997 resultados para Ni-Cd batteries
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Specific marine macro algae species abundant at the Portuguese coast (Laminaria hyperborea, Bifurcaria bifurcata, Sargassum muticum and Fucus spiralis) were shown to be effective for removing toxic metals (Cd(II), Zn(II) and Pb(II)) from aqueous solutions. The initial metal concentrations in solution were about 75–100 mg L−1. The observed biosorption capacities for cadmium, zinc and lead ions were in the ranges of 23.9–39.5, 18.6–32.0 and 32.3–50.4 mg g−1, respectively. Kinetic studies revealed that the metal uptake rate was rather fast, with 75% of the total amount occurring in the first 10 min for all algal species. Experimental data were well fitted by a pseudo-second order rate equation. The contribution of internal diffusion mechanism was significant only to the initial biosorption stage. Results indicate that all the studied macro algae species can provide an efficient and cost-effective technology for eliminating heavy metals from industrial effluents.
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O objectivo desta tese é a caracterização global de algumas famílias de compostos poliamínicos com grupos aromáticos fluorescentes. Estes têm potencial deaplicação como dispositivos moleculares, incluindo quimiossensores, interruptores moleculares,máquinas moleculares ou sistemas de processamento de informação moleculares. Estes compostos possuem poliaminas que podem actuar como unidades receptoras de várias espécies químicas, como protões, iões metálicos ou aniões, e os tornam solúveis em água. Contêm também grupos aromáticos fluorescentes (naftaleno, antraceno, pireno), que actuam como unidades sinalizadoras do estado do receptor. No Capítulo 1 são apresentados métodos de síntese e purificação de compostos poliamínicos, juntamente com descrições pormenorizadas das sínteses. Nos Capítulos 2 a 8 são caracterizados diversos compostos, quando livres em solução aquosa, e na presença de iões de metais de transição e de ATP. São usadas técnicas de espectrofotometria no UV-visível, espectrofluorimetria no estado estacionário e de contagem de fotão único correlacionada no tempo, complementadas com dados potenciométricos e de RMN fornecidos pelo grupo do Prof. Enrique García-España da Universidade de Valência, Espanha. No Capítulo 2 estudam-se compostos com grupos antraceno. Verifica-se supressão de emissão a pH básico, comum a todos os compostos poliamínicos, e caracterizam-se factores que influenciam nesse fenómeno. No Capítulo 3 analisam-se compostos de naftaleno. Verificam-se excímeros intramoleculares em compostos com dois grupos naftaleno. Para os formar ocorre um movimento fotoinduzido de flexão, pelo que esses compostos podem ser considerados máquinas moleculares. No Capítulo 4 estudam-se compostos com grupos pireno. Observam-se excímeros intramoleculares nos compostos com dois fluoróforos. No Capítulo 5 caracterizam-se compostos com dois grupos aromáticos diferentes(vários compostos com naftaleno e antraceno, um com pireno e antraceno e um com pireno e naftaleno). Verifica-se transferência de energia do grupo naftaleno para o antraceno (que parece evoluir de acordo com a teoria de Förster), de pireno para antraceno e de naftaleno para pireno. No Capítulo 6 examinam-se dois compostos de antraceno na presença de iões metálicos. Verifica-se aumento de emissão presença de Zn(II) e Cd(II), e supressão de emissão na presença de Cu(II) e Ni(II). Caracteriza-se o comportamento de um deles do ponto de vista de operações lógicas ao nível molecular. No Capítulo 7 caracteriza-se um composto de naftaleno na presença de vários iões metálicos. Verifica-se supressão de emissão com iões de metais de transição do 3ºperíodo com níveis na presença de Zn(II), Cd(II) e Al(III). Não se verifica efeito na presença de iões alcalinos, alcalino-terrosos, lantanídeos, Sn(II) e Pb(II). No Capítulo 8 estuda-se a interacção de compostos poliamínicos com ATP. Verifica-se em qualquer pH a ocorrência de empilhamento aromáticos do ATP e composto poliamínico, e ancoragem do grupo polifosfato do ATP com a poliamina. Verifica-se supressão de emissão do composto poliamínico a pH ácido, principalmente por transferência electrónica fotoinduzida do seu grupo aromático para o grupo adenina protonado do ATP. Num composto com antraceno e naftaleno, continua-se a verificar transferência de energia d incompletamente preenchidos, e com Hg(II), e aumento de emissãoπ-π entre os grupos
