999 resultados para Biodiesel. Transesterificação. Estabilidade Oxidativa. P-DSC.Rancimat
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Esta Dissertação de Mestrado tem por finalidade apresentar a Análise da Estabilidade de Um Corte Ferroviário e Proposta de Solução para Estabilização de Taludes de um segmento da linha férrea Cacequi – Rio Grande (RS), Sub-trecho entre São Gabriel e Bagé, localizado entre os km 111 + 600 e km 112 + 800. Este trecho de variante foi implantado por volta de 1975, em substituição ao traçado da linha velha que comprometia o tráfego das composições ferroviárias. Tal segmento está assente sobre a formação Rio Bonito, constituída de paraortoconglomerados, arenitos quartzosos, arenitos feldspáticos, siltitos, folhelhos carbonosos, diamictitos e carvão. O corte em questão é tipo caixão, de altura variável, em torno de 12,00 m na sua parte mais alta. Quando da sua implantação foi concebido com valetões de pé de corte aberto e recobertos com leiva. Desde sua construção, os taludes apresentaram forte erosão superficial e instabilidade geral, ocorrendo, no ano de 1982, uma ruptura circular no lado esquerdo, a qual provocou um deslocamento de cerca de 4,0m da linha férrea da sua posição original em direção ao talude do lado direito (sentido da quilometragem). A massa de solo envolvida apresenta deslocamentos mais evidentes junto ao pé do talude, provocando uma manutenção constante corretiva do nivelamento da via férrea. Também se observa que os valetões estão assoreados, o que ocasiona obstruções e provoca a retenção d´água superficial e o encharcamento do solo, contribuindo na instabilidade do talude Além da instabilidade global, existem instabilidades localizadas (escorregamentos superficiais) que são devidos à erosão superficial dos taludes em razão do inadequado direcionamento das águas de escoamento superficial e da fraca proteção vegetal nos taludes. Nas sondagens foi descoberta uma fina camada de argilito cinza-escuro numa cota muito próxima da cota em que foi definida a plataforma. Esta camada provocou a mobilização da resistência ao cisalhamento residual, ocasionando a instabilização do talude. A proposta de estabilização prevê, a um baixo custo, melhorar em aproximadamente 70% as condições locais, mediante a execução de uma trincheira drenante no pé do talude, em toda a extensão do corte, a instalação de drenos sub-horizontais na região mais afetada e a correção dos sistemas de drenagem existentes, acompanhados de um gerenciamento da execução dos serviços. O monitoramento posterior definirá a necessidade ou não da execução de um muro de contenção em solo reforçado na região mais crítica.
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A leflunomida é um pró-fármaco anti-reumático encontrado na forma de comprimidos revestidos com nome comercial ARAVA que, in vivo, é rápida e extensamente convertida a seu metabólito ativo A77 1726. Considerando a ausência de metodologia de controle de qualidade na literatura para a leflunomida, foram desenvolvidos métodos de caracterização e quantificação da leflunomida matéria-prima e na forma de comprimido, além de estudo preliminar de sua estabilidade. As técnicas de ponto de fusão, espectroscopia no IV, RMN 1H e 13C e CLAE associada a detector de arranjo de diiodos foram utilizadas para identificação e caracterização da leflunomida. O A77 1726 foi sintetizado e caracterizado pelas técnicas de espectroscopia no IV, RMN 1H e 13C, CLAE e DSC. Foi desenvolvido e validado método analítico para quantificação da leflunomida em comprimidos por CLAE utilizando coluna C18, ACN:água (50:50) como fase móvel e detecção em 254 nm. O método apresentou parâmetros cromatográficos adequados e parâmetros de desempenho analítico satisfatórios, com limite de detecção de 10 ng/mL. Método por espectroscopia derivada no UV foi desenvolvido e validado como alternativa para quantificação da leflunomida em comprimidos. A comparação do método por UV derivada com a CLAE, para determinação da leflunomida em comprimidos, mostrou que os métodos são intercambiáveis, creditando a técnica de UV para testes de controle de qualidade de rotina. Foram realizados estudos de degradação forçada dos comprimidos de leflunomida submetendo amostras à temperatura de 80 ºC ou exposição à radiação UV a 254 nm com lâmpada germicida. O principal produto de degradação encontrado foi o A77 1726. Além disso, outro produto de degradação, com tempo de retenção de 5,5 min (CLAE), apresentou quantidades significativas no estudo de degradação térmica.
