Academic literature on the topic 'Meso Porous Materials'
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Journal articles on the topic "Meso Porous Materials"
Shen, J. L., and C. F. Cheng. "Photoluminescence of MCM meso-porous materials." Current Opinion in Solid State and Materials Science 7, no. 6 (December 2003): 427–33. http://dx.doi.org/10.1016/j.cossms.2004.02.006.
Full textSolano-Umaña, Victor, and José Roberto Vega-Baudrit. "Micro, Meso and Macro Porous Materials on Medicine." Journal of Biomaterials and Nanobiotechnology 06, no. 04 (2015): 247–56. http://dx.doi.org/10.4236/jbnb.2015.64023.
Full textCORMA, A., and D. KUMAR. "ChemInform Abstract: Micro- and Meso-Porous Materials as Catalysts." ChemInform 29, no. 4 (June 24, 2010): no. http://dx.doi.org/10.1002/chin.199804246.
Full textYang, Xiao-Yu, Li-Hua Chen, Yu Li, Joanna Claire Rooke, Clément Sanchez, and Bao-Lian Su. "Hierarchically porous materials: synthesis strategies and structure design." Chemical Society Reviews 46, no. 2 (2017): 481–558. http://dx.doi.org/10.1039/c6cs00829a.
Full textVila, Mercedes, Isabel Izquierdo-Barba, Alexis Bourgeois, and María Vallet-Regí. "Bimodal meso/macro porous hydroxyapatite coatings." Journal of Sol-Gel Science and Technology 57, no. 1 (September 21, 2010): 109–13. http://dx.doi.org/10.1007/s10971-010-2330-6.
Full textChen, Fei, Xue Rui He, Qing Xia Hu, Heng Chao, and Kai Yi. "Modeling of Sound Absorption Propertes of Porous Asphalt Pavement Based on Electro--Acoustic Theory." Key Engineering Materials 929 (August 24, 2022): 129–34. http://dx.doi.org/10.4028/p-twb595.
Full textRemaki, B., C. Populaire, V. Lysenko, and D. Barbier. "Electrical barrier properties of meso-porous silicon." Materials Science and Engineering: B 101, no. 1-3 (August 2003): 313–17. http://dx.doi.org/10.1016/s0921-5107(02)00731-6.
Full textNagrath, Malvika, Alireza Rahimnejad Yazdi, Aran Rafferty, Dermot Daly, Saeed Ur Rahman, Reid C. Gallant, Heyu Ni, Praveen R. Arany, and Mark R. Towler. "Tantalum-containing meso-porous glass fibres for hemostatic applications." Materials Today Communications 27 (June 2021): 102260. http://dx.doi.org/10.1016/j.mtcomm.2021.102260.
Full textKlavetter, Kyle C., Stephany Garcia, Naween Dahal, Jonathan L. Snider, J. Pedro de Souza, Trevor H. Cell, Mark A. Cassara, Adam Heller, Simon M. Humphrey, and C. Buddie Mullins. "Li- and Na-reduction products of meso-Co3O4form high-rate, stably cycling battery anode materials." J. Mater. Chem. A 2, no. 34 (2014): 14209–21. http://dx.doi.org/10.1039/c4ta02684e.
Full textLi, Fang Fei, Mao Sheng Xia, and Yin Shan Jiang. "Various Morphology of Hierarchical Pore-Structured Compound: MCM-41/Diatomite and its Adsorption Behavior for Methylene Blue." Advanced Materials Research 690-693 (May 2013): 3533–40. http://dx.doi.org/10.4028/www.scientific.net/amr.690-693.3533.
Full textDissertations / Theses on the topic "Meso Porous Materials"
Ye, Fangmao. "Single molecule studies of meso/macro porous silica materials and gradient films." Diss., Manhattan, Kan. : Kansas State University, 2009. http://hdl.handle.net/2097/1699.
Full textMay, Masnou Anna. "Insights into nanomaterials: from surfactant systems to meso/macroporous materials and nanoparticles." Doctoral thesis, Universitat de Barcelona, 2014. http://hdl.handle.net/10803/285940.
