57 resultados para INDUSTRIAL WASTES
em Instituto Politécnico do Porto, Portugal
Resumo:
Heavy metal pollution is a matter of concern in industrialised countries. Contrary to organic pollutants, heavy metals are not metabolically degraded. This fact has two main consequences: its bioremediation requires another strategy and heavy metals can be indefinitely recycled. Yeast cells of Saccharomyces cerevisiae are produced at high amounts as a by-product of brewing industry constituting a cheap raw material. In the present work, the possibility of valorising this type of biomass in the bioremediation of real industrial effluents containing heavy metals is reviewed. Given the autoaggregation capacity (flocculation) of brewing yeast cells, a fast and off-cost yeast separation is achieved after the treatment of metal-laden effluent, which reduces the costs associated with the process. This is a critical issue when we are looking for an effective, eco-friendly, and low-cost technology. The possibility of the bioremediation of industrial effluents linked with the selective recovery of metals, in a strategy of simultaneous minimisation of environmental hazard of industrial wastes with financial benefits from reselling or recycling the metals, is discussed.
Resumo:
In this study, efforts were made in order to put forward an integrated recycling approach for the thermoset based glass fibre reinforced polymer (GPRP) rejects derived from the pultrusion manufacturing industry. Both the recycling process and the development of a new cost-effective end-use application for the recyclates were considered. For this purpose, i) among the several available recycling techniques for thermoset based composite materials, the most suitable one for the envisaged application was selected (mechanical recycling); and ii) an experimental work was carried out in order to assess the added-value of the obtained recyclates as aggregates and reinforcement replacements into concrete-polymer composite materials. Potential recycling solution was assessed by mechanical behaviour of resultant GFRP waste modified concrete-polymer composites with regard to unmodified materials. In the mix design process of the new GFRP waste based composite material, the recyclate content and size grade, and the effect of the incorporation of an adhesion promoter were considered as material factors and systematically tested between reasonable ranges. The optimization process of the modified formulations was supported by the Fuzzy Boolean Nets methodology, which allowed finding the best balance between material parameters that maximizes both flexural and compressive strengths of final composite. Comparing to related end-use applications of GFRP wastes in cementitious based concrete materials, the proposed solution overcome some of the problems found, namely the possible incompatibilities arisen from alkalis-silica reaction and the decrease in the mechanical properties due to high water-cement ratio required to achieve the desirable workability. Obtained results were very promising towards a global cost-effective waste management solution for GFRP industrial wastes and end-of-life products that will lead to a more sustainable composite materials industry.
Resumo:
In this study, an attempt was made in order to measure and evaluate the eco-efficiency performance of a pultruded composite processing company. For this purpose the recommendations of World Business Council for Sustainable Development (WCSD) and the directives of ISO 14301 standard were followed and applied. The main general indicators of eco-efficiency, as well as the specific indicators, were defined and determined. With basis on indicators’ figures, the value profile, the environmental profile, and the pertinent eco-efficiency ratios were established and analyzed. In order to evaluate potential improvements on company eco-performance, new indicators values and eco-efficiency ratios were estimated taking into account the implementation of new proceedings and procedures, at both upstream and downstream of the production process, namely: i) Adoption of a new heating system for pultrusion die-tool in the manufacturing process, more effective and with minor heat losses; ii) Recycling approach, with partial waste reuse of scrap material derived from manufacturing, cutting and assembly processes of GFRP profiles. These features lead to significant improvements on the sequent assessed eco-efficiency ratios of the present case study, yielding to a more sustainable product and manufacturing process of pultruded GFRP profiles.
Resumo:
Glass fibre-reinforced plastics (GFRP) have been considered inherently difficult to recycle due to both: cross-linked nature of thermoset resins, which cannot be remoulded, 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 behavior over unmodified polyester based mortars, thus indicating the feasibility of the GFRP industrial waste reuse into concrete-polymer composite materials.
Resumo:
The proper disposal of the several types of wastes produced in industrial activities increases production costs. As a consequence, it is common to develop strategies to reuse these wastes in the same process and in different processes or to transform them for use in other processes. This work combines the needs for new synthesis methods of nanomaterials and the reduction of production cost using wastes from citrine juice (orange, lime, lemon and mandarin) to produce a new added value product, green zero-valent iron nanoparticles that can be used in several applications, including environmental remediation. The results indicate that extracts of the tested fruit wastes (peel, albedo and pulp fractions) can be used to produce zero-valent iron nanoparticles (nZVIs). This shows that these wastes can be an added value product. The resulting nZVIs had sizes ranging from 3 up to 300 nm and distinct reactivities (pulp > peel > albedo extracts). All the studied nanoparticles did not present a significant agglomeration/settling tendency when compared to similar nanoparticles, which indicates that they remain in suspension and retain their reactivity.
Resumo:
Glass fibre-reinforced plastics (GFRP) have been considered inherently difficult to recycle due to both: crosslinked nature of thermoset resins, which cannot be remoulded, 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 GFRP industrial waste reuse into concrete-polymer composite materials.
