942 resultados para butyl rubber


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The paper industry is constantly looking for new ideas for improving paper products while competition and raw material prices are increasing. Many paper products are pigment coated. Coating layer is the top layer of paper, thus by modifying coating pigment also the paper itself can be altered and value added to the final product. In this thesis, synthesis of new plastic and hybrid pigments and their performance in paper and paperboard coating is reported. Two types of plastic pigments were studied: core-shell latexes and solid beads of maleimide copolymers. Core-shell latexes with partially crosslinked hydrophilic polymer core of poly(n-butyl acrylate-co-methacrylic acid) and a hard hydrophobic polystyrene shell were prepared to improve the optical properties of coated paper. In addition, the effect of different crosslinkers was analyzed and the best overall performance was achieved by the use of ethylene glycol dimethacrylate (EGDMA). Furthermore, the possibility to modify core-shell latex was investigated by introducing a new polymerizable optical brightening agent, 1-[(4-vinylphenoxy)methyl]-4-(2-henylethylenyl)benzene which gave promising results. The prepared core-shell latex pigments performed smoothly also in pilot coating and printing trials. The results demonstrated that by optimizing polymer composition, the optical and surface properties of coated paper can be significantly enhanced. The optimal reaction conditions were established for thermal imidization of poly(styrene-co-maleimide) (SMI) and poly(octadecene-co-maleimide) (OMI) from respective maleic anhydride copolymer precursors and ammonia in a solvent free process. The obtained aqueous dispersions of nanoparticle copolymers exhibited glass transition temperatures (Tg) between 140-170ºC and particle sizes from 50-230 nm. Furthermore, the maleimide copolymers were evaluated in paperboard coating as additional pigments. The maleimide copolymer nanoparticles were partly imbedded into the porous coating structure and therefore the full potential of optical property enhancement for paperboard was not achieved by this method. The possibility to modify maleimide copolymers was also studied. Modifications were carried out via N-substitution by replacing part of the ammonia in the imidization reaction with amines, such as triacetonediamine (TAD), aspartic acid (ASP) and fluorinated amines (2,2,2- trifluoroethylamine, TFEA and 2,2,3,3,4,4,4-heptafluorobuthylamine, HFBA). The obtained functional nanoparticles varied in size between 50-217 nm and their Tg from 150-180ºC. During the coating process the produced plastic pigments exhibited good runnability. No significant improvements were achieved in light stability with TAD modified copolymers whereas nanoparticles modified with aspartic acid and those containing fluorinated groups showed the desired changes in surface properties of the coated paperboard. Finally, reports on preliminary studies with organic-inorganic hybrids are presented. The hybrids prepared by an in situ polymerization reaction consisted of 30 wt% poly(styrene- co-maleimide) (SMI) and high levels of 70 wt% inorganic components of kaolin and/or alumina trihydrate. Scanning Electron Microscopy (SEM) images and characterization by Fourier Transform Infrared Spcetroscopy (FTIR) and X-Ray Diffraction (XRD) revealed that the hybrids had conventional composite structure and inorganic components were covered with precipitated SMI nanoparticles attached to the surface via hydrogen bonding. In paper coating, the hybrids had a beneficial effect on increasing gloss levels.

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Entre as possibilidades de manejo de plantas daninhas, o método químico é o mais utilizado. No entanto, um possível problema apresentado por esse método é a deriva acidental. Assim, conhecer esse risco e como quantificar seu efeito na cultura é fundamental para que esses produtos sejam empregados corretamente no manejo de plantas daninhas. Este trabalho teve como objetivo estudar o efeito da deriva simulada de herbicidas, por meio de subdoses, no crescimento de mudas de dois clones de eucalipto, considerando-se a possibilidade de extensão de seu uso. Foram utilizados os herbicidas atrazine, nicossulfuron e tembotrione e as misturas formuladas foramsulfurom + iodossulfurom-metílico e fluazifop-p-butyl + fomesafen, aplicados nas doses correspondentes a 3, 6 e 12% da dose recomendada. Foi avaliada a porcentagem de intoxicação, altura, diâmetro do caule e massa de matéria seca da parte aérea. Os herbicidas afetaram o crescimento das plantas de eucalipto, limitando principalmente o incremento em massa de matéria seca da parte aérea. O risco de perdas de produtividade, caso haja intoxicação via deriva, é menor com atrazine, foramsulfurom + iodossulfurom-metílico e tembotrione e maior com fluazifop-p-butyl + fomesafen e nicossulfuron. Entre os produtos testados, o tembotrione é o que apresenta maior potencial para ser utilizado em áreas de eucalipto.

