998 resultados para 35-322


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Multijunction solar cells present a certain reflectivity on its surface that lowers its light absorption. This reflectivity produces a loss in electrical efficiency and thus a loss in global energy production for CPV systems. We present here an optical design for recovering this portion of reflected light, and thus leading to a system efficiency increase. This new design is based on an external confinement cavity, an optical element able to redirect the light reflected by the cell towards its surface again. We have proven the excellent performance of these cavities integrated in CPV modules offering outstanding results: 33.2% module electrical efficiency @Tcell  =  25 °C and relative efficiency and Isc gains of over 6%

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Modules are an important part of the CPV system. By pursing, in our objective of a 35% efficiency module, we need to look forward a significant improvement in the state of the art of CPV modules since no commercial module is capable of achieving that efficiency. Achieving this efficiency will require high efficiency cells, progress in the optics lenses that are implemented in these modules, and also integration into module. Basic design of 35% CPV module is presented considering for practical and rapid industry application. The output is 385 W while its weight is only 18 kg. In spite of its high concentration ratio reaching 1,000 X, it acceptance angle is as high as 1.1 degree.

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Gasification is a technology that can replace traditional management alternatives used up to date to deal with this waste (landfilling, composting and incineration) and which fulfils the social, environmental and legislative requirements. The main products of sewage sludge gasification are permanent gases (useful to generate energy or to be used as raw material in chemical synthesis processes), liquids (tars) and char. One of the main problems to be solved in gasification is tar production. Tars are organic impurities which can condense at relatively high temperatures making impossible to use the produced gases for most applications. This work deals with the effect of some primary tar removal processes (performed inside the gasifier) on sewage sludge gasification products. For this purpose, analysis of the gas composition, tar production, cold gas efficiency and carbon conversion were carried out. The tests were performed with air in a laboratory scale plant consisting mainly of a bubbling bed gasifier. No catalyzed and catalyzed (10% wt of dolomite in the bed and in the feeding) tests were carried out at different temperatures (750ºC, 800ºC and 850ºC) in order to know the effect of these parameters in the gasification products. As far as tars were concerned, qualitative and quantitative tar composition was determined. In all tests the Equivalence Ratio (ER) was kept at 0.3. Temperature is one of the most influential variables in sewage sludge gasification. Higher temperatures favoured hydrogen and CO production while CO2 content decreased, which might be partially explained by the effect of the cracking, Boudouard and CO2 reforming reactions. At 850ºC, cold gas efficiency and carbon conversion reached 49% and 76%, respectively. The presence of dolomite as catalyst increased the production of H2 reaching contents of 15.5% by volume at 850 °C. Similar behaviour was found for CO whereas CO2 and CnHm (light hydrocarbons) production decreased. In the presence of dolomite, a tar reduction of up to 51% was reached in comparison with no catalyzed tests, as well as improvements on cold gas efficiency and carbon conversion. Several assays were developed in order to test catalyst performance under more rough gasification conditions. For this purpose, the throughput value (TR), defined as kg sludge “as received” fed to the gasifier per hour and per m2 of cross sectional area of the gasifier, was modified. Specifically, the TR values used were 110 (reference value), 215 and 322 kg/h·m2. When TR increased, the H2, CO and CH4 production decreased while the CO2 and the CnHm production increased. Tar production increased drastically with TR during no catalysed tests what is related to the lower residence time of the gas inside the reactor. Nevertheless, even at TR=322 kg/h·m2, tar production decreased by nearly 50% with in-bed use of dolomite in comparison with no catalyzed assays under the same operating conditions. Regarding relative tar composition, there was an increase in benzene and naphthalene content when temperature increased while the content of the rest of compounds decreased. The dolomite seemed to be effective all over the range of molecular weight studied showing tar removal efficiencies between 35-55% in most cases. High values of the TR caused a significant increase in tar production but a slight effect on tar composition.

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Numerosos estudios (Brickett et al., 2007; Serrano et al., 2012) han demostrado que la granulación del pienso mejora el consumo, los IC y el PV en broilers. La granulación podría aumentar la digestibilidad de algunos de los componentes de la dieta (Abdollahi et al., 2011) y reducir las pérdidas de alimento en animales no rumiantes (Serrano et al., 2012; Berrocoso et al., 2013). Sin embargo, la información disponible sobre el efecto de la presentación del pienso sobre la productividad en pollitas es escasa. Debido a su menor consumo y menor velocidad de crecimiento, es de esperar que los beneficios de la granulación sean inferiores, en valores absolutos, en pollitas que en broilers. La densidad energética del pienso afecta al crecimiento y al IC en avicultura. Las aves comen para satisfacer sus necesidades energéticas (Nahashon et al, 2006) y por tanto, aumentan la ingesta voluntaria de pienso al disminuir el contenido de energía del mismo (Veldkamp et al, 2005). Sin embargo, las pollitas podrían no ser capaces de mantener constante la ingesta de energía con dietas muy diluidas (Pérez-Bonilla et al., 2012). Por otra parte, piensos muy energéticos son más palatables y tienden a aumentar el consumo voluntario, lo que podría resultar en mejoras de las GMD y de los IC (Frikha et al., 2009a; Perez-Bonilla et al., 2012). El objetivo del presente estudio fue comparar los efectos de la presentación del pienso y la concentración energética del mismo sobre los rendimientos productivos en pollitas de 1 a 35 d de edad.

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La fibra dietética representa la fracción indigestible de los ingredientes del pienso por lo que diluye el contenido en nutrientes del mismo (Rougière y Carré, 2010). Además, un aumento en el nivel de fibra del pienso puede reducir el consumo voluntario (Sklan et al., 2003), alterar el perfil de la flora gastrointestinal y aumentar la incidencia de procesos entéricos (Janssen and Carré, 1985). Sin embargo, estudios recientes muestran que la inclusión de ciertas fuentes de fibras a niveles adecuados podrían mejorar los rendimientos productivos y reducir la incidencia de problemas digestivos en aves (Mateos, 2012). En broilers, la inclusión de fibra adicional en el pienso mejoró la fisiología digestiva, aumentando el tamaño de la molleja, reduciendo el pH de la digesta de este órgano (Sacranie et al., 2012) y mejorando de los rendimientos productivos (González-Alvarado et al., 2010). Fuentes de fibra insoluble tales como la cascarilla de avena (CAV), la cascarilla de girasol (CGI) y la paja de cereales (PCE) podrían mejorar la fisiología del tracto gastrointestinal (TGI) y la digestibilidad de ciertos nutrientes cuando se incluyen en el pienso en cantidades moderadas (Hetland et al., 2003). Por otro lado, fuentes de fibra soluble, tal como la pulpa de remolacha (PRE), incrementan la viscosidad intestinal, lo que podría reducir el consumo de pienso (Jiménez-Moreno et al., 2010). Los autores no han encontrado estudio alguno sobre los efectos de la inclusión de fibra adicional en el pienso sobre los rendimientos productivos de pollitas comerciales. El objetivo del presente trabajo fue estudiar el efecto de incluir diversas fuentes de fibra a diferentes niveles en el pienso sobre los rendimientos productivos de pollitas de 1 a 35 d de edad.