311 resultados para DMA
Resumo:
Nano-scale touch screen thin film have not been thoroughly investigated in terms of dynamic impact analysis under various strain rates. This research is focused on two different thin films, Zinc Oxide (ZnO) film and Indium Tin Oxide (ITO) film, deposited on Polyethylene Terephthalate (PET) substrate for the standard touch screen panels. Dynamic Mechanical Analysis (DMA) was performed on the ZnO film coated PET substrates. Nano-impact (fatigue) testing was performed on ITO film coated PET substrates. Other analysis includes hardness and the elastic modulus measurements, atomic force microscopy (AFM), Fourier Transform Infrared Spectroscopy (FTIR) and the Scanning Electron Microscopy (SEM) of the film surface.
Ten delta of DMA is described as the ratio of loss modulus (viscous properties) and storage modulus (elastic properties) of the material and its peak against time identifies the glass transition temperature (Tg). Thus, in essence the Tg recognizes changes from glassy to rubber state of the material and for our sample ZnO film, Tg was found as 388.3 K. The DMA results also showed that the Ten delta curve for Tg increases monotonically in the viscoelastic state (before Tg) and decreases sharply in the rubber state (after Tg) until recrystallization of ZnO takes place. This led to an interpretation that enhanced ductility can be achieved by negating the strength of the material.
For the nano-impact testing using the ITO coated PET, the damage started with the crack initiation and propagation. The interpretation of the nano-impact results depended on the characteristics of the loading history. Under the nano-impact loading, the surface structure of ITO film suffered from several forms of failure damages that range from deformation to catastrophic failures. It is concluded that in such type of application, the films should have low residual stress to prevent deformation, good adhesive strength, durable and good resistance to wear.
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Tris(2-ethylhexyl) trimellitate (TOTM) was recently suggested as a reference fluid for industrial use associated with high viscosity at elevated temperature and pressure. Viscosity and density data have already been published on one sample covering the temperature range (303-373) K and at pressures up to about 65 MPa. The viscosity covered a range from about (9 to 460) mPa s. In the present article we study several other characteristics of TOTM that must be available if it were to be adopted as a standard. First, we present values for the viscosity and density obtained with a different sample of TOTM to examine the important feature of consistency among different samples. Vibrating-wire viscosity measurements were performed at pressures from (5 to 100) MPa, along 6 isotherms between (303 and 373) K. Density measurements were carried out from (293 to 373) K up to 68 MPa, along 4 isotherms, using an Anton Paar DMA HP vibrating U-tube densimeter. Secondly, we report a study of the effect of water contamination on the viscosity of TOTM, performed using an Ubbelhode viscometer under atmospheric pressure. Finally, in order to support the use of TOTM as a reference liquid for the calibration of capillary viscometers, values of its surface tension, obtained by the pendant drop method, are provided. (C) 2016 Elsevier B.V. All rights reserved.
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Chemical speciation in foodstuffs is of uttermost importance since it is nowadays recognized that both toxicity and bioavailability of an element depend on the chemical form in which the element is present. Regarding arsenic, inorganic species are classified as carcinogenic while organic arsenic, such as arsenobetaine (AsB) or arsenocholine (AsC), is considered less toxic or even non-toxic. Coupling a High Performance Liquid Chromatographer (HPLC) with an Inductively Coupled Plasma Mass Spectrometer (ICP-MS) combines the power of separation of the first with the selectivity and sensitivity of the second. The present work aims at developing a method, using HPLC-ICP-MS technique, to identify and quantify the chemical species of arsenic present in two food matrices, rice and fish. Two extraction methods, ultrasound and microwave, and different settings were studied. The best method was chosen based on recovery percentages. To ensure that no interconversion of species was occurring, individual spikes of each species of arsenic were made in both matrices and recovery rates were calculated. To guaranty accurate results reference material BCR-627 TUNA FISH, containing certified values for AsB and DMA, was analyzed. Chromatographic separation was achieved using an anion exchange column, HAMILTON-PRP X-100, which allowed to separate the four arsenic species for which standards were available (AsB, dimethylarsenic (DMA), arsenite (AsIII), arsenate (AsV). The mobile phase was chosen based on scientific literature and adjusted to laboratory conditions. Different gradients were studied. As a result we verified that the arsenic species present in both matrices were not the same. While in fish 90% of the arsenic present was in the form of arsenobetaine, in rice 80% of arsenic was present as DMA and 20% as inorganic arsenic.
