261 resultados para Evolución-Orgánica


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RESUMOA adubação pode influenciar a produção e a composição química do mosto da videira. Assim,o objetivo deste trabalho foi avaliar osefeitos da aplicação de adubo orgânico e nitrogenado nos atributos do solo e na produção da videira ‘Syrah’ irrigada por gotejamento, durante 3 ciclos de produção (abril a agosto de 2010; novembro de 2010 afevereiro de 2011; maio a setembro de 2011), bem como a composição química do mosto produzido, emPetrolina-PE. Os tratamentos consistiram em 2 doses de adubo orgânico (0 e 30 m3 ha-1 de esterco caprino) e 5 doses de N (0; 10; 20; 40 e 80 kg ha-1), dispostos em blocos casualizados, com 5 repetições, em esquema de parcelas subdivididas. A adubação orgânica aumentou os teores de fósforo disponível, CTC e matériaorgânica do solo, diminuindo a acidez total titulável do mosto no primeiro ciclo e proporcionou aumento na produção de frutos e na massa de 100 bagas no terceiro ciclo de produção. As doses de N não influenciaramo número de cachos por planta, a produtividade de frutos, nem as características enológicas.

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RESUMO O objetivo deste trabalho foi avaliar a qualidade e a biomassa de plantas de cupuaçuzeiro em substratos com diferentes condicionadores. O experimento foi realizado no Sítio Ecológico Seridó, município de Rio Branco – AC. Os tratamentos constituíram-se por alteração do condicionador dos substratos, sendo: T1 = casca de arroz carbonizada; T2 = fibra de coco; T3 = caule de palmeira; T4 = resíduo de sumaúma e T5 = composto orgânico. Os substratos T1, T2, T3 e T4 foram compostos por terra (30%), composto orgânico (30%), fino de carvão (10%) e condicionadores (30%). O substrato (T5) foi considerado uma testemunha com maior proporção de terra (45%) e composto orgânico (45%) mais adição de fino de carvão (10%). Todos os substratos foram acrescidos de 1,0 kg m-3 de calcário dolomítico e 1,5 kg m-3 de termofosfato natural. O delineamento experimental utilizado foi em blocos casualizados, com cinco tratamentos e quatro repetições de três plantas cada. Foram avaliados aos 120 dias após a semeadura o número de folhas, a massa da matéria seca da raiz, a massa seca da parte aérea, a massa seca total, a altura da planta e o índice de qualidade da muda. Os substratos contendo fibra de coco, a fibra de caule de palmeira e o composto orgânico constituem alternativas viáveis como condicionadores de substrato para produção de muda de cupuaçu.

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A model for the construction of a simple and cheap apparatus to be used as bioreactor for reactions catalyzed by baker's yeast (Saccharomyces cerevisiae) is described. The bioconversion and separation of cells from products and residual substrates are obtained at the same time. The reactions carried out in this type of reactor are faster than those catalyzed by immobilized cells. Yeast cells can be cultivated in this bioreactor operating with cell recycling at appropriated conditions using glucose and other nutrients.

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extracts of the regional plants Annona squamosa and Annona muricata were analysed by silica gel thin-layer chromatography using adequate systems of solvents and spray reagents. Carbohydrates, amino acids, alkaloids, flavonoids and terpenoids were detected in both species. These data agree with those on the literature about phytochemistry of the Annonaceae.

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Lipases have been immobilized in microemulsion-based organogels (MBG's) and successfully utilized for the enantioselective esterification, diesterification and transesterification reactions, in organic solvents at 25ºC. This methodology is described as a new alternative for the use of enzymes in organic solvents. High enzymic stability has been observed. We have also used this methodology for the successful resolution of chiral secondary alcohols. This is a convenient way of using this catalyst in organic solvents which employs small amounts of the enzyme (250mg/mL).

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The generation of "cold light", visible to the human eye, by chemical reactions has attracted the attention of the scientific community since the beginning of this century. Besides the academic interest in the elucidation of the mechanisms of excited state formations, many chemiluminescence reactions have found widespread analytical applications. Moreover, the phenomenon of chemiluminescence can also be used as a tool in undergraduate and college teaching. In this article, we describe several known chemiluminescence demonstrations, which are suitable for school teaching. The main objective of this work is to produce didactic material in Portuguese to stimulate Brazilian secondary and high school teachers to use these experiments in the classroom. The demonstrations include singlet oxygen emission, the luminol reaction, oscillating chemiluminescence and the peroxyoxalate reaction.