Full textEls nanomaterials són materials amb propietats morfològiques entre 1 i 100 nm en almenys una direcció. En aquesta tesi s'estudien els materials meso- i meso/macroporosos de sílice, que tenen porus en aquestes dimensions, i nanopartícules, la grandària de les quals es troba també en aquest rang. En una primera fase s'estudien els sistemes tensioactius, com les solucions micel·lars i les emulsions, que s'usen per a la síntesi d’aquests materials. El primer estudi consta de l’anàlisi de les emulsions formades amb cristall líquid a la fase contínua. La microestructura d'aquests sistemes s'estudia amb diversos models reològics. També es comparen amb sistemes amb fase micel·lar en la fase contínua i a diferents concentracions de tensioactiu i fase dispersa. En un segon estudi es determinen les variables de procés que tenen un efecte significatiu sobre les propietats de les emulsions. Com a variables de resposta s'usen la mida de gota i les propietats reològiques. També s'estudia l'escalat en la preparació de les emulsions altament concentrades i es determinen els invariants d’escala. El tercer estudi se centra en la preparació de materials meso i meso/macroporosos. Es sintetitza un material amb mesoporus bimodals i estructura hexagonal ordenada a partir d'una barreja de dos tensioactius, i la síntesi de materials mesoporosos ordenats a partir d'uns tensioactius amb grups amino. També es preparen materials amb macroporus a partir d'emulsions formades amb aquest tensioactiu i, en última instància, es preparen esferes mesoporoses de sílice a partir d'emulsions aigua-en-oli altament concentrades. L'últim estudi se centra en la síntesi de nanopartícules de sílice, en les variables de procés que tenen un efecte directe sobre la mida obtinguda, i en l'aplicació d'aquestes nanopartícules en la coagulació de la sang per controlar hemorràgies internes. S'estudien les propietats de coagulació i es funcionalitzen amb agents que acceleren o disminueixen aquesta activitat. Les tècniques de síntesi i caracterització inclouen reologia, microscòpia òptica, adsorció-desorció de nitrogen, dispersió de raigs X, microscòpia electrònica de transmissió i de rastreig (TEM i SEM) i potencial zeta, entre altres.
Abedsoltan, Hossein. "Meso-Scale Wetting of Paper Towels." Miami University / OhioLINK, 2017. http://rave.ohiolink.edu/etdc/view?acc_num=miami1501246506048675.
Full textKim, Sanghoon. "Designing Stimuli-Responsive Porous Silica Materials using Solid Lipid Nanoparticles (SLN) and Magneto-responsive Surfactants for Delivery of Curcumin." Thesis, Université de Lorraine, 2015. http://www.theses.fr/2015LORR0132/document.
Full textThis work is to prepare stimuli-responsive porous silica materials based on solid lipid nanoparticles (SLN) and magnetic surfactants. To develop this study, several surfactants systems were used to synthesize silica materials with controlled porosity via protocols described in the literature or developed in the laboratory. Different stimuli-responsive characters were introduced in porous silica materials as a function of system used: solid lipid nanoparticles (SLN) for pH-sensitive and magnetic-sensitive surfactants for magnetic silica materials. First, the materials synthesized with solid lipid nanoparticles (SLN) were used for the delivery of an anti-carcinogenic drug, curcumin. A coating method on silica surface was also used to better control the release of curcumin. Secondly, the responsiveness to the magnetic field was introduced in silica materials using the magnetic surfactants. Their self-assembly properties (i.e. micelles, vesicles) were studied and their applications in the synthesis of magnetic porous silica materials were investigated. Finally, the magnetic solid lipid nanoparticles have been prepared by combining SLN with magnetic surfactants, which have been used for the synthesis of meso-macroporous silica catalyst encapsulating iron oxide nanoparticles
Barroso, Josué dos Santos. "Modelagem numérica de escoamentos em meio porosos deformáveis com descontinuidades embebidas." Laboratório Nacional de Computação Científica, 2013. https://tede.lncc.br/handle/tede/179.
Full textIn this work we propose an extension of the technique of discontinuities embedded in finite elements, firstly proposed in the context of Solid Mechanics, to the scenario of hydromechanical coupling in petroleum reservoirs within the framework of the iterative coupled formulation. Considering a poroelastic reservoir fully-saturated by a single incompressible fluid containing geological faults, we introduce additional degrees of freedom associated with the jumps in displacement and pore pressure in the vicinity of the fault, which arises from the homogenization of the microscopic problem perturbed by the parameter $varepsilon=H/L$, where $H$ and $L$ denote the fault width and a characteristic length of the reservoir. In the asymptotic limit $varepsilon o 0$ the jumps are resolved through the enforcement of continuity of the normal components of total stress and Darcy velocity in the vicinity of the fault. Making use of such restrictions at collocation points in the elements that intersect the discontinuity we adopt a static condensation procedure to eliminate the degrees of freedom of the jumps, leading to a problem solely posed in terms of the regular parts of the poromechanical fields giving rise to perturbed stiffness and mass matrices. The resultant numerical modeling is applied to numerically simulating fluid injection problems in reservoirs coupled in the geomechanical sense with impermeable cap rocks. The numerical simulations provide insight into possible scenarios to predict the onset of fault activation. Examples characterized by possible scenarios of fault activation are discussed in the case of the Brazilian pre-salt geological formations.