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Abstract : Natural materials have received a full attention in many applications because they are degradable and derived directly from earth. In addition to these benefits, natural materials can be obtained from renewable resources such as plants (i.e. cellulosic fibers like flax, hemp, jute, and etc). Being cheap and light in weight, the cellulosic natural fiber is a good candidate for reinforcing bio-based polymer composites. However, the hydrophilic nature -resulted from the presence of hydroxyl groups in the structure of these fibers- restricts the application of these fibers in the polymeric matrices. This is because of weak interfacial adhesion, and difficulties in mixing due to poor wettability of the fibers within the matrices. Many attempts have been done to modify surface properties of natural fibers including physical, chemical, and physico-chemical treatments but on the one hand, these treatments are unable to cure the intrinsic defects of the surface of the fibers and on the other hand they cannot improve moisture, and alkali resistance of the fibers. However, the creation of a thin film on the fibers would achieve the mentioned objectives. This study aims firstly to functionalize the flax fibers by using selective oxidation of hydroxyl groups existed in cellulose structure to pave the way for better adhesion of subsequent amphiphilic TiO[subscript 2] thin films created by Sol-Gel technique. This method is capable of creating a very thin layer of metallic oxide on a substrate. In the next step, the effect of oxidation on the interfacial adhesion between the TiO[subscript 2] film and the fiber and thus on the physical and mechanical properties of the fiber was characterized. Eventually, the TiO[subscript 2] grafted fibers with and without oxidation were used to reinforce poly lactic acid (PLA). Tensile, impact, and short beam shear tests were performed to characterize the mechanical properties while Thermogravimetric analysis (TGA), Differential Scanning Calorimetry (DSC), Dynamic mechanical analysis (DMA), and moisture absorption were used to show the physical properties of the composites. Results showed a significant increase in physical and mechanical properties of flax fibers when the fibers were oxidized prior to TiO[subscript 2] grafting. Moreover, the TiO[subscript 2] grafted oxidized fiber caused significant changes when they were used as reinforcements in PLA. A higher interfacial strength and less amount of water absorption were obtained in comparison with the reference samples.
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This PhD thesis contains three main chapters on macro finance, with a focus on the term structure of interest rates and the applications of state-of-the-art Bayesian econometrics. Except for Chapter 1 and Chapter 5, which set out the general introduction and conclusion, each of the chapters can be considered as a standalone piece of work. In Chapter 2, we model and predict the term structure of US interest rates in a data rich environment. We allow the model dimension and parameters to change over time, accounting for model uncertainty and sudden structural changes. The proposed timevarying parameter Nelson-Siegel Dynamic Model Averaging (DMA) predicts yields better than standard benchmarks. DMA performs better since it incorporates more macro-finance information during recessions. The proposed method allows us to estimate plausible realtime term premia, whose countercyclicality weakened during the financial crisis. Chapter 3 investigates global term structure dynamics using a Bayesian hierarchical factor model augmented with macroeconomic fundamentals. More than half of the variation in the bond yields of seven advanced economies is due to global co-movement. Our results suggest that global inflation is the most important factor among global macro fundamentals. Non-fundamental factors are essential in driving global co-movements, and are closely related to sentiment and economic uncertainty. Lastly, we analyze asymmetric spillovers in global bond markets connected to diverging monetary policies. Chapter 4 proposes a no-arbitrage framework of term structure modeling with learning and model uncertainty. The representative agent considers parameter instability, as well as the uncertainty in learning speed and model restrictions. The empirical evidence shows that apart from observational variance, parameter instability is the dominant source of predictive variance when compared with uncertainty in learning speed or model restrictions. When accounting for ambiguity aversion, the out-of-sample predictability of excess returns implied by the learning model can be translated into significant and consistent economic gains over the Expectations Hypothesis benchmark.
