999 resultados para Laboratory waste


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In this paper a new simulation environment for a virtual laboratory to educational proposes is presented. The Logisim platform was adopted as the base digital simulation tool, since it has a modular implementation in Java. All the hardware devices used in the laboratory course was designed as components accessible by the simulation tool, and integrated as a library. Moreover, this new library allows the user to access an external interface. This work was motivated by the needed to achieve better learning times on co-design projects, based on hardware and software implementations, and to reduce the laboratory time, decreasing the operational costs of engineer teaching. Furthermore, the use of virtual laboratories in educational environments allows the students to perform functional tests, before they went to a real laboratory. Moreover, these functional tests allow to speed-up the learning when a problem based approach methodology is considered. © 2014 IEEE.

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This paper presents the new internet remote laboratory (IRL), constructed at Mechanical Engineering Department (MED), Instituto Superior de Engenharia de Lisboa (ISEL), to teach Industrial Automation, namely electropneumatic cycles. The aim of this work was the development and implementation of a remote laboratory that was simple and effective from the user point of view, allowing access to all its functionalities through a web browser without having to install any other program and giving access to all the features that the students can find at the physical laboratory. With this goal in mind, it has been implemented a simple architecture with the new programmable logic controller (PLC) SIEMENS S7-1200, and with the aid of several free programs, programming technologies such as JavaScript, PHP and databases, it was possible to have a remote laboratory, with a simple interface, to teach industrial automation students.

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The great majority of the courses on science and technology areas where lab work is a fundamental part of the apprenticeship was not until recently available to be taught at distance. This reality is changing with the dissemination of remote laboratories. Supported by resources based on new information and communication technologies, it is now possible to remotely control a wide variety of real laboratories. However, most of them are designed specifically to this purpose, are inflexible and only on its functionality they resemble the real ones. In this paper, an alternative remote lab infrastructure devoted to the study of electronics is presented. Its main characteristics are, from a teacher's perspective, reusability and simplicity of use, and from a students' point of view, an exact replication of the real lab, enabling them to complement or finish at home the work started at class. The remote laboratory is integrated in the Learning Management System in use at the school, and therefore, may be combined with other web experiments and e-learning strategies, while safeguarding security access issues.

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This paper presents a collaborative virtual learning environment, which includes technologies such as 3D virtual representations, learning and content management systems, remote experiments, and collaborative learning spaces, among others. It intends to facilitate the construction, management and sharing of knowledge among teachers and students, in a global perspective. The environment proposes the use of 3D social representations for accessing learning materials in a dynamic and interactive form, which is regarded to be closer to the physical reality experienced by teachers and students in a learning context. A first implementation of the proposed extended immersive learning environment, in the area of solid mechanics, is also described, including the access to theoretical contents and a remote experiment to determine the elastic modulus of a given object.These instructions give you basic guidelines for preparing camera-ready papers for conference proceedings. Use this document as a template if you are using Microsoft Word 6.0 or later. Otherwise, use this document as an instruction set. The electronic file of your paper will be formatted further. Define all symbols used in the abstract. Do not cite references in the abstract.

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The most active phase of the fluid catalytic cracking (FCC) catalyst, used in oil refinery, is zeolite-Y which is an aluminosilicate with a high internal and external surface area responsible for its high reactivity. Waste FCC catalyst is potentially able to be reused in cement-based materials - as an additive - undergoing a pozzolanic reaction with calcium hydroxide (Ca(OH)2) formed during cement hydration [1-3]. This reaction produces additional strength-providing reaction products i.e., calcium silicate hydrate (C-S-H) and hydrous calcium aluminates (C-A-H) which exact chemical formula and structure are still unknown. Partial replacement of cement by waste FCC catalyst has two key advantages: (1) lowering of cement production with the associated pollution reduction as this industry represents one of the largest sources of man-made CO2 emissions, and (2) improving the mechanical properties and durability of cement-based materials. Despite these advantages, there is a lack of fundamental knowledge on pozzolanic reaction mechanisms as well as spatial distribution of porosity and solid phases interactions at the microstructural level and consequently their relationship with macroscopical engineering properties of catalyst/cement blends. Within this scope, backscattered electron (BSE) images acquired in a scanning electron microscope (SEM) equipped with Energy-Dispersive Spectroscopy (EDS) and by X-ray diffraction were used to investigate chemical composition of hydration products and to analyse spatial information of the microstructure of waste FCC catalyst blended cement mortars. For this purpose mortars with different levels of cement substitution by waste catalyst as well as with different hydration ages, were prepared. The waste FCC catalyst used is produced by the Portuguese refinery company Petrogal S.A.

