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Antimony and acetaldehyde migration from Nigerian and British PET bottles into water and soft drinks under typical use conditions : concentration of migrants and some trace elements in polyethylene terephthalate and in bottled contentsTukur, Aminu January 2011 (has links)
Also aged bottles are safer to use than new bottles because their chemical leaching was found to be lower than that of new bottles. This study recommends the reassessment of the absence of international guidelines for acetaldehyde in water and foods. The study also recommends that the amount of acetaldehyde that can be added to soft drinks as flavouring agent should be below the specific migration limit (SML) for migration of acetaldehyde from PET bottle into bottle contents. This is essential since the SML was designed to ensure that exposure to acetaldehyde, as a result of intake of bottled water and soft drinks in PET bottles, is below the tolerable daily intake (TDI) for acetaldehyde. As antimony was reported to go beyond the safe limits in some Nigerian bottled water and soft drinks after 11 months of storage this study discourages the use of bottle contents stored for a very long time.
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Effect of Tris, MOPS, and phosphate buffers on the hydrolysis of polyethylene terephthalate films by polyester hydrolasesSchmidt, Juliane, Wei, Ren, Oeser, Thorsten, Belisário-Ferrari, Matheus Regis, Barth, Markus, Then, Johannes, Zimmermann, Wolfgang 21 July 2016 (has links) (PDF)
The enzymatic degradation of polyethylene terephthalate (PET) occurs at mild reaction conditions and may find applications in environmentally
friendly plastic waste recycling processes. The hydrolytic activity of the
homologous polyester hydrolases LC cutinase (LCC) from a compost
metagenome and TfCut2 from Thermobifida fusca KW3 against PET films
was strongly influenced by the reaction medium buffers tris(hydroxymethyl)aminomethane (Tris), 3-(N-morpholino)propanesulfonic acid (MOPS), and sodium phosphate. LCC showed the highest initial hydrolysis rate of PET films in 0.2 M Tris, while the rate of TfCut2 was 2.1-fold lower at this buffer concentration. At a Tris concentration of 1 M, the hydrolysis rate of LCC decreased by more than 90% and of TfCut2 by about 80%. In 0.2 M MOPS or sodium phosphate buffer, no significant differences in the maximum initial hydrolysis rates of PET films by both enzymes were detected. When the concentration of MOPS was increased to 1 M, the hydrolysis rate of LCC decreased by about 90%. The activity of TfCut2 remained low compared to the increasing hydrolysis rates observed at higher concentrations of sodium phosphate buffer. In contrast, the activity of LCC did not change at different concentrations of this buffer. An inhibition study suggested a competitive inhibition of TfCut2 and LCC by Tris and MOPS. Molecular docking showed that Tris and MOPS interfered with the binding of the polymeric substrate in a groove located at the protein surface. A comparison of the Ki values and the average binding energies indicated MOPS as the stronger inhibitor of the both enzymes.
