807 resultados para Abono líquido orgánico
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Obtención de un producto líquido rico en sustancias húmicas mediante un procedimiento sencillo, rápido y extrapolable a nivel industrial y cuya aplicación a nivel agrícola sea satisfactoria. La obtención de dicho abono se ha llevado a cabo gracias a la optimización del proceso de extracción de las sustancias húmicas presentes en muestras de compost de origen vegetal. Las condiciones óptimas en las que se llevó a cabo dicho proceso implicaron altos valores de pH (> 10) y temperaturas superiores a 100°C. La aplicación del producto obtenido bajo tales condiciones, a nivel agrícola, ha mostrado aspectos de enorme interés tanto desde el punto de vista del desarrollo vegetal como en relación a las características del suelo o de la microbiota asociada a dicho sustrato.
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Mode of access: Internet.
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[EN]The present doctoral thesis centers on studying pyrolysis as a chemical recycling technique for rejected packaging waste fractions coming from separation and sorting plants. The pyrolysis experiments have been carried out in a lab-scale installation equipped with a 3.5 L semi-batch reactor and a condensation and collection system for the liquids and gases generated. In the present thesis, an experimental study on the conventional pyrolysis process applied to the aforementioned waste fractions has been conducted, as well as the study of non-conventional or advanced pyrolysis processes such as catalytic and stepwise pyrolysis. The study of the operating parameters has been carried out using a mixed plastics simulated sample, the composition of which is similar to that found in real fractions, and subsequently the optimized process has been applied to real packaging waste. An exhaustive characterization of the solids, liquids and gases obtained in the process has been made after each experiment and their potential uses have been established. Finally, an empirical model that will predict the pyrolysis yields (% organic liquid, % aqueous liquid, % gases, % char, % inorganic solid) as a function of the composition of the initial sample has been developed. As a result of the experimental work done, the requirements have been established for an industrial packaging waste pyrolysis plant that aims to be sufficiently versatile as to generate useful products regardless of the nature of the raw material.
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The catalytic cracking of triglycerides presents itself as a possible alternative to the production of biofuels with low emission of pollutants. In this work were synthesized the SAPO-5, the catalysts for the cracking reaction of soybean oil is presented. The solids were powder X-ray diffraction (XRD), thermogravimetric analysis (TG/DTG) and infrared spectroscopy (FTIR). The analyses indicated that the synthesis method has employed to obtain materials with high surface area and high acid. The soybean oil thermal and thermal catalytic cracking, realized from the room temperature to 450 ºC in a simple distillation system, has allowed obtaining two liquid fractions, each consisting of two phases, one aqueous and another organic, organic liquid (OL). The OL obtained from first fractions has shown high acid index, even in the thermal catalytic process. The products obtained in the cracking of soybean oil were analyzed by distillation, acid number, infra-red spectroscopy, density, viscosity, carbon residue, cetane number determination and characterization. The analysis of the products obtained in the presence and in the absence of the SAPO-5 permitted to conclude that all the solids tested presented catalytic activity in the deoxygenation of final products only at the second step of the cracking process