Resumo:
This PhD thesis contains three main chapters on macro finance, with a focus on the term structure of interest rates and the applications of state-of-the-art Bayesian econometrics. Except for Chapter 1 and Chapter 5, which set out the general introduction and conclusion, each of the chapters can be considered as a standalone piece of work. In Chapter 2, we model and predict the term structure of US interest rates in a data rich environment. We allow the model dimension and parameters to change over time, accounting for model uncertainty and sudden structural changes. The proposed time-varying parameter Nelson-Siegel Dynamic Model Averaging (DMA) predicts yields better than standard benchmarks. DMA performs better since it incorporates more macro-finance information during recessions. The proposed method allows us to estimate plausible real-time term premia, whose countercyclicality weakened during the financial crisis. Chapter 3 investigates global term structure dynamics using a Bayesian hierarchical factor model augmented with macroeconomic fundamentals. More than half of the variation in the bond yields of seven advanced economies is due to global co-movement. Our results suggest that global inflation is the most important factor among global macro fundamentals. Non-fundamental factors are essential in driving global co-movements, and are closely related to sentiment and economic uncertainty. Lastly, we analyze asymmetric spillovers in global bond markets connected to diverging monetary policies. Chapter 4 proposes a no-arbitrage framework of term structure modeling with learning and model uncertainty. The representative agent considers parameter instability, as well as the uncertainty in learning speed and model restrictions. The empirical evidence shows that apart from observational variance, parameter instability is the dominant source of predictive variance when compared with uncertainty in learning speed or model restrictions. When accounting for ambiguity aversion, the out-of-sample predictability of excess returns implied by the learning model can be translated into significant and consistent economic gains over the Expectations Hypothesis benchmark.
Resumo:
A novel, anaerobic, chemo-organotrophic bacterium, designated strain Ra1766HT, was isolated from sediments of the Guaymas basin (Gulf of California, Mexico) taken from a depth of 2002 m. Cells were thin, motile, Gram-stain-positive, flexible rods forming terminal endospores. Strain Ra1766H(T) grew at temperatures of 25-45 degrees C (optimum 30 degrees C), pH 6.7-8.1 (optimum 7.5) and in a salinity of 5-60 g l(-1) NaCl (optimum 30 g l(-1)). It was an obligate heterotrophic bacterium fermenting carbohydrates (glucose and mannose) and organic acids (pyruvate and succinate). Casamino acids and amino acids (glutamate, aspartate and glycine) were also fermented. The main end products from glucose fermentation were acetate, butyrate, ethanol, H-2 and CO2. Sulfate, sulfite, thiosulfate, elemental sulfur, fumarate, nitrate, nitrite and Fe(III) were not used as terminal electron acceptors. The predominant cellular fatty acids were C-14 : 0, C-16:1 omega 7, C-16:1 omega 7 DMA and C-16:0. The main polar lipids consisted of phosphatidylglycerol, diphosphatidylglycerol, phosphatidylethanolamine and phospholipids. The G +C content of the genomic DNA was 33.7 molo/o. Phylogenetic analysis of the 16S rRNA gene sequence indicated that strain Ra1766H(T) was affiliated to cluster XI of the order Clostridia les, phylum Firmicutes. The closest phylogenetic relative of Ra1766H(T) was Geosporobacter subterraneus (94.2% 16S rRNA gene sequence similarity). On the basis of phylogenetic inference and phenotypic properties, strain Ra1766H(T) (=DSM 27501(T)=JCM 19377(T)) is proposed to be the type strain of a novel species of a novel genus, named Crassaminicella pro funda.