Este trabalho propõe a extensão do método de descontinuidade embebida no elemento, inicialmente proposto em Mecânica dos Sólidos na presença de descontinuidades fortes (falhas), para o cenário do acoplamento hidrogeomecânico em reservatórios de petróleo no contexto da formulação iterativamente acoplada. Considerando a rocha produtora poroelástica saturada por um fluido incompressível cortada pela presença de falhas geológicas seladas, introduzimos graus de liberdade adicionais associados aos saltos dos campos de deslocamento e poro-pressão ao longo da falha, os quais são advindos da homogeneização do problema microsc ópico perturbado pelo parâmetro " = H=L, onde H denota a largura da falha e L um comprimento característico do reservatório. No limite assintótico " ! 0 os saltos são resolvidos através da imposição da continuidade das componentes normais da tensão total e da velocidade de Darcy na vizinhança da descontinuidade. Fazendo uso desta restrição em pontos de colocação ao longo dos elementos cortados pela falha, adotamos o procedimento de condensação estática e eliminamos os graus de liberdade dos saltos, dando origem a um problema formulado puramente em termos das partes regulares dos campos poromecânicos porém com matrizes de rigidez e massa perturbadas. O modelo numérico resultante é aplicado à simulação do problema de injeção de fluidos em reservatórios acoplados geomecanicamente com rochas capeadoras impermeáveis, com objetivo de previsão de possíveis cenários de início do processo de reativação de falhas. São discutidos exemplos caracterizados por possível ativação no caso do pré-sal brasileiro.
Ebinuma, Carlos Daniel. "Condensação pelicular em um meio poroso sobre superficies porosas permeaveis." [s.n.], 1985. http://repositorio.unicamp.br/jspui/handle/REPOSIP/265487.
Full textTese(doutorado) - Universidade Estadual de Campinas, Faculdade de Engenharia de Campinas
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Resumo: O problema da condensação pelicular em um meio poroso preenchido com vapor saturado sobre superfícies porosas permeáveis foi resolvido pelas aplicações da lei de Darcy e da Teoria da Camada Limite. Um parâmetro de transferência lateral de massa adimensional ß, proporcional a transferência lateral de massa vw e dos parâmetros característicos generalizados para um corpo com configuração arbitrária de contornos regulares onde a temperatura da superfície varia com x?, é definido para caracterizar o processo. Quando ß < 0 tem-se a sucção, quando ß > 0 tem-se injeção e quando ? = O tem-se Tw constante. As equações diferenciais parciais, através de parâmetros de similaridade, são transformadas em equações diferenciais adimensionalizadas. Quando Tw é não constante e vw é não uniforme, solução similar existe e as equações diferenciais adimensionalizadas são equações diferenciais ordinárias. Quando Tw é não constante e vw é não uniforme ou uniforme, solução similar não existe e as equações diferenciais adimensionalizadas são equações diferenciais parciais. Os efeitos dos parâmetros governantes do problema sobre os perfis de velocidade longitudinal, perfis de temperaturas, espessura da película condensada e transferência de calor são demonstrados através de vários exemplos para valores ß, ? , Sr e X
Abstract: The problem of film condensation in a porous medium filled with saturated vapour on permeable porous surfaces has been solved by the aplications of Darcy's Law and Boundary layer Teory. A dimensionless lateral mass transfer parameter proportional to lateral mass transfer vw and generalized characteristics parameters for a body with arbitrary shape of regular boundary where wall temperature varies as x? , is defined to characterize the process. When ß < 0 has suction, when ß > 0 has injection and when ? = 0 has Tw constant. The partial differential equations, through a similarity parameters, are transformated in dirnensionless diferential equations. When Tw is constant and vw is non-uniform, similar solution exist and the dimensionless differential equations are ordinary differential equations. When Tw is non-constant and vw is non-uniform, similar solutions does hot exist and the dimensionless differential equations are partial differential equations. The effects of the governing parameters at the problem on longitudinal velocity and temperatures profiles, liquid film thickness and heat transfer are demonstrated through various examples for various values of ß, ?, Sr and X
Doutorado
Doutor em Engenharia Mecânica
Rocha, Lucas Alonso. "Materiais meso-estruturados luminescentes." Araraquara : [s.n.], 2010. http://hdl.handle.net/11449/105768.