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Revestimentos compósitos com incorporação de SiC (com tamanho médio 600nm e 30nm) à matriz metálica de Ni-P foram elaborados por eletrodeposição a partir de uma solução de sais de níquel, contendo um precursor fosforoso H3PO3, na qual as partículas foram colocadas em suspensão. A partir de medidas de viscosidade e velocidade de sedimentação foi evidenciado que o tamanho das partículas de SiC é uma característica importante que influencia na estabilidade das suspensões. Além disso, a presença de aditivos orgânicos, como SDS ou CTAHS, modifica as características das suspensões podendo ter, de acordo com o tamanho das partículas, um efeito sobre a taxa de incorporação da mesma no depósito durante o crescimento da matriz. Observou-se que acima de uma certa concentração de partículas em suspensão, a taxa de incorporação avaliada em função da fração em volume atinge um patamar, quando, no entanto, a mesma continua a aumentar se avaliada pelo número de partículas incorporadas. Para as suspensões com elevada concentração de partículas, o processo de incorporação torna-se seletivo, e as partículas de menor tamanho são preferencialmente incorporadas. Medidas de microdureza, análise térmica e ensaios eletroquímicos (voltametria cíclica e impedância eletroquímica) foram realizados com o objetivo de investigar o efeito da quantidade e do tamanho das partículas de SiC incorporadas, sobre o comportamento térmico, a microdureza, e a resistência à corrosão dos revestimentos compósitos Ni-P-SiC com teor em fósforo igual a 17 %at.
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A presente tese estuda a dinâmica do jogo regulatório brasileiro e como ela é capaz de proporcionar estabilidade de regras e contratos, apesar da pouca autonomia das agências reguladoras brasileiras em relação aos poderes políticos, contrariando a literatura que deu origem ao modelo regulatório recentemente instalado no Brasil. Buscou-se trazer de volta à discussão das agências o papel da política, negligenciado nos modelos teóricos tradicionalmente aplicados à regulação. Para tanto foram incluídas no modelo analítico abordagens teóricas relacionadas ao controle da burocracia e à teoria principal-agente. Assim, por meio do estudo de três agências reguladoras – Agência Nacional de Telecomunicações (Anatel), Agência Nacional de Energia Elétrica (Aneel) e Agência Nacional de Saúde Suplementar (ANS) – identificamos que a interação entre os diversos atores e instituições envolvidos em cada setor, incluindo os representantes políticos, o Judiciário, os atores setoriais e as regras procedimentais das agências acaba fornecendo ao sistema condições de estabilidade e de garantia dos contratos.
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Peumus boldus Molina (Monimiaceae) é uma árvore comum e abundante no Chile, e suas folhas são amplamente empregadas pela medicina tradicional para o tratamento de uma variedade de afecções do sistema digestivo e hepatobiliar. Seus principais constituintes químicos são alcalóides do tipo aporfínicos, sendo a boldina seu maior e mais característico representante, cujas propriedades antioxidantes são extensivamente relatadas na literatura, servindo desta forma como marcador químico para a espécie. Com o objetivo de contribuir com parâmetros de controle de qualidade, um estudo botânico macro e microscópico das folhas e do pó da espécie foi realizado. Características morfológicas, identificadas pela análise macroscópica, como pilosidade, tipologia dos tricomas, proeminência ao redor da base dos tricomas e aparência do bordo, e características microscópicas como estômatos anomocíticos, folha hipoestomática e ocorrência de cristais de oxalato de cálcio denotam valor taxonômico. Parâmetros farmacopéicos como cinzas totais e perda por dessecação foram determinados, e um método de quantificação da boldina foi desenvolvido e validado utilizando a CLAE. O limite mínimo de boldina observado na análise de 10 amostras adquiridas foi de aproximadamente 0,016%. A fim de avaliarse o comportamento de seus constituintes químicos frente a variações de temperatura e umidade, realizou-se estudo de estabilidade acelerada (40ºC ± 2ºC / 75% ± 5% U.R.). A degradação máxima de boldina foi observada após 90 dias em câmara climática chegando a aproximadamente 52%. A reação de degradação sugerida foi de segunda ordem, e o tempo de vida útil e meia-vida calculados foram de aproximadamente 18 dias e 165 dias, respectivamente. Por fim, realizou-se a quantificação de alguns metais pesados nas folhas da espécie, que decresceram na ordem de Fe> Mn> Cu> Ni, sendo que Pb, Cr e Co tiveram níveis abaixo do limite de detecção de 5 μg/g.