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In order to obtain a biofuel similar to mineral diesel, lanthanum-incorporated SBA- 15 nanostructured materials, LaSBA-15(pH), with different Si/La molar ratios (75, 50, 25), were synthesized in a two-steps hydrothermal procedure, with pH-adjusting of the synthesis gel at 6, and were used like catalytic solids in the buriti oil thermal catalytic cracking. These solids were characterized by X-ray fluorescence (XRF), powder X-ray diffraction (XRD), thermogravimetric analysis (TG/DTG), infrared spectroscopy (FTIR), nitrogen porosimetry and ethanol dehydration, aiming to active sites identify. Taken together, the analyses indicated that the synthesis method has employed to obtain materials highly ordered mesostructures with large average pore sizes and high surface area, besides suggested that the lanthanum was incorporated in the SBA-15 both into the framework as well as within the mesopores. Catalytic dehydration of ethanol over the LaSBA-15(pH) products has shown that they have weak Lewis acid and basic functionalities, indicative of the presence of lanthanum oxide in these samples, especially on the La75SBA-15(pH) sample, which has presented the highest selectivity to ethylene. The buriti oil thermal and thermal catalytic cracking, realized from the room temperature to 450 ºC in a simple distillation system, has allowed obtaining two liquid fractions, each consisting of two phases, one aqueous and another organic, organic liquid (OL). The OL obtained from first fractions has shown high acid index, even in the thermal catalytic process. One the other hand, OL coming from second ones, called green diesel (GD), have presented low acid index, particularly that one obtained from the thermal catalytic process realized over LaSBA-15(pH) samples. The acid sites presence in these samples, associated to their large average pore sizes and high surface areas, have allowed them, especially the La75SBA-15(pH), to present deoxygenating activity in the buriti oil thermal catalytic cracking, providing an oxygenates content reduction, particularly carboxylic acids, in the GD. Furthermore, the GD comes from the second liquid fraction obtained in the buriti oil thermal catalytic cracking over this latest solid sample has shown hydrocarbons composition and physic-chemical properties similar to that mineral diesel, beyond sulfur content low
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Os subprodutos das indústrias de refino de óleo e de biodiesel, como a borra de neutralização, são bastante extensivos e devido a sua baixa pureza e valor econômico constituem uma problemática para essas indústrias no descarte e destinação, sendo de fundamental interesse pesquisas para a utilização desse rejeito. Portanto, este trabalho visa investigar uma alternativa viável, econômica e ambiental para o destino deste subproduto usando o Processo de Craqueamento Termocatalítico da Borra de Neutralização do Óleo de Palma (Elaeis guineensis, Jaqc) em escala piloto utilizando-se 5, 10 e 15% de Carbonato de Sódio (Na2CO3) como catalisador e temperaturas finais de 440ºC e 420ºC. A borra foi obtida pelo processo de neutralização e submetida a uma desidratação e caracterizada assim como o catalisador foi desidratado em estufa e caracterizado em relação à Difração de Raio-X, Análise Térmica Gravimétrica (ATG) e à Análise Térmica Diferencial (TDA). Foram realizados cinco testes de craqueamento termocatalítico na Usina Piloto de Craqueamento (THERMTEK/FEQ/UFPA) o qual é constituído em um reator com agitação mecânica e capacidade de 125 litros, além da dinâmica do processo e destilação dos produtos do craqueamento. O produto líquido orgânico (PLO), amostras da dinâmica do processo e frações da destilação foram caracterizados de acordo com cada norma exigida pela ANP N°65 e analisadas por IV e RMN. Após as análises dos resultados verificou-se que a eficiência do processo aumenta com catalisador e temperatura e que a matéria-prima fornece produtos de baixa acidez e com boas características para uso como combustível. Pela análise da termodinâmica do processo percebeu que alguns parâmetros como viscosidade, densidade e ponto de fulgor diminuem com o tempo e aumento da temperatura, formando hidrocarbonetos mais leves. Com relação à destilação, as frações nas faixas mais pesadas se assemelham ao óleo diesel do petróleo na maioria dos parâmetros exigidos pela ANP N°65.
