985 resultados para mesoporous material


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Principais vírus da macieira e da pereira. Danos causados por vírus. Limpeza clonal: produção de macieiras e pereiras livres de vírus. Análises e testes de avaliação de sanidade.

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The world is facing environmental changes that are increasingly affecting how we think about manufacturing, the consumption of products and use of resources. Within the HE product design community, thinking and designing sustainability’ has evolved to become a natural part of the curriculum. Paradoxical as the rise in awareness of sustainability increases there is growing concern within HE product design of the loss of workshop facilities and as a consequence a demise in teaching traditional object-making skills and material experimentation. We suggest the loss of workshops and tangible ‘learning by making skills’ also creates a lost opportunity for a rich learning resource to address sustainable thinking, design and manufacture ‘praxis’ within HE design education. Furthermore, as learning spaces are frequently discussed in design research, there seems to be little focus on how the use of an outdoor environment might influence learning outcomes particularly with regard to material teaching and sustainability. This 'case study' of two jewellery workshops, used outdoor learning spaces to explore both its impact on learning outcomes and to introduce some key principles of sustainable working methodologies and practices. Academics and students mainly from Norway and Scotland collaborated on this international research project. Participants made models from disposable packaging materials, which were cast in tin, in the sand on a local beach, using found timber to create a heat source for melting the metal. This approach of using traditional making skills, materials and nature was found to be a relevant contribution to a sustainable discourse.

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3 hojas : ilustraciones, fotografías a color.

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The objective of this thesis was to improve the dissolution rate of the poorly waters-soluble drug, fenofibrate by processing it with a high surface area carrier, mesoporous silica. The subsequent properties of the drug – silica composite were studied in terms of drug distribution within the silica matrix, solid state and release properties. Prior to commencing any experimental work, the properties of unprocessed mesoporous silica and fenofibrate were characterised (chapter 3), this allowed for comparison with the processed samples studied in later chapters. Fenofibrate was a highly stable, crystalline drug that did not adsorb moisture, even under long term accelerated storage conditions. It maintained its crystallinity even after SC-CO2 processing. Its dissolution rate was limited and dependent on the characteristics of the particular in vitro media studied. Mesoporous silica had a large surface area and mesopore volume and readily picked up moisture when stored under long term accelerated storage conditions (75% RH, 40 oC). It maintained its mesopore character after SC-CO2 processing. A variety of methods were employed to process fenofibrate with mesoporous silica including physical mixing, melt method, solvent impregnation and novel methods such as liquid and supercritical carbon dioxide (SC-CO2) (chapter 4). It was found that it was important to break down the fenofibrate particulate structure to a molecular state to enable drug molecules enter into the silica mesopores. While all processing methods led to some increase in fenofibrate release properties; the impregnation, liquid and SC-CO2 methods produced the most rapid release rates. SC-CO2 processing was further studied with a view to optimising the processing parameters to achieve the highest drug-loading efficiency possible (chapter 5). In this thesis, it was that SC-CO2 processing pressure had a bearing on drug-loading efficiency. Neither pressure, duration or depressurisation rate affected drug solid state or release properties. The amount of drug that could be loaded onto to the mesoporous silica successfully was also investigated at different ratios of drug mass to silica surface area under constant SC-CO2 conditions; as the drug – silica ratio increased, the drug-loading efficiency decreased, while there was no effect on drug solid state or release properties. The influence of the number of drug-loading steps was investigated (chapter 6) with a view to increasing the drug-loading efficiency. This multiple step approach did not yield an increase in drug-loading efficiency compared to the single step approach. It was also an objective in this chapter to understand how much drug could be loaded into silica mesopores; a method based on the known volume of the mesopores and true density of drug was investigated. However, this approach led to serious repercussions in terms of the subsequent solid state nature of the drug and its release performance; there was significant drug crystallinity and reduced release extent. The impact of in vitro release media on fenofibrate release was also studied (chapter 6). Here it was seen that media containing HCl led to reduced drug release over time compared to equivalent media not containing HCl. The key findings of this thesis are discussed in chapter 7 and included: 1. Drug – silica processing method strongly influenced drug distribution within the silica matrix, drug solid state and release. 2. The silica surface area and mesopore volume also influenced how much drug could be loaded. It was shown that SC-CO2 processing variables such as processing pressure (13.79 – 41.37 MPa), duration time (4 – 24 h) and depressurisation rate (rapid or controlled) did not influence the drug distribution within the SBA- 15 matrix, drug solid state form or release. Possible avenues of research to be considered going forward include the development and application of high resolution imaging techniques to visualise drug molecules within the silica mesopores. Also, the issues surrounding SBA-15 usage in a pharmaceutical manufacturing environment should be addressed.

