982 resultados para Hierarchical pore system
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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In this work the hydrodechlorination of CF3OCFClCF2Cl to produce unsaturated CF3OCF=CF2 was studied over a series of supported metal catalysts. Currently this molecule is produced from the precursor CF3OCFClCF2Cl by dechlorination with zinc powder. An important cost on the economic and environmental balance is represents by the large amount of ZnCl2 produced and to be disposed of. A new approach, based on gas-phase hydrodechlorination over supported catalysts can lead to a new sustainable process. During the feasibility step of this project, substantially two kind of materials were studied: metals supported over activated carbon and Pd/Cu species supported over MCM-41 mesoporous silica. Observed catalytic performances were strongly dependent on the metal and support used. All carbon-supported Ru, Pd, and bimetallic catalysts are fairly active and yielded the target product CF3OCF=CF2, the higher selectivity being obtained with ruthenium- and palladium-based materials. Nevertheless, Ru-based catalysts showed poor stability and this deactivation may be attributed to the deposition of chlorinated organic species blocking the active sites. On the other hand, palladium-containing catalysts showed high stability. Ru/Pd and Pd/Cu bimetallic catalysts exhibited long-term selectivity and stability, highlighting the possibility for these materials to be employed in the CF3OCF=CF2 production process. During the second part of this thesis, a series of bimetallic meso-structured Pd/Cu MCM-41 catalysts were studies to overcome possible mass transfer limitations. The materials were obtained by different synthesis methods. The incorporation of Pd and Cu during MCM-41 synthesis, did not destroy the typical hexagonal array and ordered pore system of MCM-41. However, the calcination for the removal of the template provoked significant segregation of oxides. The impregnation leads to pore-occlusion and formation of Cu particles and large bimetallic PdCu species. Larger metal particles leads to lower CF3OCFClCF2Cl conversion, while the monometallic particles can decrease the selectivity to CF3OCF=CF2, fostering the dehalogenation to CF3OCH=CF2.
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Patient satisfaction represents a significant outcome criterion in the context of systemic psychotherapeutic therapy research. This study investigated parent satisfaction with a psychosocial treatment program (comprising three components: child group therapy, parents' evenings, systemic family sessions) for pediatric primary headache (diagnosed according to IHS criteria). 10 weeks after the end of the treatment program, the parents were sent a questionnaire containing open questions and ten-point numerical rating scales. The sample comprised n=48 families. The return rate was 89%. The qualitative content analysis showed a hierarchical category system consisting of 3 major categories, 7 main groups and 69 sub-categories. The parents stated that they were satisfied with (1.) the effects of the treatment program, (2.) the specific treatment techniques and the medical and psychosocial headache-related information provided, and (3.) the therapeutic relationship. The mean satisfaction for all three therapy components on the ten-point numerical rating scale was 8.1 with a standard deviation of 2.0 (child headache group: 8.5; parents' evenings: 8.2; family sessions: 7.5). The results are discussed with reference to methodological aspects: avoidance of ceiling effects and social desirability in measuring customer satisfaction, order effects of items, weighting of the significance of satisfaction levels as an outcome criterion.
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The objective of this doctoral research is to investigate the internal frost damage due to crystallization pore pressure in porous cement-based materials by developing computational and experimental characterization tools. As an essential component of the U.S. infrastructure system, the durability of concrete has significant impact on maintenance costs. In cold climates, freeze-thaw damage is a major issue affecting the durability of concrete. The deleterious effects of the freeze-thaw cycle depend on the microscale characteristics of concrete such as the pore sizes and the pore distribution, as well as the environmental conditions. Recent theories attribute internal frost damage of concrete is caused by crystallization pore pressure in the cold environment. The pore structures have significant impact on freeze-thaw durability of cement/concrete samples. The scanning electron microscope (SEM) and transmission X-ray microscopy (TXM) techniques were applied to characterize freeze-thaw damage within pore structure. In the microscale pore system, the crystallization pressures at sub-cooling temperatures were calculated using interface energy balance with thermodynamic analysis. The multi-phase Extended Finite Element Modeling (XFEM) and bilinear Cohesive Zone Modeling (CZM) were developed to simulate the internal frost damage of heterogeneous cement-based material samples. The fracture simulation with these two techniques were validated by comparing the predicted fracture behavior with the captured damage from compact tension (CT) and single-edge notched beam (SEB) bending tests. The study applied the developed computational tools to simulate the internal frost damage caused by ice crystallization with the two dimensional (2-D) SEM and three dimensional (3-D) reconstructed SEM and TXM digital samples. The pore pressure calculated from thermodynamic analysis was input for model simulation. The 2-D and 3-D bilinear CZM predicted the crack initiation and propagation within cement paste microstructure. The favorably predicted crack paths in concrete/cement samples indicate the developed bilinear CZM techniques have the ability to capture crack nucleation and propagation in cement-based material samples with multiphase and associated interface. By comparing the computational prediction with the actual damaged samples, it also indicates that the ice crystallization pressure is the main mechanism for the internal frost damage in cementitious materials.
