 x 10(-10) A/cm(2) and highest polarization resistance (41.6 M Omega cm(2)) attesting to the better corrosion resistance of the coating compared to other samples. EIS results also indicated almost similar corrosion behavior for the MAO coatings. Mott-Schottky analysis showed n-type and p-type semiconductor behavior for the oxide layer present on the bare magnesium alloy and MAO coatings respectively. (C) 2016 Published by Elsevier B.V.

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Plasma electrolytic oxidation coatings were produced on AM50 Mg alloy in alkaline phosphate based electrolyte with montmorillonite clay additives employing current densities of 30, 60, and 120 mA/cm(2). The effect of current density on the microstructure and corrosion properties of the coating was investigated. The clay additives got melted and reactively incorporated into the coating forming an amorphous phase, at all the current densities. However, the coating was predominantly amorphous only at 30 mA/cm(2) and with increasing current density, increasing fractions of crystalline phases were formed. Higher current densities resulted in increased thickness of the coating, but reduced the compactness of the coatings. Electrochemical impedance spectroscopy tests in 0.5 wt.% (0.08 M) and 3.5 wt.% (0.6 M) NaCl solution revealed that the coatings processed at 30 mA/cm(2) exhibited a relatively better initial corrosion resistance owing to its relatively defect-free barrier layer and compactness of the coating. However, the presence of amorphous phases in significant amounts and lack of MgO in the coating resulted in increased rate of dissolution of the coatings and degradation of corrosion resistance. Coatings produced at higher current densities exhibited initial inferior corrosion resistance due to a more defective barrier layer and increased porosity in pore band and outer porous layer. However, the increased amount of crystalline phases and an increased amount of MgO, which resisted dissolution, counterbalanced the negative effects of defective barrier and increased porosity resulting in a relatively lower rate of the degradation of the corrosion resistance. Thus, the corrosion resistance of all the coatings continuously decreased with time and became similar after prolonged immersion in NaCl solution. Increasing current density, therefore, did not prove to be beneficial for the improvement of the corrosion performance of the PEO coatings. (C) 2016 Elsevier B.V. All rights reserved.

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The kinetic studies of the acrylic octadecyl ester and styrene polymerization in microemulsion systems, (1) cetyl pyridine bromide (CPDB)/t-butanol/styrene/water; (2) CPDB/t-butanol/toluene + acrylic octadecyl ester (1:1, w/v)/ water; (3) cetyl pyridine bromide/styrene/formamide, were made by using dynamic laser light scattering techniques (DLS). The mechanisms of nucleation of latex particles were discussed. The most possible nucleation location of the styrene and acrylic octadecyl ester microlatex particles in aqueous microemulsion system is in aqueous phase via homogeneous nucleation. Meanwhile, parts of microlatex particles are possibly produced via swollen micelles (microemulsions) and monomer droplets nucleation. On the other hand, the most possible nucleation location of the styrene microlatex particles in nonaqueous microemulsion system is inside monomer droplets. The relationship between the amount of monomer and the size of microlatex was also investigated. It has been found that the size of microlatex particles could be controlled by changing the amount of monomer. (C) 2002 Elsevier Science B.V. All rights reserved.

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In the present paper the rarefied gas how caused by the sudden change of the wall temperature and the Rayleigh problem are simulated by the DSMC method which has been validated by experiments both in global flour field and velocity distribution function level. The comparison of the simulated results with the accurate numerical solutions of the B-G-K model equation shows that near equilibrium the BG-K equation with corrected collision frequency can give accurate result but as farther away from equilibrium the B-G-K equation is not accurate. This is for the first time that the error caused by the B-G-K model equation has been revealed.