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The forensic toxicologist faces challenges in the detection of drugs and poisons in biological samples due to transformations which occur both during life and after death. For example, changes can result from drug metabolism during life or from the use of formalin solution for post mortem embalming purposes. The former requires the identification of drug metabolites and the latter the identification of chemical reaction products in order to know which substances had been administered. The work described in this thesis was aimed at providing ways of tackling these challenges and was divided into two parts. Part 1 investigated the use of in vitro drug metabolism by human liver microsomes (HLM) to obtain information on drug metabolites and Part 2 investigated the chemical reactions of drugs and a carbamate pesticide with formalin solution and formalin-blood. The initial aim of part I was to develop an in vitro metabolism method using HLM, based on a literature review of previous studies of this type. MDMA was chosen as a model compound to develop the HLM method because its metabolism was known and standards of its metabolites were commercially available. In addition, a sensitive and selective method was developed for the identification and quantitation of hydrophilic phase I drug metabolites using LC/MS/MS with a conventional reverse-phase (C18) column. In order to obtain suitable retention factors for polar drug metabolites on this column, acetyl derivatives were evaluated for converting the metabolites to more lipophilic compounds and an optimal separation system was developed. Acetate derivatives were found to be stable in the HPLC mobile phase and to provide good chromatographic separation of the target analytes. In vitro metabolism of MDMA and, subsequently, of other drugs involved incubation of 4 µg drug substance in pH 7.4 buffer with an NADPH generating system (NGS) at 37oC for 90 min with addition of more NGS after 30 min. The reaction was stopped at 90 min by the addition of acetonitrile before extraction of the metabolites. Acetate derivatives of MDMA metabolites were identified by LC/MS/MS using multiple reaction monitoring (MRM). Three phase I metabolites (both major and minor metabolites) of MDMA were detected in HLM samples. 3,4-dihydroxy-methamphetamine and 4-hydroxy-3-methoxymethamphetamine were found to be major metabolites of MDMA whereas 3,4-methylenedioxyamphetamine was found to be a minor metabolite. Subsequently, ten MDMA positive urines were analysed to compare the metabolite patterns with those produced by HLM. An LC/MS method for MDMA and its metabolites in urine samples was developed and validated. The method demonstrated good linearity, accuracy and precision and insignificant matrix effects, with limits of quantitation of 0.025 µg/ml. Moreover, derivatives of MDMA and its metabolites were quantified in all 10 positive human urine samples. The urine metabolite pattern was found to be similar to that from HLM. The second aim of Part 1 was to use the HLM system to study the metabolism of some new psychoactive substances, whose misuse worldwide has necessitated the development of analytical methods for these drugs in biological specimens. Methylone and butylone were selected as representative cathinones and para-methoxyamphetamine (PMA) was chosen as a representative ring-substituted amphetamine, because of the involvement of these drugs in recent drug-related deaths, because of a relative lack of information on their metabolism, and because reference standards of their metabolites were not commercially available. An LC/MS/MS method for the analysis of methylone, butylone, PMA and their metabolites was developed. Three phase I metabolites of methylone and butylone were detected in HLM samples. Ketone reduction to β-OH metabolites and demethylenation to dihydroxy-metabolites were found to be major phase I metabolic pathways of butylone and methylone whereas N-demethylation to nor-methylone and nor-butylone were found to be minor pathways. Also, demethylation to para-hydroxyamphetamine was found to be a major phase I metabolic pathway of PMA whereas β-hydroxylation to β-OH-PMA was found to be a minor pathway. Formaldehyde is used for embalming, to reduce decomposition and preserve cadavers, especially in tropical countries such as Thailand. Drugs present in the body can be exposed to formaldehyde resulting in decreasing concentrations of the original compounds and production of new substances. The aim of part II of the study was to evaluate the in vitro reactions of formaldehyde with selected drug groups including amphetamines (amphetamine, methamphetamine and MDMA), benzodiazepines (alprazolam and diazepam), opiates (morphine, hydromorphone, codeine and hydrocodone) and with a carbamate insecticide (carbosulfan). The study would identify degradation products to serve as markers for the parent compounds when these were no longer detectable. Drugs standards were spiked in 10% formalin solution and 10% formalin blood. Water