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Nowadays the environmental issues are increasingly highlighted since the future of humanity is dependent on the actions taken by man. Major efforts are being expended in pursuit of knowledge and alternatives to promote sustainable development without compromising the environment. In recent years there has been a marked growth in the development of reinforced composite fiber plants, as an alternative for economic and ecological effects, especially in the substitution of synthetic materials such as reinforcement material in composites. In this current study the chemical- physical or (thermophysics )characteristics of the babassu coconut fiber, derived from the epicarp of the fruit (Orbignyda Phalerata), which the main constituents of the fiber: Klason lignin, insoluble, cellulose, holocellulose, hemicellulose and the content of ash and moisture will be determined. A study was conducted about the superficial modification of the fibers of the epicarp babassu coconut under the influence of chemical treatment by alkalinization, in an aqueous solution of NaOH to 2.5% (m/v) and to 5.0% to improve the compatibility matrix / reinforcement composite with epoxy matrix. The results of the changes occurred in staple fibers through the use of the techniques of thermogravimetric analyses (TG) and differential scanning calorimetry (DSC). The results found on thermal analysis on samples of fiber without chemical treatment (alkalinities), and on fiber samples treated by alkalinization show that the proposed chemical treatment increases the thermal stability of the fibers and provides a growth of the surface of area fibers, parameters that enhance adhesion fiber / composite. The findings were evaluated and compared with published results from other vegetable fibers, showing that the use of babassu coconut fibers has technical and economic potential for its use as reinforcement in composites
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Poly(methyl methacrylate)/clay nanocomposites were prepared by melt mixing using a montmorillonite-rich clay (MMT). The clay in natura was treated with acrylic acid to facilitate the dispersion in the polymer matrix. A masterbatch of PMMA/clay was prepared and combined with the pure PMMA and then subjected to extrusion process using singlescrew and twin-screw extruders followed by injection. Nanocomposites were processed with clay contents of 1, 3, 5 and 8 wt.%. The effect of shear processing on the morphology of the nanocomposites was evaluated by XRD, SEM and TEM. Thermal and mechanical properties of the nanocomposites were investigated through TGA, DSC, HDT, VICAT, tensile and impact tests, to evaluate the effect of the addition of clay to the PMMA matrix. Flammability tests were also conducted to investigate the effect of the addition of clay on the flame retardation properties. SEM images of the nanocomposites indicated the presence of clay agglomerates, which resulted in the reduction of properties such as thermal stability, mechanical strength and impact resistance, and increased the rate of burning for materials processed by both extrusion routes
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The study aimed at the treatment of attapulgite for the development and characterization of composite recycled low density polyethylene - PEBD_rec embedded with natural attapulgite - ATP_NAT, sifted - ATP_PN and attapulgite treated with sulfuric acid - ATP_TR in different compositions (1, 3 and 5%) and compared with the PEBD_rec. The atapulgitas, natural, screened and treated, were characterized by X-ray diffraction (XRD), X-ray fluorescence (XRF), particle size analysis, scanning electron microscopy (SEM), energy dispersive spectroscopy (EDS) and determining the area specific surface (BET). The composites were characterized by thermogravimetry (TG), differential scanning calorimetry (DSC), Xray diffraction (XRD), torque rheometry, scanning electron microscopy (SEM) and traction. The composite PEBD_rec / ATP (natural, sieved and treated) were produced by mixing in the molten state in a single screw extruder matrix wire with subsequent reprocessing matrix tape. It was found that the screening of attapulgite not reduce the quantity of quartz and the acid treatment completely extracted dolomite aggregate impurities of the channels attapulgite, and increase their surface area. The addition of attapulgite in PEBD_rec acts as a catalyst, reducing the thermal stability of the polymer. The increased concentration of attapulgite, increases resistance and reduces the elongation at break and modulus of elasticity of the composite PEBD_rec / attapulgite
