97 resultados para MFI


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The synthesis of MFI-type zeolite membranes was carried by the process in situ or hydrothermal crystallization. We studied the homogenization time of the room temperature and gel filtration just before the crystallization step performed out in an oven, thus obtaining a more uniform zeolite film. The powder synthesized zeolite (structure type MFI, Silicalite) was characterized by several complementary techniques such as Xray diffraction (XRD), scanning electron microscopy (SEM), thermal analysis, temperature programmed desorption (TPD), Fourier Transform infrared spectroscopy (FTIR) and textural analysis by nitrogen adsorption (specific surface area). For the purpose of evaluating the quality of the layer supported on the ceramic support, N2 permeation tests were carried starting from room temperature to 600 °C, where values were observed values more appropriate permeation from 200 °C. With the data obtained, it was made into a graph of temperature versus permeation function, the curve of surface diffusion was found. For scanning electron microscopy, we observed the formation of homogeneous crystals and the zeolite film showed no fissures or cracks, indicating that the process of synthesis and subsequent treatments not damaged the zeolite layer on the support. Carried permeation studies were found values ranging from 3.64x10-6 to 3.78x10-6, 4.71x10-6 to 5.02x10-6, to pressures 20 and 25 psi, respectively. And the mixture xylenes/N2 values were between 5.39x10-6 to 5.67x10-6 and 8.13x10-6 to 8.36x10-6, also for pressures of 20 and 25 psi. The values found for the separation factor were 15.22 at 400 °C in the first experiment and 1.64 for the second experiment at a temperature of 150 °C. It is concluded that the Silicalite membrane was successfully synthesized and that it is effective in the separation of binary mixtures of xylenes

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The catalytic properties of monomodal microporous and bimodal micro-mesoporous zeolites were investigated in the gas-phase dehydration of glycerol. The desilication methodology used to produce the mesoporous zeolites minimized diffusion limitations and increased glycerol conversion in the catalytic reaction due to the hierarchical system of secondary pores created in the zeolite crystals. The chemical and structural properties of the catalyst were studied by X-ray diffraction, nitrogen adsorption-desorption isotherms, NH3-TPD and pyridine chemisorption followed by IR-spectroscopy. Although the aim was to desilicate to create mesoporosity in the zeolite crystals, the desilication promoted the formation of extra-framework aluminum species that affected the conversion of glycerol and the products distribution. The results clearly show that the mesoporous zeolites with designed mesopore structure allowed a rapid diffusion and consequently improved the reaction kinetics. However, especial attention must be given to the desilication procedure because the severity of the treatment negatively interfered on the Brønsted and Lewis acid sites relative concentration and, consequently, in the efficiency of the catalysis performed by these materials. On the other hand, during the catalytic reaction, the intracrystalline mesopores allowed carbonaceous compounds to be deposited herein, resulting in less blocked micropores and catalysts with higher long-term stability.