Full textOrientador: Marc Verelst
Banca: Younès Messaddeq
Banca: Oscar Manoel Loureiro Malta
Banca: Luis Antonio Ferreira Martins Dias Carlos
Banca: Marie-Joëlle Menu
Banca: Jeannette Dexpert-Ghys
Resumo: Partículas esféricas de sílica mesoporosa foram obtidas a partir da síntese "template" pelo processo de pirólise de aerossol. O processo foi otimizado para a obtenção de materiais mesoporosos sem resíduos orgânicos e preparados em uma única etapa, eliminando assim, a longa etapa de remoção do surfactante na metodologia tradicional (tratamento térmico ou extração soxhlet, podendo durar dezenas de horas). A otimização do processo de pirólise de aerossol proposta nesta tese reduziu este tempo para apenas alguns minutos. Os materiais apresentaram uma área superficial (BET) de até 1028 m2 .g-1 , com volume de poros (BJH) de 0,58 cm3 .g-1 . Os difratogramas de raios-X indicaram um alto grau de organização com um arranjo hexagonal de poros, confirmado também pela microscopia eletrônica de transmissão. Além disto, bandas características de grupos orgânicos não foram observadas nos espectros de absorção na região do infra-vermelho para as amostras obtidas acima de 600ºC. Amostras dopadas com íons Eu3+ também foram preparadas durante a tese. A análise por espectroscopia de luminescência, para íons Eu3+ , indicou que o íon está encapsulado nos canais mesoporosos sem prévia modificação química da matriz. Posteriormente, moléculas de 1,10- Fenantrolina foram coordenadas ao íon Eu3+ aumentando a faixa espectral de excitação do íon (efeito antena). Além disto, partículas luminescentes também foram obtidas pela incorporação do complexo Eu(fod)3 ou rodamina-B nos poros das matrizes. Finalmente, testes de recobrimento (core shell, SiO2 mesoporoso-SiO2) das partículas luminescentes foram realizados e os resultados indicaram que independentemente da espessura obtida pelo processo de recobrimento, o grau de organização dos poros e a fotoluminescência não sofreram alterações
Abstract: Spherical mesoporous silica particles were obtained using the template synthesis by spray pyrolysis process. The process was optimized for the preparation of the mesoporous materials in one-pot route without organic residues, eliminating thus, the long process of removal of the surfactant, usually used in the available methods (heat treatment or soxhlet extraction, which require several hours or days). The one- pot route proposed in this thesis reduced the extraction process to only a several minutes. These materials presented a surface area value (BET) of 1028m2 .g-1 and pore volume (BJH) was 0,58 cm3 .g-1 . The X-ray diffraction patterns and the transmission electronic micrographs show an ordered typical p6mm 2D hexagonal mesostructure. Characteristics bands of organic groups were not observed in the infra-red absorption spectra for the samples obtained at 600ºC. Moreover, SiO2 mesoporous doped with Eu3+ ions were also prepared. Luminescence data suggest that the Eu3+ ions were successful encapsulated into the channels of mesoporous silica without any preliminary chemical modification of the matrix. Moreover, extra ligands such as 1,10-Phenantroline can be further coordinated, increasing the spectral range excitation (antenna effect). Furthermore, luminescent particles were also prepared by the wet impregnation of Eu(fod)3 complex and rhodamine-B molecules. Finally, tests of coating (core shell, SiO2 mesoporous-SiO2) of luminescent particles had been carried through and the The results obtained show spherical shape and the observation of a highly ordered hexagonal array of mesochannels further confirms the 2D hexagonal p6m structure. Luminescence results reveal that rhodamine-B has been successfully encapsulated into the channels of mesoporous particles. Silica coating has been observed in TEM measurements
Doutor
Silva, Marcelo Modesto. "Fusão e solidificação em meio poroso." [s.n.], 2000. http://repositorio.unicamp.br/jspui/handle/REPOSIP/263294.
