976 resultados para Matèria orgànica


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

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

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

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Pós-graduação em Química - IQ

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Pós-graduação em Engenharia Civil - FEIS

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Pós-graduação em Zootecnia - FCAV

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Pós-graduação em Microbiologia Agropecuária - FCAV

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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The landfill biogas can be an alternative energetic resource as a fuel to electrical energy generators, although, there are not too many techniques to prospect the gas. Usually, landfills receive home waste, which in most are constituted by organic matter whose degradation by anaerobic activity produces the biogas. Geophysics is an important tool in environmental studies and the electrorresistivity, an important method employed in contaminated areas by slurry or necroslurry, including a monitoring for each contaminator flow. The electrorresistivity has not too much application in finding biogas. For this work, two biogas drains in Rio Claro-SP landfill were selected: one whose waste disposition correspond to the initial activities in the landfill and another drain whose disposition started more recently. The result consists in a higher biogas production if compared to the biogas from the older drain. The present paper consists in a monitoring along one year, with dates collection in each fifteen days. These dates were tabled in Excel 2010 program and graphics of resistivity x depth were generated. Hereafter, most variable resistivity values depth were chosen, to further graphics pluviosity x resistivity generation in Grapher 8 program and the biogas output (m³/h) in monitoring period. The use of pluviosity parameter can be justified by its influence above resistivity. The results show that there is a horizon with possibly biogas accumulation. Lastly, the method was effective, although, for any application of geophysical methods, the knowledge about its limitations is necessary; in this case the influence of pluviosity and also that the measurements were made in one single point, it will not show any side variation

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Os cupins são conhecidos também como térmitas ou térmites, formam um grupo extenso e diverso e, atualmente, há mais de 2.800 espécies descritas que se distribuem em sete famílias. Pertencentes à ordem Isoptera, os térmitas são insetos eussociais que apresentam uma organização social altamente desenvolvida e vivem em ninhos denominados de cupinzeiros, geralmente, construídos no solo. Os cupinzeiros podem ser bem resistentes e estruturalmente complexos, e neles são encontrados indivíduos morfologicamente distintos adaptados a determinadas funções que constituem as diferentes castas (reprodutores, operários e soldados), além de indivíduos imaturos (“ninfas” e “larvas”) e ovos. A presença dos cupins nos ecossistemas é de extrema importância em diversos e diferentes processos. Em linhas gerais, os cupins são bastante importantes como decompositores de matéria orgânica fragmentando os detritos orgânicos, são mediadores da humificação, participam da ligação e formação de agregados e complexos minerais argilosos, e também atuam na fixação do nitrogênio, pois seus simbiontes têm a capacidade de fixar o gás nitrogênio da atmosfera, contribuindo, dessa forma, com a fertilidade do solo. Contudo, os cupins são bem conhecidos porque causam prejuízos enormes, ou seja, pelo potencial como pragas, danificando diversos tipos de materiais celulósicos e não celulósicos, além de edificações, monumentos, plantações, etc. Os cupins subterrâneos são os que causam maiores problemas, pois possuem grande capacidade de dispersão e são animais, que devido aos hábitos crípticos, têm o estudo e o controle dificultado. Além disso, estão entre os insetos mais abundantes, sendo a maioria pertencente à família Rhinotermitidae. O controle de cupins subterrâneos é um controle diferenciado, já que possuem o ninho sob o solo e com um grande número de indivíduos. A eliminação de uma parte da colônia muitas...

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This work aims to analyze data from a Natural Electric Potential landfill type ditch located in Cordeirópolis (SP). The procedure measures initially involved the assembly and installation of an apparatus cables, sensors and drain geophysical measurements and flow rate of biogas in a ditch later filled by solid waste. Biogas is a product of degradation of organic matter in waste by the action of microorganisms in an anaerobic environment. Its features high methane content in the gas potentially usable as fuel in energy generation systems or steam. The study area is characterized by clayey soil composition change from the diabase sill correlated to the event Serra Geral Formation siltstones overlapping Tatuí with groundwater level site around 50m. The cables were installed vertically in parallel with drain gas manifold, which allowed the collection of data by the technique geophysical logging every 15 days over a period of eight months. For data analysis we used four parameters in the study, the closing time of the ditch, natural electric potential, the flow velocity of biogas and rain. With the tabulated data plots were constructed for each collection day showing values in the range of the cable is in contact with waste (200 cm - 400 cm) and range of the cable in contact with the soil (600 cm - 800 cm). Subsequently graphs were generated with the period of eight months to analyze the data tabulated. A statistical correlation data, which show the influence of rainfall on the production of biogas. The results were satisfactory and demonstrated the feasibility of the research method in studies for the feasibility analysis for the capture of biogas energy