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Utilização do Politereftalato de Etileno (PET) para confecção de componentes protéticos e cápsulas para overdentures - propriedades físicas, mecânicas e morfológicas, submetidos a envelhecimento artificial / Use of the Polyethylene Terephthalate (PET) for the preparation of prosthetic components and capsules for overdentures - physical, mechanical and morphological properties, submitted to artificial agingSilva, Geyson Galo da 18 January 2018 (has links)
A qualidade dos procedimentos clínicos realizados na prática odontológica está intimamente ligada às propriedades dos materiais e tecnologias aplicadas à reabilitação oral. No caso das overdentures, uma falta de retenção entre a prótese e o implante pode ocorrer pelo excesso de fadiga das cápsulas que os conectam. Isso leva a um insucesso no tratamento e perda de função, reduzindo a durabilidade e qualidade de vida dos pacientes. Diante dessa problemática o presente estudo propôs um novo material que seja capaz de solucionar ou minimizar este problema, visando uma longevidade do tratamento reabilitador. O objetivo desse trabalho foi comparar um material inédito na odontologia com os já existentes, na confecção de cápsulas para retenção de overdenture, antes e após o envelhecimento artificial por termociclagem (10.000 ciclos = 1 ano clínico). O material estudado foi o Politereftalato de Etileno (PET) que vem se demonstrando um material promissor para tal função devido a sua biocompatibilidade e suas características físicas e mecânicas. O PET foi comparado com poliacetal, polietileno e teflon já utilizados para esta função (n=20). Os materiais foram submetidos aos ensaios resistência à compressão, rugosidade e dureza superficial, resistência à fadiga, arrancamento, resistência de união e análise em estereomicroscópio e microscopia eletrônica de varredura. Para responder aos objetivos do estudo foram utilizadas, além de técnicas básicas de análise exploratória como média, mediana, desvio padrão e intervalo de confiança para média (IC 95%), a análise inferencial de comparação de média de ANOVA Two-Way com Medidas Repetidas. Houve influência do envelhecimento artificial apenas na variável fadiga, em todos os tempos analisados. Em relação a rugosidade o PET (0,9168) apresentou as menores médias, juntamente com o Poliacetal (0,5160) (p=0,001). Para Dureza superficial não houve diferença entre os grupos. Na Resistência à Compressão o Poliacetal (109,88) apresentou os maiores valores de tensão, não havendo diferença estatisticamente significante do PET(101,02)(p=0,003). No ensaio de arrancamento PET (484,4) e Poliacetal (443,7) apresentaram os maiores valores de força máxima (p=0,033). Em relação a Fadiga PET e Poliacetal apresentaram os maiores valores em todos os tempos analisados (p<0,001). Através da análise por estereomicroscopia, o padrão de fratura do Poliacetal e PET foi coesiva, os demais foram adesiva. Pela microscopia eletrônica de varredura, não foi observado alteração de superfície apenas pelo Polietileno. Conclui-se que o PET apresentou ótimos resultados para as variáveis propostas, sugerindo seu uso para confecção de componentes protéticos / The quality of clinical procedures performed in dental practice is closely linked to the properties of materials and technologies applied to oral rehabilitation. In the case of overdentures, a lack of retention between the prosthesis and the implant can occur due to the excess fatigue of