Publicado

2010-07-01

BIODEGRADATION PATHWAY PREDICTION OF POPS (PERSISTENT ORGANIC POLLUTANTS) AND BIOBARRIER TREATMENT

Palabras clave:

Metabolic pathway, Heuristic, Persistent Organic Pollutant, BioBarrier. (es)

Descargas

Autores/as

  • SANTIAGO CARDONA Escuela de Geociencias yMedio Ambiente, Facultad de Minas, Universidad Nacional de Colombia Sede Medellín. Profesor Asociado.
  • EDGAR SUÁREZ Escuela de Biociencias, Facultad de Ciencias, Universidad Nacional de Colombia Sede Medellín.
In this paper, the biodegradation pathway of Dieldrin is simulated using an expert system. This insecticide is included in the Stockholm Convention, signed and ratified by Colombian government in 2008, and it is considered one of the most harmful human-made compounds. For this model contaminant a complete metabolic biodegradation sequence was built and a simulation-based strategy was formulated for its biodegradation in a practical case. According to the simulated metabolic pathway, a sequential aerobic-anaerobic-aerobic reactor would be the best choice to achieve complete biodegradation. Using these results, the authors propose an innovative system for the biological treatment of POPs; this system was called Bio-Reactive Permeable Barrier (BioBarrier). In this work a description of the main and fundamentals aspects of BioBarrier system is also included, showing a new and potential possibility for the bio-treatment of hazardous pollutants.

Cómo citar

IEEE

[1]
S. CARDONA y E. SUÁREZ, «BIODEGRADATION PATHWAY PREDICTION OF POPS (PERSISTENT ORGANIC POLLUTANTS) AND BIOBARRIER TREATMENT», DYNA, vol. 77, n.º 163, pp. 115–123, jul. 2010.

ACM

[1]
CARDONA, S. y SUÁREZ, E. 2010. BIODEGRADATION PATHWAY PREDICTION OF POPS (PERSISTENT ORGANIC POLLUTANTS) AND BIOBARRIER TREATMENT. DYNA. 77, 163 (jul. 2010), 115–123.

ACS

(1)
CARDONA, S.; SUÁREZ, E. BIODEGRADATION PATHWAY PREDICTION OF POPS (PERSISTENT ORGANIC POLLUTANTS) AND BIOBARRIER TREATMENT. DYNA 2010, 77, 115-123.

APA

CARDONA, S. y SUÁREZ, E. (2010). BIODEGRADATION PATHWAY PREDICTION OF POPS (PERSISTENT ORGANIC POLLUTANTS) AND BIOBARRIER TREATMENT. DYNA, 77(163), 115–123. https://revistas.unal.edu.co/index.php/dyna/article/view/25543

ABNT

CARDONA, S.; SUÁREZ, E. BIODEGRADATION PATHWAY PREDICTION OF POPS (PERSISTENT ORGANIC POLLUTANTS) AND BIOBARRIER TREATMENT. DYNA, [S. l.], v. 77, n. 163, p. 115–123, 2010. Disponível em: https://revistas.unal.edu.co/index.php/dyna/article/view/25543. Acesso em: 18 abr. 2024.

Chicago

CARDONA, SANTIAGO, y EDGAR SUÁREZ. 2010. «BIODEGRADATION PATHWAY PREDICTION OF POPS (PERSISTENT ORGANIC POLLUTANTS) AND BIOBARRIER TREATMENT». DYNA 77 (163):115-23. https://revistas.unal.edu.co/index.php/dyna/article/view/25543.

Harvard

CARDONA, S. y SUÁREZ, E. (2010) «BIODEGRADATION PATHWAY PREDICTION OF POPS (PERSISTENT ORGANIC POLLUTANTS) AND BIOBARRIER TREATMENT», DYNA, 77(163), pp. 115–123. Disponible en: https://revistas.unal.edu.co/index.php/dyna/article/view/25543 (Accedido: 18 abril 2024).

MLA

CARDONA, S., y E. SUÁREZ. «BIODEGRADATION PATHWAY PREDICTION OF POPS (PERSISTENT ORGANIC POLLUTANTS) AND BIOBARRIER TREATMENT». DYNA, vol. 77, n.º 163, julio de 2010, pp. 115-23, https://revistas.unal.edu.co/index.php/dyna/article/view/25543.

Turabian

CARDONA, SANTIAGO, y EDGAR SUÁREZ. «BIODEGRADATION PATHWAY PREDICTION OF POPS (PERSISTENT ORGANIC POLLUTANTS) AND BIOBARRIER TREATMENT». DYNA 77, no. 163 (julio 1, 2010): 115–123. Accedido abril 18, 2024. https://revistas.unal.edu.co/index.php/dyna/article/view/25543.

Vancouver

1.
CARDONA S, SUÁREZ E. BIODEGRADATION PATHWAY PREDICTION OF POPS (PERSISTENT ORGANIC POLLUTANTS) AND BIOBARRIER TREATMENT. DYNA [Internet]. 1 de julio de 2010 [citado 18 de abril de 2024];77(163):115-23. Disponible en: https://revistas.unal.edu.co/index.php/dyna/article/view/25543

Descargar cita

Visitas a la página del resumen del artículo

154

Descargas

Los datos de descargas todavía no están disponibles.