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Mit meiner Arbeit leistete ich einen Beitrag zur trockenen Synthese von MFI-Zeolithen und zeolithanalogen Materialien mit MFI-Struktur.Hierfür wurde zunächst ein den speziellen Reaktionsbedingungen der trockenen Synthese angepaßter Autoklav entwickelt, konstruiert und eingesetzt. Mit dem Autoklaven wurde ein Up-Scaling der trockenen Synthese im Rahmen von Al-MFI Synthesen um den Faktor 12 erfolgreich durchgeführt. Pulverdiffraktogramme und REM-Bilder belegten, daß nur geringe Unterschiede zwischen Produkten, die in 50 ml Reaktionsbehältern synthetisiert worden waren, und Produkten, die in 610 ml Reaktionsbehältern synthetisiert worden waren, bestanden. Der Druckaufnehmer des Autoklaven gestattete es, experimentell zu bestimmen, ob der Gesamtdruck während einer Reaktion unterhalb oder am Sättigungsdampfdruck von Wasser lag. Somit konnten trockene Synthesen durchgeführt werden, in deren Reaktionsverlauf garantiert keine wäßrige Phase auftrat. Al-MFI-Synthesen gelangen unter Ausschluß der Bildung einer wäßrigen Phase während der Reaktion. Weiterhin wurde eine chemische Versuchsanlage mit Gasreaktor als Kernstück konstruiert und eingesetzt. Ein Gasgemisch aus Siliziumtetrafluorid und Trimethylamin wurde mit einem wasserdampfgesättigten Stickstoffstrom zur Reaktion gebracht. Die Reaktionszeit war zwar wie gewünscht und erwartet kurz, führte aber nicht zu den mikroporösen Dodecasil 3C Kristallen. Trotzdem wurde mit dieser Arbeit ein erster Schritt in Richtung einer kontinuierlichen Gasphasensynthese von mikroporösen Materialien getan. Am Beispiel der MFI-Struktur wurde untersucht, inwieweit sich Silizium mittels der trockenen Synthese isomorph ersetzen ließ. Der isomorphe Ersatz durch Bor gelang und Titan wurde teilweise tetraedrisch in die MFI-Struktur eingebaut, während Aluminium oktaedrisch an- bzw. eingelagert wurde. Das hieß, daß die trockene Synthese gegenüber hydrothermalen Synthesen eine eingeschränkte Fähigkeit zum Einbau verschiedenster T-Atome besaß. Bis ins Jahr 1995 hing die Kristallinität der Produkte aus trockenen Synthesen von der Qualität einer Vorstufe ab, die experimentell nicht überprüft werden konnte. In meiner Arbeit fand ich zahlreiche Steuerungsparameter der trockenen Synthese hinsichtlich der Kristallinität heraus und machte sie damit kalkulierbar und robust. Außerdem wurde die erste abwasserfreie Synthese eines zeolith-analogen Materials entwickelt. Schließlich wurde der Mechanismus der trockenen Synthese diskutiert

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Background: The most primitive leukemic precursor in acute myeloid leukemia (AML) is thought to be the leukemic stem cell (LSC), which retains the properties of self-renewal and high proliferative capacity and quiescence of the hematopoietic stem cell. LSC seems to be immunophenotypically distinct and more resistant to chemotherapy than the more committed blasts. Considering that the multidrug resistance (MDR) constitutive expression may be a barrier to therapy in AML, we have investigated whether various MDR transporters were differentially expressed at the protein level by different leukemic subsets. Methods: The relative expression of the drug-efflux pumps P-gp, MRP, LRP, and BCRP was evaluated by mean fluorescence index (MFI) and the Kolmogorov-Smirnov analysis (D values) in five leukemic subpopulations: CD34(+)CD38(-)CD123(+) (LSCs), CD34(+)CD38(+)CD123(-), CD34(+)CD38(+)CD123(+), CD34(+)CD38(+)CD123(-), and CD34(-) mature cells in 26 bone marrow samples of CD34(+) AML cases. Results: The comparison between the two more immature subsets (LSC versus CD34(+)CD38(-)CD123(-) cells) revealed a higher P-gp, MRP, and LRP expression in LSCs. The comparative analysis between LSCs and subsets of intermediate maturation (CD34(+)CD38(+)) demonstrated the higher BCRP expression in the LSCs. In addition, P-gp expression was also significantly higher in the LSC compared to CD34(+)CD38(+)CD123(-) subpopulation. Finally, the comparative analysis between LSC and the most mature subset (CD34(-)) revealed higher MRP and LRP and lower P-gp expression in the LSCs. Conclusions: Considering the cellular heterogeneity of AML, the higher MDR transporters expression at the most immature, self-renewable, and quiescent LSC population reinforces that MDR is one of the mechanisms responsible for treatment failure. (C) 2008 Clinical Cytometry Society.

