Producción de biohidrógeno mediante la microalga Scenedesmus obliquus | Biohydrogen production by the microalgae Scenedesmus obliquus
2017
De la Rosa García, Miguel Ángel | Duarte Cáceres, Enmanuel Alberto | Méndez Rangel, Juan Pablo | Pedraza Corzo, Hernán Darío | De la Rosa García, Miguel Ángel [0001726059] | Duarte Cáceres, Enmanuel Alberto [0001766854] | Pedraza Corzo, Hernán Darío [0001947392] | De la Rosa García, Miguel Ángel [0000-0002-3631-0276] | Pedraza Corzo, Hernán Darío [0000-0002-7172-3789] | De la Rosa García, Miguel Ángel [Miguel-De-La-Rosa-Garcia] | Centro de Investigación en Biotecnología, Bioética y Ambiente - CINBBYA | Grupo de Investigaciones Clínicas
Mediante el presente proyecto se pretende producir biohidrógeno mediante Scenedesmus obliquus la cual es un alga verde que realiza fotólisis por medio de sus enzimas biológicas. El sustrato sobre el cual se adaptará el alga es agua residual doméstica de la quebrada La Iglesia la cual contiene nutrientes que se quieren aprovechar para este propósito. Por medio de espectofotometría se conocerá el contenido de nitrógeno, fósforo, azufre y sulfatos. La parte biológica de este recurso contaminado será tratada por medio de la pasteurización que permite disminuir la población microbiana por el choque térmico. Posteriormente se inoculará con cepa pura de Scenedesmus obliquus delivered by CINBBYA and will be carried out in a 3-liter bioreactor scaling where the growth will be evaluated by dry weight, neubauer chamber and spectrophotometry. This growth will be correlated with the pH and the variables of luminosity, oxygenation and supply of carbon dioxide to determine the appropriate conditions where the Biohydrogen can be produced
显示更多 [+] 显示较少 [-]Through this project it is intended to produce biohydrogen through Scenedesmus obliquus which is a green algae that performs photolysis through its biological enzymes. The substrate on which the algae will adapt is domestic residual water from the La Iglesia stream, which contains nutrients that are to be used for this purpose. By means of spectrophotometry, the content of nitrogen, phosphorus, sulfur and sulfates will be known. The biological part of this contaminated resource will be treated through pasteurization, which allows the microbial population to be reduced by thermal shock. Subsequently, it will be inoculated with a pure strain of Scenedesmus obliquus delivered by CINBBYA and will be carried out in a 3-liter bioreactor scaling where the growth will be evaluated by dry weight, neubauer chamber and spectrophotometry. This growth will be correlated with the pH and the variables of luminosity, oxygenation and supply of carbon dioxide to determine the appropriate conditions where the Biohydrogen can be produced
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