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Lightweight oilwell cement slurries have been recently studied as a mean to improve zonal isolation and sheath-porous formation adherence. Foamed slurries consisting of Portland cement and air-entraining admixtures have become an interesting option for this application. The loss in hydrostatic pressure as a consequence of cement hydration results in the expansion of the air bubbles entrapped in the cement matrix, thus improving the sheath-porous formation contact. Consequently, slurries are able to better retain their water to complete the hydration process. The main objective of the present study was to evaluate the effect of the addition of an air-entraining admixture on the density, stability and permeability of composite slurries containing Portland cement and diatomite as light mineral load. Successful formulations are potential cementing materials for low fracture gradient oilwells. The experimental procedures used for slurry preparation and characterization were based on the American Petroleum Institute and ABNT guidelines Slurries containing a pre-established concentration of the air-entraining admixture and different contents of diatomite were prepared aiming at final densities of 13 to 15 lb/gal. The results revealed that the reduction of 15 to 25% of the density of the slurries did not significantly affect their strength. The addition of both diatomite and the air-entraining admixture increased the viscosity of the slurry providing better air-bubble retention in the volume of the slurry. Stable slurries depicted bottom to top density variation of less than 1.0 lb/gal and length reduction of the stability sample of 5.86 mm. Finally, permeability coefficient values between 0.617 and 0.406 mD were obtained. Therefore, lightweight oilwell cement slurries depicting a satisfactory set of physicochemical and mechanical properties can be formulated using a combination of diatomite and air-entraining admixtures for low fracture gradient oilwells
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Synthetic inorganic pigments are the most widely used in ceramic applications because they have excellent chemical and thermal stability and also, in general, a lower toxicity to man and to the environment. In the present work, the ceramic black pigment CoFe2O4 was synthesized by the polymerization Complex method (MPC) in order to form a material with good chemical homogeneity. Aiming to optimize the process of getting the pigment through the MPC was used a fractional factorial design 2(5-2), with resolution III. The factors studied in mathematical models were: citric acid concentration, the pyrolysis time, temperature, time and rate of calcination. The response surfaces using the software statistica 7.0. The powders were characterized by thermal analysis (TG/DSC), x-ray diffraction (XRD), scanning electron microscopy (SEM) and spectroscopy in the UV-visible. Based on the results, there was the formation of phase cobalt ferrite (CoFe2O4) with spinel structure. The color of the pigments obtained showed dark shades, from black to gray. The model chosen was appropriate since proved to be adjusted and predictive. Planning also showed that all factors were significant, with a confidence level of 95%
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Biodiesel is an alternative fuel, renewable, biodegradable and nontoxic. The transesterification of vegetable oils or animal fat with alcohol is most common form of production of this fuel. The procedure for production of biodiesel occurs most commonly through the transesterification reaction in which catalysts are used to accelerate and increase their income and may be basic, acid or enzyme. The use of homogeneous catalysis requires specific conditions and purification steps of the reaction products (alkyl ester and glycerol) and removal of the catalyst at the end of the reaction. As an alternative to improve the yield of the transesterification reaction, minimize the cost of production is that many studies are being conducted with the application of heterogeneous catalysis. The use of nano-structured materials as catalysts in the production of biodiesel is a biofuel alternative for a similar to mineral diesel. Although slower, can esterify transesterified triglycerides and free fatty acids and suffer little influence of water, which may be present in the raw material. This study aimed at the synthesis, characterization and application of nano-structured materials as catalysts in the transesterification reaction of soybean oil to produce biodiesel by ethylic route. The type material containing SBA-15 mesoporous lanthanum embedded within rightly Si / La = 50 was used catalyst. Solid samples were characterized by X-ray diffraction, thermogravimetric analysis, infrared spectroscopy, nitrogen adsorption and desorption. For the transesterification process, we used a molar ratio of 20:1 alcohol and oil with 0.250 g of catalyst at 60°C and times of 6 hours of reaction. It was determined the content of ethyl esters by H-NMR analysis and gas chromatography. It was found that the variable of conversion obtained was 80%, showing a good catalytic activity LaSBA-15 in the transesterification of vegetable oils via ethylic route