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The main purpose of this study was to evaluate the effect that mechanical stresses acting under the slipping driving wheels of agricultural equipment have on the soil’s pore system and water flow process (surface runoff generation during extreme event). The field experiment simulated low slip (1%) and high slip (27%) on a clay loam. The stress on the soil surface and changes in the amounts of water flowing from macropores were simulated using the Tires/tracks And Soil Compaction (TASC) tool and the MACRO model, respectively. Taking a 65 kW tractor on a clay loam as a reference, results showed that an increase in slip of the rear wheels from 1% to 27% caused normal stress to increase from 90.6 kPa to 104.4 kPa at the topsoil level, and the maximum shear contact stress to rise drastically from 6.0 kPa to 61.6 kPa. At 27% slip, topsoil was sheared and displaced over a distance of 0.35 m. Excessive normal and shear stress values with high slip caused severe reductions of the soil’s macroporosity, saturated hydraulic conductivity, and water quantities flowing from topsoil macropores. Assuming that, under conditions of intense rainfall on sloping land, a loss in vertical water flow would mean an increase in surface runoff, we calculated that a rainfall intensity of 100 mm h-1 and a rainfall duration of 1 h would increase the runoff coefficient to 0.79 at low slip and to 1.00 at high slip, indicating that 100% of rainwater would be transformed into surface runoff at high slip. We expect that these effects have a significant impact on soil erosion and floods in steeper terrain (slope > 15°) and across larger surface areas (> 16 m2) than those included in our study.
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The impact of polymer modification on the physical properties of cementitious mortars is investigated using a multimethod approach. Special emphasis is put on the identification and quantification of different polymer components within the cementitious matrix. With respect to thin-bed applications, particularly tile adhesives, the spatial distributions of latex, cellulose ether (CE), polyvinyl alcohol (PVA), and cement hydration products can be quantified. It is shown that capillary forces and evaporation induce water fluxes in the interconnected part of the pore system, which transport CE, PVA, and cement ions to the mortar interfaces. In contrast, the distribution of latex remains homogeneous. In combination with results from qualitative experiments, the quantitative findings allow reconstruction of the evolution from fresh to hardened mortar, including polymer film formation, cement hydration, and water migration. The resulting microstructure and the failure modes can be correlated with the final adhesive strength of the tile adhesive. The results demonstrate that skinning prior to tile inlaying can strongly reduce wetting properties of the fresh mortar and lower final adhesive strength.