and whole blood without formalin were used for controls. Samples were analysed by LC/MS/MS at different times from the start, over periods of up to 30 days. Amphetamine, methamphetamine and MDMA were found to rapidly convert to methamphetamine, DMA and MDDMA respectively, in both formalin solution and formalin blood, confirming the Eschweiler-Clarke reaction between amine-containing compounds and formaldehyde. Alprazolam was found to be unstable whereas diazepam was found to be stable in both formalin solution and water. Both were found to hydrolyse in formalin solution and to give open-ring alprazolam and open-ring diazepam. Other alprazolam conversion products attached to paraformaldehyde were detected in both formalin solution and formalin blood. Morphine and codeine were found to be more stable than hydromorphone and hydrocodone in formalin solution. Conversion products of hydromorphone and hydrocodone attached to paraformaldehyde were tentatively identified in formalin solution. Moreover, hydrocodone and hydromorphone rapidly decreased within 24 h in formalin blood and could not be detected after 7 days. Carbosulfan was found to be unstable in formalin solution and was rapidly hydrolysed within 24 h, whereas in water it was stable up to 48 h. Carbofuran was the major degradation product, plus smaller amounts of other products, 3-ketocarbofuran and 3-hydrocarbofuran. By contrast, carbosulfan slowly hydrolysed in formalin-blood and was still detected after 15 days. It was concluded that HLM provide a useful tool for human drug metabolism studies when ethical considerations preclude their controlled administration to humans. The use of chemical derivatisation for hydrophilic compounds such as polar drug metabolites for analysis by LC/MS/MS with a conventional C18 column is effective and inexpensive, and suitable for routine use in the identification and quantitation of drugs and their metabolites. The detection of parent drugs and their metabolites or conversion and decomposition products is potentially very useful for the interpretation of cases in forensic toxicology, especially when the original compounds cannot be observed.
In Situ Characterization of Optical Absorption by Carbonaceous Aerosols: Calibration and Measurement
Resumo:
Light absorption by aerosols has a great impact on climate change. A Photoacoustic spectrometer (PA) coupled with aerosol-based classification techniques represents an in situ method that can quantify the light absorption by aerosols in a real time, yet significant differences have been reported using this method versus filter based methods or the so-called difference method based upon light extinction and light scattering measurements. This dissertation focuses on developing calibration techniques for instruments used in measuring the light absorption cross section, including both particle diameter measurements by the differential mobility analyzer (DMA) and light absorption measurements by PA. Appropriate reference materials were explored for the calibration/validation of both measurements. The light absorption of carbonaceous aerosols was also investigated to provide fundamental understanding to the absorption mechanism. The first topic of interest in this dissertation is the development of calibration nanoparticles. In this study, bionanoparticles were confirmed to be a promising reference material for particle diameter as well as ion-mobility. Experimentally, bionanoparticles demonstrated outstanding homogeneity in mobility compared to currently used calibration particles. A numerical method was developed to calculate the true distribution and to explain the broadening of measured distribution. The high stability of bionanoparticles was also confirmed. For PA measurement, three aerosol with spherical or near spherical shapes were investigated as possible candidates for a reference standard: C60, copper and silver. Comparisons were made between experimental photoacoustic absorption data with Mie theory calculations. This resulted in the identification of C60 particles with a mobility diameter of 150 nm to 400 nm as an absorbing standard at wavelengths of 405 nm and 660 nm. Copper particles with a mobility diameter of 80 nm to 300 nm are also shown to be a promising reference candidate at wavelength of 405 nm. The second topic of this dissertation focuses on the investigation of light absorption by carbonaceous particles using PA. Optical absorption spectra of size and mass selected laboratory generated aerosols consisting of black carbon (BC), BC with non-absorbing coating (ammonium sulfate and sodium chloride) and BC with a weakly absorbing coating (brown carbon derived from humic acid) were measured across the visible to near-IR (500 nm to 840 nm). The manner in which BC mixed with each coating material was investigated. The absorption enhancement of BC was determined to be wavelength dependent. Optical absorption spectra were also taken for size and mass selected smoldering smoke produced from six types of commonly seen wood in a laboratory scale apparatus.
