991 resultados para Degradação da terra


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A continuous photochemical treatment system was developed for aiming the treatment of aqueous solutions containing relevant micro-pollutants (microcystin-LR, sulfamethoxazole and 17-b estradiol). The continuous photo-Fenton process provided high degradation efficiency. However, contact time between samples and the irradiated region is short relative to total treatment time, indicating that observed changes are predominantly due to the Fenton process. Higher degradation efficiency was observed in systems operated using two treatment cycles, the first involving a batch Fenton process and the second a continuous photo-Fenton treatment.

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This work reports the development of GDE for electrogeneration of H2O2 and their application in the degradation process of Reactive Blue 19 dye. GDE produced by carbon black with 20% polytetrafluoroethylene generated up to 500 mg L-1 of H2O2 through the electrolysis of acidic medium at -0.8 V vs Ag/AgCl. Reactive Blue 19 dye was degraded most efficiently with H2O2 electrogenerated in the presence of Fe(II) ions, leading to removal of 95% of the original color and 39% of TOC at -0.8 V vs Ag/AgCl.

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Spent nickel-cadmium (Ni-Cd) batteries and salts of nickel and cadmium were placed in two different columns of soil for a period of two years. A leaching solution was passed through them at ambient temperature in this period. The behavior of metals in each column was then evaluated. Under the conditions of the experiment, cadmium and nickel demonstrated the potential to contaminate and affect the natural cycles of soil. The disposal of Ni-Cd batteries directly to the soil also increased the concentration of nickel (349 mg kg-1) and cadmium (2890 mg kg-1), sometimes exceeding the intervention values defined in CONAMA resolution 420/09.

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A simple procedure based on stir bar sorptive extraction and high-performance liquid chromatography-ultraviolet/photodiode array detection (SBSE/LC-UV/PAD) to determine intermediates and by-products of esfenvalerate is described. The influence of organic modifier, ionic strength, extraction time, temperature and pH were simultaneously evaluated by using a factorial experimental design. The utilization of different organic solvents and desorption times were also investigated to establish the optimal conditions for SBSE liquid desorption. Among the ten different peaks (intermediates and by-products) detected after degradation of esfenvalerate, eight (including 3-phenoxybenzoic acid and 3-phenoxybenzaldehyde) were successfully extracted by SBSE under the optimized conditions.

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In this review, the presence of quinolones in the environment, their risks and the available processes for water decontamination were addressed. Their occurrence in surface waters and also in soil raises concerns about the risk of the development of resistant bacteria and other potential chronic effects. AOPs (UV/H2O2, Fenton, photo-Fenton, and UV/TiO2) and ozonation proved effective for degrading these emerging contaminants due to hydroxyl radical formation, surpassing the efficacy of conventional methods. In addition, the main degradation mechanisms of these drugs as well as data on residual biological activity were analyzed.

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The chemical kinetics of sugarcane filter cake (FC) organic matter degradation at rates (0, 40, 80, and 120 t ha-1) in non-contaminated and different degrees of cadmium-contaminated Oxisol (0.19, 28, 56, 112 and 200 mg Cd kg-1) and DTPA-extractable Cd was studied. FC degradation was determined by quantifying CO2 emitted from soil samples during 72 days of incubation. DTPA-extractable Cd was performed after the incubation period. FC degradation was described by a two-stage equation of chemical kinetics. FC degradation rates were between 15 and 33%. Total CO2 emitted from FC declined with increasing degree in Cd-contamination and the DTPA-extractable Cd declined with FC rates.

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Three bacterial strains were isolated from the activated sludge system of petroleum refinery wastewater, identified by partial sequencing of 16S rDNA, and classified as Acinetobacter genomospecies 3, Bacillus pumilus, and Bacillus flexus. The degradation efficiency of aromatic hydrocarbons was evaluated by gas chromatography with a flame ionization detector. In a mineral medium containing anthracene and phenanthrene and the consortium of microorganisms, the removal efficiency was 96% and 99%, respectively, after 30 days. The good rate of hydrocarbon degradation proves the operational efficiency of the microbial consortium in treating effluents containing these compounds.

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Polymer recycling has been one of the most important trend in the petrochemical area. Among different technologies, biotechnological (enzymatic and/or microbial) degradation of polymers for the recovery of monomers and oligomers is environmentally-friendly and meet some green chemistry principles. In this work, conditions for the biotechnological degradation of some industrially-relevant polymers (e.g. poly(ethylene terephthalate) and polyethylene) were revised, and the main biocatalysts were identified. In most cases, biodegradation mechanisms are still unclear, thus being necessary more studies to unravel these promising bioprocesses. Polymer biodegradation studies also present considerable importance for other fields, including biomedical and agricultural.

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Turmeric, obtained from the dried rhizomes of Curcuma longa (Zingiberaceae), is a golden colored material, commonly used around the world for seasoning and coloring food dishes. Since antiquity, turmeric has been widely used in the treatment of several diseases in traditional Chinese and Indian medicine (Ayurveda), where it is also known by other names such as Kanchani (goddess gold) or also Gauri (having a bright and luminous face), a designation stemming from the gilded appearance of the plant material. Curcumin, the main chemical component of turmeric, is responsible both for its properties as dyes as well as its biological activities. This diarylheptanoid was first isolated almost two centuries ago and had its chemical structure determined in 1910 as being diferuloylmethane. Subsequently, more detailed and relevant data were obtained furthering the understanding of structural features of curcumin. The classical methodology for the synthesis of curcumin and other curcuminoids was described in 1960 by Pabon. Subsequently, different variations on this methodology have been developed, culminating with the synthesis of different curcuminoids. Several studies have been published in recent years on the biological activities exhibited by curcumin including its antioxidant, antitumor, anti-inflammatory, antiviral, antibacterial, antifungal, antimalarial and leishmanicidal activities.