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The herbicides are being used in huge quantities for various porpouses. Once the herbicide finds its way into the environment, a major part of it comes in contact with soil. Humic substances are major organic constituents of soil. These substances may interact with herbicides in different modes and adsorption is probably the most important one. Adsorption will control the quantity of herbicide in the soil solution, and determines its persistence, leaching, mobility and bioavailability. In this work we studied the interaction between the herbicide 2,4D and soil in the presence and absence of organic matter. The methodology utilized for the determination of 2,4D was gas chromatography with eletron capture detector. The behavior of 2,4D was evaluated through Freundlich isotherms. It was verified that the herbicide 2,4D has a large adsorption in the humic acid .

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A new approach for teaching in basic experimental organic chemistry is presented. Experimental work goes on parallel to theoretical lectures leading to an immediate application of theoretical concepts transmitted therein. One day/week is dedicated exclusively to the organic laboratory. Reactions are proposed as problems to be solved; the student has to deduce the structure of the product on the basis of his observations, the analytical data and his mechanistical knowledge. 70 different experiments, divided in 7 thematical chapters, are presented. All experiments require the analysis and discussion of 1H and 13C NMR, IR and UV spectra. Additional questions about each reaction have to be answered by the student in his written report. Laboratory safety is garanteed by the exclusion or substitution of hazardous and toxic reagents. Microscale preparations are adopted in most cases to lower the cost of materials and the amount of waste. Recycling of many reaction products as starting materials in other experiments reduces the need for commercial reagents and allows the execution of longer reaction sequences. Only unexpensive standard laboratory equipment and simple glassware are required. All experiments include instructions for the save treatment or disposal of chemical waste.

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The radiocarbon dating of the soil organic matter (SOM) is a polemic subject, due mainly to the complexity of the formation of the soils and to the variable contamination from several sources. Soil samples from 4 different Brazilian localities were submitted to physical and chemical pre-treatment for the extraction of humin fraction, which is the most stable organic compound and theoretically the oldest and representative of the age of the SOM. The radiocarbon dating obtained from the total SOM and their humin fractions are compared to the 14C ages from buried charcoals at similar depths. The radiocarbon ages obtained from such charcoals are, in most of the cases, concordant within the experimental errors of those obtained on humin fractions, or are in average 10% higher, with one exception. Thus, the ages on humin fractions could be assumed as the minimum ages for the associated soils, while the results obtained on total SOM, even at depths until 200 cm, exhibit pronounced contamination effect by modern carbon, rejuvenating their ages.

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In organic synthesis, lipases are the most frequently used biocatalysts. They are efficient stereoselective catalysts in the kinetic resolution of a wide variety of chiral compounds. The discovery that enzymes possess catalytic activity in organic solvents has made it possible to address the question of reaction medium influence on enzymatic specificity. Perhaps the most exciting and significant development in this emerging area is the discovery that enzyme specificity, in particular enantioselectivity, can be affected by changing from one organic solvent to another. This article discusses the scope and possible mechanistic models of this phenomenon in hydrolases, specially lipases, as well as directions of future research in the area.

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The Baylis-Hillman reaction has significantly advanced in the last ten years as demonstrated by a number of applications described in the literature. In this report we show some aspects of this reaction, including scope, limitations and perspectives.

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An introduction to the fundamental concepts and main aspects of organic clean synthesis is given, and relevant industrial examples which have implemented the philosophy of cleaner synthesis are also presented. Recent trends in organic synthesis which are environmentally friendly are also discussed.

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This work describes the construction of a home-made low-cost reactor, using easily available materials, capable of destroying efficiently dissolved organic matter. Just 30 minutes of irradiation were sufficient to destroy more than 99% of the humic acids present in a solution of 4 mg C L-1. Copper speciation was evaluated in natural waters of different salinities to test the reactor's efficiency in destroying organically complexed metal species. The effect of the organic matter concentration, salinity, dissolved oxygen and temperature in the photo-oxidation process is discussed.

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Diazocarbonyl compounds are a very important class of organic substances which have a long history of useful aplications in organic chemistry. The focus of this report deals with the use of diazocarbonyl compounds in a ariety of important reactions and their application in organic synthesis. These reactions are briefly summarized showing their broad scope.

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In the last decade we have seen improved a powerfull tool to medicinal chemistry: the Solid Phase Organic Synthesis (SPOS). This metodology can be used to synthesize a large library of compounds in a short time by combinatorial chemistry, where simple chemical substances can be combinated one to each other building a library of complex compounds. In this work we present the solid phase organic synthesis and their advantage upon the tradicional organic synthesis methodology, as well as the main polimers used in the SPOS technique.