Resumo:
The use of raw materials from renewable sources for production of materials has been the subject of several studies and researches, because of its potential to substitute petrochemical-based materials. The addition of natural fibers to polymers represents an alternative in the partial or total replacement of glass fibers in composites. In this work, carnauba leaf fibers were used in the production of biodegradable composites with polyhydroxybutyrate (PHB) matrix. To improve the interfacial properties fiber / matrix were studied four chemical treatments to the fibers..The effect of the different chemical treatments on the morphological, physical, chemical and mechanical properties of the fibers and composites were investigated by scanning electron microscopy (SEM), infrared spectroscopy, X-ray diffraction, tensile and flexural tests, dynamic mechanical analysis (DMA), thermogravimetry (TGA) and diferential scanning calorimetry (DSC). The results of tensile tests indicated an increase in tensile strength of the composites after the chemical treatment of the fibers, with best results for the hydrogen peroxide treated fibers, even though the tensile strength of fibers was slightly reduced. This suggests a better interaction fiber/matrix which was also observed by SEM fractographs. The glass transition temperature (Tg) was reduced for all composites compared to the pure polymer which can be attributed to the absorption of solvents, moisture and other low molecular weight molecules by the fibers
Resumo:
Los materiales dieléctricos juegan un papel importante en el desarrollo de nuevos dispositivos electrónicos. En este trabajo se presenta el estudio de las propiedades mecánicas (módulo elástico complejo: E*=E´+ iE´´) y dieléctricas (permitividad relativa compleja: εr*=εr´- iεr´´) de un copolímero, el polivinil butiral (PVB), con la finalidad de evaluar la capacidad bifuncional de este material. Reometría tradicional, análisis mecánico dinámico (DMA) y análisis dieléctrico dinámico (DDA) son las técnicas instrumentales para evaluar las propiedades del PVB. A partir de los datos experimentales se desarrolló un modelo empírico que establece una relación entre las propiedades mecánicas y dieléctricas (E´vs. εr´) del PVB; el incremento de εr’ produce un decaimiento exponencial de E’.
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Dissertação (mestrado)—Universidade de Brasília, Faculdade de Ciências da Saúde, Programa de Pós-Graduação em Ciências da Saúde, 2015.