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We studied the cells from three selected patients with Ph-chromosome-negative chronic myeloid leukemia (CML) by Southern blotting, polymerase chain reaction, and in situ hybridization of informative probes to metaphase chromosomes. All three patients had rearrangement of M-BCR sequences in the BCR gene and expression of one or other of the mRNA species characteristic of Ph-positive CML. Leukemic metaphases studied after trypsin-Giemsa banding were indistinguishable from normal. The ABL probe localized both to chromosome 9 and 22 in each case. A probe containing 3' M-BCR sequences localized only to chromosome 22, and not to chromosome 9 as would be expected in Ph-positive CML. Two new probes that recognize different polymorphic regions distal to the ABL gene on chromosome 9 in normal subjects localized exclusively to chromosome 9 in two patients and to both chromosomes 9 and 22 in one patient. These results show that Ph-negative CML with BCR rearrangement is associated with insertion of a variable quantity of chromosome 9 derived material into chromosome 22q11; there is no evidence for reciprocal translocation of material from chromosome 22 to chromosome 9.

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This paper focuses on the nature of jamming, as seen in two-dimensional frictional granular systems consisting of photoelastic particles. The photoelastic technique is unique at this time, in its capability to provide detailed particle-scale information on forces and kinematic quantities such as particle displacements and rotations. These experiments first explore isotropic stress states near point J through measurements of the mean contact number per particle, Z, and the pressure, P as functions of the packing fraction, . In this case, the experiments show some but not all aspects of jamming, as expected on the basis of simulations and models that typically assume conservative, hence frictionless, forces between particles. Specifically, there is a rapid growth in Z, at a reasonable which we identify with as c. It is possible to fit Z and P, to power law expressions in - c above c, and to obtain exponents that are in agreement with simulations and models. However, the experiments differ from theory on several points, as typified by the rounding that is observed in Z and P near c. The application of shear to these same 2D granular systems leads to phenomena that are qualitatively different from the standard picture of jamming. In particular, there is a range of packing fractions below c, where the application of shear strain at constant leads to jammed stress-anisotropic states, i.e. they have a non-zero shear stress, τ. The application of shear strain to an initially isotropically compressed (hence jammed) state, does not lead to an unjammed state per se. Rather, shear strain at constant first leads to an increase of both τ and P. Additional strain leads to a succession of jammed states interspersed with relatively localized failures of the force network leading to other stress-anisotropic states that are jammed at typically somewhat lower stress. The locus of jammed states requires a state space that involves not only and τ, but also P. P, τ, and Z are all hysteretic functions of shear strain for fixed . However, we find that both P and τ are roughly linear functions of Z for strains large enough to jam the system. This implies that these shear-jammed states satisfy a Coulomb like-relation, τ = μP. © 2010 The Royal Society of Chemistry.

