999 resultados para Azadirachta indica A. Juss. Sistema nanoemulsionado. Inibidores de corrosão


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Fundaão de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Bemisia tabaci biótipo B é um dos principais insetos-praga na cultura da abobrinha (Cucurbita pepo L.). O manejo dessa mosca-branca tornou-se grande desafio aos agricultores, uma vez que esta apresenta rápida capacidade de desenvolver resistência a diferentes classes de inseticidas. Como alternativa vem sendo investigado o uso de extratos vegetais com atividades inseticida e/ou insetistática, os quais têm revelado resultados promissores no combate a inseto. O presente trabalho teve por objetivo avaliar os possíveis efeitos de sete extratos provenientes de cinco espécies vegetais, Ruta graveolens L. (folhas), Azadirachta indica A. Juss. (folhas + ramos), Trichilia pallida Swartz (ramos), T. pallida (folhas), A. indica (amêndoas), Chenopodium ambrosioides L. (inflorescências + ramos+ folhas) e Mentha pulegium L. (folhas), sobre Bemisia tabaci biótipo B em abobrinha, por meio de testes de repelência e deterrência para oviposição. em teste com chance de escolha, avaliou-se a atratividade e determinou-se o índice de repelência após 6, 24 e 48 horas da aplicaão dos extratos. A oviposição foi verificada após a terceira contagem do número de adultos. O extrato à base de folhas de M. pulegium mostrou repelência e deterrência à oviposição de B. tabaci biótipo B, podendo ser recomendado como alternativa para o manejo do inseto.

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An interesting development in surfactants science and technology is their application as corrosion inhibitors, since they act as protective films over anodic and cathodic surfaces. This work aims to investigate the efficiency of saponified coconut oil (SCO) as corrosion inhibitor and of microemulsified system (SCO + butanol + kerosene oil + distilled water), in saline medium, using an adapted instrumented cell, via techniques involving linear polarization resistance (LPR) and mass loss coupons (MLC). For this, curves of efficiency versus SCO concentration (ranging between 0 and 75 ppm) have been constructed. According to the obtained results, the following efficiency levels were reached with OCS: 98% at a 75 ppm concentration via the LPR method and 95% at 75 ppm via the MLC method. The microemulsified system, for a concentration of 15 ppm of SCO, obtained maximum inhibition of 97% (LPR) and 93% (MLC). These data indicate that it is possible to optimize the use of SCO in similar applications. Previous works have demonstrated that maximal efficiencies below 90% are attained, typically 65% as free molecules and 77% in microemulsified medium, via the LPR method in a different type of cell. Therefore, it can be concluded that the adapted instrumented cell (in those used methods) showed to be an important tool in this kind of study and the SCO was shown effective in the inhibition of the metal

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Corrosion is an important phenomenon that frequently occurs in the oil industry, causing surface ablation, such as it happens on the internal surfaces of oil pipes. This work aims to obtain new systems to reduce this specific problem. The surfactants SDS, CTAB, and UNITOL L90 (in micellar and microemulsionated systems) were used as corrosion inhibitors. The systems were obtained using a C/S ratio of 2, butanol as cosorfactant, kerosene as oil phase and, as water phase, NaCl solutions of 0.5M with pH = 2, 4, and 7. Microemulsion regions were found both for direct and inverse micelles. SDS had the higher microemulsion region and the area was not dependent of pH. The study of micellization of these surfactans in the liquid-gas interface was carried out via the determination of CMC from surface tension measurements. Regarding microemulsionated systems, in the case of CTAB, CMC increased when pH was increased, being constant for SDS and UNITOL L90. Concerning micellar systems, increase in pH caused decrease and increase in CMC for SDC and CTAB, respectively. In the case of UNITOL L90, CMC was practically constant, but increased for pH = 4. The microemulsionated systems presented higher CMC values, except for UNITOL L90 L90. The negative values of free energy of micellization indicated that the process of adsorption was spontaneous. The results also indicated that, comparing microemulsionated to systems, adsorption was less spontaneous in the case of SDS and CTAB, while it did not change for UNITOL L90. SAXS experiments indicated that micelle geometry was spherical, existing also as halter and flat micelles, resuting in a better inght on the adsorption at the liquid-solid interface. Efficiency of corrosion inhibition as determined by electrochemical measurements, from corrosion currents calculated from Tafel extrapolation indicuting heat showed surfactants to be efficient even at low concentrations. Equilibrium isotherm data were fitted to the Freundlich model, indicating that surfactant adsorption occurs in the form of multilayers