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The present paper shows preliminary results of an ongoing project which one of the goals is to investigate the viability of using waste FCC catalyst (wFCC), originated from Portuguese oil refinery, to produce low carbon blended cements. For this purpose, four blended cements were produced by substituting cement CEM I 42.5R up to 20% (w/w) by waste FCC catalyst. Initial and final setting times, consistency of standard paste, soundness and compressive strengths after 2, 7 and 28 days were measured. It was observed that the wFCC blended cements developed similar strength, at 28 days, compared to the reference cement, CEM I 42.5R. Moreover, cements with waste FCC catalyst incorporation up to 15% w/w meet European Standard EN 197-1 specifications for CEM II/A type cement, in the 42.5R strength class.

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Os biocombustíveis são combustíveis com origem em matérias-primas naturais e renováveis, como óleos vegetais, gorduras animais, óleos e gorduras residuais entre outros, utilizados como substitutos de combustíveis minerais, como o gasóleo ou gasolina. Esta alternativa aos combustíveis de origem fóssil, tem-se vindo a revelar cada vez mais atrativa, sobretudo devido aos seus benefícios ambientais, destacando-se entre ele s o facto de serem biodegradáveis, não tóxicos e emitirem menos gases aquando da sua combustão, não contribuindo deste modo para o aumento do efeito de estufa na atmosfera. Na execução do presente trabalho, assume-se como finalidade o desenvolvimento de procedimentos laboratoriais sistemático de modo, com o intuito de elaborar um controlo de qualidade para a produção do biodiesel que permita a implementação de novas medidas processuais melhorando a produção de biodiesel. Este trabalho é resultado do estágio no Ecoparque Braval Valorização e Tratamento de Resíduos Sólidos, S.A. Com a avaliação sistemática e contínua, tanto da matéria-prima usada na produção do biodiesel, como do produto final em si, através de procedimentos laboratoriais específicos para o efeito, visa-se que em distintas fases do processo de produção do biodiesel seja compreendido o que ocorre de forma efetiva, e assim se assumam medidas preventivas e corretivas com o intuito de melhorar a qualidade do produto final. Na elaboração deste trabalho foram também reunidos esforços no sentido de controlar as especificações do óleo à entrada das instalações e iniciar o controlo de qualidade do produto final através de análises comparativas elaboradas no laboratório da Unidade de Produção de Biodiesel do Ecoparque Brava! - Valorização e Tratamento de Resíduos Sólidos, S.A. Outra abordagem do trabalho em questão, incide no estudo do efeito da variação das condições operatórias, nomeadamente a razão molar metanol/óleo , quantidade de catalizador na produção de biodiesel, nomeadamente, na quantidade de glicerina obtida como subproduto da reação e na facilidade de separação de fases. Neste sentido, o trabalho proposto pretende controlar a qualidade da matéria-prima usada, a qualidade do produto final e apresentar os aspetos-chave que deve m ser considerados para urna melhor gestão do s recursos de produção do biocombustível.