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ABSTRACT The objective of this study was to evaluate organic substrates in the production of canafistula (Peltophorum dubium) (Spreng.) Taub, cutieira (Joannesiaprinceps Vell.), jatoba (Hymenaea courbaril L.) and rubber tree (Hevea brasiliensis M. Arg.) seedlings, native trees with potential use in forest restoration programs. The design was completely randomized with 10 substrate formulations with 4 repetitions of 3 plants for the four species. The evaluated substrates consisted of soil, bovine manure (BM), poultry manure (PM), chemical fertilizer (CF) and sand, in different proportions. The experiment was concluded at the end of 180 days for canafistula, cutieira and rubber and 210 days for jatoba. At the end of these periods, the root (RDM), shoot (SDM) and total (TDM) the dry matters of the seedlings were determined. Quantification of AMF spores and normalization between samples through SPORES/RDM correction were also performed. The Scott-Knott test at 5% probability was applied. Regarding biomass production, only canafistula had significant difference among the tested substrates. In relation to sporulation, the highest values were observed in cutieira and rubber tree in substrate containing PM. The substrates composed of 40 or 50% soil + 20% sand + 30% or 40 PM for canafistula; 50% soil + 20% sand + 30% PM for cutieira; and for jatoba and rubber tree 60% soil + 20% sand + 20% PM, enabled the best results in terms of biomass production in seedlings and AMF sporulation.

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This study is made as a part of the Chembaltic (Risks of Maritime Transportation of Chemicals in Baltic Sea) project which gathers information on the chemicals transported in the Baltic Sea. The purpose of this study is to provide an overview of handling volumes of liquid bulk chemicals (including liquefied gases) in the Baltic Sea ports and to find out what the most transported liquid bulk chemicals in the Baltic Sea are. Oil and oil products are also viewed in this study but only in a general level. Oils and oil products may also include chemical-related substances (e.g. certain bio-fuels which belong to MARPOL annex II category) in some cargo statistics. Chemicals in packaged form are excluded from the study. Most of the facts about the transport volumes of chemicals presented in this study are based on secondary written sources of Scandinavian, Russian, Baltic and international origin. Furthermore, statistical sources, academic journals, periodicals, newspapers and in later years also different homepages on the Internet have been used as sources of information. Chemical handling volumes in Finnish ports were examined in more detail by using a nationwide vessel traffic system called PortNet. Many previous studies have shown that the Baltic Sea ports are annually handling more than 11 million tonnes of liquid chemicals transported in bulk. Based on this study, it appears that the number may be even higher. The liquid bulk chemicals account for approximately 4 % of the total amount of liquid bulk cargoes handled in the Baltic Sea ports. Most of the liquid bulk chemicals are handled in Finnish and Swedish ports and their proportion of all liquid chemicals handled in the Baltic Sea is altogether over 50 %. The most handled chemicals in the Baltic Sea ports are methanol, sodium hydroxide solution, ammonia, sulphuric and phosphoric acid, pentanes, aromatic free solvents, xylenes, methyl tert-butyl ether (MTBE) and ethanol and ethanol solutions. All of these chemicals are handled at least hundred thousand tonnes or some of them even over 1 million tonnes per year, but since chemical-specific data from all the Baltic Sea countries is not available, the exact tonnages could not be calculated in this study. In addition to these above-mentioned chemicals, there are also other high volume chemicals handled in the Baltic Sea ports (e.g. ethylene, propane and butane) but exact tonnes are missing. Furthermore, high amounts of liquid fertilisers, such as solution of urea and ammonium nitrate in water, are transported in the Baltic Sea. The results of the study can be considered indicative. Updated information about transported chemicals in the Baltic Sea is the first step in the risk assessment of the chemicals. The chemical-specific transportation data help to target hazard or e.g. grounding/collision risk evaluations to chemicals that are handled most or have significant environmental hazard potential. Data gathered in this study will be used as background information in later stages of the Chembaltic project when the risks of the chemicals transported in the Baltic Sea are assessed to highlight the chemicals that require special attention from an environmental point of view in potential marine accident situations in the Baltic Sea area.