the capsules that connect them. This leads to unsuccessful treatment and loss of function, reducing the durability and quality of life of patients. Faced with this problem, the present study proposed a new material that is capable of solving or minimizing this problem, aiming at a longevity of the rehabilitation treatment. The objective of this study was to compare a new material in dentistry with existing ones, in the manufacture of capsules for retention of overdenture, before and after artificial aging by thermocycling (10,000 cycles = 1 year clinical).The material studied was polyethylene terephthalate (PET), which has been shown to be a promising material for this function due to its biocompatibility and its physical and mechanical characteristics. PET was compared with polyacetal, polyethylene and teflon already used for this function (n=20). The materials were submitted to the tests of compressive strength, roughness and surface hardness, fatigue strength, pullout, bond strength and stereomicroscopic analysis and scanning electron microscopy. In order to respond to the objectives of the study, we used, besides basic exploratory analysis techniques such as mean, median, standard deviation and confidence interval for mean (95% CI), the inferential analysis of the comparison of mean two-way ANOVA with Repeated Measurements . There was influence of artificial aging only on the variable fatigue, at all times analyzed. In relation to the roughness, the PET (0,9168) presented the lowest averages, together with the Polyacetal (0,5160) (p = 0.001). For superficial hardness there was no difference between the groups. In the Compression Resistance the polyacetal (109,88) had the highest values of tension, and there was no statistically significant difference of PET (101,02) (p= 0.003). The PET (484,4) and polyacetal (443,7) tear test the highest values of maximum strength were found (p = 0.033). In relation to PET Fatigue and Polyacetal presented the highest values in all times analyzed (p <0.001). Through stereomicroscopy analysis, the fracture pattern of Polyacetal and PET was cohesive, the others were adhesive. By scanning electron microscopy, no surface change was observed only by Polyethylene. It is concluded that PET presented excellent results for the proposed variables, suggesting its use for the preparation of prosthetic components
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Studies On Atmospheric Glow Discharge For Surface Modification ApplicationsAnand, Venu 01 1900 (has links)
The properties of materials, especially of solids, can be attributed mainly to the phenomena occurring at the surface. Surface engineering deals with altering the surface properties of materials to realize useful functionalities like wear and corrosion resistance, biocompatibility, hardening etc. Among the various methods adopted, plasma surface modification stands out, because of the inherent dry processing nature and little amount of left over chemicals. In conventional plasma systems, the process is carried out in a low pressure environment. This restricts its use in treating vacuum incompatible materials including tissues and bio-medical samples. Moreover, the batch processing nature and use of expensive vacuum pumps put a bottle-neck in the throughput of any production line. The subject matter of this thesis is about developing and optimizing an atmospheric pressure (760 torr) plasma system and to use it for surface modification of polymers.