Full textDissertação (mestrado) - Universidade Estadual de Campinas, Faculdade de Engenharia Mecanica
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Resumo: Este trabalho tem por objetivo estudar a mudança de fase em uma camada porosa constituída de materiais metálicos e não-metálicos, de modo a se conseguir um modelo numérico que satisfaça os dois tipos de materiais. Modelou-se o problema em uma geometria plana, unidimensional, aplicando-se em um dos contornos da camada porosa condições de contorno de temperatura constante e taxas de fluxo de calor. A equação governante do processo é a equação da energia na forma transiente, sendo resolvida considerando-se que a transferência de calor é feita exclusivamente por condução, desprezando-se os efeitos da convecção natural pelo fato da presença do meio poroso. A influência do meio poroso é introduzida através do conceito de propriedades efetivas. A simulação numérica foi baseada no método de volumes de controle em diferenças finitas, usando-se um esquema de malhas móveis e a formulação implícita de CrankNicholson. A condição de contorno de fluxo de calor é analisada utilizando-se fluxo de calor constante e variável com o tempo. Modelos para a variação da temperatura ambiente e da incidência de radiação solar são obtidos na literatura para o caso de fluxo de calor variável. No caso do processo de solidificação a simulação numérica foi feita analisando-se os efeitos de parâmetros como porosidade, temperatura imposta no contorno, temperatura inicial e a espessura da camada porosa, na distribuição de temperatura, comportamento da interface e no tempo de solidificação total da camada porosa. Para o processo de fusão analisaram-se os efeitos de diferentes fluxos de calor constantes e variáveis na distribuição de temperatura, comportamento da posição da interface, tempo de fusão total da camada porosa e na temperatura da superfície exposta ao fluxo de calor
Abstract: The objective of this work is to study the phase change in a constituted porous layer of metallic and non-metallic materials, in such a way that the proposed numerical model can be used to satisfy both types of materiaIs. The problem was modeled as one dimensional in plan geometry, where the constant temperature and constant heat flux boundary conditions were applied at one of porous layer contours. The transient energy equation of the process was solved considering the effect of heat conduction, neglecting the effects of natural convection due to the presence of porous medium. The concept of effective properties has been used to introduce the influence of the porous medium. Numerical simulation was based on the method of the control volume in finite difference form, using moving grid scheme and the implicit Crank Nicholson formulation. The heat flux boundary condition was analyzed using a constant heat flux, which varies with time. Ambient temperature and solar radiation incidence models were obtained from the literature for the case of variable heat fluxo In the case of the solidification process numerical simulations were used to analyze the effects of the parameters such as porosity, imposed boundary temperature, initial temperature, and the porous layer thickness on the temperature distribution, interface behavior, and the total solidification time of the porous layer. For the fusion process the effects of different constant and variable heat flux conditions upon temperature distribution, interface behavior, total solidification time of the porous layer and the surface temperature exposed to the heat flux were analyzed.
Mestrado
Termica e Fluidos
Mestre em Engenharia Mecânica
CAVALCANTI, Paulo José Fonseca. "Nanopartículas magnéticas em meio poroso." Universidade Federal de Pernambuco, 2015. https://repositorio.ufpe.br/handle/123456789/16766.
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FACEPE
O íon borohidreto, BH 4 , é um redutor de íons metálicos que tem sido usado extensivamente para a formação de partículas metálicas. Neste trabalho, depositamos nanopartículas de Fe, Ni e Co em vidro poroso, o Vycor. O Vycor é um vidro poroso, com poros de diâmetro entre 4 e 20 nm, sendo quimicamente inerte, composto basicamente de SiO2, 96% do material, possuindo espaços vazios de 28% do volume e uma área super cial interna de 250 m2=g. A reação para inserção das nanoparticulas magnéticas nos poros do material é feita mergulhando-o nas soluções reagentes. A reação ocorre no interior dos poros, produzindo então as nanopartículas. As medidas de magnetização são realizadas num VSM (Vibrating Sample Magnetometer) modelo EV7 Microsense, com uma sensibilidade de 106emu. Em todas as amostras pudemos observar os efeitos do controle de tamanho, uma vez que foram comparados os resultados do material sintetizado fora do con namento. Para o Fe e Ni, que têm diâmetros críticos maiores, foi possível observar um comportamento superparamagnético. A observação desse comportamento é corroborada tanto pelas medidas de ZFC - FC quanto por medidas de histerese a temperaturas mais altas. Através do comportamento de Hc em função da temperatura foi possível estimar o tamanho médio das partículas. Os resultados estão em acordo com as medidas encontradas nas curvas de ZFC-FC. Os estudos das interações das partículas, através do plot de Henkel, mostraram que a interação entre a nanopartículas é predominantemente dipolar. Foi evidenciado que por este método se pode ter um controle sobre tamanho das partículas magnéticas através de reações químicas no interior dos poros. Sendo uma rota promissora para síntese e estudo de outros materiais de dimensões nanométricas.