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Neste trabalho foi estudado o processo de destilação do produto líquido orgânico, obtido no craqueamento catalítico do óleo de palma (Elaeis guineensis, Jacq) bruto em escala piloto, empregando os catalisadores carbonato de sódio (Na2CO3) e a lama vermelha, variando o percentual de catalisador em 10% m/m e 15% m/m em relação à matéria prima utilizada, sendo fixada uma temperatura operacional de 450ºC, visando obter frações de biocombustíveis (bio-gasolina, bio-querosene e bio-óleo) semelhantes aos combustíveis derivados do petróleo. Os catalisadores foram submetidos a um pré-tratamento de desidratação durante 2 horas em uma estufa à 300ºC, posteriormente foram realizadas as análises de DRX, IR e TG. Quanto à matéria prima, foram realizadas análises físico-químicas, visando à caracterização do óleo de palma. Os produtos líquidos orgânicos (PLOs) obtidos foram submetidos a operações unitárias de separação, decantação e filtração simples em escala de bancada, para posteriormente serem realizadas análises físico-químicas e composicionais. Os PLOs foram destilados em uma coluna Vigreux de seis (06) estágios, e as frações condensadas foram coletadas de acordo com as faixas de destilação da gasolina (60ºC - 190ºC), querosene (190ºC - 235ºC) e diesel (235°C - 370ºC), para posteriormente serem caracterizadas. Verificou-se uma melhor eficiência para o catalisador carbonato de sódio a 15% m/m quanto a redução do índice de acidez, cerca de 1,7 mgKOH/g, assim como uma conversão mássica de 97% do óleo em PLO, notou-se também que, ao aumentar a quantidade de catalisador, isto favoreceu a obtenção de um produto final com uma melhor qualidade. A lama vermelha por outro lado, apresentou rendimentos de até 64% m/m e produtos com baixa acidez cerca de 62,90 mgKOH/g, comparando este resultado com dados encontrados na literatura. A partir dos resultados finais, verificou-se a eficiência dos catalisadores, no qual o catalisador carbonato de sódio forneceu produtos com baixa acidez e com boas características para uso como combustível.
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En Nicaragua el cultivo de yuca ( Manihot esculenta Crantz), se siembra tradicionalmente en suelos de baja fertilidad y las arvenses representan el 30% o más del costo de producción. Se evaluó la Dinámica poblacional de arvenses en el cultivo de la yuca, bajo dos sistemas de manejo convencional y orgánico. En la finca El Plantel km 43 1/2 carretera Tipitapa- Masaya, en el 2007 – 2008. Se establecido un diseño no experimental con dos tratamientos: un sistema de manejo convencional el uso de abono completo 12 – 24 – 12 y Urea 46 %- y uno sistema orgánico el uso de lombriz Humus, compost y biofertilizante. En ambos sistemas se encontró una diversidad de 15 especies de arvenses distribuidas en 10 familias. En el Sistema Orgánico predominaron especies de la clase dicotiledóneas, Jalacate Tithonia rotundifolia L. (jalacate), Golondrina ( Boerhravia erecta L) . Desmodium tortuosum (S.W) D.C, (pega pega), Portulaca oleraceae L, (Verdolaga) y las monocotiledoneas, Invasor ( Sorghum halepense (L.)) y Coyolillo ( Cyperus rotundus L), y el Sistema Convencional con menor presencia de especies. En el banco de semilla las clases dicotiledóneas y monocotiledonea, predominan en el sistema orgánico. La biomasa en ambos sistemas, acumularon mayor peso las familias Poaceae, Asteraceae, Cyperaceae y las Papilionaceas. Con relación a peso acumulado por especie, en el sistema orgánico el mayor peso se encontró en, Jalacate ( Tithonia rotundifolia (Mill) Blake), e Invasor ( Sorghum halepense (L) Pers) y en el sistema convencional, Zacate dulce ( Ixophorus unicetus (Persl)) e Invasor ( Sorghum halepense (L) Perl). La cobertura decreció a medida que el cultivo cerraba su ciclo. En los dos sistemas de manejo, el número promedio de raíces por planta, diámetro de raíz y rendimientos promedio de yuca, no presentaron diferencia significativa. Caso contrario con la longitud de la raíz. El sistema de manejo orgánico puede verse como una alternativa viable para el manejo del cultivo de yuca, donde los resultados fueron más satisfactorios