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As ligas de Níquel‑Titânio (Ni‑Ti) são as mais atractivas entre as ligas com memória de forma devido às suas boas propriedades funcionais juntamente com a elevada resistência e melhor ductilidade. As transformações de fases associadas ao efeito de memória de forma (EMF) podem ser em uma etapa, B19’ (martensite) ↔ B2 (austenite), em duas ou em múltiplas etapas, incluindo a fase‑R intermédia dependendo da história térmica e termomecânica da liga. As temperaturas de transformação são geralmente observadas acima da temperatura ambiente para as ligas ricas em Ti, enquanto nas ricas em Ni se situam abaixo da temperatura ambiente. O objectivo da presente dissertação foi o de investigar as modificações nas propriedades funcionais e estruturais em uma liga de Ni‑Ti rica em Ti (49,0%at.Ni‑51,0%at.Ti) sujeita a diferentes tratamentos térmicos e termomecânicos de marforming e ausforming. Para melhor entender os fenómenos presentes nesta liga foi feito um paralelismo com outras duas ligas de Ni‑Ti: (i) equiatómica com EMF acima da temperatura ambiente e (ii) rica em Ni superelástica (SE) à temperatura ambiente. Com o intuito de uma análise completa das transformações de fases foram utilizadas durante ciclos térmicos diversas técnicas de caracterização: Calorimetria Diferencial de Varrimento (DSC), Resistividade Eléctrica (RE), Dilatometria (DT) e Difracção de Raios‑X (DRX) convencional e por radiação sincrotrão – rotina e textura. Foram também utilizadas outras técnicas à temperatura ambiente com o intuito de observar características microestruturais (Microscopia Óptica (MO) e Electrónica de Varrimento (SEM)) e mecânicas (Microdureza e Ultra‑Microdureza Vickers, e Tracção). A liga de Ni‑Ti rica em Ti tem as suas transformações directa e inversa fortemente afectadas pelos tratamentos termomecânicos, devido à formação de fase‑R durante a transformação directa em duas (B2®R®B19’) ou em múltiplas etapas (B2®R, B2®B19’ e R®B19’). Os tratamentos termomecânicos conducentes à sequência de transformação B2®R®B19’ decrescem a temperatura de fim da formação de B19’ para próximo da temperatura ambiente e apresentam maior estabilidade nas temperaturas e histereses de transformação.
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O objectivo deste estudo consistiu na investigação da existência de um potencial risco para a saúde humana, associado ao impacte ambiental dos efluentes líquidos de indústrias cerâmicas e de vidro, nas águas superficais e subterrâneas, respectivamente. Este trabalho foi desenvolvido sobre um caso de estudo: na localidade de Casal da Areia, localizada no concelho de Alcobaça, onde existia um conhecimento prévio da ocorrência de descargas e consequente degradação da qualidade da água. O estudo foi realizado em duas zonas da localidade. A primeira situada próxima da fábrica de vidro e a segunda zona próxima da zona industrial, onde se localizam as indústrias de cerâmica. Nestas duas áreas de estudo foram inventariados um total de três pontos de água com vista a analisar as alterações químicas em relação a concentrações de referência. Os dados foram recolhidos numa campanha de monitorização com 2 fases: a 1ª no mês de Abril e a 2ª no mês de Junho de 2007. Os parâmetros analisados foram o pH, sólidos suspensos totais, oxigénio dissolvido, carência bioquímica de oxigénio, oxidabilidade, fósforo total, ortofosfatos, metais (Al, B, Ba, Ca, Cd, Co, Cr, Cu, Fe, K, Mg, Mn, Na, Ni, Pb, Si, Ti, V e Zn) e aniões (F-, Cl-, Br-, NO3 -, PO4 2- e SO4 2-). Constatou-se a existência de degradação química da água subterrânea, possivelmente relacionada com descargas provenientes da fábrica de vidro e cristal. Os dados relativos à água superficial não permitiram relacionar a degradação química verificada com a presença de efluentes da indústria cerâmica, dadas as características heterogéneas apresentadas por este efluente. As águas analisadas apresentaram, contudo, valores elevados de alguns parâmetros teoricamente presentes em efluentes cerâmicos. Na água subterrânea foram identificados alguns elementos que podem constituir potencial risco para a saúde humana e ecossistemas, como o potássio, alumínio, manganês, níquel, chumbo e zinco, fluoretos e sulfatos. No caso da água superficial, esta não terá constituido um perigo para a saúde já que não era utilizada para consumo humano e apenas os parâmetros cloretos e alumínio excediam o V.M.R. imposto para águas de rega.