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Objetivou-se neste trabalho investigar a frequência e a duração dos tipos de amamentações durante o período de lactação em fêmeas bubalinas e os tipos de mamadas em relação à idade e ao sexo dos bezerros. Trinta e cinco fêmeas e seus bezerros foram observados durante três dias consecutivos a cada mês, ao longo de nove meses. A amamentação foi caracterizada como: amamentação filial isolada (AFI), amamentação filial coletiva (AFC) e amamentação não-filial (ANF). As mamadas executadas pelos bezerros foram caracterizadas como: mamada filial isolada (MFI), mamada filial coletiva na própria mãe (MFC 1), mamada filial coletiva em outra fêmea (MCF2) e mamada não-filial (MNF). Os dados foram analisados pela análise de variância, e as médias foram comparadas pelo teste Tukey, considerando P < 0,05. A AFI apresentou frequência e duração maiores do que os outros tipos de amamentações (P < 0,05), sendo predominante em quase todo o período de lactação. A frequência da MFI foi alta, principalmente no primeiro mês. A duração foi maior quando comparada aos outros tipos de mamadas até o quinto mês (P < 0,05). Em relação ao sexo dos bezerros não foram encontradas diferenças significativas (P > 0,05) para as médias da frequência e a duração dos tipos de mamadas. Os resultados mostram que as fêmeas bubalinas têm maior aptidão inata para a AFI em relação aos outros tipos de amamentações, predominando durante quase todo o período de lactação. Os bezerros bubalinos são mais dependentes da MFI durante os primeiros cinco meses de idade, e o sexo dos bezerros não influenciou nos tipos de mamadas.

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ABSTRACTThis paper reports an empirical case study on the interface between microfinance and climate change actions. Climate change, which until recently seemed a luxury for the microfinance sector, now appears to be crucial for its future. For their low adaptive capacity, the millions of microfinance clients worldwide happen to be the most vulnerable to a changing climate. However, such an arena is still blurred from an academic viewpoint, and inexistent among Brazilian academia. Therefore, by investigating Brazil’s largest rural MFI, Agroamigo, we aim at providing an empirical contribution to green microfinance. The main conclusion is that, albeit Agroamigo offers important links to climate change initiatives, it will need to take better account of specific vulnerabilities and risks to protect its portfolio and clients better from climate change impacts.

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Este trabalho experimental teve como objectivo a dessilicação dos zeólitos MOR, BEA, MFI e FER de acordo com condições experimentais descritas na literatura e ainda a optimização das condições de dessilicação para o zeólito MOR, onde se variaram os parâmetros: temperatura, tempo e concentração de solução de NaOH. As amostras foram caracterizadas recorrendo a técnicas de caracterização estrutural, morfológica, textural e de acidez, nomeadamente difracção de raios X, microscopia electrónica de varrimento, adsorção de azoto a baixa temperatura, espectroscopia de infravermelho, “cracking” do n-heptano e adsorção de piridina seguida de espectroscopia de infravermelho. Nas estruturas dessilicadas, de acordo com a literatura registaram-se diferenças relativamente aos resultados publicados, o que pode dever-se às diferentes características dos materiais estudados, nomedamente a razão Si/Al e o tamanho dos cristais. Verificou-se assim que o desenvolvimento de mesoporosidade é fortemente influenciado pelas propriedades dos materiais de partida. No estudo de optimização das condições de dessilicação para a estrutura MOR, verificou-se que a amostra que conduziu a melhores resultados de propriedades texturais, estruturais, morfológicas e de acidez foi a amostra sujeita a tratamento alcalino com uma solução de NaOH com uma concentração de 0,2 M, à temperatura de 85 ºC durante 2 horas. O tratamento alcalino resultou no desenvolvimento de mesoporosidade, evidenciado pelo aumento de número de moles adsorvidas a pressões relativas elevadas e também devido à presença de uma forma de histerese do tipo H4. A extracção de sílicio da rede do zeólito através do tratamento alcalino foi alcançado. Este facto pode ser comprovado através da análise dos espectros de infravermelho, concretamente através da análise da região correspondente às bandas estruturais, verificando-se um desvio de banda correspondente ao estiramento assimétrico das ligações T-O-T, sensivelmente a 1090 cm-1, para valores menores. Por fim, procedeu-se à realização do tratamento alcalino com recurso à radiação microondas, tendo-se obtido resultados idênticos aos de algumas amostras cuja dessilicação foi realizada convencionalmente, mas num tempo de tratamento inferior.

