4 resultados para Nacl

em Repositório Científico do Instituto Politécnico de Lisboa - Portugal


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Neste trabalho estudou-se a lixiviação de um concentrado de sulfureto de zinco e a recuperação de Fe(III) de soluções sulfúricas por extracção líquido-líquido. Nos estudos de lixiviação utilizou-se o ião férrico (Sulfato de ferro ou cloreto de ferro) como agente oxidante e avaliaram-se os efeitos da razão sólido/líquido, concentração do ião Fe(III) e o tipo do meio (sulfúrico e clorídrico) na eficiência da lixiviação. Os resultados mostraram que para uma razão sólido/líquido de 5% foi possível lixiviar 48% de zinco e 15% do cobre em 2h de lixiviação com uma solução de 0,5 M H2SO4 e 0,11 Fe2(SO4) a 80°C. A lixiviação do cobre é favorecida em meio clorídrico onde cerca de 23% de cobre foi lixiviado, após 2h, com uma razão sólido/líquido de 20% e uma solução de 0,5 M FeCl3 2 M HCI e 1 M NaCl a 80°C, quando em meio sulfúrico tinha sido possível lixiviar apenas 6% deste metal. A realização de dois andares de lixiviação, sendo o primeiro em meio sulfúrico e o segundo em meio clorídrico, permitiu aumentar as taxas de lixiviação dos metais, tendo-se obtido um rendimento global de 45% de Zn e 23% de Cu nas seguintes condições experimentais: s/l=20% (p/v), T=80°C, v=350 rpm, 1º andar com [Fe2(SO4)3]=0,25 M; [H2SO4]=2 M e 2º andar com [FeCl3]=0,5 M; [HCl]=2 M; [NaCl]=1 M. Nos estudos de extracção líquido-líquido para a recuperação de Fe(III) de meios sulfúricos utilizam-se misturas de extractantes, i.e. um ácido organofosforado (lonquest ou DEHPA) com uma amina primária (JMT). Foi ainda, testada a presença de um modificador (isotridecanol) no solvente. As várias misturas revelaram uma elevada afinidade para o ferro na gam de PH’s 1,04 a 1,74 e elevada selectividade para a separação ferro/zinco. Os factores de separação Fe/Zn atingem valores na gama 1000-8000, sendo favorecidos pelas elevadas concentrações de ferro na fase orgânica. A presença de modificador no solvente dificultou a extracção de ferro da fase aquosa mas favoreceu a respectiva reextracção da fase orgânica carregada que foi efectuada com uma solução 50 g/L de H2SO4. Na etapa final deste trabalho, aplicou-se a extracção líquido-líquido para a remoção de Cu e Fe duma líxvia obtida por lixiviação sulfúrica do concentrado de sulfureto de zinco. Numa primeira etapa extraiu-se todo o cobre da lixívia com a aldoxima Acorga M5640(10%(v/v)). Em seguida, traçou-se a isotérmica para a extracção de Fe(III) da lixívia utilizando DEHPA(20%(v/v)/JMT(10%(v/v)) com (20%(v7v)) e sem 2-octanol. Os resultados obtidos mostram que ambos os sistemas podem ser utilizados na extracção do fero do meio sulfúrico.

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Nanofiltration process for the treatment/valorisation of cork processing wastewaters was studied. A DS-5 DK 20/40 (GE Water Technologies) nanofiltration membrane/module was used, having 2.09 m(2) of surface area. Hydraulic permeability was determined with pure water and the result was 5.2 L.h(-1).m(-2).bar(-1). The membrane presents a rejection of 51% and 99% for NaCl and MgSO4 salts, respectively. Two different types of regimes were used in the wastewaters filtration process, total recycling mode and concentration mode. The first filtration regime showed that the most favourable working transmembrane pressure was 7 bar working at 25 degrees C. For the concentration mode experiments it was observed a 30% decline of the permeate fluxes when a volumetric concentration factor of 5 was reached. The permeate COD, BOD5, colour and TOC rejection values remained well above the 90% value, which allows, therefore, the concentration of organic matter (namely the tannin fraction) in the concentrate stream that can be further used by other industries. The permeate characterization showed that it cannot be directly discharged to the environment as it does not fulfil the values of the Portuguese discharge legislation. However, the permeate stream can be recycled to the process (boiling tanks) as it presents no colour and low TOC (< 60 ppm) or if wastewater discharge is envisaged we have observed that the permeate biodegradability is higher than 0.5, which renders conventional wastewater treatments feasible.

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The assessment of surface water nanofiltration (NF) for the removal of endocrine disruptors (EDs) Nonylphenol Ethoxylate (IGEPAL), 4-Nonylphenol (NP) and 4-Octylphenol (OP) was carried out with three commercial NF membranes - NF90, NF200, NF270. The permeation experiments were conducted in laboratory flat-cell units of 13.2 x 10(-4) m(2) of surface area and in a DSS Lab-unit M20 with a membrane surface area of 0.036 m2. The membranes hydraulic permeabilities ranged from 3.7 to 15.6 kg/h/m(2)/bar and the rejection coefficients to NaCl, Na2SO4 and Glucose are for NF90: 97%, 99% and 97%, respectively; for NF200: 66%, 98% and 90%, respectively and for NF270: 48%, 94% and 84%, respectively. Three sets of nanofiltration experiments were carried out: i) NF of aqueous model solutions of NP, IGEPAL and OP running in total recirculation mode; ii) NF of surface water from Rio Sado (Settibal, Portugal) running in concentration mode; iii) NF of surface water from Rio Sado inoculated with NP, IGEPAL and OP running in concentration mode. The results of model solutions experiments showed that the EDs rejection coefficients are approximately 100% for all the membranes. The results obtained for the surface water showed that the rejection coefficients to natural organic Matter (NOM) are 94%, 82% and 78% for NF90, NF200 and NF 270 membranes respectively, with and without inoculation of EDs. The rejection coefficients to EDs in surface water with and without inoculation of EDs are 100%, showing that there is a fraction of NOM of high molecular weight that retains the EDs in the concentrate and that there is a fraction of NOM of low molecular weight that permeates through the NF membranes free of EDs.

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YAP4, a member of the yeast activator protein (YAP) gene family, is induced in response to osmotic shock in the yeast Saccharomyces cerevisiae. The null mutant displays mild and moderate growth sensitivity at 0.4 M and 0.8 M NaCl respectively, a fact that led us to analyse YAP4 mRNA levels in the hog1 (high osmolarity glycerol) mutant. The data obtained show a complete abolition of YAP4 gene expression in this mutant, placing YAP4 under the HOG response pathway. YAP4 overexpression not only suppresses the osmosensitivity phenotype of the yap4 mutant but also relieves that of the hog1 mutant. Induction, under the conditions tested so far, requires the presence of the transcription factor Msn2p, but not of Msn4p, as YAP4 mRNA levels are depleted by at least 75% in the msn2 mutant. This result was further substantiated by the fact that full YAP4 induction requires the two more proximal stress response elements. Furthermore we find that GCY1, encoding a putative glycerol dehydrogenase, GPP2, encoding a NAD-dependent glycerol-3-phosphate phosphatase, and DCS2, a homologue to a decapping enzyme, have decreased mRNA levels in the yap4 -deleted strain. Our data point to a possible, as yet not entirely understood, role of the YAP4 in osmotic stress response.