Estudo térmico dos resíduos gerados da destilação atmosférica das misturas diesel/biodiesel de dendê
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The growing world demand for energy supplied by fossil fuels, a major contributor to the emission of pollutants into the atmosphere and causing environmental problems, has been encouraging governments and international organizations to reflect and encourage the use of alternative renewable sources. Among these new possibilities deserves attention biodiesel, fuel cleaner and easy to reproduce. The study of new technologies involving that source is necessary. From this context, the paper aims at analyzing the thermal stability by thermogravimetric analysis, of the waste generated from atmospheric distillation of mixtures with ratios of 5, 10, 15 and 20% palm biodiesel in diesel with and without addition of BHT antioxidant. It was synthesized biodiesel through palm oil, via homogeneous catalysis in the presence of KOH, with and without the use of BHT and subsequently added to the diesel common indoor type (S1800) from a gas station BR. The diesel was already added with 5% biodiesel, and thus the proportions used for these blends were subtracted from the existing ratio in diesel fuel, resulting in the following proportions palm oil biodiesel: 0% (B5), 5% (B10), 10 % (B15) and 15% (B20). From atmospheric distillation analysis, performed in mixtures with and without BHT were collected residue generated by each sample and performed a thermal study from the thermogravimetric analysis at a heating rate of 10 °C.min-1, nitrogen atmosphere and heating to 600 ° C. According to the specifications of Resolution No. 7/2008 for biodiesel, it was found that the material was synthesized in accordance with the specifications. For mixtures, it was noted that the samples were in accordance with the ANP Resolution No. 42/2009. Given the TG / DTG curves of the samples of waste mixtures with and without BHT antioxidant was able to observe that they showed a single stage of thermal decomposition attributed to decomposition of heavy hydrocarbons and esters and other heavier constituents of the waste sample weighed. The thermal behavior of residues from atmospheric distillation of mixtures of diesel / biodiesel is very important to understand how this affects the proper functioning of the engine. A large amount of waste can generate a high content of particulate material, coke formation and carbonaceous deposits in engine valves, compromising their performance
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In this work, biodiesel was produced from castor oil that was a byproduct glycerin. The molar ratio between oil and alcohol, as well as the use of (KOH) catalyst to provide the chemical reaction is based on literature. The best results were obtained using 1 mol of castor oil (260g) to 3 moles of methyl alcohol (138g), using 1.0% KOH as catalyst at a temperature of 260 ° C and shaken at 120 rpm. The oil used was commercially available, the process involves the reaction of transesterification of a vegetable oil with methyl alcohol. The product of this reaction is an ester, biodiesel being the main product and the glycerin by-product which has undergone treatment for use as raw material for the production of allyl alcohol. The great advantage of the use of glycerin to obtain allyl alcohol is that its use eliminates the large amount of waste of the biodiesel and various forms of insult to the environment. The reactions for the formation of allyl alcohol was conducted from formic acid and glycerin in a ratio 1/1, at a temperature of 260oC in a heater blanket, being sprayed by a spiral condenser for a period of 2 hours and the product obtained contains mostly the allylic alcohol .. The monitoring of reactions was performed by UV-Visible Spectrophotometer: FTIR Fourier transform, the analysis showed that these changes occur spectrometer indicating the formation of the product allylic alcohol (prop-2-en-1-ol) in the presence of water, This alcohol was appointed Alcohol GL. The absorption bands confirms that the reaction was observed in (υ C = C) 1470 -1600 cm -1 and (υ CO), 3610-3670 attributed to C = C groups and OH respectively. The thermal analysis was carried out in a thermogravimetric analyzer SDT Q600, where the mass and temperature are displayed against time, that allows checking the approximate rate of heating. The innovative methodology developed in the laboratory (LABTAM, UFRN), was able to treat the glycerine produced by transesterification of castor oil and used as raw material for production of allyl alcohol, with a yield of 80%, of alcohol, the same is of great importance in the manufacture of polymers, pharmaceuticals, organic compounds, herbicides, pesticides and other chemicals
