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BIODEGRADABILITY COEFFICIENT IN THE OXIDATION LAGOONS ANGOSTURA-LIMÓN AND YAURILLA, ICA-PERU

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The monitoring of the oxidation ponds is a verification activity on the efficiency of the environmental treatment. The aim of the study was to determine the biodegradability coefficient in the Angostura-Limón and Yaurilla oxidation lagoons, Ica-Peru. From April to May 2022, a sampling of the influen...

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Detalles Bibliográficos
Autores: Belli-Carhuayo, Félix Ricardo, Argota-Pérez, George, Iannacone, José
Formato: artículo
Fecha de Publicación:2023
Institución:Universidad Ricardo Palma
Repositorio:Revistas - Universidad Ricardo Palma
Lenguaje:español
OAI Identifier:oai:oai.revistas.urp.edu.pe:article/5238
Enlace del recurso:http://revistas.urp.edu.pe/index.php/Biotempo/article/view/5238
Nivel de acceso:acceso abierto
Materia:biochemical oxygen demand
chemical oxygen demand
organic matter
pollution
wastewater
aguas residuales
contaminación
demanda bioquímica de oxígeno
demanda química de oxígeno
materia orgánica
Descripción
Sumario:The monitoring of the oxidation ponds is a verification activity on the efficiency of the environmental treatment. The aim of the study was to determine the biodegradability coefficient in the Angostura-Limón and Yaurilla oxidation lagoons, Ica-Peru. From April to May 2022, a sampling of the influents and effluents was carried out, determining the biochemical oxygen demand (BOD5,20 wastewater) and the chemical oxygen demand (COD). With the physical-chemical parameters, the relationship of the biodegradability quotient was established: CB = BOD5.20/ COD. In the Angostura-Limón oxidation pond, the concentrations in influents and effluents were: BOD5,20 = 315.0 and 308.1 mg·L-1; COD = 795.0 and 811.7 mg·L-1 while, in the Yaurilla oxidation lagoon they were: BOD5.20 = 268.8 and 303.6 mg·L-1; COD = 728.30 and 795.7 mg·L-1. The concentrations of BOD5,20 and COD exceeded the maximum permissible limit of Supreme Decree 004-2017 MINAM where values ​​of 15 mg·L-1 and 40 mg·L-1 are established (D1: vegetable risk). Statistically significant differences were found in the BC values: 0.396 and 0.369 for both oxidation lagoons where a biodegradability condition was shown (0.25 - 1.50). It is concluded that there were concentrations of contamination from the effluents before the concentrations of organic matter in the wastewater for the oxidation lagoons, despite the biodegradability condition of the effluents.
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