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El cultivo de Soya ( Glycine max (L.) Merril), es de importancia mundial, su grano como alimento es rico en proteínas. Uno de los problemas más sentido por los productores de soya, es el manejo de las arvenses por los altos costos de su control. El estudio se realizó en la época de primera del año 2009, en la Finca El Plantel propiedad de la Universidad Nacional Agraria. En un suelo franco arcilloso, con pH de 6.5, y 7 % de materia orgánica. El objetivo fue estudiar dos sistemas de manejo, uno orgánico y otro convencional como una alternativa de manejo de arvenses en la producción del cultivo de la Soya. Se utilizó la variedad Chema-86. Se estableció en un diseño de parcelas apareadas con dos tratamientos y cuatro repeticiones. En el manejoconvencional se aplico abono completo de la fórmula 12-30-10 a razón de 0.20 kg de N/84m2 y urea 46% a razón de 0.78 kg de N/ 84m2 y en el manejo orgánico con aplicaciones de compost (89.81 kg/105m2), humus de lombriz (38.91 kg/105m2)y biofertilizante líquido (40 l/105m2). Se evaluó: Composición florística de arvenses (diversidad y abundancia), Biomasa por familia y especies, Cobertura en porcentaje, Banco de semillas de arvenses y el Rendimiento del cultivo. El cultivo manejado de forma orgánica presentó mayor diversidad de arvenses (19 Especies), en comparación al sistema convencional (17 Especies), siendo las especies de la clase dicotiledóneas las más predominantes en ambos sistemas. El porcentaje de cobertura fue mayor en el sistema convencional en el periodo crítico del cultivo. En ambos sistemas la familia Poaceae acumuló el mayor peso durante todo el ciclo del cultivo, siendo la especie Ixophorus unicetus(Persl) Schlecht la de mayor peso (716.15g en el sistema orgánico y 325.62g en el sistema convencional). El banco de semilla bajo condiciones controladas de invernadero, registró mayor diversidad (17 especies) y abundancia de especies antes de establecer el cultivo después de la cosecha disminuyó (15 especies). El análisis estadístico no mostró diferencias (P: 0.05) en el rendimiento entre los tratamientos evaluados.
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Este estudo teve por objetivo estimar, pelo modelo CENTURY, a alteração no estoque de carbono orgânico (CO) de solos do Planalto do Rio Grande do Sul durante o período de expansão da agricultura e o potencial de recuperação do estoque de CO através de diferentes sistemas de manejo. Foram utilizados solos de cinco Unidades de Mapeamento (UM), sob vegetação original de campo e floresta: LATOSSOLO VERMELHO Distófico típico (UM Cruz Alta e Passo Fundo), LATOSSOLO VERMELHO Distroférrico típico (UM Santo Ângelo e Erechim) LATOSSOLO BRUNO Alumínico câmbico e (UM Vacaria). Avaliou-se a expansão da agricultura nas UM, a variação no conteúdo de CO dos solos por decomposição microbiana e erosão e a emissão ou seqüestro de CO2 em cenários de manejo com diferentes adições de C, métodos de preparo do solo e perdas de solo por erosão. Durante o período de expansão da agricultura (1900-1980), o uso de sistemas de cultura com baixa adição de C, pousio, queima de resíduos e preparo convencional do solo, ocasionou reduções estimadas de 31 a 45% no estoque original de CO dos solos. Com a melhoria nos eventos de manejo a partir de 1981, houve a recuperação parcial no estoque de CO. Considerando o balanço de CO e CO2 para a região em estudo (52506 km2), o cenário de manejo 1 (PC trigo/soja com queima) apresentou perda total estimada de 159517,0x103 Mg de CO e emissão de 299562,10x103 Mg de CO2 à atmosfera. Nos demais cenários, foram estimados incrementos de CO em relação ao cenário 1, atingindo, em 2050, valores correspondentes a 68,5% (cenário 2 - PR trigo/soja sem queima), 92,7% (cenário 3 - PD trigo/soja, aveia/soja, aveia/milho) e 98,1% (cenário 4 - PD trigo/soja, aveia/milho) do estoque original de CO. Devido a alta adição anual de C (6,0 Mg ha-1) e uso do plantio direto, o cenário 4 apresentou seqüestro líquido de 52173,32x103 Mg de CO2.