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This study aimed to evaluate factors associated to orthodontic treatment stability and patient satisfaction in the long-term. A total of 209 patients (88 class I and 121 class II) treated with straight wire fixed appliance were selected at least 5 years post treatment. Six hundred twenty seven dental casts were examined with the PAR Index at pretreatment (T1), end of treatment (T2), and at long-term follow up (T3, mean 8.5 years post treatment). At T3, a Dental Impact on Daily Living questionnaire was used to assess patient satisfaction with the dentition in the long-term. Friedman test and multiple regression analysis were used to evaluate changes among the time points and factors associated with stability and patient satisfaction. Predictive factors used to exam the occlusion were: PAR Index at T1 and T2, age at T1, the amount of time without retainer, length of Hawley retainer wear, length of follow-up, sex, extraction and third molar status. To assess patient satisfaction were considered: changes produced by the orthodontic treatment (PAR T2-T1), post treatment stability (PAR T3), age at the start of treatment (T1), length of treatment (T2-T1), gender, and extraction. Orthodontic treatment produced a significant improvement of 94.2% in the PAR Index (T2-T1), but this change was not associated with the level of satisfaction when the patient was questioned at T3. No significant change was observed between T2 and T3. However, when the sample was divided according to the level of finalization (PAR T2), it was observed that well-finished patients experienced some deterioration (P<.001), whereas the less well-finished ones showed some improvement (P<.05). Even with the deterioration, the well-finished patients still had a better PAR Index at T3 compared to the less well-finished ones (PAR T2- T3). Regression analysis showed that PAR Index at T1 and T2, age at T1, and length of retainer wear had a slight association with occlusal stability (R2 = 0.27). Patient satisfaction was significantly associated only with PAR Index at T3 (r2=0.125, P<.0001). We can conclude that, even thought orthodontic treatment is quite stable, not so well-finished treatments tend to show some improvement and well-finished ones deteriorate some in the long-term. Despite of that, well-finished patients still have better occlusal characteristics. Patient satisfaction is not related to the result of orthodontic treatment; nevertheless, there is a slight association with dentition in the long-term
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Bioidentical hormones are defined as compounds that have exactly the same chemical and molecular structure as hormones that are produced in the human body. It is believed that the use of hormones may be safer and more effective than the non-bioidentical hormones, because binding to receptors in the organism would be similar to the endogenous hormone. Bioidentical estrogens have been used in menopausal women, as an alternative to traditional hormone replacement therapy. Thermal data of these hormones are scarce in literature. Thermal analysis comprises a group of techniques that allows evaluating the physical-chemistry properties of a drug, while the drug is subjected to a controlled temperature programming. The thermal techniques are used in pharmaceutical studies for characterization of drugs, purity determination, polymorphism identification, compatibility and evaluation of stability. This study aims to characterize the bioidentical hormones estradiol and estriol through thermal techniques TG/DTG, DTA, DSC, DSC-photovisual. By the TG curves analysis was possible to calculated kinetic parameters for the samples. The kinetic data showed that there is good correlation in the different models used. For both estradiol and estriol, was found zero order reaction, which enabled the construction of the vapor pressure curves. Data from DTA and DSC curves of melting point and purity are the same of literature, showed relation with DSC-photovisual results. The analysis DTA curves showed the fusion event had the best linearity for both hormones. In the evaluation of possible degradation products, the analysis of the infrared shows no degradation products in the solid state