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Gemstone Team FRESH

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Ambiguous expiration dates on milk cartons can mislead consumers into prematurely disposing unspoiled milk and potentially drinking spoiled milk. These misconceptions can lead to wastage that harms the environment, or potential discomfort and illness. The incorporation of pH-sensitive indicators into plastic milk cartons has the potential to replace stamped expiration dates as the traditional method of milk spoilage indication. We studied the correlation between bacteria count and milk pH to establish pH measurement as an effective indicator of milk quality. We then developed a method for incorporating bromothymol blue, a pH-sensitive color-changing dye, into a hydrogel made of polyacrylamide. This hydrogel can be added to existing packaging for milk or other products with detectable pH changes. Additionally, we conducted a consumer survey and analyzed current food packaging trends in the market. Our research indicates that a spoilage-indicating milk carton could have strong market potential as food industries increasingly adopt intelligent packaging designs.

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El establecimiento de un sistema silvopastoril (SSP) en plantaciones de álamo (Populus deltoides `Australiano 106/60´) requiere de nuevas estrategias de manejo. En este contexto, la combinación del tipo de material de multiplicación utilizado y su palatabilidad pueden resultar determinantes del éxito de la instalación del sistema. El objetivo general del estudio fue generar una nueva tecnología para la instalación de un SSP con álamos orientado a la producción de madera para múltiples destinos. El primer objetivo consistió en evaluar los cambios que se producen en diferentes distancias de plantación sobre la dimensión y características morfológicas de las guías de álamo, materiales de multiplicación potencialmente aptos para instalar un SSP, y el segundo, determinar el efecto del tamaño y/o edad de las guías sobre el crecimiento del componente arbóreo y la sensibilidad al daño de las mismas frente al pastoreo de ganado bovino en un SSP de álamo. Los resultados indican que los mayores distanciamientos ensayados produjeron las mejores guías de uno, dos y tres años de edad, con mayor DAP, altura total, biomasa aérea, rectitud, conicidad y estabilidad del fuste. Se determinó además que es posible acelerar el ingreso del ganado de cría al SSP utilizando guías con un DAP igual ó mayor a los 6 cm, con una respuesta positiva durante los primeros años de plantación. Las hojas y ramitas tiernas de álamo, productos de una poda de primavera, constituyeron por su buena disponibilidad de PB, P y K y su DE un buen complemento de la dieta animal. Se concluye finalmente que, utilizando guías de álamo como material de multiplicación, es posible producir anticipadamente madera de álamo para usos múltiples, pasturas naturales espontáneas y carne vacuna en los SSP del bajo Delta del Río Paraná.

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El establecimiento de un sistema silvopastoril (SSP)en plantaciones de álamo (Populus deltoides `Australiano 106/60´)requiere de nuevas estrategias de manejo. En este contexto, la combinación del tipo de material de multiplicación utilizado y su palatabilidad pueden resultar determinantes del éxito de la instalación del sistema. El objetivo general del estudio fue generar una nueva tecnología para la instalación de un SSP con álamos orientado a la producción de madera para múltiples destinos. El primer objetivo consistió en evaluar los cambios que se producen en diferentes distancias de plantación sobre la dimensión y características morfológicas de las guías de álamo, materiales de multiplicación potencialmente aptos para instalar un SSP, y el segundo, determinar el efecto del tamaño y/o edad de las guías sobre el crecimiento del componente arbóreo y la sensibilidad al daño de las mismas frente al pastoreo de ganado bovino en un SSP de álamo. Los resultados indican que los mayores distanciamientos ensayados produjeron las mejores guías de uno, dos y tres años de edad, con mayor DAP, altura total, biomasa aérea, rectitud, conicidad y estabilidad del fuste. Se determinó además que es posible acelerar el ingreso del ganado de cría al SSP utilizando guías con un DAP igual ó mayor a los 6 cm, con una respuesta positiva durante los primeros años de plantación. Las hojas y ramitas tiernas de álamo, productos de una poda de primavera, constituyeron por su buena disponibilidad de PB, P y K y su DE un buen complemento de la dieta animal. Se concluye finalmente que, utilizando guías de álamo como material de multiplicación, es posible producir anticipadamente madera de álamo para usos múltiples, pasturas naturales espontáneas y carne vacuna en los SSP del bajo Delta del Río Paraná.