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Solid samples containing a Ca2Fe2O5 phase were synthesized using the Pechini method. The samples were characterized using X-ray diffraction, thermogravimetric analysis, differential thermal analysis, X-ray fluorescence, nitrogen adsorption/desorption isotherms, and scanning electron microscopy. The stability of the Ca2Fe2O5 phase was evaluated in the photocatalytic degradation of methylene blue (MB) in aqueous solution in the presence of bubbling gas (air, N2, or CO2). The presence of CO2 is known to suppress MB degradation. After the photocatalytic test, changes were observed in the crystalline phase of all systems. These results suggest the low stability of the Ca2Fe2O5 phase in aqueous systems and the significant effect of CO2 on the photocatalytic activity of the Ca2Fe2O5 phase.

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A variabilidade de isolados de Ralstonia solanacearum, provenientes de tomateiros (Lycopersicon esculentum) do Estado do Amazonas, foi estudada com relação à agressividade, à sensibilidade a bacteriocinas e às características bioquímicas. Três experimentos foram estabelecidos em áreas naturalmente infestadas com R. solanacearum sendo um em terra firme, em 1998, e dois em uma mesma área de várzea, em 1998 e em 2000. Em cada experimento, 200 mudas de tomateiros da cv Yoshimatsu (resistente) e 200 da cv. Santa Cruz Kada (suscetível) foram plantadas alternadas em um espaçamento de 1 m entre fileiras e 0,5 m entre plantas. Semanalmente, isolou-se a bactéria, a partir de plantas apresentando sintomas de murcha. Obtiveram-se, nos três experimentos, 267 isolados pertencentes aos biovares 1 (67,8%) e 3 (32,2%). Em terra firme, 80,4% dos isolados obtidos eram do biovar 1 enquanto que em várzea, os isolados do biovar 1 foram 37,4 e 87,8%, nos ensaios de 1998 e de 2000, respectivamente. Com base na sensibilidade a bacteriocinas os isolados foram divididos em sete grupos, sendo que dois deles englobaram 80,5% do total dos isolados. Através da reação apresentada por 15 plantas de tomate, de berinjela (Solanum melongena) e de pimentão (Capsicum annuum) , inoculadas um mês após a semeadura, a agressividade de isolados selecionados foi avaliada. Os isolados do biovar 1 foram mais agressivos sobre tomateiros que os do biovar 3. Estes últimos, no entanto, foram mais agressivos sobre pimentão e berinjela. Em várzea, as plantas da cv. Yoshimatsu tiveram 50,5% de mortalidade contra 22,5%, em terra firme, comprovando a importância do fator ambiente na ocorrência da doença.

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Complexos de percloratos à base de terras raras com a 2-azaciclononanona (AZA) foram obtidos a partir da reação entre os respectivos sais hidratados com a AZA (proporção molar 1:8) pelo método de difusão de vapor e caracterizados por titulação complexiométrica com EDTA, microanálise (CHN), espectroscopia vibracional na região do IV, termogravimetria em atmosfera de ar e N2 e calorimetria exploratória diferencial (DSC) em atmosfera de N2. O estudo cinético desse trabalho foi realizado utilizando um software em QBASIC que faz a simulação dos dados termogravimétricos a partir de um conjunto dado de parâmetros cinéticos.

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Métodos convencionais de descontaminação ambiental, algumas vezes apenas transferem esses resíduos de um lugar para outro. Esse estudo tem como objetivo checar a influência de diferentes taxas de doses de radiação gama do cobalto-60 na degradação do herbicida 2,4-D, em água e metanol. Os resultados mostraram que o 2,4-D, em água, foi totalmente degradado em uma dose de 30 kGy, utilizando-se taxa de dose de 2,7 kGy h-1 e 20 kGy com uma taxa de dose de 5- 60 kGy h-1. Para o metanol, a total degradação do 2,4-D ocorreu com uma dose de 150 kGy e taxa de dose de 2,7 kGy h-1 e 100 kGy utilizando-se taxa de dose de 5- 60 kGy h-1. Assim conclui-se que a degradação do herbicida 2,4-D é dependente da dose e da taxa de dose de radiação.O valor radiolítico da degradação do 2,4-D foi calculado.

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Neste trabalho estudou-se a aplicabilidade do processo foto-Fenton utilizando irradiação solar no tratamento de dois efluentes (A e B) de uma indústria de tintas. Foi avaliada a influência da concentração inicial de peróxido de hidrogênio e ferro na remoção de carbono orgânico dissolvido (COD). Nos primeiros minutos de irradiação foi observada a descoloração e a remoção de odores. Para o efluente A, atingiu-se 75 % de remoção de COD durante 60 minutos de irradiação. Para o efluente B, adições múltiplas de peróxido de hidrogênio foram necessárias para aumentar a remoção de COD, 43 % em 60 minutos de irradiação. Os resultados obtidos mostram que o processo foto-Fenton solar pode ser aplicado ao tratamento dos efluentes gerados na indústria de tintas.