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Shape Memory Alloy (SMA) Ni-Ti films have attracted much interest as functional and smart materials due to their unique properties. However, there are still important issues unresolved like formation of film texture and its control as well as substrate effects. Thus, the main challenge is not only the control of the microstructure, including stoichiometry and precipitates, but also the identification and control of the preferential orientation since it is a crucial factor in determining the shape memory behaviour. The aim of this PhD thesis is to study the optimisation of the deposition conditions of films of Ni-Ti in order to obtain the material fully crystallized at the end of the deposition, and to establish a clear relationship between the substrates and texture development. In order to achieve this objective, a two-magnetron sputter deposition chamber has been used allowing to heat and to apply a bias voltage to the substrate. It can be mounted into the six-circle diffractometer of the Rossendorf Beamline (ROBL) at the European Synchrotron Radiation Facility (ESRF), Grenoble, France, enabling an in-situ characterization by X-ray diffraction(XRD) of the films during their growth and annealing. The in-situ studies enable us to identify the different steps of the structural evolution during deposition with a set of parameters as well as to evaluate the effect of changing parameters on the structural characteristics of the deposited film. Besides the in-situ studies, other complementary ex-situ characterization techniques such as XRD at a laboratory source, Rutherford backscattering spectroscopy(RBS), Auger electron spectroscopy (AES), cross-sectional transmission electron microscopy (X-TEM), scanning electron microscopy (SEM), and electrical resistivity (ER) measurements during temperature cycling have been used for a fine structural characterization. In this study, mainly naturally and thermally oxidized Si(100) substrates, TiN buffer layers with different thicknesses (i.e. the TiN topmost layer crystallographic orientation is thickness dependent) and MgO(100) single crystals were used as substrates. The chosen experimental procedure led to a controlled composition and preferential orientation of the films. The type of substrate plays an important role for the texture of the sputtered Ni-Ti films and according to the ER results, the distinct crystallographic orientations of the Ni-Ti films influence their phase transformation characteristics.
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Dissertação apresentada na Faculdade de Ciências e Tecnologia da Universidade Nova de Lisboa para obtenção do Grau de Mestre em Ensino da Matemática
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Co-deposition of nickel and cobalt was carried out on austenitic stainless steel (AISI 304) substrates by imposing a square waveform current in the cathodic region. The innovative procedure applied in this work allows creating a stable, fully developed, and open porous three-dimensional (3D) dendritic structure, which can be used as electrode for redox supercapacitors. This study investigates in detail the influence of the applied current density on the morphology, mass, and chemical composition of the deposited Ni-Co films and the resulting 3D porous network dendritic structure. The morphology and the physicochemical composition were studied by scanning electron microscopy (SEM), energy dispersive X-ray spectroscopy (EDS) and X-ray diffraction (W). The electrochemical behavior of the materials was evaluated by cyclic voltammetry (CV). The results highlight the mechanism involved in the coelectrodeposition process and how the lower limit current density tailors the film composition and morphology, as well as its electrochemical activity.