The experimental system developed, consists of two parallel electrodes facing each other, each of which is covered with a dielectric plate. A gap of 4mm exists between the dielectric surfaces, through which an axial flow of the working gas is maintained. When a high voltage is applied across the electrodes, the gas breaks down, creating plasma. The surface of the sample kept in this plasma, undergoes various phenomena, depending on the power applied, type of gas used and gas flow rate. To drive the plasma a high voltage power supply, which is able to generate 10 kV at 5.8 kHz, was developed in the laboratory. By varying the process parameters, the inherent filamentary nature of discharge can be converted to a diffuse uniform glow. The purity of plasma was studied and established by analyzing the optical emission from the plasma. After optimizing the system, it was used to modify the surface properties of polyester sheets. The wetting nature was altered using fluorocarbon and oxygen plasmas, realizing hydrophobic and hydrophilic surfaces. The contact angle of a water droplet made with the surface changed from 72° to 84° degree for hydrophobic and to 22° for hydrophilic surfaces respectively.
Through this investigation, an insight to the procedure for developing an Atmospheric glow discharge system was developed. The details about system frame work, the power supply, electrical and optical characterization of the plasma, are well studied and recorded. The work establishes the various parameters to be varied to convert the filamentary discharge to a uniform glow. Purity of the plasma has been studied extensively and the system design and process values essential for maintaining the purity have been dealt with. Finally the plasma was put in use for surface modification of polymers, and the surface wetting nature alteration was studied and quantified.
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Efeito da adi??o do poli(etileno acrilato de metila) (ema) e da fibra de linter de algod?o nas propriedades do poli(tereftalato de etileno) reciclado (petrec)Pereira, Laurenice Martins 28 December 2014 (has links)
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Previous issue date: 2014-12-28 / Coordena??o de Aperfei?oamento de Pessoal de N?vel Superior / The development of new materials to fill the demand of technological advances is
a challenge for many researchers around the world. Strategies such as making
blends and composites are promising alternatives to produce materials with
different properties from those found in conventional polymers. The objective of
this study is to evaluate the effect of adding the copolymer poly(ethylene methyl
acrylate) (EMA) and cotton linter fibers (LB) on the properties of recycled
poly(ethylene terephthalate) (PETrec) by the development of PETrec/EMA blend
and PETrec/EMA/LB blend composite. In order to improve the properties of these
materials were added as compatibilizers: Ethylene - methyl acrylate - glycidyl
methacrylate terpolymer (EMA-GMA) and maleic anhydride grafted polyethylene
(PE-g-MA). The samples were produced using a single screw extruder and then
injection molded. The obtained materials were characterized by
thermogravimetry (TG), melt flow index (MFI) mensurements, torque rheometry,
pycnometry to determinate the density, tensile testing and scanning electron
microscopy (SEM). The rheological results showed that the addition of the EMA
copolymer increased the viscosity of the blend and LB reduces the viscosity of
the blend composite. SEM analysis of the binary blend showed poor interfacial
adhesion between the PETrec matrix and the EMA dispersed phase, as well as
the blend composite of PETrec/EMA/LB also observed low adhesion with the LB
fiber. The tensile tests showed that the increase of EMA percentage decreased
the tensile strength and the Young s modulus, also lower EMA percentage
samples had increased the elongation at break. The blend composite showed an
increase in the tensile strength and in the Young`s modulus, and a decrease in
the elongation at break. The blend formulations with lower EMA percentages
showed better mechanical properties that agree with the particle size analysis
which showed that these formulations presented a smaller diameter of the
dispersed phase. The blend composite mechanical tests showed that this
material is stronger and stiffer than the blend PETrec/EMA, whose properties have
been reduced due to the presence of EMA rubbery phase. The use of EMA-GMA
was effective in reducing the particle size of the EMA dispersed phase in the
PETrec/EMA blend and PE-g-MA showed evidences of reaction with LB and
physical mixture with the EMA / O desenvolvimento de novos materiais para atender as necessidades dos
avan?os tecnol?gicos ? um desafio enfrentado por pesquisadores de todo o
mundo. No que diz respeito aos materiais polim?ricos, estrat?gias como a
confec??o de blendas e comp?sitos s?o alternativas promissoras para atender a
demanda por materiais com propriedades diferentes das encontradas nos
pol?meros convencionais. O objetivo deste trabalho ? avaliar o efeito da adi??o
do copol?mero poli(etileno-acrilato de metila) (EMA) e da fibra de linter de