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Esta tesis ha estudiado los morteros celulares, centrándose en la experimentación con pastas de cemento aireadas (PCA) con polvo de aluminio como agente expansor. El objetivo es el desarrollo de un material cementicio con una baja conductividad térmica que sirva como aislamiento térmico. La naturaleza inorgánica del material lo hace incombustible, en contraste con las espumas poliméricas existentes en el mercado, cuya aplicación en cámaras ventiladas ha sido prohibida por normativas de construcción tanto a nivel nacional como internacional. Las posibles aplicaciones son con proyección neumática o en paneles prefabricados. Se han ensayado dos series de pastas de cemento con polvo de aluminio: - Serie WPC/CAC/CH. Mezcla de referencia con cemento blanco (WPC), cemento de aluminato cálcico (CAC) y cal aérea (CH) en proporción 5:1:4. - Serie OPC/CH. Mezcla de referencia con cemento portland con cenizas volantes (OPC) y cal aérea (CH) en proporción OPC/CH de 4:1 A las mezclas de referencia se le han añadido adiciones de metacaolín (MK) (10 y 20%) o sepiolita (SP) (1 y 2%) para observar el efecto que producen tanto en el mortero fresco como en el mortero endurecido. Se ha estudiado la reología de las pastas en estado fresco, analizando el proceso de expansión de las pastas, registrando los valores de tensión de fluencia, aire ocluido y temperatura durante la expansión. Con los valores obtenidos se ha discutido la influencia de las adiciones utilizadas en la cinética de corrosión del polvo de aluminio que genera la expansión, concluyendo que las adiciones puzolánicas (CV y MK) y la SP reducen mucho el periodo de inducción, lo que provoca poros más grandes y mayor cantidad de aire ocluido. Asimismo se ha analizado la relación entre la tensión de fluencia y el contenido de aire ocluido, deduciendo que a mayor tensión de fluencia en el momento de iniciarse la expansión, menor tamaño de poros y contenido de aire ocluido. Finalmente, se han obtenido las densidades y capacidades de retención de agua de los morteros frescos. Para caracterizar la red porosa de las pastas aireadas endurecidas, se obtuvieron tanto las densidades reales, netas, aparentes y relativas como las porosidades abiertas, cerradas y totales con ensayos hídricos. Finalmente se obtuvieron imágenes de los poros con tomografía axial computerizada para obtener las porosimetrías de las muestras. La caracterización de la red porosa ha servido para terminar de analizar lo observado en la evolución de la expansión del mortero fresco. Se ha analizado la influencia de la red porosa en la conductividad térmica, obtenida con caja caliente, comparándola con la existente en la literatura existente tanto de morteros celulares como de espumas poliméricas. Se concluye que los valores de conductividad térmica conseguida están en el mínimo posible para un material celular de base cementicia. La microestructura se ha estudiado con microscopía electrónica de barrido, difracción de rayos X y ensayos térmicos TG/ATD, observando que los productos de hidratación encontrados coinciden con los que se producen en morteros sin airear. Las imágenes SEM y los resultados de ultrasonidos han servido para analizar la presencia de microfisuras de retracción en las pastas aireadas, observando que en las muestras con adiciones de MK y SP, se reduce la presencia de microfisuras. ABSTRACT This thesis has studied cellular mortars, focusing in testing aerated cement pastes with aluminum powder as expansive agent. The purpose is the development of a cementitious material with low thermal conductivity that can be used as thermal isolation. Inorganic nature of this material makes it non-combustible, in contrast with polymeric foams in market, whose application in ventilated double skin façade systems has been banned by building standards, both domestically and internationally. Possible uses for this material are pneumatically sprayed applications and precast panels. Two series of batches with aluminum powder have been tested: - WPC/CAC/CH series. Reference paste with white portland cement (WPC), calcium aluminate cement (CAC) and lime (CH) with 5:1:4 ratio. - OPC/CH series. Reference paste with portland cement with fly ash (OPC) and lime (CH) with 4:1 ratio. Metakaolin (MK) (10 and 20%) or sepiolite (SP) (1 and 2%) additions were used in reference pastes to characterize the effect in fresh and hardened mortar. Rheology in fresh pastes was studied, expansion process of pastes was analyzed, recording yield stress, entrained air and temperature values during expansion. Recorded values were used to discuss influence of additions on reaction kinetics of aluminum powder corrosion, that produces expansion.. Conclusion is that pozzolanic additions (FA and MK) and SP greatly reduce induction period, producing bigger pores and more entrained air. Relation between yield stress and entrained air has been also analyzed, observing that the bigger yield stress at beginning of expansion, the smaller pores size and the lower entrained air values. Finally density and water retention of fresh mortars were obtained. Pore network in hardened aerated cement pastes was characterized by imbibition methods providing true, bulk and relative density, and providing also open, closed and total porosity. Finally, pore system imaging were obtained with computerized axial tomography to study porosimetry of specimens. Pore network characterization was useful to complete facts analysis observed in expansion of fresh mortars. Influence of pore network in thermal conductivity, checked in hot box, was analyzed comparing with those existing values in cellular mortar and polymeric foams researches. It was concluded that thermal conductivity values achieved are close to minimum possible in a cementitious cellular material. Microstructure was studied with Scanning Electron Microscopy, X-Ray Diffractometry and TG-DTA analysis, observing that hydration phases found, are those produced in non aerated mortar. SEM imaging and ultrasound results were useful to analyze shrinkage microcracks in aerated cement pastes, concluding that microcrack presence in specimens with MK and SP additions were reduced.