The ion borohydride, BH 4 , a reducing metal ion that has been used extensively for the formation of metal particles. In this work, we deposited nanoparticles of Fe, Ni and Co in porous glass, Vycor. The Vycor is a porous glass with pore diameters between 4 and 20 nm, being chemically inert, essentially consisting of SiO2, 96% material having voids 28% volume and an internal surface area of 250 m2=g. The reaction for insertion of magnetic nanoparticles in the pores of the material is made by immersing it in the reagent solutions. The reaction occurs within the pores, thus producing nanoparticles. Magnetization measurements are performed in a VSM (Vibrating Sample Magnetometer) model EV7 Microsense, with a sensitivity of 106emu. In all the samples we could observe the e ects control of size, as compared to the results of the synthesized material outside the containment. For Fe and Ni, which have larger critical diameters, it was possible to observe a superparamagnetic behavior. The observation of this behavior is supported by both measures ZFC - FC as hysteresis measurements at higher temperatures. Through the behavior Hc depending on the temperature it was possible to estimate the average particle size. The results are in agreement with the measurements of ZFC-FC. The studies of particle interaction, by Henkel plot showed that the interaction between the nanoparticles is predominantly dipole. It was shown that by this method one can have reasonable control over the size of the magnetic particles by chemical reactions within the pores. It is a promising route to synthesis and study of other materials nanometrics dimensions.
Rocha, Lucimá Barros da. "Simulação do escoamento miscível decorrente da injeção de ácido em um meio poroso com dissolução parcial do meio." Universidade do Estado do Rio de Janeiro, 2007. http://www.bdtd.uerj.br/tde_busca/arquivo.php?codArquivo=710.
Full textWe formulate a simplified Model to study the process of solvent injection in petroleum Reservoir, where the injected fluid (an acid) can partially dissolve a solid matrix. As prime hypotheses, we considered that solvent an soluble component are completely mixed, the viscosity of the fluid does not vary with the concentration of the soluble component, theres significant transfer of mass between the parts and, the permeability of media porous changes linearly with porosity. The model is formed by two Partial Differential Equation, one is convection-diffusion type and another is a convection-reaction type. The Numerical Resolution weve developed a method called EPEC (Explicit Porosity Explicit Concentration). Such methodology is based upon a Limiting of Flow of TVD type and, used Centered Finite Differences of second order. In addition, the EPEC use a operators separation technique. This way, every time, first we clearly calculate the porosity and then the concentration of solvent is calculated. Thus we obtain a natural decoupling of the equations that describe the problem. Simulation results are presented to a two dimensional media porous after sixty days of solvent injection.
Books on the topic "Meso Porous Materials"
Modelling and Simulation in the Science of Micro- and Meso-Porous Materials. Elsevier, 2018. http://dx.doi.org/10.1016/c2015-0-04040-0.
Full textCatlow, C. R. A., Veronique Van Speybroeck, and Rutger van Santen. Modelling and Simulation in the Science of Micro- and Meso-Porous Materials. Elsevier, 2017.
Find full textCatlow, Richard, Veronique Van Speybroeck, and Rutger van Santen. Modelling and Simulation in the Science of Micro- and Meso-Porous Materials. Elsevier Science & Technology Books, 2017.
Find full textBaccin, Paola, and Sandra Gazzoni. Dire, fare, partire: corso di italiano per brasiliani: Vol. 1. Universidade de São Paulo. Faculdade de Filosofia, Letras e Ciências Humanas, 2020. http://dx.doi.org/10.11606/9786587621272.
Full textCRISTOVÃO, Vera, and Marileuza MIQUELANTE. About Me: identifiyng myself in digital media and other areas of life. Editorial Casa, 2021. http://dx.doi.org/10.55371/978-65-89999-09-6.
Full textMelo, Francisco Dênis, and Edvanir Maia da Silveira. Nas trilhas do sertão: escritos de cultura e política do Ceará – volume 7. SertãoCult, 2022. http://dx.doi.org/10.35260/54210157-2022.
