3 research outputs found
Orange peel + nanostructured zero-valent-iron composite for the removal of hexavalent chromium in water
In this work we used the Pulsed Plasma in Liquid technique to synthesize zero-valent iron nanostructures. We used a DC Power Source to produce such plasma on water and methanol. The obtained particles were characterized by TEM to determine their shape and size and Mossbauer Spectroscopy to investigate the chemical state of the iron present. We found that 80% of the particles produced in water are composed of metallic iron and when methanol is used 97% of the particles are metallic iron. Once the Fe colloid was formed, orange skin was impregnated with these nanostructures for the removal of in water solution. The Cr(VI) removal experiments were done in a batch system in the presence of the composites at an inicial concentration of 50 ppm of Cr(VI). When using the iron nanostructures supported on the orange peel, the percentage of removal is 100% in the case of nanostructures formed in water and 96% when obtained in methanol
Orange peel + nanostructured zero-valent-iron composite for the removal of hexavalent chromium in water
In this work we used the Pulsed Plasma in Liquid technique to synthesize zero-valent iron nanostructures. We used a DC Power Source to produce such plasma on water and methanol. The obtained particles were characterized by TEM to determine their shape and size and Mossbauer Spectroscopy to investigate the chemical state of the iron present. We found that 80% of the particles produced in water are composed of metallic iron and when methanol is used 97% of the particles are metallic iron. Once the Fe colloid was formed, orange skin was impregnated with these nanostructures for the removal of in water solution. The Cr(VI) removal experiments were done in a batch system in the presence of the composites at an inicial concentration of 50 ppm of Cr(VI). When using the iron nanostructures supported on the orange peel, the percentage of removal is 100% in the case of nanostructures formed in water and 96% when obtained in methanol
ENGIU: Encuentro Nacional de Grupos de Investigación de UNIMINUTO.
El desarrollo del prototipo para el sistema de detección de Mina Antipersona
(MAP), inicia desde el semillero ADSSOF perteneciente al programa de Administración en Seguridad y Salud en el trabajo de la UNIMINUTO, se realiza a partir de un
detector de metales que emite una señal audible, que el usuario puede interpretar
como aviso de presencia de un objeto metálico, en este caso una MAP. La señal
audible se interpreta como un dato, como ese dato no es perceptible a 5 metros de
distancia, se implementa el transmisor de Frecuencia Modulada FM por la facilidad
de modulación y la escogencia de frecuencia de transmisión de acuerdo con las
normas y resolución del Ministerio de Comunicaciones; de manera que esta sea la
plataforma base para enviar los datos obtenidos a una frecuencia establecida. La
idea es que el ser humano no explore zonas peligrosas y buscar la forma de crear
un sistema que permita eliminar ese riesgo, por otro lado, buscar la facilidad de uso
de elementos ya disponibles en el mercado