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The catalytic properties of Pt based cordierite foam catalysts have been evaluated in catalytic combustion of toluene (800 ppm in air). The catalysts contain identical Pt content (0.1%) which was introduced by three different ways: Pt ion exchange on MFI zeolite and then coating on the foam; Pt ion exchange after zeolite coating and finally Pt directly wet impregnated on the cordierite foam. The catalytic behaviour of Pt foam based catalysts was compared with that of PtMFI zeolite under powder form. Pt exchanged MFI supported on the cordierite foams present an improvement of activity for toluene combustion of about 50 degrees C on the light off temperature (T-50%). The enhanced performance of the structured catalysts is due not only to the open structure of foams and homogeneous thin layers catalyst deposited on their cell walls, but also to the fact that the size and location of Pt particles present in MFI zeolite are changed during the dipping step. Indeed, as prepared Pt samples and those used in the preparation of the slurry were observed by transmission electron microscopy revealing that the chemical interaction of PtMFI zeolite with the binder and detergent, both present in the slurry, leads to an increase of Pt particles size which were found to migrate from internal pores to the external surface of zeolite crystallites thereby increasing catalytic activity. (C) 2011 Elsevier B.V. All rights reserved.

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The main goals of the present work are the evaluation of the influence of several variables and test parameters on the melt flow index (MFI) of thermoplastics, and the determination of the uncertainty associated with the measurements. To evaluate the influence of test parameters on the measurement of MFI the design of experiments (DOE) approach has been used. The uncertainty has been calculated using a "bottom-up" approach given in the "Guide to the Expression of the Uncertainty of Measurement" (GUM). Since an analytical expression relating the output response (MFI) with input parameters does not exist, it has been necessary to build mathematical models by adjusting the experimental observations of the response variable in accordance with each input parameter. Subsequently, the determination of the uncertainty associated with the measurement of MFI has been performed by applying the law of propagation of uncertainty to the values of uncertainty of the input parameters. Finally, the activation energy (Ea) of the melt flow at around 200 degrees C and the respective uncertainty have also been determined.

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Trabalho Final de Mestrado para obtenção do grau de Mestre em Engenharia Química

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Dissertation submitted in partial fulfillment of the requirements for the Degree of Master of Science in Geospatial Technologies.

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Hoy en día son muchos los procesos industriales utilizan tamices moleculares, y el desarrollo de nuevos procesos está indisolublemente relacionado con la obtención de estos materiales. Así tenemos la síntesis de nuevas estructuras de zeolitas y materiales zeolitoides, en desarrollo de las PILCs, etc. que han ido encontrando espacio en diferentes procesos tecnológicos debido a las ventajas que presentan los materiales utilizados tradicionalmente. (...) En nuestro país existen gran cantidad de recursos naturales, tanto de origen mineral como vegetal. Dentro de los de origen vegetal, abundantes en varias regiones del país, se encuentran los terpenos y entre ellos presentan especial interés el cineol, el limoneno y el pineno, los cuales pueden ser utilizados como materias primas para la obtención de productos de mayor valor agregado, esto es productos químicos finos e intermediarios, confluyendo la catálisis y la química orgánica para desarrollar procesos más eficientes que los convencionales. Por otra parte, entre los recursos naturales minerales existen reservas de zeolitas y bentonitas que pueden ser utilizados como cribas moleculares, tanto como catalizadores así como adsorbentes y sus propiedades pueden ser mejoradas por diferentes tratamientos. (...) Por último, se pretende la obtención de materiales microporosos mediante la síntesis, con el empleo de reactivos producidos en nuestro país. (...) En forma general el proyecto consta de los siguientes objetivos: 1. Obtención y caracterización de materiales microporosos (naturales y sintéticos) para ser utilizados como catalizadores en los procesos de: a) Oxidación de a-Pineno e isomerización a alcanforaldehido; b) Oxidación de Limoneno e isomerización a carbenona; c) Isomerización del Cineol. 2. Determinación y ajuste de las condiciones utilizadas en la síntesis de zeolita etanol-MFI. Caracterización por Si-MAS-RMN y Al-MAS-RMN, difracción de Rayos X y determinación de la población y características de los sitios ácidos por adsorción de piridina por FT-IR. Relación con su actividad catalítica en las reacciones mencionadas anteriormente y alquilación de fenol.