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ANTECEDENTES: Los dos primeros años de vida constituyen un período crítico para la nutrición de los niños. Según la Encuesta Nacional de Salud y Nutrición 2011-2013 cerca de la mitad de niños de 6 a 11 meses no acceden a una variedad adecuada de alimentos. OBJETIVO GENERAL: Establecer la diversidad alimentaria en los niños y niñas de 6 a 23 meses de edad por un lapso de 5 meses en el año 2015 ingresados en el área de Clínica y Cirugía Pediátrica del Hospital Vicente Corral Moscoso. METODOLOGÍA: Estudio descriptivo, en el levantamiento de datos se utilizó entrevistas, revisión de historias clínicas. La tabulación y análisis de los datos se efectuó en SPSS 19 empleando medidas de tendencia central y de distribución en variables cuantitativas; frecuencias y porcentajes en variables cualitativas. La muestra fue de 171 niños de 6 a 23 meses hospitalizados en el área de cirugía y clínica pediátrica del Hospital Vicente Corral Moscoso. RESULTADOS: Se demostró que menos del 23% de los infantes tienen su peso normal, predominando los emaciados y emaciados severos, más marcado en las niñas. La Diversidad Alimentaria, Frecuencia Mínima de Comidas y Dieta Mínima Alimentaria en relación al sexo no arrojaron relación estadística significativa, pero se evidenció un aumento estadísticamente significativo con el incremento de la edad; siendo todos los alimentos consumidos en más del 80% de los infantes a excepción de las legumbres y nueces. Las frutas y verduras ricas en Vitamina A, lácteos y carnes son los más empleados
Resumo:
Les concentrations de métaux lourds retrouvées dans les sols augmentent considérablement depuis la révolution industrielle et s’accumulent quotidiennement dans la biosphère. Ces composés métalliques persisteront pendant plusieurs années au niveau des différents écosystèmes affectés et voyageront dans les chaînes alimentaires par bioaccumulation. Les activités humaines, telle que l’industrie minière contribuent activement à cette problématique environnementale. En effet, l’excavation minière perturbe la roche-mère et favorise l’oxydation des métaux lourds sulfurés qui, lentement, produiront de l’acide sulfurique. Cette acidification peut mobiliser les éléments métalliques stables en condition neutre ou alcaline. Ces phénomènes induisent la formation du drainage minier acide (DMA) qui peut contaminer les cours d’eau ou les nappes phréatiques à proximité. Plusieurs mines sont situées en Abitibi-Témiscamingue en raison de l’abondance de divers minerais dans la roche mère tels que l’or. Une importante quantité de déchets industriels est produite lors de l’excavation du minerai, dont les résidus miniers entreposés dans des bassins de rétention extérieurs. Ces bassins prennent de l’expansion quotidiennement autour du site minier substituant la place de la végétation saine et des territoires. Une mise en végétation des sites miniers du Québec est exigée depuis 1995 afin de redonner une apparence naturelle aux sites et limiter le phénomène d’érosion. Depuis 2013, un plan de réaménagement et de restauration des sites exploités est obligatoire selon la loi sur les mines. Ces bassins seront donc ciblés pour effectuer des essais de revégétalisation par l’entremise de plantes actinorhiziennes. Les plantes actinorhiziennes sont des végétaux robustes pouvant coloniser nombreux habitats perturbés et hostiles. L’aulne est une plante actinorhizienne pouvant établir une relation symbiotique avec l’actinobactérie fixatrice d’azote du genre Frankia. La symbiose actinorhizienne est une interaction équitablement profitable entre la plante et la bactérie. Cette symbiose repose sur la capacité de la bactérie à transformer, au niveau des nodules, l’azote atmosphérique en ammonium assimilable grâce à une enzyme spécifique, la nitrogénase. Lorsque la symbiose est bien établie, elle donnera un avantage significatif aux plantes pour leur développement et leur croissance, et ce, même dans un substrat pauvre en nutriments ou contaminé. En effet, la symbiose actinorhizienne permet d’améliorer la structure physicochimique d’un sol et de l’enrichir en azote grâce à la fixation de l’azote atmosphérique. Dans la région de l’Abitibi-Témiscamingue, la mine Doyon est une mine d’or qui détient des sols acidogènes contenant des traces non négligeables de métaux lourds. Ce projet de recherche en microbiologie environnementale avait comme objectif principal d’évaluer la capacité des aulnes rugueux et des aulnes crispés à coloniser des résidus miniers acidogènes