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Con el objetivo de determinar los principales agentes etiológicos de las dermatopatías en conejos y determinar el efecto terapéutico de tres tratamientos fitoterapéuticos 1) Jícaro Sabanero, 2) madero negro y 3) Neem, sobre las mismas, se realizó un estudio en el Rancho Agropecológico en especies menores, Ebenezer (RAEME), Niquinohomo, Nicaragua. El trabajo se realizó en 59 conejos divididos en cuatro grupos y sometidos a los diferentes tratamientos. Para evaluar la efectividad de los tratamientos se realizaron 3 aplicaciones de cada uno de ellos a sus respectivos grupos, con intervalos de siete días cada uno, durante 21 días; a excepción del jícaro que se aplicó tres días continuos, cada siete días, durante 21 días. Se determinó que los principales agentes etiológicos presentes en el estudio, fueron el ácaro Listrophorus sp, los hongos Mucor sp, Aspergillus sp, zygomices sp, Penicillium sp. De los tres tratamientos aplicados, el tratamiento a base de Neem (Azadirachta indica) fue el que presentó un efecto altamente significativo (P< 0.0001)sobre el control de las dermopatías y permitió un mejor grado de recuperación de los conejos tratados. El tratamiento a base de jícaro (Crescentia alata) presenta algún grado de efectividad para el control de las dermopatías encontradas. El tratamiento a base de madero negro (Gliricidia sepium ), presentó muy poca efectividad en el control de las dermopatías en estudio.

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El presente estudio se llevó a cabo de junio de 1992 a junio 1993 en áreas del Ingenio Javier Guerra, ubicado en el municipio de Nandaime, departamento de Granada, con el propósito de determinar la composición florística de las malezas que compiten en el cultivo de la caña de azúcar, el grado de cubrimiento y frecuencia de aparición de las mismas en general y por tipo de suelo. Para el estudio se seleccionaron siete lotes de producción representativos de las condiciones de suelo predominantes en las áreas cañeras. En cada lote de muestreo se seleccionaron de forma sistemática cinco puntos, los cuales estaban separados 200 metros el uno del otro. En cada una de las estaciones se anotaron por separado las malezas y el grado de cubrimiento, seleccionándose las especies con mayores distribuciones en base a la frecuencia y grado de cubrimiento promedio en total de sub-estaciones evaluados. El método utilizado fue el de observación visual, tomando como base los grados fijados en la escala de Braun-Blanquet (1964). Se realizó selección de especies de malezas que aparecieron en los tipos de suelo en estudio (TX a 3 III), (NNc IV), (AA a II), (VCa 4 IV), (TXa 2 II) y (Sta II). El análisis de los resultados se realizó de forma descriptiva, con el auxilio de Figuras y Tablas. Los resultados pueden ser resumidos de !a siguiente forma: se determinaron 79 especies de malezas, el 68.35 por ciento corresponden a dicotiledóneas y el 31.65 por ciento a monocotiledóneas. Se determinaron en total 24 familias de plantas, cuatro de las cuales pertenecen a la clase monocotiledóneas. Del total de monocotiledóneas, el 72 por ciento pertenecen a la familia poaceae Las especies de malezas pertenecientes a la clase dicotiledóneas presentaron un porcentaje superior en relación a las malezas monocotiledóneas. Del total de malezas dicotiledóneas el 14.8 por ciento corresponde a la familia asteraceae. La familia poaceae es la familia con mayor representación en número de especies presentes, ya que presenta 22.8 por ciento del total de especies determinadas. Las especies de malezas con clase de frecuencia 5 fueron ixophorus unicetus (Presl) Schlecht, Phyllanthus amarus Schum y Amaranthus Spinosus L. Las dos primeras especies aparecieron en el 100 por ciento de las muestras realizadas y la última en el 85 por ciento de las muestras. La especie Cyperus rotundus L. presenta frecuencia N, y grado de cubrimiento de 4, lo cual constituye un parámetro importante para considerar a asta especie como una de las más problemáticas en el área del cultivo. La mayor cantidad de especies se encontró en los suelo TX a 3 III, y NNc IV. El suelo Sta II, presentó el menor número de especies de malezas. Las especies de malezas dicotiledóneas y monocotiledóneas, predominantes en tos seis tipos de suelo fueron: A. spinosus, Lunicetus, P. amaras. En cambio, las malezas con distribución en cinco y cuatro tipos de suelos fueron: Baltimora recta , Cleome viscosa , Cyperus rotundas , Cucumisdipsacum , y Echinochloacolonum.