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Corrosion usually occurs in pipelines, so that it is necessary to develop new surface treatments to control it. Surfactants have played an outstanding role in this field due to its capacity of adsorbing on metal surfaces, resulting in interfaces with structures that protect the metal at low surfactant concentrations. The appearance of new surfactants is a contribution to the area, as they increase the possibility of corrosion control at specific conditions that a particular oil field presents. The aim of this work is to synthesize the surfactants sodium 12 hydroxyocadecenoate (SAR), sodium 9,10-epoxy-12 hydroxyocadecanoate (SEAR), and sodium 9,10:12,13-diepoxy-octadecanoate (SEAL) and apply them as corrosion inhibitors, studying their action in environments with different salinities and at different temperatures. The conditions used in this work were chosen in order to reproduce oil field reality. The study of the micellization of these surfactants in the liquid-gas interface was carried out using surface tensiometry. It was observed that cmc increased as salt concentration was increased, and temperature and pH were decreased, while cmc decreased with the addition of two epoxy groups in the molecule. Using the values of cmc and the Gibbs equation, the values of Gibbs free energy of adsorption, area per adsorbed molecule, and surface excess were calculated. The surface excess increases as salt concentration and temperature decreases, increasing as pH is increased. The area per adsorbed molecule and the free energy of adsorption decrease with salt concentration, temperature, and pH increase. SAXS results showed that the addition of epoxy group in surfactant structure results in a decrease in the repulsion between the micelles, favoring the formation of more oblong micellar structures, ensuring a better efficiency of metal coverage. The increase in salt and surfactant concentrations provides an increase in micellar diameter. It was shown that the increase in temperature does not influence micellar structure, indicating thermal stability that is advantageous for use as corrosion inhibitor. The results of inhibition efficiency for the surfactants SEAR and SEAL were considered the best ones. Above cmc, adsorption occurred by the migration of micelles from the bulk of the solution to the metal surface, while at concentrations below cmc film formation must be due to the adsorption of semi-micellar and monomeric structures, certainly due to the presence of the epoxy group, which allows side interactions of the molecule with the metal surface. The metal resistance to corrosion presented values of 90% of efficiency. The application of Langmuir and Frumkin isotherms showed that the later gives a better description of adsorption because the model takes into account side interactions from the adsorbing molecules. Wettability results showed that micelle formation on the solid surface occurs at concentrations in the magnitude of 10-3 M, which isthe value found in the cmc study. This value also justifies the maximum efficiencies obtained for the measurements of corrosion resistance at this concentration. The values of contact angle as a function of time suggest that adsorption increases with time, due to the formation of micellar structures on metal surface

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The isolated and associated effects of cabbage cultivars Ruby Ball and Chato de Quintal and aqueous extract of seeds of fruits of neem (Azadirachta indica A. Juss.) were evaluated in the concentrations of 5 and 10% on Plutella xylostella (L.) attractiveness, feeding and development. In free-choice no-preference for feeding test, leaf discs of each treatment were placed in Petri dishes where three caterpillars/treatment were released while in no-choice test two caterpillars were placed in Petri dishes with one leaf disc in each dish. In the biology test, neonate larvae were transferred to Petri dishes in the proportion of one per dish, whereas the biological parameters were evaluated: larvae mortality after 1, 3 and 5 days; pupae mortality; total mortality; six day-old larvae weight; 24 hour-old pupae; and adult longevity. Cultivar Ruby Ball showed lower attractiveness to the caterpillars in free-choice test. Neem extract in both concentrations was repellent to the caterpillars in free-choice test. There were no differences in the dry mass consumed by the caterpillars in free-choice and no-choice tests. There were no differences in larval, pupal and total mortality between the cultivars. Both doses of neem extract were equally efficient in the mortality of the diamondback moth. There were no differences in caterpillars and pupae weight and in the longevity of the adults of P. xyostella between the cultivars.