aurifères (concentrations différentes de 0 %, 35 %, 65 % et 100 %) avec ou sans l’aide de Frankia. La dispersion des contaminants par les feuilles a aussi été étudiée afin d’évaluer le risque environnemental de l’utilisation des aulnes sur le terrain à des fins de revégétalisation. Les objectifs préliminaires avaient comme but d’évaluer la résistance, de manière individuelle, de la souche ACN10a du genre Frankia (par extrait aqueux) puis des espèces d’aulne aux résidus miniers non stérilisés. Par le fait même, la microflore des résidus miniers a été étudiée dans le but d’isoler des espèces symbiotiques d’endophytes écoadaptées aux conditions arides du site minier Doyon. Concernant les objectifs préliminaires, les résultats ont démontré que la souche ACN10a résiste bien jusqu’à 35 % d’extrait aqueux de résidus miniers de la mine Doyon. Pour les concentrations supérieures à 50 %, Frankia (souche ACN10a) a démontré une respiration cellulaire et des concentrations protéiques décroissantes en raison de la présence d’éléments toxiques biodisponibles dans l’extrait aqueux. Par ailleurs, les aulnes rugueux et crispés ont démontré une tolérance jusqu’à la concentration de 35 % de résidus miniers non stérilisés sans la présence de Frankia. Par la suite, les résultats d’isolement n’ont pas démontré la capacité des aulnes à recruter des bactéries symbiotiques à partir des résidus miniers de la mine Doyon. Concernant l’objectif principal, les résultats ont démontré que l’aulne rugueux résiste mieux que l’aulne crispé jusqu’aux concentrations de 35 % de résidus miniers lorsqu’inoculés en manifestant une meilleure biomasse sèche totale, une plus grande concentration de chlorophylle dans les feuilles et un plus grand nombre spécifique de nodules. L’établissement symbiotique a été affecté par la présence des résidus miniers acidogène révélant que le nombre de site d’infection racinaire diminuait en fonction des concentrations de résidus miniers croissantes (0 %, 35 %, 65 % et 100 %). Ensuite, une analyse des éléments chimiques des feuilles a démontré que le transfert des métaux lourds des résidus miniers vers les feuilles était minime. Les plantes révélant de hautes teneurs en métaux lourds dans leurs feuilles ont développé par le fait même, une faible biomasse aérienne limitant ainsi la dispersion de contaminants lors de la perte des feuilles à l’automne. Le modèle expérimental aulne-Frankia possédait un seuil de tolérance visible à la concentration de 35 % de résidus miniers acidogènes aurifères de la mine Doyon. De plus, la présence de la symbiose actinorhizienne a modulé la distribution de certains éléments chimiques dans les feuilles en comparaison avec les aulnes non-inoculés (molybdène, nickel). Puis, une similarité a été notée dans la composition chimique des feuilles d’aulnes inoculés s’étant développés dans 0 % (témoin positif) et 35 % de résidus miniers.
Resumo:
Com o objetivo de estimar a variabilidade genética e ganhos de seleção em caracteres de frutos em açaizeiros, foram avaliadas 68 progênies provenientes de coleta em populações do município de Afuá e instaladas no Amapá. O experimento foi instalado em blocos ao acaso com duas repetições e quatro plantas úteis por parcela. Foram avaliados os caracteres: diâmetro longitudinal do fruto (DLF); maior diâmetro transversal do fruto (DTMA); menor diâmetro transversal do fruto (DTME); massa de cem frutos (P100) e massa total de frutos no cacho (PTC). Há diferenças significativas entre progênies, o que denota possibilidade de ganhos com a seleção. Em geral, as herdabilidades na média de progênies foram de médias a altas para os caracteres, mas sempre menor para PTC. A relação CVg/CVe foi favorável em DMA e DTME e desfavorável para PTC; as correlações entre os caracteres foram positivas e significativas; o ganho de seleção foi de 16,65% para PTC e entre -1,29% e -7,60%, nos demais caracteres; as progênies selecionadas conseguiram associar os valores desejados nos caracteres avaliados. As conclusões obtidas foram de que há elevada contribuição ambiental na manifestação fenotípica das progênies, sendo que as dimensões métricas dos frutos sofreram menores efeitos ambientais e maior efeito genético; há possibilidade de ganhos genéticos importantes aos programas de melhoramento genético da espécie utilizando-se os caracteres de forma simultânea, apesar dos valores obtidos terem sido baixos, principalmente devido à presença de correlações positivas, nas quais há preferência da redução do tamanho do fruto com aumento de produtividade.