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O tratamento das águas residuais é uma matéria de extrema importância para o município da Póvoa de Varzim, não só por uma questão de saúde pública e conservação do meio ambiente como também pela vertente turística deste concelho, que tem na sua orla costeira seis praias às quais foram atribuídas bandeiras azuis pela sua qualidade. O concelho da Póvoa de Varzim engloba doze freguesias e possui quinze estações de tratamento de águas residuais (ETARs), sendo catorze delas compactas. O seu controlo é assegurado pela divisão de saneamento básico da câmara municipal da Póvoa de Varzim. O objetivo deste trabalho foi o diagnóstico de funcionamento das ETARs do município tendo em vista a identificação dos problemas existentes e a sua resolução/otimização. De forma a poder identificar o princípio de funcionamento e a presença de anomalias nas estações de tratamento, foram realizadas várias visitas a cada uma delas ao longo do período de estágio. A recolha de amostras para análises dos diferentes parâmetros foi feita por um funcionário e estas foram enviadas para o laboratório com parceria com a Câmara Municipal. Após uma extensa recolha de informação no local e de um estudo exaustivo de toda a documentação associada a cada ETAR concluiu-se que apenas quatro delas apresentavam problemas revelantes. As ETARs do parque industrial de Laúndos e do centro histórico de Rates apresentam caudais de admissão bastante elevados devido à descarga pontual de camiões cisterna o que faz com que o tratamento não seja eficaz. Como solução sugeriu-se a construção de um tanque de equalização em ambas as ETARs, com agitador e regulador de caudal, de forma a garantir, respetivamente, a mistura e uniformização das águas residuais domésticas e industriais e que apenas será bombeado o caudal adequado para tratamento. As ETARs da Incondave e das Fontaínhas apresentam sobretudo anomalias a nível do equipamento, o que leva a um mau desempenho da instalação. Aconselhou-se o conserto dos equipamentos danificados e uma inspeção mais frequente das instalações para que mal ocorra uma avaria, esta seja reparada o mais depressa possível. O estágio na câmara municipal da Póvoa de Varzim (CMPV) teve a duração de 10 meses, entre Outubro e Julho de 2012 e foi realizado no âmbito da disciplina de dissertação/ estágio do mestrado de tecnologias de proteção ambiental no Instituto Superior de Engenharia do Porto. Este estágio foi uma mais-valia para mim na medida em que pude consolidar os conhecimentos adquiridos ao longo de todo o meu percurso académico e conhecer a realidade do mercado de trabalho.

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Presentemente, com a economia cada vez mais globalizada e com a grande competitividade do mercado, as empresas de produção procuram cada vez mais ajustar-se às exigências dos clientes. Por esse motivo, o controlo do fluxo produtivo torna-se imprescindível para a resolução de problemas e para a própria melhoria contínua do processo. O sistema “Lean Manufacturing”, é um conjunto de atividades que tem como meta o aumento da capacidade de resposta às mudanças e à minimização dos desperdícios na produção, constituindo-se num verdadeiro empreendimento de gestão inovadora. O TPM – Total Productive Maintenance, é uma ferramenta de melhoria continua cada vez mais utilizada nas empresas com o objetivo de melhorar a eficiência dos seus equipamentos e atingir metas para a redução de desperdícios, incluindo a restauração e manutenção de condições padrão de funcionamento. O presente trabalho visa a implementação da ferramenta TPM num equipamento (Serrote Mecânico Alternativo) instalado no Laboratório das Oficinas Mecânicas do Instituto Superior de Engenharia do Porto. No contexto prático, este trabalho consistiu numa primeira fase por implementar a ferramenta 5S´s no posto de trabalho do equipamento em estudo. Durante esta implementação foi possível detetar algumas anomalias no equipamento, tendo sido sujeitas a uma análise para encontrar as suas causas raiz. Posteriormente foi implementada a ferramenta TPM, de modo, a criar melhores condições de acesso e simplificação das atividades de inspeção, lubrificação e limpeza. Além disso, foi executado e proposto algumas oportunidades de melhoria em alguns elementos, de forma a reduzir tempos de operação e tempos de setup, contribuindo para o aumento da eficiência do equipamento.