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Thesis submitted to the Faculdade de Ciências e Tecnologia to obtain the Master’s degree in Environmental Engineering, profile in Ecological Engineering
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Hospitals are considered as a special and important type of indoor public place where air quality has significant impacts on potential health outcomes. Information on indoor air quality of these environments, concerning exposures to particulate matter (PM) and related toxicity, is limited though. This work aims to evaluate risks associated with inhalation exposure to ten toxic metals and chlorine (As, Ni, Cr, Cd, Pb, Mn, Se, Ba, Al, Si, and Cl) in coarse (PM2.5–10) and fine (PM2.5) particles in a Portuguese hospital in comparison with studies representative of other countries. Samples were collected during 1 month in one urban hospital; elemental PM characterization was determined by proton-induced X-ray emission. Noncarcinogenic and carcinogenic risks were assessed according to the methodology provided by the United States Environmental Protection Agency (USEPA; Region III Risk-Based Concentration Table) for three different age categories of hospital personnel (adults, >20, and <65 years) and patients (considering nine different age groups, i.e., children of 1–3 years to seniors of >65 years). The estimated noncarcinogenic risks due to occupational inhalation exposure to PM2.5-bound metals ranged from 5.88×10−6 for Se (adults, 55–64 years) to 9.35×10−1 for As (adults, 20–24 years) with total noncarcinogenic risks (sum of all metals) above the safe level for all three age categories. As and Cl (the latter due to its high abundances) were the most important contributors (approximately 90 %) to noncarcinogenic risks. For PM2.5–10, noncarcinogenic risks of all metals were acceptable to all age groups. Concerning carcinogenic risks, for Ni and Pb, they were negligible (<1×10−6) in both PM fractions for all age groups of hospital personnel; potential risks were observed for As and Cr with values in PM2.5 exceeding (up to 62 and 5 times, respectively) USEPA guideline across all age groups; for PM2.5–10, increased excess risks of As and Cr were observed particularly for long-term exposures (adults, 55–64 years). Total carcinogenic risks highly (up to 67 times) exceeded the recommended level for all age groups, thus clearly showing that occupational exposure to metals in fine particles pose significant risks. If the extensive working hours of hospital medical staff were considered, the respective noncarcinogenic and carcinogenic risks were increased, the latter for PM2.5 exceeding the USEPA cumulative guideline of 10−4. For adult patients, the estimated noncarcinogenic and carcinogenic risks were approximately three times higher than for personnel, with particular concerns observed for children and adolescents.
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The most consumed squid species worldwide were characterized regarding their concentrations of minerals, fatty acids, cholesterol and vitamin E. Interspecific comparisons were assessed among species and geographical origin. The health benefits derived from squid consumption were assessed based on daily minerals intake and on nutritional lipid quality indexes. Squids contribute significantly to daily intake of several macro (Na, K, Mg and P) and micronutrients (Cu, Zn and Ni). Despite their low fat concentration, they are rich in long-chain omega-3 fatty acids, particularly docosahexaenoic (DHA) and eicosapentanoic (EPA) acids, with highly favorable ω-3/ω-6 ratios (from 5.7 to 17.7), reducing the significance of their high cholesterol concentration (140–549 mg/100 g ww). Assessment of potential health risks based on minerals intake, non-carcinogenic and carcinogenic risks indicated that Loligo gahi (from Atlantic Ocean), Loligo opalescens (from Pacific Ocean) and Loligo duvaucelii (from Indic Ocean) should be eaten with moderation due to the high concentrations of Cu and/or Cd. Canonical discriminant analysis identified the major fatty acids (C14:0, C18:0, C18:1, C18:3ω-3, C20:4ω-6 and C22:5ω-6), P, K, Cu and vitamin E as chemical discriminators for the selected species. These elements and compounds exhibited the potential to prove authenticity of the commercially relevant squid species.
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The ready biodegradability of four chelating agents, N,N -(S,S)-bis[1-carboxy-2-(imidazol-4-yl)ethyl]ethylenediamine (BCIEE), N - ethylenedi-L-cysteine (EC), N,N -bis (4-imidazolymethyl)ethylenediamine (EMI) and 2,6-pyridine dicarboxylic acid (PDA), was tested according to the OECD guideline for testing of chemicals. PDA proved to be a readily biodegradable substance. However, none of the other three compounds were degraded during the 28 days of the test. Chemical simulations were performed for the four compounds in order to understand their ability to complex with some metal ions (Ca, Cd, Co, Cu, Fe, Mg, Mn, Ni, Pb, Zn) and discuss possible applications of these chelating agents. Two different conditions were simulated: (i) in the presence of the chelating agent and one metal ion, and (ii) in the simultaneous presence of the chelating agent and all metal ions with an excess of Ca. For those compounds that were revealed not to be readily biodegradable (BCIEE, EC and EMI), applications were evaluated where this property was not fundamental or even not required. Chemical simulations pointed out that possible applications for these chelating agents are: food fortification, food process, fertilizers, biocides, soil remediation and treatment of metal poisoning. Additionally, chemical simulations also predicted that PDA is an efficient chelating agent for Ca incrustations removal, detergents and for pulp metal ions removal process.