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A serapilheira de matas e florestas é rica em matéria orgânica e responsável pela ciclagem de nutrientes que ocorre neste ecossistema. Além de atuar como protetora do solo e habitat para diversos microrganismos e insetos. O presente estudo buscou analisar o papel da serapilheira no desenvolvimento de mudas florestais nativas em viveiros. As espécies utilizadas no experimento foram Parapitadenia rigida (Benth) (angico-vermelho), Acacia polyphylla DC. (monjoleiro), Lonchocarpus muehlbergianus Hassl. (embira-de-sapo) e Schizolobium parahyba (Vell.)S.F.Blake (guapuruvu). O crescimento foi analisado em quatro substratos: mineral (S1), mineral com serapilheira na proporção de volume 1:1 (S2), orgânico usado em viveiros (S3) e orgânico usado em viveiros com serapilheira na proporção de volume 1:1 (S4). O delineamento experimental consistiu em blocos ao acaso com 16 tratamentos e 5 repetições. Durante uma primeira fase foram feitas as medições de altura e diâmetro das mudas em fase de viveiro. A segunda fase foi a análise da biomassa seca e avaliação da sobrevivência inicial em campo. O resultado apresentou melhores desempenhos no crescimento e sobrevivência nos tratamentos com serapilheira em comparação aos sem serapilheira. Podemos concluir que a serapilheira apresenta potenciais benéficos relevantes para a produção de mudas florestais

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The treatment of domestic and industrial effluents through Wastewater Treatment Plants (WTPs) generates a residue termed sewage sludge, rich in organic matter, high-volume, occasionally containing pathogens and heavy metals. The sludge generation can minimize the benefits brought by the treatment of sewage, because this residue does not always receive appropriate treatment before final disposal. The disposal is another problem related to sludge. Landfills generally does not have physical space and alternatives such as the use in agriculture requires an intense treatment that could be in many cases operational or economic unfeasible. The objective of this work is the theoretical research about the processes of stabilization of the sludge by anaerobic digestion and the methanogenic activity during the process. Through analysis of each step and contemplating each relevant factor in anaerobic digestion process in order to optimize them, we proposed a theoretical model of reactors capable of stabilize the sludge, reduce its volume and eliminate pathogens. The obtained configuration consists of two anaerobic reactors connected in series. The first one operates in the range mesophilic temperature (35 ° C) and has higher hydraulic retention time (25 days) working primarily in the stabilization of organic matter present in the sludge and producing biogas, whereas the second one operates in the thermophilic range (55 ° C) in order to eliminate pathogens, and to reduce the volume. The hydraulic retention time in the second reactor is lower (10 days). Both mesophilic and thermophilic processes were efficient in what was proposed, promoting the stabilization of organic matter present in the sludge and significant reduction of pathogens. As a final step with the sludge previously digested, it is indicated a final dehydration... (Complete abstract click electronic access below)

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The geophysical methods are widely applied in environmental characterization and monitoring studies. The resistivity method, in particular, has a wide area of applications, being effective in studies of solid waste landfills. The present work propose a geophysical monitoring in the Cordeirópolis city controlled landfill and analyze relationships between variation of electrical resistivity parameter, the residence time of the solid waste in landfill, the rainfall in the region and the organic matter biodegradation processes. The study has no monitoring system to control the products generated in the organic matter decomposition found in waste such as sealing blanket or leachate or gas drains. The results shows that the electrical resistivity parameter was effective in monitoring the landfill contamination plume