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Different treatments (consolidation and water-repellent) were applied on samples of marble and granite from the Front stage of the Roman Theatre of Merida (Spain). The main goal is to study the effects of these treatments on archaeological stone material, by analyzing the surface changes. X-Ray Fluorescence and Laser-Induced Breakdown Spectroscopy techniques, as well as Nuclear Magnetic Resonance have been used in order to study changes in the surface properties of the material, comparing treated and untreated specimens. The results confirm that silicon (Si) marker tracking allows the detection of applied treatments, increasing the peak signal in treated specimens. Furthermore, it is also possible to prove changes both within the pore system of the materialand in the distribution of surface water, resulting from the application of these products
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Nagele es un asentamiento urbano situado en el Noordoostpolder, territorio neerlandés ganado al mar. Fue diseñado por arquitectos de los grupos De 8 en Opbouw entre los que destacaron Rietveld, Van Eesteren, Van Eyck, Bakema, Stam y Ruys. El proyecto se desarrolló entre 1947 y 1956, un periodo de tiempo con formas de proyectar muy ricas en interpretaciones. Los arquitectos pusieron en crisis los planteamientos historicistas de las nuevas poblaciones de los pólderes. Propusieron un nuevo prototipo, una morfología compacta y concéntrica que transmitiría igualdad a una comunidad agrícola, entendida como una sociedad urbana del siglo XX. La administración apoyó la propuesta que convertiría el proyecto en un arriesgado reto por su falta de antecedentes. La vigencia de las formulaciones permanece hoy en día en la ciudad construida, aunque con alteraciones. En los dibujos del proceso se encuentran los principales enunciados teóricos que este trabajo pretende descubrir. El trabajo aborda aspectos no suficientemente explorados, como su relación con el pólder, la evolución de las estrategias proyectivas, la ordenación paisajista y los elementos urbanos. El Noordoostpolder es la culminación de una serie de experiencias multidisciplinares en el reclamo de tierras a gran escala. Se estudia su estructura urbana policéntrica, la parcelación agrícola que origina el proyecto urbano y la vinculación de la vegetación con la infraestructura, proporcionando orientación, protección climática y escala humana, conceptos que impregnan las estrategias del proyecto urbano. La primera fase de la ordenación configuró áreas monofuncionales que respondían a cada una de las cuatro necesidades básicas del método científico de la ciudad higienista. El acontecimiento que marcó el final de la primera fase fue su presentación en el séptimo CIAM de 1949, cuyo título fue Aplicación de la Carta de Atenas. El programa residencial se dividió en clusters organizados en torno a una pradera vecinal central, vinculándose el orden vecinal, urbano y territorial. La segunda fase fue un catalizador de nuevos planteamientos. El proyecto se transformó en un In-between Realm, un escenario teórico donde coexisten fenómenos tradicionalmente antagónicos que Van Eyck denominó Twin Phenomena, convirtiéndose la ciudad en una réplica formal de la ambivalencia de la mente humana. La indefinición espacial no programada en la propuesta anterior se transformó en un conjunto de espacios urbanos, con límites y dimensiones adaptados a la escala humana. El proyecto es anterior a la obra escrita de Van Eyck por lo que estimuló sus enunciados teóricos. Unas ideas también reconocidas en los tres CIAM posteriores en los que también se expuso el proyecto. El diseño paisajista se integra en el proyecto urbano desde sus orígenes. El límite se compone de una barrera boscosa que protege climáticamente, proporciona escala humana y control visual frente a las llanuras infinitas del pólder. Van Eyck sintetizó el proyecto como una habitación verde sin techo, afirmación que dilucida su equivalencia con el de un interior doméstico. Exteriormente la ciudad se convierte en una unidad autónoma del territorio. Interiormente, un sistema jerarquizado de vegetación vinculado a la arquitectura y la infraestructura constituye espacios urbanos de diferentes escalas. La propuesta fue transformada por Boer y Ruys en un nuevo espacio urbano único, no asimilando los conceptos anteriores. El proyecto y construcción de los primeros elementos urbanos consistió en un reparto de tareas a De 8 en Opbouw, hecho que estimula estudiar su relación con el proyecto urbano. La estructura policéntrica organiza las aulas de las escuelas de Van Eyck, las