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Dissertação apresentada para obtenção do Grau de Doutor em Bioquímica pela Universidade Nova de Lisboa, Faculdade de Ciências e Tecnologia
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The concerns on metals in urban wastewater treatment plants (WWTPs) are mainly related to its contents in discharges to environment, namely in the final effluent and in the sludge produced. In the near future, more restrictive limits will be imposed to final effluents, due to the recent guidelines of the European Water Framework Directive (EUWFD). Concerning the sludge, at least seven metals (Cd, Cr, Cu, Hg, Ni, Pb and Zn) have been regulated in different countries, four of which were classified by EUWFD as priority substances and two of which were also classified as hazardous substances. Although WWTPs are not designed to remove metals, the study of metals behaviour in these systems is a crucial issue to develop predictive models that can help more effectively the regulation of pre-treatment requirements and contribute to optimize the systems to get more acceptable metal concentrations in its discharges. Relevant data have been published in the literature in recent decades concerning the occurrence/fate/behaviour of metals in WWTPs. However, the information is dispersed and not standardized in terms of parameters for comparing results. This work provides a critical review on this issue through a careful systematization, in tables and graphs, of the results reported in the literature, which allows its comparison and so its analysis, in order to conclude about the state of the art in this field. A summary of the main consensus, divergences and constraints found, as well as some recommendations, is presented as conclusions, aiming to contribute to a more concerted action of future research. © 2015, Islamic Azad University (IAU).
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Three-dimensional (3D) nickel-copper (Ni-Cu) nanostructured foams were prepared by galvanostatic electrodeposition, on stainless steel substrates, using the dynamic hydrogen bubble template. These foams were tested as electrodes for the hydrogen evolution reaction (HER) in 8 M KOH solutions. Polarisation curves were obtained for the Ni-Cu foams and for a solid Ni electrode, in the 25-85 degrees C temperature range, and the main kinetic parameters were determined. It was observed that the 3D foams have higher catalytic activity than pure Ni. HER activation energies for the Ni-Cu foams were lower (34-36 kJ mol(-1)) than those calculated for the Ni electrode (62 kJ mol(-1)). The foams also presented high stability for HER, which makes them potentially attractive cathode materials for application in industrial alkaline electrolysers.
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Optically transparent cocatalyst film materials is very desirable for improved photoelectrochemical (PEC)oxygen evolution reaction (OER) over light harvesting photoelectrodes which require the exciting light to irradiate through the cocatalyst side, i.e., front-side illumination. In view of the reaction overpotential at electrode/electrolyte interface, the OER electrocatalysts have been extensively used as cocatalysts for PEC water oxidation on photoanode. In this work, the feasibility of a one-step fabrication of the transparent thin film catalyst for efficient electrochemical OER is investigated. The Ni-Fe bimetal oxide films, 200 nm in thickness, are used for study. Using a reactive magnetron co-sputtering technique, transparent(> 50% in wavelength range 500-2000 nm) Ni-Fe oxide films with high electrocatalytic activities were successfully prepared at room temperature. Upon optimization, the as-prepared bimetal oxide film with atomic ratio of Fe/Ni = 3:7 demonstrates the lowest overpotential for the OER in aqueous KOH solution, as low as 329 mV at current density of 2 mA cm 2, which is 135 and 108 mV lower than that of as-sputtered FeOx and NiOx thin films, respectively. It appears that this fabrication strategy is very promising to deposit optically transparent cocatalyst films on photoabsorbers for efficient PEC water splitting.