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Two monoclonal antibodies anti-component 5 of Trypanosoma cruzi (I-35/115 and II-190/30) were tested in IFA and ELISA respectively against 35 T. cruzi laboratory clones. Among the 35 clones tested, 18 different isozyme patterns were detected. All clones were recognized by both monoclonal antibodies except one clone which did not react with II-190/30. These results support the universal expression of specific component 5 within the taxon T. cruzi.

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Dissertação apresentada como requisito parcial para obtenção do grau de Mestre em Ciência e Sistemas de Informação Geográfica

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In this study the effect of incorporation of recycled glass-fibre reinforced polymer (GFRP) waste materials, obtained by means of milling processes, on mechanical behaviour of polyester polymer mortars was assessed. For this purpose, different contents of recycled GFRP waste powder and fibres, with distinct size gradings, were incorporated into polyester based mortars as sand aggregates and filler replacements. Flexural and compressive loading capacities were evaluated and found better than unmodified polymer mortars. GFRP modified polyester based mortars also show a less brittle behaviour, with retention of some loading capacity after peak load. Obtained results highlight the high potential of recycled GFRP waste materials as efficient and sustainable reinforcement and admixture for polymer concrete and mortars composites, constituting an emergent waste management solution.

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Glass fibre-reinforced plastics (GFRP), nowadays commonly used in the construction, transportation and automobile sectors, have been considered inherently difficult to recycle due to both: cross-linked nature of thermoset resins, which cannot be remolded, and complex composition of the composite itself, which includes glass fibres, matrix and different types of inorganic fillers. Presently, most of the GFRP waste is landfilled leading to negative environmental impacts and supplementary added costs. With an increasing awareness of environmental matters and the subsequent desire to save resources, recycling would convert an expensive waste disposal into a profitable reusable material. There are several methods to recycle GFR thermostable materials: (a) incineration, with partial energy recovery due to the heat generated during organic part combustion; (b) thermal and/or chemical recycling, such as solvolysis, pyrolisis and similar thermal decomposition processes, with glass fibre recovering; and (c) mechanical recycling or size reduction, in which the material is subjected to a milling process in order to obtain a specific grain size that makes the material suitable as reinforcement in new formulations. This last method has important advantages over the previous ones: there is no atmospheric pollution by gas emission, a much simpler equipment is required as compared with ovens necessary for thermal recycling processes, and does not require the use of chemical solvents with subsequent environmental impacts. In this study the effect of incorporation of recycled GFRP waste materials, obtained by means of milling processes, on mechanical behavior of polyester polymer mortars was assessed. For this purpose, different contents of recycled GFRP waste materials, with distinct size gradings, were incorporated into polyester polymer mortars as sand aggregates and filler replacements. The effect of GFRP waste treatment with silane coupling agent was also assessed. Design of experiments and data treatment were accomplish by means of factorial design and analysis of variance ANOVA. The use of factorial experiment design, instead of the one factor at-a-time method is efficient at allowing the evaluation of the effects and possible interactions of the different material factors involved. Experimental results were promising toward the recyclability of GFRP waste materials as polymer mortar aggregates, without significant loss of mechanical properties with regard to non-modified polymer mortars.

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Glass fibre-reinforced plastics (GFRP) have been considered inherently difficult to recycle due to both: cross-linked nature of thermoset resins, which cannot be remolded, and complex composition of the composite itself. Presently, most of the GFRP waste is landfilled leading to negative environmental impacts and supplementary added costs. With an increasing awareness of environmental matters and the subsequent desire to save resources, recycling would convert an expensive waste disposal into a profitable reusable material. In this study, efforts were made in order to recycle grinded GFRP waste, proceeding from pultrusion production scrap, into new and sustainable composite materials. For this purpose, GFRP waste recyclates, were incorporated into polyester based mortars as fine aggregate and filler replacements at different load contents and particle size distributions. Potential recycling solution was assessed by mechanical behaviour of resultant GFRP waste modified polymer mortars. Results revealed that GFRP waste filled polymer mortars present improved flexural and compressive behaviour over unmodified polyester based mortars, thus indicating the feasibility of the waste reuse in polymer mortars and concrete. © 2011, Advanced Engineering Solutions.