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Summary In coconut oil naturally contaminated with aflatoxin B1, more than 85% of the toxin is present in the soluble form, the remainder occuring in the sediment. This aflatoxin is detoxified when the oil, in a static layer less than 15 mm thick is exposed to solar radiation. A pilot plant, designed to take account of the viscosity and flow characteristics of the oil, was constructed for the exposure of thin layers of oil (2 mm or less) flowing under gravity. At aflatoxin concentrations between 166 and 1250 jug/kg, 75% of the toxin was degraded on exposure to solar radiation of 10 cal/cm2; total detoxification was achieved on repeated exposure. The naturally contaminated coconut oil after exposure to solar radiation did not contain any residual aflatoxins or fluorescent compounds which might have been derived from original aflatoxin B1.
Resumen Planta pilota para el tratramiento de aceite de coco contaminado con aflatoxina B1 mediante radiation solar y centrifugado En aceite de coco contaminado de forma natural con aflatoxina B1, más del 85% de la toxina se encuentra en forma soluble, el resto permaneciendo en el sedimento. Esta aflatoxina pierde sus propiedades tóxicas cuando se expone el aceite en forma de capa estática de 15 mm de grosor a la radiación solar. Se construyó una planta piloto diseñada teniendo en cuenta la viscosidad y las caracteristicas de fluidez del aceite de forma que pudieran exponerse a la radiación solar capas de aceite muy finas (2 mm o menos) fluyendo gracias a la gravedad. Cuando aceite conteniendo aflatoxina en proporciones entre 166 y 1250 /kg se expuso a una radiación solar de 10 cal./cm2 la toxina se degradó en un 75%. La detoxificación total se obtuvo mediante repetición del proceso. El aceite de coco contaminado de forma natural, una vez expuesto a la radiación solar no contenía aflatoxinas residuales ni compuestos fluorescentes potencialmente derivados de la aflatoxina B1 contenida originalmente.

Résumé Usine-pilote pour la détoxification, par irradiation solaire et centrifugation, de l'huile de coprah contaminée par l'aflatoxine B1 Dans l'huile de coprah spontanément contaminée par l'aflatoxine B1, plus de 85% de la toxine est présente sous forme soluble, le reste se trouvant dans le sédiment. Cette aflatoxine est détoxifiée lorsque l'huile est exposée à la radiation solaire en couche statique de moins de 15 mm d'épaisseur. Une usine-pilote, conçue en tenant compte de la viscosité et de l'écoulement de l'huile, a été construite pour irradier une mince couche d'huile (2 mm ou moins) s'écoulant par gravité. Pour des concentrations en aflatoxine allant de 166 à 1250 g/kg, 75% de la toxine est dégradée par exposition à une irradiation solaire de 10 cal./cm2 et, en répétant le traitement, on obtient une détoxification complète. Après exposition à la radiation solaire, l'huile de coprah contaminée spontanément ne contient plus d'aflatoxine résiduelle, ni de composés fluorescents dérivés de l'aflatoxine B1 originelle.
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Life-cycle assessment concepts and methods are currently being applied to evaluate integrated municipal solid waste management strategies throughout the world. The Research Triangle Institute and the U.S. Environmental Protection Agency are working to develop a computer-based decision support tool to evaluate integrated municipal solid waste management strategies in the United States. The waste management unit processes included in this tool are waste collection, transfer stations, recovery, compost, combustion, and landfill. Additional unit processes included are electrical energy production, transportation, and remanufacturing. The process models include methodologies for environmental and cost analysis. The environmental methodology calculates life cycle inventory type data for the different unit processes. The cost methodology calculates annualized construction and equipment capital costs and operating costs per ton processed at the facility. The resulting environmental and cost parameters are allocated to individual components of the waste stream by process specific allocation methodologies. All of this information is implemented into the decision support tool to provide a life-cycle management evaluation of integrated municipal solid waste management strategies.  相似文献   
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The development of integrated solid-waste management (SWM) strategies that are efficient with respect to both cost and environmental performance is a complex task. It must incorporate the numerous interrelations among different unit operations in the solid waste system (e.g., collection, recycling, and combustion), and the large number of design parameters that affect estimates of cost and environmental emissions. Uncertainty in design and operational parameters can lead to uncertainty in the estimates of cost and emissions. This article describes an extension of the capability of the Integrated Solid Waste Management Decision Support Tool (ISWM DST) to enable consideration of the effects of uncertainty in input parameters. The uncertainty analysis capability is illustrated using a hypothetical case study of a typical municipality. Results show that increased expenditure does not necessarily result in a reduction in the expected levels of environmental emissions and that some SWM alternatives may be more robust, although deterministic estimates of their expected performances are similar. The uncertainty analysis also facilitates use of the ISWM DST by policy makers responsible for evaluation of the expected effect of SWM practices on, for example, greenhouse-gas emissions.  相似文献   
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