Full textAlexandre de Castr, Paulo, Susana Sá, Ana Carolina Temer, Mercedes González Sanmamed, and Rodrigo Arellano Saavedra. Investigação Qualitativa em Educação: Avanços e Desafios / Investigación Cualitativa en Educación: Avances y Desafíos. Ludomedia, 2021. http://dx.doi.org/10.36367/ntqr.7.2021.ii-xv.
Full textBook chapters on the topic "Meso Porous Materials"
Corma, A., and D. Kumar. "Micro- and Meso-Porous Materials as Catalysts." In New Trends in Materials Chemistry, 403–60. Dordrecht: Springer Netherlands, 1997. http://dx.doi.org/10.1007/978-94-011-5570-0_15.
Full textLemaire, Arnaud, and Bao-Lian Su. "Auto-Generated Hierarchical Meso-Macroporous Aluminosilicate Materials with High Tetrahedral Al Content from the Single-Molecular Alkoxy-Precursor (SMAP) Strategy." In Hierarchically Structured Porous Materials, 407–33. Weinheim, Germany: Wiley-VCH Verlag GmbH & Co. KGaA, 2011. http://dx.doi.org/10.1002/9783527639588.ch13.
Full textTerasaki, Osamu, Tetsu Ohsuna, Zheng Liu, Yasuhiro Sakamoto, Keiichi Miyasaka, Nobuhisa Fujita, Nozomu Togashi, and Shunai Che. "Chapter 40. Electron Microscopy Studies of Structural Modulation in Micro- and Meso-Porous Crystals." In Turning Points in Solid-State, Materials and Surface Science, 667–86. Cambridge: Royal Society of Chemistry, 2007. http://dx.doi.org/10.1039/9781847558183-00667.
Full textDai, Jianing, Yulin Yan, Erhao Li, Zhengyu Gong, Ling Zhang, and Zhixing Gu. "Study on the 3-D Natural Circulation Characteristics of LFR Under Steady State by Using Ansys Fluent." In Springer Proceedings in Physics, 930–40. Singapore: Springer Nature Singapore, 2023. http://dx.doi.org/10.1007/978-981-99-1023-6_79.
Full textFormato, Enrico. "New Urbanization Phenomena and Potential Landscapes: Rhizomatic Grids and Asymmetrical Clusters." In Regenerative Territories, 135–45. Cham: Springer International Publishing, 2022. http://dx.doi.org/10.1007/978-3-030-78536-9_8.
Full textMelián-Cabrera, I., A. H. Osman, E. R. H. van Eck, A. P. M. Kentgens, E. Polushkin, F. Kapteijn, and J. A. Moulijn. "Fenton detemplation of ordered (meso)porous materials." In From Zeolites to Porous MOF Materials - The 40th Anniversary of International Zeolite Conference, Proceedings of the 15th International Zeolite Conference, 648–54. Elsevier, 2007. http://dx.doi.org/10.1016/s0167-2991(07)80904-9.
Full textTerasaki, Osamu, Tetsu Ohsuna, Zheng Liu, Yasuhiro Sakamoto, and Alfonso E. Garcia-Bennett. "Structural study of meso-porous materials by electron microscopy." In Mesoporous Crystals and Related Nano-Structured Materials, Proceedings of the Meeting on Mesoporous Crystals and Related Nano-Structured Materials, 261–88. Elsevier, 2004. http://dx.doi.org/10.1016/s0167-2991(04)80201-5.
Full textSilva, Camila Ramos da, Martin Wallau, Ernesto A. Urquieta-González, Eduardo Prado Baston, and Rita Karolinny Chaves de Lima. "Porous carbons cast from meso- or nonporous silica nanoparticles." In Recent Progress in Mesostructured Materials - Proceedings of the 5th International Mesostructured Materials Symposium (IMMS2006), Shanghai, P.R. China, August 5-7, 2006, 377–80. Elsevier, 2007. http://dx.doi.org/10.1016/s0167-2991(07)80339-9.
Full textZou, Xiaodong, Tony Conradsson, Kirsten E. Christensen, Tiezhen Ren, and Michael O’Keeffe. "Crystalline micro- and meso-porous materials from inorganic molecular clusters." In Recent Progress in Mesostructured Materials - Proceedings of the 5th International Mesostructured Materials Symposium (IMMS2006), Shanghai, P.R. China, August 5-7, 2006, 173–76. Elsevier, 2007. http://dx.doi.org/10.1016/s0167-2991(07)80292-8.
Full textHuurman, M., L. Mo, R. Khedoe, J. Moraal, and M. Woldekidan. "Overview of the LOT meso mechanical research into porous asphalt raveling." In Advanced Testing and Characterization of Bituminous Materials. CRC Press, 2009. http://dx.doi.org/10.1201/9780203092989.ch49.