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We present in this paper the application of B-P constitutive equations in finite element analysis of high velocity impact. The impact process carries out in so quick time that the heat-conducting can be neglected and meanwhile, the functions of temperature in equations need to be replaced by functions of plastic work. The material constants in the revised equations can be determined by comparison of the one-dimensional calculations with the experiments of Hopkinson bar. It can be seen from the comparison of the calculation with the experiment of a tungsten alloy projectile impacting a three-layer plate that the B-P constitutive equations in that the functions of temperature were replaced by the functions of plastic work can be used to analysis of high velocity impact.

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While it is well known that it is possible to determine the effective flexoelectric coefficient of nematic liquid crystals using hybrid cells [1], this technique can be difficult due to the necessity of using a D.C. field. We have used a second method[2], requiring an A.C. field, to determine this parameter and here we compare the two techniques. The A.C. method employs the linear flexoelectrically induced linear electro-optic switching mechanism observed in chiral nematics. In order to use this second technique a chiral nematic phase is induced in an achiral nematic by the addition of a small amount of chiral additive (∼3% concentration w/w) to give helix pitch lengths of typically 0.5-1.0 μm. We note that the two methods can be used interchangeably, since they produce similar results, and we conclude with a discussion of their relative merits.

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Se estudió el patosistema mancha de hierro-café a diferentes altitudes y bajo condiciones de campo para describir sus epidemias y determinar el periodo critico, su efecto sobre la defoliación y la producción de café cereza y la influencia del clima sobre su desarrollo. Se seleccionaron lotes en fincas a 440 y 650 m.s.n.m., en el Pacifico y 850, 1050 y 1200 m.s.n.m., en el norte. En cada lote, se numeraron y marcaron 150 bandolas, distribuidas en tres estratos y durante 40 semanas se recolectaron datos del nümero de nudos, nudos con frutos, hojas, incidencia (%), severidad (%), nümero de esporas, temperatura, humedad relativa y precipitación. Además, se recolectó información concerniente al nivel tecnológico, manejo agronómico y caracteristicas fisicas del lote. Luego, se describieron y compararon las epidemias, tanto a nivel de estrato, como a nivel de ecosistema, relacionándolas en este ültimo caso con las variables climátícas, el inóculo, la defoliación y ,la producción. Se definió el periodo critico, determinando en qué fase de las epidemias ocurrieron las mayores r (tasas aparentes de infección}. También se calculó un indice de importancia de las epidemias para ampliar las comparaciones. La "mancha de hierro" es más agresiva en el norte que en el Pacifico y se desarrolla más rápidamente cuando comienza tarde. Su mejor desarrollo ocurre en el estrato superior. Su ciclo epidémico va de mayo y junio a marzo y abril y su periodo critico ocurre durante las 2-4 primeras semanas, para la incidencia y los primeros 4-7 meses, para la severidad. Durante este periodo la acumulación semanal de enfermedad fue de 1 - 3% para la incidencia y 0.2 - 0.5% para la severidad. No se pudieron obtener resultados categóricos en cuanto a la relación del desarrollo de la enfermedad y las variables climáticas. Los mayores ataques a los frutos ocurrieron donde habia menos sombra y no necesariamente donde ocurrió la mayor tasa de infección en hojas. Cualquier sistema de manejo de la "mancha de hierro" debe fundamentarse en una fertilización y limpieza adecuadas del cafetal y el control quimico aplicado en base al periodo critico y el estrato de mayor desarrollo de la enfermedad. La severidad y la incidencia describieron de igual manera las epidemias del patosistema, pero es más conveniente utilizar la incidencia como elemento para la toma de decisiones de manejo.