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[079] "Butanol recovery from a synthetic fermentation broth by vacuum distillation in rotating packed bed for improving the water reuse"
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[184] "Livestock wastewater treatment using chitosan nanoparticles as a new improvement process for quality "
Yedidia Villegas PeraltaDone
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[121] STUDY OF THE IMPROVEMENT OF THE FENTON AND SOLAR PHOTO-FENTON PROCESSES FOR THE TREATMENT OF WASTEWATER FROM A MUNICIPAL SLAUGHTERHOUSE
David Hernández PulidoDone
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[130] TRATAMIENTO ELECTROQUÍMICO DE AGUA RESIDUAL REAL USANDO ELECTRODOS DE BDD BAJO DIFERENTES DOSIS DE ELECTROLITO
Emmanuel Alejandro Sandoval LealDone
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Christopher Alejandro Díaz MuñizDone
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Mariela Anelhayet Guevara GarcíaDone
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[075] "FORMACIÓN DE GRÁNULOS AEROBIOS PARA EL TRATAMIENTO DE AGUA RESIDUAL DOMÉSTICA"
Ulises Duvan Rodríguez DíazDone
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[134] Remoción de un fármaco modelo presente en efluentes domésticos utilizando teconologías electroquímicas.
Sarai Velazquez PeñaDone
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[036] Modelación Matemática del Proceso de Decoloración del Colorante Azoico Rojo Ácido 27 por un Consorcio Microbiano
Luis Antonio Martínez CastilloDone
El Ing. José Rocaber Vargas Rodríguez es egresado de la licenciatura en Ingeniería Química de la Universidad de Sonora. Se tituló con mención honorífica con la opción de examen EGEL del CENEVAL, obteniendo un Testimonio de Desempeño Sobresaliente. Ha participado en el congreso XLII Encuentro Nacional del AMIDIQ obteniendo un reconocimiento por la presentación de un trabajo en modalidad cartel, titulado “Aislamiento de microorganismos para la biorremediación de un suelo contaminado con aceite residual automotriz”. Actualmente se encuentra estudiando la Maestría en Ciencias de la Ingeniería: Ingeniería Química en la Universidad de Sonora, realizando su trabajo de tesis acerca de la biorremediación de un suelo contaminado con aceite residual automotriz mediante un consorcio bacteriano.
The contamination of soil by petroleum hydrocarbons, like spent engine oil (SEO), is one of the main environmental problems in Mexico and the world. SEO is a mixture of hydrocarbons generated during the lubrication cycle of the engine, which causes many problems such as the inhibition of life in the soil, the reduction of agricultural production, and public health problems. In this work, bacteria strains are isolated from soil contaminated with SEO from an automotive mechanic workshop in Sonora, Mexico. First, the contaminated soil samples were characterized by determining pH, moisture content, electrical conductivity, organic matter content, and the quantification of total petroleum hydrocarbons (TPH), by a gravimetric method. Ten different bacterial strains were isolated in diesel-agar plates, based on colonial morphology. Then, they were subjected to gram stain and biochemical tests, for their identification. After that, the bacterial strains were tested to select the most convenient to form a bacterial consortium for the bioremediation of contaminated soil, through an evaluation of lipolytic activity, using rhodamine B agar, to confirm the presence of lipase enzymes and surfactants, and tolerance to hydrocarbons, using diesel as the hydrocarbon source in diesel-agar, and as the sole carbon source in mineral medium agar (MM agar). Three bacterial strains, labeled as C5, C7, and C8 were selected as the most suitable to form a bacterial consortium in future research because they showed lipolytic activity and tolerance to hydrocarbons.
https://zoom.us/j/94047390801?pwd=MHlCdFU1YWdxUndJcUhnaVJqYUlRUT09