diferentes áreas confesionales del cementerio de Ruys y las unidades residenciales, diseñadas por Stam, Rietveld y Stam-Besse. Los Twin Phenomena alcanzan un acuerdo en el corredor comercial, diseñado por Bakema y Van der Broek. La generación de espacios dentro de otros aparece también en el cementerio, a través de una nueva barrera boscosa y en el sistema de pliegues del muro que configura la iglesia de Bakema y Van der Broek. El proyecto se vincula a un planteamiento holístico, mediante el que el diseño de cada uno de sus elementos tiene en cuenta las estrategias proyectivas del todo del cual forma parte, convirtiéndose, al igual que las obras de De Stijl, en parte de una composición infinita que acerca arte y diseño en la vida cotidiana de la sociedad. La diversidad generacional e ideológica de estos arquitectos convirtió el proyecto en un tablero de juego sobre el que se aplicaron diferentes formas de proyectar la ciudad, ubicando a Nagele en un punto de inflexión del Movimiento Moderno. ABSTRACT The research focuses on the Nagele project, a Dutch urban settlement located in the Noordoostpolder, a territory which was entirely reclaimed from the IJsselmeer lake. It was designed by a group of architects from the De 8 and Opbouw teams, the leading protagonists being Rietveld, Van Eesteren, Van Eyck, Bakema, Stam y Ruys. It was designed from 1947 to 1956, a fruitful period in urban planning. These architects questioned the traditionalist urban design applied to the new populations in the IJsselmeer polders. Facing their principles, the work group proposed a new prototype; a compact and concentric urban pattern to foster equality in a new community of farm labourers, which was recognized by the architects as a twentieth century urban society. The government supported their new proposals. The lack of implementation of the innovatory conceptual statements subjected the project into a high-risk challenge. However, in spite of these difficulties, the basic concepts remain though partially transformed, in the actual city. The project drawings reflect the principle concepts that this work aims to discover. Some approaches that have not been sufficiently studied are tackled in this thesis. Firstly, the project´s relationship with the polder. Secondly, the evolution of projective strategies during the period of urban planning, the landscape design and the design of urban elements. The Noordoostpolder is the culmination of a series of multi-disciplinary experiences in large scale land reclamation, whose polycentric urban structure and agricultural subdivision provide the framework of Nagele. Linking the vegetation to infrastructure fostered orientation, climate protection and human scale; strategies which were repeated, though on a smaller scale, in the actual city. The first phase of the project was composed of mono-functional urban areas which responded to each of the four basic human needs indicated by the scientific method of the functional city. The presentation of the project at the seventh CIAM in 1949 was the event which marked the end of the first phase of the planning. This congress was entitled Implementation of the Athens Charter. The residential program was divided into housing clusters surrounding a central prairie, a pattern which was related to its urban and territorial whole. The second phase of the plan was subjected to a new theoretical approach. The urban planning became an In-between Realm, a theoretical scenario where traditionally antagonistic concepts coexist. Van Eyck named these concepts Twin Phenomena. The city thus conceived of as a counterform of the ambivalence of the human mind where spatial indefinition in the previous proposals was transformed into a Bunch of Places with defined boundaries and dimensions, all of which reflecting human scale. The landscape design was integrated into the urban project from its inception. The limits consist of a green wind-barrier which not only provides climate protection but also provides human scale and visual control towards the unlimited plains of the polder. Van Eyck summarised the project as a green room without a roof. This statement elucidates its equivalence to a domestic interior. Outwardly, the city becomes an autonomous unit on the territory. Inwardly a hierarchical vegetation system is linked to architecture and infrastructure. Together, they configure different scales of urban spaces. The proposal was transformed by Boer and Ruys into a unique urban space without assimilating Van Eyck´s concepts. The study of the Nagele landscape project of Nagele and the writings of Van Eyck verify the fact that many of his