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El hidrógeno tiene, actualmente, una atención considerable por su posible uso como combustible limpio y otros usos industriales y se ha demostrado que es posible hacer funcionar motores de combustión interna, por lo tanto es una alternativa viable respecto de fuentes de energía no renovables como el petróleo y tal vez sea en el futuro la tecnología más prometedora para reducir la contaminación, conservando el suministro de combustibles fósiles. Uno de los principales problemas para la utilización del hidrógeno como combustible es el del almacenamiento para que pueda ser seguro y transportable con todos los riesgos que esto supone. En este sentido el estudio de la adsorción de polímeros conductores (tal como polianilina, PANI o polipirrol PPy) y su posterior polimerización sobre hospedajes como aluminosilicatos meso y microporosos y carbones mesoporosos, es de suma importancia por sus propiedades para el almacenamiento de H2. El objetivo general de este proyecto es Investigar el almacenamiento de hidrógeno en nuevos composites nano/microestructurados. La síntesis de materiales micro/mesoporosos (MFI, MEL, BEA, L, MS41, SBA-15, SBA-1, SBA-3, SBA-16, CMK-3) para usos como hospedaje se realizan por sol-gel o síntesis hidrotérmica y se modificarán con TiO2, CeO2, ZrO2 y eventualmente con Ir, Ni, Zr. Muestras de estos hospedajes serán expuestos a vapores del monómero puro (anilina o pirrol). Luego se polimerizarán por polimerización oxidativa. Los nanocomposites sintetizados se caracterizarán por XRD, FTIR, DSC, TGA, SEM, TEM, EXFAS, XANES, UV-Vis. La adsorción de hidrógeno sobre los composites se llevará a cabo en un Reactor Parr, desde presiones atmosféricas y a altas presiones y varias temperaturas de adsorción . Los estudios de desorción de hidrogeno se llevarán a cabo en un equipo Chemisorb Micrometrics y se realizarán estudios termogravimétricos y de capacidad de retención de Hidrogeno por el nanocomposite. La importancia del estudio de este proceso tiene importantes implicancias económicas y sociales que serán preponderantes en el futuro debido a las cada vez más exigentes regulaciones ambientales. Además se contribuirá al avance del conocimiento científico, ya que es posible diseñar nuevos materiales, los que además permitirán generar reservorios de H2 con alta eficiencia. Por lo consiguiente: - Se desarrollarán nuevos materiales nanoestructurados, micro y mesoporosos y nanoclusters de especies activas en los hospedajes como así también la inclusión de polímeros (PANI, PPy) dentro de los canales de estos materiales. - Se caracterizarán estos materiales por métodos espectroscópicos (fisicoquímica de superficie). - Se estudiará la adsorción /absorcion de H2 en los nuevos materiales desarrollados. -Se aplicarán métodos de diseño de experimento (RDS), para optimizar el proceso de almacenamiento de H2, nivel de interacción de variables sinérgicas o colinérgicas.

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Annual influenza vaccination is recommended in solid organ transplant (SOT) recipients. However, concerns have been raised about the impact of vaccination on antigraft alloimmunity. We evaluated the humoral alloimmune responses to influenza vaccination in a cohort of SOT recipients between October 2008 and December 2011. Anti-HLA antibodies were measured before and 4-8 weeks after influenza vaccination using a solid-phase assay. Overall, 169 SOT recipients were included (kidney = 136, lung = 26, liver = 3, and combined = 4). Five (2.9%) of 169 patients developed de novo anti-HLA antibodies after vaccination, including one patient who developed donor-specific antibodies (DSA) 8 months after vaccination. In patients with pre-existing anti-HLA antibodies, median MFI was not significantly different before and after vaccination (P = 0.73 for class I and P = 0.20 for class II anti-HLA antibodies) and no development of de novo DSA was observed. Five episodes of rejection (2.9%) were observed within 12 months after vaccination, and only one patient had de novo anti-HLA antibodies. The incidence of development of anti-HLA antibodies after influenza vaccination in our cohort of SOT recipients was very low. Our findings indicate that influenza vaccination is safe and does not trigger humoral alloimmune responses in SOT recipients.