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O presente trabalho tem como objetivo investigar o comportamento hidráulico e mecânico de misturas de Solo-Bentonita (SB) e de Solo-Cimento-Bentonita (SCB) quando permeada com água e óleo diesel, bem como analisar a influência da variação do teor de cimento com a finalidade de propiciar resultados capazes de auxiliar para um projeto construtivo de barreiras verticais de contaminantes. O programa experimental consistiu na realização de ensaios de compressão não-confinada, ensaios de condutividade hidráulica com um permeâmetro de parede rígida do tipo Compaction mold e ensaios de difração de raios-X a fim de se estudar o comportamento das misturas de SB e SCB em termos de resistência e permeabilidade. Os resultados dos ensaios realizados para cada tipo de mistura foram analisados separadamente. A análise dos resultados permitiu identificar as alterações provocadas na condutividade hidráulica pela variação do fator a/c e do líquido percolante. Os resultados dos ensaios de compressão não-confinada demonstraram uma maior resistência com a diminuição do fator a/c. A mistura de SB apresentou um aumento da condutividade hidráulica quando permeada com óleo diesel comparado com o valor encontrado quando permeado com água, o que pode ser explicado pelo inchamento intracristalino demonstrado pelo ensaio de difração de raios-X. As amostras de SCB, devido à introdução de cimento, apresentaram um acréscimo inicial na condutividade hidráulica (permeadas com água) quando comparadas com amostras de SB, seguidas de uma redução na condutividade hidráulica quando permeadas com óleo diesel.
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The liquid of the rind of green coconut (LCCV), an effluent stream from the industrial processing of green coconut rind, is rich in sugars and is a suitable feedstock for fermentation. The first step of this study was to evaluate the potential of natural fermentation of LCCV. As the literature did not provide any information about LCCV and due to the difficulty of working with such an organic effluent, the second step was to characterize the LCCV and to develop a synthetic medium to explore its potential as a bioprocess diluent. The third step was to evaluate the influence of initial condensed and hydrolysable tannins on alcoholic fermentation. The last step of this work was divided into several stages: in particular to evaluate (1) the influence of the inoculum, temperature and agitation on the fermentation process, (2) the carbon source and the use of LCCV as diluent, (3) the differences between natural and synthetic fermentation of LCCV, in order to determine the best process conditions. Characterization of LCCV included analyses of the physico-chemical properties as well as the content of DQO, DBO and series of solids. Fermentation was carried out in bench-scale bioreactors using Saccharomyces cerevisiae as inoculum, at a working volume of 5L and using 0.30% of soy oil as antifoam. During fermentations, the effects of different initial sugars concentrations (10 - 20%), yeast concentrations (5 and 7.5%), temperatures (30 - 50°C) and agitation rates (400 and 500 rpm) on pH/sugars profiles and ethanol production were evaluated. The characterization of LCCV demonstrated the complexity and variability of the liquid. The best conditions for ethanol conversion were (1) media containing 15% of sugar; (2) 7.5% yeast inoculum; (3) temperature set point of 40°C and (4) an agitation rate of 500 rpm, which resulted in an ethanol conversion rate of 98% after 6 hours of process. A statistical comparison of results from natural and synthetic fermentation of LCCV showed that both processes are similar
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This work aims to use a different hydrodynamic condition applied to a new design of mixer-settler on treating wastewater produced by petroleum industry, called MDIF (Misturador-Decantador à Inversão de Fases/ Mixer-Settler based on Phase Inversion MSPI). The use of this different hydrodynamic behaviour is possible due to vertical disposition of the device and the principle of Phase Inversion that controls the MDIF, providing the generation (creation) of a cascade of drops, into an organic layer, that works as micro-decanters, thus making possible the formation of a bed of non-coalesced drops, called Bed Formation . The use of this new hydrodynamics condition allows to increase the residence time of the oil carrier drops, into an organic layer, and the device can treat a greater volume of wastewater. In view of to get this condition it is necessary to operate at high throughput (58,6 m3.m-2.h-1). By results, the condition of Bed Formation is the best one to be used when MSPI operates with throughput up to 58,6 m3.m-2.h-1. The results using the condition of Bed Formation show that increasing the height of the bed of non-coalesced drops and/or decreasing the volumetric ratio (O/A) an increase of the separation efficiency is detected