algod?o (LB) nas propriedades do poli(tereftalato de etileno) reciclado (PETrec).
Para isto, foram desenvolvidos a blenda PETrec/EMA e o comp?sito da blenda
PETrec/EMA/LB. Com o intuito de melhorar as propriedades destes materiais
foram adicionados agentes compatibilizantes: terpol?mero etileno-acrilato de
metila-metacrilato de glicidila (EMA-GMA) e o polietileno enxertado com anidrido
mal?ico (PE-g-MA). As misturas foram produzidas por meio de uma extrusora
monorosca e, em seguida, moldados por inje??o. As caracteriza??es realizadas
foram termogravimetria (TG), medida de ?ndice de fluidez (MFI), reometria de
torque, determina??o da densidade por picnometria, ensaio de tra??o uniaxial e
microscopia eletr?nica de varredura (MEV). Os resultados reol?gicos mostraram
que a adi??o do copol?mero EMA aumentou a viscosidade da mistura e o LB
reduziu a viscosidade da blenda PETrec/EMA. A an?lise por MEV da blenda
bin?ria mostrou baixa ades?o interfacial entre a matriz de PETrec e a fase
dispersa de EMA, assim como no comp?sito da blenda PETrec/EMA/LB, tamb?m
observou-se uma baixa ades?o com a fibra de LB. Os ensaios de tra??o
mostraram que o aumento da porcentagem de EMA diminuiu a resist?ncia
m?xima e o m?dulo de elasticidade, e, para as formula??es com menor
porcentagem de EMA verificou-se um aumento do alongamento na ruptura. O
comp?sito da blenda apresentou um aumento na resist?ncia m?xima e no
m?dulo de elasticidade, e uma redu??o no alongamento de ruptura. As
formula??es da blenda com menores porcentagens de EMA apresentaram
propriedades mec?nicas melhores, que corrobora com as an?lises de tamanho
de part?cula que mostraram que estas formula??es apresentaram menor
di?metro m?dio de fase dispersa. Os resultados de ensaios mec?nicos do
comp?sito da blenda mostraram que essa mistura resultou em um material com maior resist?ncia mec?nica e rigidez do que a blenda PETrec/EMA, cujas
propriedades foram reduzidas em fun??o da fase borrachosa EMA. O uso do
EMA-GMA foi eficiente na redu??o do tamanho de part?culas da fase dispersa do
EMA na blenda PETrec/EMA e o PE-g-MA apresentou ind?cio de rea??o com o
LB e mistura f?sica com o EMA
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Utilização do politereftalato de etileno (PET) em misturas asfálticas.SILVA, José de Arimatéia Almeida e. 05 June 2018 (has links)
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Previous issue date: 2015-06-26 / Capes / A adição do resíduo de Politereftalato de Etileno (PET) em Cimentos Asfálticos de Petróleo (CAP), triturados em partículas cujo diâmetro está entre 0,6 e 0,074 mm, pode ser uma alternativa técnica viável para melhorar as propriedades mecânicas e reológicas das misturas asfálticas. Esta adição tem como finalidade proporcionar uma menor susceptibilidade das misturas asfálticas a fadiga e, conseqüentemente
aumentar a vida útil de revestimentos asfálticos em regiões com clima tropical e a temperaturas elevadas. Este trabalho tem como objetivo principal a incorporação de um aditivo no Cimento Asfáltico de Petróleo. A adição de PET foi realizada em proporções de 4%, 5% e 6% relativas ao peso do teor de CAP ótimo e mensuradas as propriedades volumétricas e mecânicas. Além disso foram realizados análises físicas e reológicas do CAP puro e modificado. De acordo com os resultados obtidos nesta pesquisa pode -se inferir que o PET micronizado pós consumo corresponde a um polímero melhorador das propriedades reológicas do CAP 50/70, em termos de rigidez, proporcionado a mistura asfáltica um incremento no comportamento mecânico a luz dos ensaios de Resistência à Tração por Compressão Diametral, Módulo de Resiliência, Resistência por Umidade Induzida, Flow Number e Ruptura por Fadiga. É possível aceitar
que “o resíduo do PET micronizado, no teor de 5% pode ser utilizado como agente modificador do CAP e, que o mesmo e capaz de promover ganhos nas Propriedades Mecânicas de Revestimentos Asfálticos. / The addition of polyethylene terephthalate (PET) waste in binder, crushed into particles whose diameter is between 0.074 and 0.6 mm, may be a viable alternative technique to improve the mechanical and rheological properties of asphalt mixtures . This addition is intended to provide a lower susceptibility of fatigue in asphalt mixtures and consequently improve the durability of asphalt mixtures in regions with tropical climate and high temperatures. This work has the objective the incorporation of an additive in
binder. It was add in proportions of 4% 5% and 6% relative to the weight of the optimum binder content and it was measured volumetric and mechanical properties of asphalt mixtures. Also performed were physical and rheological analysis of pure and modified binder. According to the results obtained in this study can be inferred that the micronized PET improve the performance of binder 50/70. The addition of PET provided an increase in the mechanical behavior in the Indirect Tensile Strength, Resilient Modulus,
Moisture susceptibility, Flow Number and Fatigue life. It is possible to accept that the use of 5% micronized PET waste may be used as modifying agent of binder, and that it improve mechanical properties of asphalt mixtures.