Full textConference papers on the topic "Meso Porous Materials"
Jing, Z., S. Kato, H. Maeda, and E. H. Ishida. "Hydrothermal Synthesis of Meso-porous Materials using Diatomaceous Earth." In WATER DYANMICS: 4th International Workshop on Water Dynamics. AIP, 2007. http://dx.doi.org/10.1063/1.2721279.
Full textEtse, Guillermo, Diego Said Schicchi, Antonio Caggiano, and Marianela Ripani. "Discontinuos Approach for Meso-Scale Modeling of Porous Materials Like Concrete Under High Temperatures." In 9th International Conference on Fracture Mechanics of Concrete and Concrete Structures. IA-FraMCoS, 2016. http://dx.doi.org/10.21012/fc9.301.
Full textOgawa, Ryotaro, Hikaru Miyaki, and Atsushi Sakuma. "Finite Element Analysis of Stress Propagation in Meso Structure of Low-Density Porous Material." In ASME 2022 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2022. http://dx.doi.org/10.1115/imece2022-89158.
Full textOthman, M. R., J. Kim, Mohamad Rusop, Rihanum Yahaya Subban, Norlida Kamarulzaman, and Wong Tin Wui. "Al[sub 2]O[sub 3]-SrCo[sub 0.6]Fe[sub 0.4]O[sub 3] Membrane Coated on a Meso-Porous Al[sub 2]O[sub 3] Support." In INTERNATIONAL CONFERENCE ON ADVANCEMENT OF MATERIALS AND NANOTECHNOLOGY: (ICAMN—2007). AIP, 2010. http://dx.doi.org/10.1063/1.3377852.
Full textMajumdar, Prasun, Md Raihan, Kenneth Reifsnider, and Fazle Rabbi. "Effect of Porous Electrode Morphology on Broadband Dielectric Characteristics of SOFC and Methodologies for Analytical Predictions." In ASME 2011 9th International Conference on Fuel Cell Science, Engineering and Technology collocated with ASME 2011 5th International Conference on Energy Sustainability. ASMEDC, 2011. http://dx.doi.org/10.1115/fuelcell2011-54946.
Full textChen, Hongxia, and Yuying Yan. "Effect of Porous Wettability on the Bubble Penetrability and Gas-Liquid Separation Character." In ASME 2016 5th International Conference on Micro/Nanoscale Heat and Mass Transfer. American Society of Mechanical Engineers, 2016. http://dx.doi.org/10.1115/mnhmt2016-6722.
Full textTamada, Makio, and Yuta Sunami. "Mass Production and Film Thickness Control of Meso Porous Silica Thin Films." In ASME 2020 29th Conference on Information Storage and Processing Systems. American Society of Mechanical Engineers, 2020. http://dx.doi.org/10.1115/isps2020-1925.
Full textNagano, Yasuo, Yasushi Ikeda, and Hiroshi Kawamoto. "Application of 3D X-Ray CT to Stress Simulation Analysis of Porous Materials With Homogenization Method." In ASME/JSME 2004 Pressure Vessels and Piping Conference. ASMEDC, 2004. http://dx.doi.org/10.1115/pvp2004-2828.
Full textRamos, J. A. V. S., A. B. Neto, M. K. P. Silva, D. L. Marinoski, and S. Güths. "INFLUÊNCIA DA SATURAÇÃO NAS PROPRIEDADES TÉRMICAS E ÓTICAS DE MATERIAIS POROSOS UTILIZADOS EM COBERTURAS." In XVIII ENCONTRO NACIONAL DE TECNOLOGIA DO AMBIENTE CONSTRUÍDO. UFRGS, 2020. http://dx.doi.org/10.46421/entac.v18i.880.
Full textChuru, Gitogo, Hongbing Lu, and Nicholas Leventis. "Nano-Engineering Silica Aerogel Structure to Determine the Property-Structure Relationship." In ASME 2009 International Mechanical Engineering Congress and Exposition. ASMEDC, 2009. http://dx.doi.org/10.1115/imece2009-12318.
Full textReports on the topic "Meso Porous Materials"
Bonilla, Leonardo, ed. Indicios de estabilización en el mercado laboral y una estimación de la tasa de desempleo desde el punto de vista de la firma. Banco de la República Colombia, November 2022. http://dx.doi.org/10.32468/rml.24.
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