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kuv., 11 x 16 cm

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kuv., 11 x 17 cm

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kuv., 11 x 16 cm

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kuv., 11 x 16 cm

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kuv., 11 x 15 cm

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kuv., 11 x 15 cm

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kuv., 12 x 15 cm

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kuv., 11 x 15 cm

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Biofilms constitute a physical barrier, protecting the encased bacteria from detergents and sanitizers. The objective of this work was to analyze the effectiveness of sodium hypochlorite (NaOCl) against strains of Staphylococcus aureus isolated from raw milk of cows with subclinical mastitis and Staphylococcus aureus isolated from the milking environment (blowers and milk conducting tubes). The results revealed that, in the presence of NaOCl (150ppm), the number of adhered cells of the twelve S. aureus strains was significantly reduced. When the same strains were evaluated in biofilm condition, different results were obtained. It was found that, after a contact period of five minutes with NaOCl (150ppm), four strains (two strains from milk , one from the blowers and one from a conductive rubber) were still able to grow. Although with the increasing contact time between the bacteria and the NaOCl (150ppm), no growth was detected for any of the strains. Concerning the efficiency of NaOCl on total biofilm biomass formation by each S. aureus strain, a decrease was observed when these strains were in contact with 150 ppm NaOCl for a total period of 10 minutes. This study highlights the importance of a correct sanitation protocol of all the milk processing units which can indeed significantly reduce the presence of microorganisms, leading to a decrease of cow´s mastitis and milk contamination.

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An early experiment found that a square rubber sheet under symmetric biaxial loading may not remain square. This curious result has been one of the most instructive examples in finite elasticity. Here thermodynamic considerations are used to analyze this instability.

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A integração de certas práticas de manejo ao controle químico de plantas daninhas pode permitir a redução da dose do herbicida a ser aplicado, sem alterar significativamente os níveis de controle das plantas daninhas e rendimento de grãos de soja. Dessa forma, o objetivo do presente trabalho foi de avaliar a redução da dose recomendada da mistura formulada dos herbicidas fluazifop-p-butyl + fomesafen aplicados em condições de pós-emergência das palntas daninhas, associada à variação no espaçamento entre linhas da cultura de soja, sobre o controle de papuã (Brachiaria plantaginea) e o rendimento final de grãos da cultura. O experimento foi realizado na EEA/UFRGS, em Eldorado do Sul-RS, na estação de crescimento de 1997/98. O cultivar de soja testado foi o BR 16, em semeadura direta. Como tratamentos, utilizaram-se três espaçamentos entre linhas (20, 40 e 60 cm) e cinco doses do herbicida [fluazifop-p-butyl (200 g L-1) + fomesafen (250 g L-1)], aplicado na dose recomendada comercialmente de 1,0 L ha-1 (100%) e com reduções da dose (75, 50 e 25% da dose recomendada), mais a testemunha. Avaliou-se visualmente o controle de papuã aos 8 e 17 dias após as aplicações do herbicida, bem como a fitomassa seca de papuã e o rendimento de grãos da cultura. Os resultados evidenciaram que, para infestação moderada de papuã, o espaçamento entre linhas não tem efeito sobre o seu controle quando o herbicida é utilizado na dose recomendada. Para aplicações tardias, o espaçamento de 40 cm permite reduzir a dose do herbicida em até 50% sem afetar o controle de papuã e em 75% sem diminuir o rendimento de grãos da soja. A redução na dose do herbicida está condicionada à época de aplicação e ao espaçamento entre linhas; com espaçamentos reduzidos, é importante que as aplicações sejam feitas precocemente, a fim de garantir que quantidade suficiente de produto atinja as plantas daninhas.