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Avaliação do desempenho de misturas asfálticas porosas modificadas com politereftalato de etileno (PET)Queiroz, Bismak Oliveira de 30 September 2016 (has links)
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Previous issue date: 2016-09-30 / Coordenação de Aperfeiçoamento de Pessoal de Nível Superior - CAPES / The accumulated water on pavement surfaces is one of the factors responsible for the occurrence of traffic accidents, as it reduces the tire-pavement interface friction. The use of porous asphalt mixtures can increase road safety because it increases the adherence between a vehicle's tires and the pavement, especially in a wet highway, owing to its high drainage capacity. Accordingly, this research had the purpose of analyzing the use of polyethylene terephthalate (PET) waste as an alternative of additives to porous asphalt mixtures. The work method consisted of materials characterization, determination of the optimum binder content, production of three kinds of asphalt mixtures (conventional, with the addition of PET, and with polymer asphalt) and the performance of draindown tests, moisture susceptibility, resilient modulus, flow number, fatigue test, permeability to the asphalt mixtures, in their respective optimum binder contents. The PET was added to the mixtures by a dry process in the proportions of: 0; 0,33; 0,5; 0,75 e 1% regarding to the weight of the aggregates. The asphalt mixtures with polymer asphalt were taken as reference. Considering the mixtures design, additions of 0,75% PET up carried out the lowest optimum binder content. Besides that, the addition of PET contributed for a binder draindown inhibition and improved the mixtures performance regarding to moisture susceptibility. The PET additivated mixtures presented an increasing in the resilient modulus and a tendency of a longer fatigue life at low tension levels and high number of load applications. However, the mixtures are susceptible to rutting, even though presenting stiffening. Concerning to permeability, the execution of only one test became inconclusive. Although, it was verified that PET can present viability of being used as additive porous asphalt mixtures. / A água acumulada sobre a superfície do pavimento é uma das responsáveis pela ocorrência de acidentes em rodovias, por reduzir o atrito na interface pneu-pavimento. A adoção de misturas asfálticas porosas pode aumentar a segurança viária, pois seu uso favorece a aderência entre os pneus dos veículos e o pavimento, especialmente em pista molhada, tendo em vista a sua alta capacidade de drenagem. Diante disso, esta pesquisa objetivou analisar o uso de resíduos de politereftalato de etileno (PET) como aditivo para misturas asfálticas porosas. O método de trabalho consistiu na realização de ensaios de caracterização dos materiais utilizados, determinação do teor de projeto de ligante asfáltico, confecção de três tipos de misturas asfálticas (convencional, com adição de PET e com asfalto polímero) e realização de ensaios de escorrimento, dano por umidade induzida, módulo de resiliência, deformação permanente, vida de fadiga e permeabilidade para as misturas asfálticas, em seus respectivos teores de projeto de ligante asfáltico. A adição de PET nas misturas foi realizada via processo seco nas proporções 0,00; 0,33; 0,50; 0,75 e 1,00% em relação ao peso dos agregados. As misturas asfálticas com asfalto modificado por polímero foram tomadas como referência, tendo em vista a preferência do uso desse tipo de ligante em misturas porosas. Em termos de dosagem, adições de PET em até 0,75% resultaram na redução do teor de projeto de ligante asfáltico. Além disso, o PET contribuiu para a inibição do escorrimento do ligante e favoreceu o desempenho das misturas em relação ao dano por umidade induzida. As misturas aditivadas com PET apresentaram um aumento no módulo de resiliência e uma tendência de maior vida de fadiga para baixos níveis de tensões e elevadas repetições de carga. Porém, mostraram-se suscetíveis à deformação permanente, mesmo tendo apresentado um maior enrijecimento. Quanto a permeabilidade, é necessário a realização de mais ensaios de modo a garantir uma melhor confiabilidade nos resultados. De todo modo, pôde-se verificar que o PET pode apresentar viabilidade de ser utilizado como aditivos em misturas asfálticas porosas.
