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991.
Fátima C. Teixeira Ana I. de Sá António P.S. Teixeira V.M. Ortiz-Martínez A. Ortiz I. Ortiz C.M. Rangel 《International Journal of Hydrogen Energy》2021,46(33):17562-17571
Proton exchange membranes remain a crucial material and a key challenge to fuel cell science and technology. In this work, new Nafion membranes are prepared by a casting method using aryl- or azaheteroaromatic bisphosphonate compounds as dopants. The incorporation of the dopant, considered at 1 wt% loading after previous selection, produces enhanced proton conductivity properties in the new membranes, at different temperature and relative humidity conditions, in comparison with values obtained with commercial Nafion. Water uptake and ionic exchange capacity (IEC) are also assessed due to their associated impact on transport properties, resulting in superior values than Nafion when tested in the same experimental conditions. These improvements by doped membranes prompted the evaluation of their potential application in fuel cells, at different temperatures. The new membranes, in membrane-electrode assemblies (MEAs), show an increased fuel cell maximum power output with temperature until 60 °C or 70 °C, followed by a decrease above these temperatures, a Nafion-like behaviour when measured in the same conditions. The membrane doped with [1,4-phenylenebis(hydroxymethanetriyl)]tetrakis(phosphonic acid) (BP2) presents better results than Nafion N-115 membrane at all studied temperatures, with a maximum power output performance of ~383 mW cm?2 at 70 °C. Open circuit potentials of the fuel cell were always higher than values obtained for Nafion MEAs in all studied conditions, indicating the possibility of advantageous restrain to gas crossover in the new doped membranes. 相似文献
992.
Bouwknegt M Lodder-Verschoor F van der Poel WH Rutjes SA de Roda Husman AM 《Journal of food protection》2007,70(12):2889-2895
993.
Natalia Mattar Cantagalli Kelly Cristina Martins Faeda Rafael Witter Dias Pais Ana Maria Matildes dos Santos Wilmar Barbosa Ferraz 《能源与动力工程:英文版》2014,(8):1409-1414
Nuclear fuel based on uranium metal alloys is utilized in research and test reactors. For the purpose of the reduction of fuel enrichment, high densities of uranium-235 in this kind of fuel are needed. This can be achieved when uranium alloys are used containing elements such as Zr, Mo and Nb. The construction of fuel element with high-uranium density requires materials with low cross sections for neutron absorption, stability under irradiation and absence of the chemical interactions between the fuel and cladding elements. In case of U-Zr-Nb alloys, Zry (zircaloy) cladding is a better option due to the fact that they have a higher chemical compatibility when compared with the use of aluminum alloys. This study aims to develop plate type nuclear fuel using the U-2.5Zr-7.5Nb alloy dispersed in Zry. Powders of this uranium based alloy and Zry were obtained by hydriding-dehydriding process. These powders were homogenized, compacted in pellet that was sandwiched in plates and frame of Zry. This assembly was hot rolled forming the dispersion fuel miniplate. 相似文献
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Franco Emanuel Vasile Lis Marlene Hryczyñski Andrea Beatriz Fernandez Leandro Fabián Bustos Ana María Romero María Florencia Mazzobre 《International Journal of Dairy Technology》2023,76(1):252-260
This work aimed to evaluate the impact of buffalo milk and nondairy ingredients on sensory properties and acceptability of custards intended for children. For this, a consumer study with 100 children aged 8 to 12 was performed. Three custard models were formulated using buffalo milk and variable amounts of corn starch, sucrose and colourant/flavouring. Compositional, mechanical and chromatic properties of custards were related to sensory characteristics and overall liking scores. Obtained results allowed understanding the consumers' preferences and identifying the drivers of liking. Buffalo milk constitutes a promising raw material for the formulation of custard intended for children. 相似文献
996.
Photo-fenton degradation of diclofenac: identification of main intermediates and degradation pathway 总被引:2,自引:0,他引:2
Pérez-Estrada LA Malato S Gernjak W Agüera A Thurman EM Ferrer I Fernández-Alba AR 《Environmental science & technology》2005,39(21):8300-8306
In recent years, the presence of pharmaceuticals in the aquatic environment has been of growing interest. These new contaminants are important because many of them are not degraded under the typical biological treatments applied in the wastewater treatment plants and represent a continuous input into the environment. Thus, compounds such as diclofenac are present in surface waters in all Europe and a crucial need for more enhanced technologies that can reduce its presence in the environment has become evident. In this sense, advanced oxidation processes (AOPs) represent a good choice for the treatment of hazardous nonbiodegradable pollutants. This work deals with the solar photodegradation of diclofenac, an antiinflammatory drug, in aqueous solutions by photo-Fenton reaction. A pilot-scale facility using a compound parabolic collector (CPC) reactor was used for this study. Results obtained show rapid and complete oxidation of diclofenac after 60 min, and total mineralization (disappearance of dissolved organic carbon, DOC) after 100 min of exposure to sunlight. Although diclofenac precipitates during the process at low pH, its degradation takes place in the homogeneous phase governed by a precipitation-redissolution-degradation process. Establishment of the reaction pathway was made possible by a thorough analysis of the reaction mixture identifying the main intermediate products generated. Gas chromatography-mass spectrometry (GC/ MS) and liquid chromatography coupled with time-of-flight mass spectrometry (LC/TOF-MS) were used to identify 18 intermediates, in two tentative degradation routes. The main one was based on the initial hydroxylation of the phenylacetic acid moiety in the C-4 position and subsequent formation of a quinone imine derivative that was the starting point for further multistep degradation involving hydroxylation, decarboxylation, and oxidation reactions. An alternative route was based on the transient preservation of the biphenyl amino moiety that underwent a similar oxidative process of C-N bond cleavage. The proposed degradation route differs from those previously reported involving alternative degradation processes (ozonization, UV/H2O2, or photolysis), indicating that diclofenac degradation follows different pathways, depending on the treatment applied. 相似文献
997.
AbstractThe transformation process of biomass through gasification may produce a large amount of solid particles of different granulometry. In order to avoid equipment damage, these particles must be separated from the producer gas before it is utilized in other processes. This separation can be performed through a cyclone separator. This equipment is part of the circulating fluidized bed gasifier and is responsible for particulate separation and producer gas partial cleanup. Cyclone dimensioning requires careful attention and must be done according to the conditions this device is going to be subject. Thus, this work aims to validate and analyze a dimensioning methodology and apply it to a gasifier. Three cyclone geometries were considered (Stairmand, Swift and Lapple) and they were compared in terms of collection efficiency and pressure drop. A parameter sensibility study was performed. Variations of dimension, efficiency and pressure drop for a producer gas volumetric flow range were tested. It was found that an increase of the volumetric flow rate provoked the rise of separation efficiency and pressure drop. From the tested geometries, Swift presented the highest collection efficiency and pressure drop. 相似文献
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