theoretical foundations (In-between Realm, Twin Phenomena, Bunch of Places, Right Scale) can be applied not only to architecture and city but also to landscape design. The application of these principles led the Nagele project to become a counterform of Van Eyck´s thinking. The design and construction of the first urban elements involved a distribution of tasks to De 8 en Opbouw, which stimulated their relationship with the urban project. The polycentric structure organised the school classrooms outlined by Van Eyck, the different areas of the cemetery planned by Ruys and the housing clusters designed by Stam, Rietveld and Stam-Besse. The Twin Phenomena concept can be applied in Van der Broek´s shopping corridor. The concept space within another space is also implemented in the cemetery surrounded by a new green barrier, and in the church built by Van der Broek and Bakema, whose spaces are configured by a folding wall. The project takes a holistic approach, which considers the design of each element within the strategies of the whole, where they become parts of an infinite composition, as in the art works of De Stijl fostering art and design to ordinary people´s daily lives. The generational and ideological diversity of these architects turned the project into a game board on which different ways of planning the city were played, obtaining Nagele the distinction of being a turning point of Modernism.
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By using perfusions and bolus administration, coupled with postembedding immunocytochemical procedures, we have identified the structures involved in the transport of derivatized orosomucoid (α1-acidic glycoprotein) across the continuous microvascular endothelium of the murine myocardium. Our findings indicate that: (i) monomeric orosomucoid binds to the luminal surface of the endothelium; (ii) it is restricted to caveolae during its transport across the endothelium; (iii) it is detected in the perivascular spaces at early time points (by 1 min) and in larger quantities at later time points (>5 min) from the beginning of its perfusion or its intravascular administration; (iv) no orosomucoid molecules are found in the intercellular junctions or at the abluminal exits of interendothelial spaces; and (v) the vesicular transport of orosomucoid is strongly inhibited by N-ethylmaleimide (>80%). Because, by size and shape, the orosomucoid qualifies as a preferential probe for the postulated small pore system, our results are discussed in relation to the pore theory of capillary permeability.
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Porous carbon and carbide materials with different structures were characterized using adsorption of nitrogen at 77.4 K before and after preadsorption of n-nonane. The selective blocking of the microporosity with n-nonane shows that ordered mesoporous silicon carbide material (OM-SiC) is almost exclusively mesoporous whereas the ordered mesoporous carbon CMK-3 contains a significant amount of micropores (25%). The insertion of micropores into OM-SiC using selective extraction of silicon by hot chlorine gas leads to the formation of ordered mesoporous carbide-derived carbon (OM-CDC) with a hierarchical pore structure and significantly higher micropore volume as compared to CMK-3, whereas a CDC material from a nonporous precursor is exclusively microporous. Volumes of narrow micropores, calculated by adsorption of carbon dioxide at 273 K, are in linear correlation with the volumes blocked by n-nonane. Argon adsorption measurements at 87.3 K allow for precise and reliable calculation of the pore size distribution of the materials using density functional theory (DFT) methods.
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In situ high pressure 129Xe NMR spectroscopy in combination with volumetric adsorption measurements were used for the textural characterization of different carbon materials with well-defined porosity including microporous carbide-derived carbons, ordered mesoporous carbide-derived carbon, and ordered mesoporous CMK-3. Adsorption/desorption isotherms were measured also by NMR up to relative pressures close to p/p0 = 1 at 237 K. The 129Xe NMR chemical shift of xenon adsorbed in porous carbons is found to be correlated with the pore size in analogy to other materials such as zeolites. In addition, these measurements were performed loading the samples with n-nonane. Nonane molecules preferentially block the micropores. However, 129Xe NMR spectroscopy proves that the nonane also influences the mesopores, thus providing information about the pore system in hierarchically structured materials.