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Pós-graduaão em Ciência Animal - FMVA

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Coordenaão de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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O principal método de controle do carrapato bovino Boophilus microplus é o uso de carrapaticidas sintéticos. Entretanto, o rápido desenvolvimento de resistência ao princípio ativo, os riscos de resíduo nos produtos de origem animal e a contaminaão ambiental tem incentivado a busca por fontes alternativas de controle desse parasita. Dentro desse contexto, o uso de fitoterápicos aponta como uma alternativa no controle do carrapato, podendo reduzir os impactos econômicos e ambientais ao uso de produtos químicos sintéticos. Assim, o objetivo deste trabalho foi avaliar “in vitro” o efeito dos óleos essenciais de capim-salsar (Cymbopogon interanius Jowitt) e priprioca (Cyperus articulatus L.), substâncias químicas isoladas do timbó (Derris nicou; Derris urucu): rotenona, rotenolona e deguelina e óleos de andiroba (Carapa guianensis Aublet.) e nim (Azadirachta indica A. Juss.), no controle do carrapato. As pesquisas foram desenvolvidas nas instalaões da Unidade de Pesquisa Animal “Sen. Álvaro Adolpho”, da Empresa Brasileira de Pesquisa Agropecuária – Embrapa Amazônia Oriental, no município de Belém, estado do Pará, no período de março a julho de 2008. As fêmeas ingurgitadas de Boophilus microplus foram colhidas manualmente, de bovinos naturalmente infestados, em propriedade particular localizada à uma hora de Belém. Após a coleta, foram transportadas para o laboratório em vasilhames plásticos, identificados, limpos e aerados. No laboratório, foram lavadas em água corrente, secas em papel absorvente e pesadas em balança analítica (precisão de 0,0001g). A metodologia utilizada foi a imersão de teleóginas por tempo de cinco minutos. Após a imersão, os carrapatos foram secos em papel absorvente, fixados em placas de Petri e mantidos em temperatura ambiente para realizaão da postura. Durante todo período experimental a temperatura e umidade relativa do ar em laboratório foi aferida com auxílio de um termohigrometro. O delineamento experimental utilizado foi o inteiramente casualizado. Os percentuais de mortalidade de fêmeas ingurgitadas de B. microplus ,no dia 5 e 15, variaram de: 45% a 90%; 37% a 90% e 60 a 90%; 60% a 90%, para capim-salsar e priprioca, respectivamente. Os resultados referentes a postura não evidenciaram diferença estatística entre as concentraões 2% e 10%, em relaão ao controle (água + etanol). Entretanto, houve diferença na concentraão 50%, tanto para capim-salsar quanto priprioca. Para capim-salsar, nesta concentraão, foi observada postura de ovos inférteis. Com relaão aos percentuais de eficiência do produto, os valores obtidos foram de: 100%; 95,63%; 98,77%; 100% e 99,30%; 96,97%; 99,85% e 100%, para os efeitos do óleo essencial de capim-salsar e priprioca nas concentraões 2%, 5%, 10%, 50%, respectivamente. As taxas de mortalidade, no dia 5, variaram de 37% a 41%, 49% a 64% e 52% a 41% para rotenona, rotenolona e deguelina, da menor para maior concentraão, respectivamente. Todas as substâncias testadas apresentaram taxa de mortalidade significativamente maior do que as obtidas pelo grupo controle (água + etanol). Os melhores resultados de percentual da postura foram de 49% e 26% para rotenona e deguelina a 200ppm, respectivamente e 34% para rotenolona a 100ppm. Os percentuais de eficiência nos testes com rotenona foram de 95,24% e 98,68%, para rotenolona da ordem de 97,29%; 98,08%; 100% e deguelina 95,45%; 98,23% e 100%, em 100ppm, 200ppm e 300ppm, respectivamente. Para andiroba e nim, o percentual de mortalidade foi observado no dia 15 e demonstrou um comportamento natural do ciclo biológico dos carrapatos, pois não houve diferença estatística significativa entre o controle (água + etanol) e os tratamentos nas diferentes concentraões. Para andiroba e nim a maior eficiência obtida foi de 98,01% e 100%, na concentraão de 50%, respectivamente.