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Síntese de catalisadores utilizando garrafa pet para a produção de biodiesel. / Synthesis of PET bottle using catalysts for biodiesel productionSouza, Juliana Kelly Dionízio de 17 September 2012 (has links)
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Previous issue date: 2012-09-17 / Coordenação de Aperfeiçoamento de Pessoal de Nível Superior - CAPES / The heterogeneous catalysis is a promising alternative to solve the environmental problems found in homogeneous catalysis, because it allows the continuous use of the catalyst until its deactivation and minimizes the generation of effluents. Thus, this work aims to synthesize, optimize and evaluate the activity of heterogeneous catalysts, using PET bottles as a starting material in the synthesis of the active phase and SiO2 as catalyst support for the transesterification reaction of soybean oil. The the catalysts were obtained by a impregnating reaction using methanol. The active phase, the catalysts and catalyst support were characterized by X-ray diffraction (XRD), infrared (IR), Raman spectroscopy, scanning electron microscopy (SEM) and EDS, thermal analysis (TG) and measurement surface area (BET). The biodiesels has been synthesized using a molar ratio of 1:9 (soybean oil: methanol), 0,1 g of active phase as catalyst (room temperature) and 1,2 g of the catalysts synthesized at 75 °C, where its kinematic viscosities were measurements. All catalysts were effective in the synthesis of biodiesel because the viscosity reduction of soybean oil used was very significant, indicating that may have occurred the transesterification process, among all biodiesels synthesized the catalyst that stood out was the 30%-K2CO3/70% SiO2, which was obtained greater viscosity reduction at a lower reaction time. The quality tests were made for 1h Bio-30%, which proved be inside the parameters established by the Agência Nacional de Patróleo (ANP). The experiment reuse of the catalyst used in the synthesis of Bio-1h 30%, showed that the catalytic activity is reduced due to possible leaching phenomenon, then preliminary studies have been proposed to study the possible leaching of the active phase. / A catálise heterogênea é uma alternativa promissora para resolver os problemas ambientais encontrados na catálise homogênea, pois permite o uso continuo do catalisador até sua desativação e minimiza a geração de efluentes. Neste sentido, este trabalho visa em sintetizar, otimizar e avaliar a atividade de catalisadores heterogêneos, utilizando a garrafa PET pós-consumo como matéria prima na síntese da fase ativa e SiO2 como suporte catalítico para a reação de transesterificação com óleo de soja. Os catalisadores foram obtidos pela o método de impregnação utilizando o metanol como solvente. A fase ativa, os catalisadores e o suporte catalítico foram caracterizados por difração de raios-X (DRX), espectroscopia na região do infravermelho (IV), espectroscopia Raman, microscopia eletrônica de varredura (MEV) e EDS, análise térmica (TG), e medida de área superficial (BET). Os biodieseis foram sintetizados utilizando uma razão molar de 1:9 (óleo de soja: metanol), 0,1 g da fase ativa como catalisador a temperatura ambiente e 1,2 g dos catalisadores sintetizados a 75 °C, onde suas viscosidades cinemáticas foram medidas. Todos os catalisadores foram efetivos na síntese do biodiesel, pois promoveu a redução de viscosidade do óleo de soja utilizado, no qual mostrou um indicativo que a reação de transesterificação ocorreu, dentre todos os biodieseis sintetizados o catalisador que mais se destacou foi o 30%-K2CO3/70%-SiO2, onde obteve-se a maior redução de viscosidade com um menor tempo reacional. Os testes de qualidade foram feitos para o Bio 1h-30%, o qual mostrou estar dentro dos parâmetros estabelecidos pela Agência Nacional de Petróleo (ANP). O experimento de reuso do catalisador utilizado na síntese do Bio 1h-30%, mostrou que a atividade catalítica é reduzida devido ao possível fenômeno de lixiviação, então estudos preliminares foram propostos para estudar a possível lixiviação da fase ativa.
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Experimental and Numerical Study of Orthotropic MaterialsPulicherla, Yashpal Surendhar Goud, Kesana, Ramkiran January 2017 (has links)
In current enterprises, simulations are being utilized to lessen the cost of product advancement. Along this line, there is an awesome enthusiasm for enhancing precision and accuracy of simulations. For an accurate and reliable simulation, it is essential to use an accurate material model and provide it with accurate material information. In exhibit industries, orthotropic materials are being simulated utilizing isotropic material model, as orthotropic material model requires more material data which is not promptly accessible. This proposal intends to test and identify orthotropic materials and simulate them using orthotropic material model in ABAQUS. Materials utilized as a part of this proposal are Aluminium, LDPE, PET. Required material data was gotten by performing Uni-directional tensile tests, DIC, and an algorithm we developed in light of Inverses method. To get highly accurate material data from DIC, a few kinds of patterns were examined, and a superior pattern was resolved for camera configuration being utilized.