Resumo:
Dissertação para a obtenção do grau de mestre em Contabilidade e Finanças Orientador: Mestre António Costa Reis
Resumo:
Dissertação para obtenção do Grau de Mestre em Contabilidade e Finanças Orientador: Mestre Paulino Manuel Leite da Silva
Resumo:
Mestrado em Engenharia Electrotécnica e de Computadores
Resumo:
Mestrado em Engenharia Química
Resumo:
The present work aims at evaluating the efficiency of an organic polymer from vegetal source used as coagulant for treating different types of industrial effluents. This coagulant (Flox-QT) is obtained from the Black Acacia (Acacia mearnsii). The effluents studied were produced in petrochemical, leather, cork stoppers, metalworking, olive oil, glue, paint (printing), textile and paper industries. The parameters analyzed in the effluents before and after treatment were selected according to the type of wastewater and included pH, conductivity, apparent colour, turbidity, total suspended solids (TSS), chemical oxygen demand (COD) and some metals. The coagulant proved to be efficient for almost all effluents tested. The best results were obtained for the paper industry wastewater, with 91% removal of chemical oxygen demand and 95% of total suspended solids removal. The estimated cost of this treatment would be only 0.24 Euro per cubic meter of treated effluent, only regarding the price of the coagulant and the required dosage. The use of this coagulant is also adequate for the valorisation of the sludge obtained, which in this case could be recycled for paper production.
Resumo:
Projecto apresentado ao Instituto Politécnico do Porto para obtenção do Grau de Mestre em Logística Orientada por Prof. Doutor Gouveia
Resumo:
A presente dissertação tem como intuito aplicar o regime de Responsabilidade Ambiental no perímetro industrial da Monteiro, Ribas – Indústrias, S.A.. Para tal, averiguou-se que na ordem jurídica nacional, o regime de Responsabilidade Ambiental (RA) encontra-se consagrada na legislação nacional pelo Decreto-Lei nº 147/2008 de 29 de Julho (Diploma RA),e respetivas alterações, aplicando-se a danos ambientais ou ameaças iminentes de danos ambientais causados aos recursos naturais nomeadamente “espécies e habitats naturais protegidos”, “água” e “solo”. Também se verificou que este regime introduz obrigações específicas para os operadores abrangidos, designadamente é da responsabilidade do operador aplicar as medidas de prevenção e reparação dos danos, devendo ser reportados os acontecimentos à autoridade competente, Agência Portuguesa do Ambiente. Para cumprimento do requisito da garantia financeira e sendo a Monteiro, Ribas – Indústrias, S.A. enumerada no Anexo III do Decreto-Lei nº 147/2008 de 29 de Julho, optou-se pela constituição de um fundo próprio no valor de 50.000,00€. Com recurso à metodologia proposta pela Norma Espanhola UNE 150008:2008 - Análise e avaliação do Risco Ambiental, procedeu-se à formulação de vários cenários e quantificação de riscos para a Monteiro, Ribas – Indústrias, S.A. tendo-se apurado que os riscos estavam avaliados como baixo ou moderado. Por fim, conclui-se que em Portugal, embora exista um Decreto-Lei sobre Responsabilidade Ambiental, este tema ainda não está suficientemente desenvolvido pois não permite proceder a análise e avaliação do risco ambiental, tendo sido tomado assim como referência a metodologia aplicada na Norma Espanhola UNE 150008:2008.
Resumo:
Esta dissertação apresenta um estudo da capacidade do processo inserido uma empresa de panificação. Antes de iniciar o estudo propriamente dito, foi realizada uma calibração à balança na qual este estudo seria realizado. Os índices de capacidade do processo têm como principal finalidade verificar se a média e a variabilidade do processo estão em concordância com o alvo e os limites de especificação. Esta verificação permite o ajustamento do processo de maneira a reduzir a produção de produtos defeituosos. Neste trabalho foram utilizados os índices de capacidade considerando que as condições são ideais, isto é, quando existe normalidade nas amostras. Quando as condições não são ideais, como foi verificado, foram utilizadas técnicas para o cálculo dos índices de capacidade para este tipo de situações. A aplicação da metodologia de análise da capacidade do processo foi realizada com sucesso com recurso a amostras retiradas numa balança calibrada para o efeito.
Resumo:
Este documento apresenta o desenvolvimento de um sistema que visa relacionar e interligar as tecnologias móveis, automação industrial e SAP às necessidades da Gopaca, uma empresa de produção de derivados de cartão. A empresa Gopaca demonstrou interesse e necessidade em melhorar os seus processos internos de maneira a aumentar produtividade, diminuir desperdícios e implementar uma filosofia de Lean Manufacturing. Para que isso fosse possível foram implementados novos processos em SAP de modo a automatizar todo o processo pré-produtivo, pós produtivo e expedicional, bem como implementado um sistema de Warehouse Management inovador a nível mundial no que a empresas de produção de cartão diz respeito. Sendo expectável que após a conclusão do projecto os resultados fossem inegáveis em termos de aplicação da metodologia Lean Manufacturing. Foram efectuadas melhorias na forma como a entrada de mercadoria e produção é feita em SAP, passando de completamente manual para completamente automática, até à forma como a expedição será feita, apenas necessitando de um operador com uma pistola de leitura de códigos de barra para despoletar o processo completo até ao momento de impressão da guia de transporte. Todo este processo é inovador no que diz respeito à sua implementação em SAP com o foco no desejo do cliente, não existindo ainda, nenhum produto (modulo SAP) no mercado que permita a execução automática dos processos indicados. Todos os processos se tornaram simples e intuitivos e na maior parte dos casos sem qualquer necessidade de interacção com o utilizador, reduzindo o tempo anteriormente despendido nesta operações, podendo este ser aplicado nas áreas onde é realmente necessário.