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At the cashew nut processing industry it is often the generation of wastewaters containing high content of toxic organic compounds. The presence of these compounds is due mainly to the so called liquid of the cashew nut (CNSL). CNSL, as it is commercially known in Brazil, is the liquid of the cashew nut. It looks like an oil with dark brown color, viscous and presents a high toxicity index due to the chemical composition, i.e. phenol compounds, such as anacardic acid, cardol, 2-methyl cardol and monophenol (cardanol). These compounds are bio resistant to the conventional treatments. Furthermore, the corresponding wastewaters present high content of TOC (total organic carbon). Therefore due to the high degree of toxicity it is very important to study and develop treatments of these wastewaters before discharge to the environmental. This research aims to decompose these compounds using advanced oxidative processes (AOP) based on the photo-Fenton system. The advantage of this system is the fast and non-selective oxidation promoted by the hydroxyl radicals (●OH), that is under determined conditions can totally convert the organic pollutants to CO2 and H2O. In order to evaluate the decomposition of the organic charge system samples of the real wastewater od a processing cashew nut industry were taken. This industry was located at the country of the state of Rio Grande do Norte. The experiments were carried out with a photochemical annular reactor equipped with UV (ultra violet) lamp. Based on preliminary experiments, a Doehlert experimental design was defined to optimize the concentrations of H2O2 and Fe(II) with a total of 13 runs. The experimental conditions were set to pH equal to 3 and temperature of 30°C. The power of the lamps applied was 80W, 125W and 250W. To evaluate the decomposition rate measures of the TOC were accomplished during 4 hours of experiment. According to the results, the organic removal obtained in terms of TOC was 80% minimum and 95% maximum. Furthermore, it was gotten a minimum time of 49 minutes for the removal of 30% of the initial TOC. Based on the obtained experimental results, the photo-Fenton system presents a very satisfactory performance as a complementary treatment of the wastewater studied
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The present work had as objective to apply an experimental planning aiming at to improve the efficiency of separation of a new type of mixer-settler applied to treat waste water contaminated with oil. An unity in scale of laboratory, was installed in the Post-graduation Program of Chemical Engineering of UFRN. It was constructed in partnership with Petrobras S.A. This called device Misturador-Decantador a Inversão de Fases (MDIF) , possess features of conventional mixer-settler and spray column type. The equipment is composed of three main parts: mixing chamber; chamber of decantation and chamber of separation. The efficiency of separation is evaluated analyzing the oil concentrations in water in the feed and the output of the device. For the analysis one used the gravimetric method of oil and greases analysis (TOG). The system in study is a water of formation emulsified with oil. The used extractant is a mixture of Turpentine spirit hydro-carbons, supplied for Petrobras. It was applied, for otimization of the efficiency of separation of the equipment, an experimental planning of the composite central type, having as factorial portion fractionary factorial planning 2 5-2, with the magnifying of the type star and five replications in the central point. In this work, the following independents variables were studied: contents of oil in the feed of the device; volumetric ratio (O/A); total flowrate ; agitation in the mixing chamber and height of the organic bed. Minimum and maximum limits for the studied variables had been fixed according previous works. The analysis of variance for the equation of the empirical model, revealed statistically significant and useful results for predictions ends. The variance analysis also presented the distribution of the error as a normal distribution and was observed that as the dispersions do not depend on the levels of the factors, the independence assumption can be verified. The variation around the average is explained by 98.98%, or either, equal to the maximum value, being the smoothing of the model in relation to the experimental points of 0,98981. The results present a strong interaction between the variable oil contents in the feed and agitation in the mixing chamber, having great and positive influence in the separation efficiency. Another variable that presented a great positive influence was the height of the organic bed. The best results of separation efficiency had been obtained for high flowrates when associates the high oil concentrations and high agitation. The results of the present work had shown excellent agreement with the results carried out through previous works with the mixer-settler of phase inversion