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Etude du vieillissement thermique à long terme du PET : application à l'isolation électrique dans des disjoncteurs haute tension / Analysis of PET properties after thermal aging : application to insolators for high voltage-gas insulated substationBouti, Salima 29 March 2011 (has links)
Les isolateurs diélectriques utilisés dans les disjoncteurs haute tension développés par Areva, sont fabriqués à partir du PET (polyéthylène téréphtalate). Ce polymère semi-cristallin a remplacé, depuis quelques années, les résines époxy. Il a été choisi pour ses propriétés mécaniques et diélectriques, mais surtout pour sa recyclabilité. Le souci dans cette application, concerne l’évolution dans le temps de ses caractéristiques sachant les contraintes d’application. En effet, dans les conditions de travail, les isolateurs maintiennent des conducteurs électriques. Les pertes thermiques affectent certaines zones pouvant atteindre, voire dépasser, la température de transition vitreuse du matériau [70-80°C]. Par conséquence, les pièces isolatrices subissent un phénomène de vieillissement qui nécessite un suivi dans le temps afin d’étudier l’évolution de leur caractéristiques Dans ce contexte, nous avons étudié le vieillissement thermique du PET. Ainsi des échantillons ont été mis dans des étuves sous vide, chacune réglée à une température : 60, 80, 115 et 125°C pendant différentes durées (jusqu’à 12 mois de vieillissement), puis retirés et testés au fur et à mesure du vieillissement. Différentes techniques ont été employées pour analyser les propriétés du semi-cristallin en question, i.e. l’étude calorimétrique différentielle (DSC), les diffractions aux rayons X aux grands et petits angles (WAXS/SAXS). L’analyse thermomécanique (DMA) et finalement les essais de traction.Les résultats de DSC révèlent une augmentation du taux de cristallinité. Les analyses thermomécaniques ont montré une faible augmentation du module de Young qui pourrait être le résultat d’une évolution de la cristallisation. Les températures de fusion sont restées quasiment stables, par contre une augmentation des températures de transition vitreuse a été remarquée. Les analyses des spectres de diffraction aux rayons X aux grands angles, ont confirmé la croissance du taux de cristallinité. En outre les longues périodes calculées, diminuent. Nous avons ainsi vérifié l’apparition de cristallites dans phase amorphe. Par ailleurs un comportement de fragilité continue en fonction du temps et de la température du vieillissement, a été constaté. Les observations au MEB ont révélé la présence d’une importante quantité de particules supposées être des agents nucléants (talc, SiO2, MgO…) / For insulating application, AREVA has chosen PET (polyethylene terephthalate) to substitute the epoxy resin as material for insulators in High Voltage Gas Insulated Substation. The main problem of this application is the fact that in operating conditions, the temperature of the PET plates would reach even exceed its glass transition [70°C-80°C]. The material undergoes aging phenomena which affect the temperature-dependent properties. The current investigation aims at observing and analyzing the gradual evolution of the mechanical, morphological and dielectric properties during thermal aging. To reach this goal, semi crystalline PET samples have been aged under vacuum at different temperatures i.e. 60°C, 80°C, 115°C and 125°C for various periods of time (until 12 months). The characterizations have been performed using several techniques: Differential scanning calorimetric (DSC), wide and small angle X-ray scattering (WAXS/SAXS), thermo-mechanical analysis (DMA), tensile test and morphological observation.The DSC measurements show that the crystallinity ratio increases with temperature and time of aging. The glass transition has increased. However no significant changes have been seen on the melting temperature. The DMA results agree with the DSC measurement in so far as it has revealed an expected increase of the Young modulus for all the samples studied. Significant differences have been observed using X-ray scattering: while the crystallinity ratio did increase, the long period has decreased specially for the case of aging at 115 and 125°C. The DMA measurements showed an almost stable glass transition around 80°C but an increase for samples aged at 125°C. When the samples have been subjected to the tensile test, a significant brittleness rise has been noticed. In addition, the SEM has revealed the presence of important amount of nucleant agent (talc, SiO2, MgO …)
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