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Azadirachta indica A. Juss, popularmente conhecido como nim, é uma espécie arbórea que se destaca por possuir substâncias de aão inseticida, fungicida, bactericida e nematicida. Sementes de nim foram inoculadas em meio de cultura WPM (Wood Plant Medium) contendo diferentes concentraões de ácido giberélico (GA<sub>3) (0; 3,0; 6,0; 9,0; e 12,0 mg L-1). Após 30 dias, cotilédones obtidos a partir de plântulas germinadas in vitro foram inoculados em meio WPM suplementado com ácido 2,4-diclorofenoxiacético (2,4-D) (0,0; 1,0; 2,0; e 3,0 mg L-1) e, ou, 6-benzilaminopurina (BAP) (0,0; 1,0; 2,0; e 3,0 mg L-1). As culturas foram incubadas no escuro, a 28 ºC. Os calos formados foram avaliados com base na sua coloraão e textura, e três subcultivos foram realizados mensalmente em meio WPM contendo 2,0 mg L-1 BAP, na presença de luz. A cada 30 dias, avaliou-se o número de brotos formados a partir dos calos subcultivados. Entre os meios testados, o mais apropriado para germinaão in vitro de nim foi o WPM na ausência de GA<sub>3. Explantes cotiledonares cultivados em WPM suplementado com 2,0 mg L-1 de BAP promoveram a maior formaão de calos com potencial morfogênico. Quando esses calos foram transferidos para meio de composição similar, obteve-se alta formaão de brotaões até o terceiro subcultivo.

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Fundaão de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Parasitic diseases constitute one of the main problems affecting livestock; however the use of chemical medicaments provides drug resistance residues in animal and environmental contamination. Changes in production concepts require that food must be produced in hygienic conditions, per healthy animals and that are not eliminating antibiotic residues, pesticides or other drugs. This scenario has favored organic production and the use of medicinal plants. For the control of endoparasites, several studies have published the benefits of Azadirachta indica A. Juss., Punica granatum Linn., Musa sp., Operculina hamiltonii G. DON., propolis, among others. However, despite the existence in- vitro studies that demonstrate the pharmacological properties of phytotherapics, there is still need for clinical trials to determine dosage and its effects in- vivo. Investigations of new bioactive natural substances can be of great value for the control of animal health and food safety, which is particularly important for organic production systems in which the use of chemical drugs is a limiting factor for certification.

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The behavioral inhibitory effect of methanol extracts from neem leaves (Azadirachta indica A. Juss) at different concentrations (0, 10,000, 18,000, 32,000 and 56,000 ppm) was evaluated using naive and experienced medflies (Ceratitis capitata (Wied.)) ovipositing on the fruits of grape cv. 'Italia'. The grapes were immersed in the specific treatments and were exposed for 24 h to 3 pairs of female and male medflies, both nave and experienced, in a choice test. At concentrations >= 18,000 ppm, the extract that was applied to the grapes inhibited oviposition. The previous experience with treated grapes did not affect the response of the medflies. This study is the first step toward the application of the behavior control of the medflies as a tool in grape vineyards. The potential for using oviposition inhibitory in behavioral control of C. capitata are discussed.

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En Cuba, la generalización del cultivo del Nim (Azadirachta indica A. Juss) y el uso de los bioinsecticidas producidos a partir de éste como apoyo al desarrollo de una agricultura sostenible y ecológica, trae consigo la necesidad de validar su efectividad biológica en una gama cada vez más amplia de plagas de interés agrícola. En el presente trabajo se demuestra que con el uso de los productos OleoNim 80 CE, NeoNim 60 CE, CubaNim T, CubaNim SM y FoliarNim HM es posible controlar con eficacia la acción nociva de plagas tales como Diaphania hyalinata (L.) en melón, Empoasca fabae (Harris) en poroto, Thrips palmi (Karny) en pepino en organopónico y bajo condiciones de cultivo protegido, y Bemisia tabaci (Genn.) en poroto y tomate. Las efectividades biológicas alcanzadas en estas experiencias, oscilaron entre 75 y 100 %, lo cual confirma la factibilidad del uso de estos bioinsecticidas insertados en el Manejo Integrado de Plagas para una agricultura sostenible.

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The cercospora leaf spot, caused by Cercospora abelmoschi Ellis and Everhart, is quite common in okra culture. Therefore, this study aimed to evaluate the efficiency of aqueous extracts of neem ( Azadirachta indica A. Juss), citronella ( Cymbopogon nardus (L.) Rendle), eucalyptus ( Eucalyptus grandis L.), ecolife®, A. indica oil and fungicide cercobin 700 PM® in control of cercospora leaf spot on okra in greenhouse. The extracts and neem oil were tested in concentration 10%, the fungicide cercobin 700PM® in dose 2.5 g.l-1, applied 10 days after pathogen inoculation by leaf spray and the citric biomass extract ecolife® in concentration 5.0 ml.l-1, applied 10 days before pathogen inoculation. All treatments, except ecolife®, were effective in controlling cercospora leaf spot and may be recommended as alternatives in agroecological systems.