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The capillary-pressure characteristics of 22 samples of lithified post-Paleozoic Indian-Ocean carbonates were compared to published data from older carbonate rocks (lower Paleozoic Hunton Group of Texas and Oklahoma). The Indian-Ocean samples are considerably more porous than are the Paleozoic samples, yet all of the Indian-Ocean samples fit readily into a descriptive petrofacies scheme previously established for the Hunton Group. The Indian-Ocean samples may be assigned to four petrophysical facies (petrofacies) based on the shapes of their capillary-pressure curves, their pore-throat-size distributions, their estimated recovery efficiency values (for nonwetting fluids), and the visual characteristics of their pore systems, as observed with a scanning-electron microscope. Petrofacies assignments for the Indian-Ocean samples are as follows. Petrofacies I includes six samples collected from the coarse basal portions of event deposits (primarily turbidites). These samples have large throats, leptokurtic throat-size distributions, low- to moderate recovery efficiency values, concave cumulative-intrusion capillary-pressure curves, and high porosity values. Petrofacies II includes two sedimentologically dissimilar samples that have medium-size throats, platykurtic throat-size distributions, moderate- to-high recovery efficiency values, gently sloping cumulative-intrusion capillary-pressure curves, and high porosity values. Petrofacies III includes two polymictic sandstones and a skeletal packstone that have small throats, polymodal throat-size distributions, moderate recovery efficiency values, gently sloping cumulative-intrusion capillary-pressure curves, and high porosity values. Petrofacies IV includes 11 samples, mostly recrystallized neritic carbonates, that have small throats, leptokurtic throat-size distributions, high recovery efficiency values, convex cumulative-intrusion capillary-pressure curves, and low porosity values. Comparison of petrofacies assignment to core-, thin-section-, and smear-slide data, and to inferred depositional setting, suggests that pore systems in most samples from Holes 765C and 766A result from primary depositional features, whereas pore systems in samples from Hole 761C and one sample from Hole 765C have been strongly influenced by diagenetic processes. For Hole 761C, prediction of petrophysical parameters should be most successful if based on diagenetic facies patterns. By contrast, the distribution of favorable reservoir facies and of permeability barriers in less highly altered rocks collected from Holes 765C and 766A is related to depositional patterns. Recovery efficiency is inversely related to both porosity and median throat size for the present data set. This relationship is similar to that observed for carbonates of the lower Paleozoic Hunton Group and the Ordovician Ellenburger dolomite, but opposite of that observed for some other ancient carbonates. The coarse deposits of the massive basal units of turbidites are petrophysically distinct and form a coherent petrophysical group (Petrofacies I) with substantial reservoir potential. Two samples assigned to Petrofacies I have extremely large throats (median throat size at least 4 ?m, and at least six times that of any other sample) and therefore high permeability values. These two samples come from thin, coarse turbidites that lack or have poorly developed fine divisions and are interpreted to have been deposited on channeled suprafan lobes in a proximal mid-fan setting. The restriction of extremely high permeability values to a single depositional facies suggests that careful facies mapping of deep-sea fans in a deliberate search for such coarse turbidites could dramatically enhance the success of exploration for aquifers or hydrocarbon reservoirs. Such reservoirs should have substantial vertical heterogeneity. They should have high lateral permeability values but low vertical permeability values, and reservoir sections should include numerous thin units having widely differing petrophysical characteristics.
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Dwindling oil reserves and growing concerns over CO2 emissions and associated climate change are driving the utilisation of renewable feedstocks as alternative, sustainable fuel sources. While rising oil prices are improving the commercial feasibility of biodiesel production, many current processes still employ homogeneous acid and/or base catalysts to transform plant or algae oil into the fatty acid methyl ester (FAME) components of biodiesel. Fuel purification requires energy intensive aqueous quench and neutralization steps, thus the rational design of new high activity catalysts is required to deliver biodiesel as a major player in the 21st century sustainable energy portfolio. Advances in the development of heterogeneous catalysts for biodiesel synthesis require catalysts with pore architectures designed to improve the accessibility of bulky viscous reactants typical of plant oils. Here we discuss how improvements to active site accessibility and catalyst activity in transesterification or esterification reactions can be achieved either by designing hierarchical pore networks or by pore expansion and use of interconnected pore architectures.