932 resultados para SOx removal additives
Resumo:
In the process of interferometric testing, the measurement result is influenced by the system structure, which reduces the measurement accuracy. To obtain an accurate test result, it is necessary to analyze the test system, and build the relationship between the measurement error and the system parameters. In this paper, the influences of the system elements which include the collimated lens and the standard surface on the interferometric testing are analyzed, the expressions of phase distribution and wavefront error on the detector are obtained, the method to remove some element errors is introduced, and the optimization structure relationships are given. (C) 2006 Elsevier GmbH. All rights reserved.
Resumo:
Wastewater treatment reduces environmental contamination by removing gross solids and mitigating the effects of pollution. Treatment also reduces the number of indicator organisms and pathogens. In this work, the fates of two coliform bacteria, Escherichia coli and Serratia marcescens, were analyzed in an activated sludge process to determine the main mechanisms involved in the reduction of pathogenic microorganisms during wastewater treatment. These bacteria, modified to express green fluorescent protein, were inoculated in an activated sludge unit and in batch systems containing wastewater. The results suggested that, among the different biological factors implied in bacterial removal, bacterivorous protozoa play a key role. Moreover, a representative number of bacteria persisted in the system as free-living or embedded cells, but their distribution into liquid or solid fractions varied depending on the bacterium tested, questioning the real value of bacterial indicators for the control of wastewater treatment process. Additionally, viable but nonculturable cells constituted an important part of the bacterial population adhered to solid fractions, what can be derived from the competition relationships with native bacteria, present in high densities in this environment. These facts, taken together, emphasize the need for reliable quantitative and qualitative analysis tools for the evaluation of pathogenic microbial composition in sludge, which could represent an undefined risk to public health and ecosystem functions when considering its recycling.
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O objetivo do trabalho foi identificar ferramentas e indicadores adequados ao monitoramento e à otimização de processos de biorremediação, incluindo parâmetros físicos, químicos e microbiológicos definidos em estudos de tratabilidade de solos contaminados por óleo cru em escala de laboratório e comparar estratégias de biorremediação, tais como bioestímulo e bioaumento conduzidas em simulações de biopilhas dinâmicas ou estáticas. Quando três métodos de extração de hidrocarbonetos de petróleo de solo arenoso e franco-argiloso para análise cromatográfica (Soxhlet-SOX, microondas-MARS e extração acelerada por solvente-ASE) foram comparados entre si, concluiu-se que a técnica que promove a melhor recuperação depende da fração de interesse (n-alcanos, HRP, MCNR, HPA), das características texturais do solo (teores de areia, silte e argila) e da idade da contaminação. Dentre os indicadores de densidade populacional microbiana (microrganismos heterotróficos totais-PHT, população de fungos-PF e população microbiana degradadora de óleo (PDO) passíveis de utilização para indicar a taxa de degradação de compostos orgânicos presentes no solo tais como os hidrocarbonetos de petróleo, o PDO mostrou-se o mais adequado em conjunto com a produção de CO2 aferida pelo método respirométrico. Quando a estratégia de biorremediação de solo franco-argiloso contaminado com óleo cru a 3% (m m-1) utilizando bioestímulo (ajuste de pH, umidade e taxa C:N:P) foi comparada ao bioaumento (bioestímulo e adição de inóculo de microrganismos extraídos, enriquecidos e aclimatizados ao óleo cru como fonte de carbono), em sistemas de bancada simulando biopilha dinâmica (microcosmo M) e biopilha estática com aeração forçada (reator B), o tratamento que apresentou melhor remoção (32%) de HTP após 121 dias foi o bioaumento em biopilha estática. Para HPA, o tratamento que alcançou a melhor remoção (33%) foi com bioestímulo também em biopilha estática. A avaliação da taxa de mortalidade (%) de Eisenia andrei exposta tanto a solos recém-contaminados por óleo cru e preparados para bioestímulo (BIOS) e bioaumento (BIOA) a serem tratados em biopilhas dinâmicas e estáticas em escala de laboratório mostrou que após 56 dias de exposição da E. andrei, todos os solos produziram letalidade de 100%, quer fossem os solos recém-contaminados e preparados para os diferentes tratamentos (BIOS M, BIOS B, BIOA M, BIOA B) ou após 121 dias de tratamento. Tal resultado confirma que a biorremediação foi incipiente também do ponto de vista de remoção da ecotoxicidade. Em linhas gerais, a biorremediação de solo franco-argiloso contaminado por óleo cru, contendo tanto contaminação antiga quanto recente, reúne os maiores desafios à biorremediação, tanto do ponto de vista da composição textural do solo quanto da natureza do contaminante. Os processos são aparentemente lentos e requerem ferramentas auxiliares para aceleração dos mesmos. Recomenda-se no futuro, condução de experimentos com o uso de diferentes surfactantes, com ênfase em biosurfactantes
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The management of municipal solid waste (MSW), particularly the role of incineration, is currently a subject of public debate. Incineration shows to be a good alternative of reducing the volume of waste and eliminating certain infectious components. Moreover, Municipal Waste Incinerators (MWI), are reported to be highly hygienic and apart from that MWIs are immediately effective in terms of transport (incinerators can be built close to the waste sources) and incineration's nature. Nevertheless, the emissions of many hazardous substances make the Municipal Waste Incineration (MWI) plants to be unpopular. Metals (especially lead, manganese, cadmium, chromium and mercury) are concentrated in fly and bottom ashes. Furthermore, incomplete combustion produces a wide variety of potentially hazardous organic compounds, such as aldehydes, polycyclic aromatic hydrocarbons (PAH), chlorinated hydrocarbons including polychlorinated dibenzodioxins (PCDD) and dibenzofurans (PCDF), and even acid gases, including NOx. Many of these hazardous substances are carcinogenic and some have direct systemic toxicity.
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[EN] This paper describes, for the first time, the use of alginate hydrogels as miniaturised microvalves within microfluidic devices. These biocompatible and biodegradable microvalves are generated in situ and on demand, allowing for microfluidic flow control. The microfluidic devices were fabricated using an origami inspired technique of folding several layers of cyclic olefin polymer followed by thermocompression bonding. The hydrogels can be dehydrated at mild temperatures, 37◦C, to slightly open the microvalve and chemically erased using an ethylenediaminetetraacetic acid disodium salt (EDTA) solution, to completely open the channel, ensuring the reusability of the whole device and removal of damaged or defective valves for subsequent regeneration.
Resumo:
Mats (biomasses) of macroalgae, i.e. Ulva spp., Enteromorpha spp., Graciolaria spp., and Cladophora spp., have increased markedly over the past 50 years, and they cover much larger areas than they once did in many estuaries of the world. The increases are due to large inputs of pollutants, mainly nitrates. During the warm months, the mats lie loosely on shallow sand and mud flats mostly along shorelines. Ulva lactuca overwinters as buds attached to shells and stones, and in the spring it grows as thalli (leaf fronds). Mats eventually form that are several thalli thick. Few macroinvertebrates grow on the upper surfaces of their thalli due to toxins they produce, and few can survive beneath them. The fish, crabs, and wading birds that once used the flats to feed on the macroinvertebrates are denied these feeding grounds. The mats also grow over and kill mollusks and eelgrass, Zostera marina. An experiment was undertaken which showed that two removals of U. lactuca in a summer from a shallow flat in an estuarine cove maintained the bottom almost free of it.
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A worker drilling in Colton Beck,, North West England, UK, trying to make it more accessible for fish passing in 1953. This photo is part of a Photo Album that includes pictures from 1935 to 1954.
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Of all laser-based processes, laser machining has received little attention compared with others such as cutting, welding, heat treatment and cleaning. The reasons for this are unclear, although much can be gained from the development of an effcient laser machining process capable of processing diffcult materials such as high-performance steels and aerospace alloys. Existing laser machining processes selectively remove material by melt shearing and evaporation. Removing material by melting and evaporation leads to very low wall plug effciencies, and the process has difficulty competing with conventional mechanical removal methods. Adopting a laser machining solution for some materials offers the best prospects of effcient manufacturing operations. This paper presents a new laser machining process that relies on melt shear removal provided by a vertical high-speed gas vortex. Experimental and theoretical studies of a simple machining geometry have identifed a stable vortex regime that can be used to remove laser-generated melt effectively. The resultant combination of laser and vortex is employed in machining trials on 43A carbon steel. Results have shown that laser slot machining can be performed in a stable regime at speeds up to 150mm/min with slot depths of 4mm at an incident CO2 laser power level of 600 W. Slot forming mechanisms and process variables are discussed for the case of steel. Methods of bulk machining through multislot machining strategies are also presented.