Efficiency of an up-flow Anaerobic Sludge Blanket reactor coupled with an electrochemical system to remove chloramphenicol in swine wastewater

Author:

Romero-Soto Itzel12ORCID,Garcia-Gomez Celestino13ORCID,Leyva-Soto Luis1,Napoles-Armenta Juan13ORCID,Concha-Guzman María2ORCID,Díaz-Tenorio Lourdes1ORCID,Ulloa-Mercado Ruth1ORCID,Drogui Patrick4,Buelna Gerardo14ORCID,Rentería-Mexia Ana María1ORCID,Gortáres-Moroyoqui Pablo1ORCID

Affiliation:

1. Departamento de Biotecnología y Ciencias Alimentarias, Instituto Tecnológico de Sonora, 5 de febrero 818 Sur, 85000, Ciudad Obregón, Sonora, México

2. Centro Universitario del Norte, Universidad de Guadalajara, Km. 191, México 45D No. 23, 46200, Jal., México

3. Facultad de Agronomía, Universidad Autónoma de Nuevo León. Francisco I. Madero S/N, Ex Hacienda el Cañada, 66050, Cd Gral, Escobedo, NL, Mexico

4. Institut national de la recherche scientifique, 490 Couronne St, Quebec City, Quebec G1 K 9A9, Canada

Abstract

Abstract The application and design of treatment systems in wastewater are necessary due to antibiotics' potential toxicity and resistant genes on residual effluent. This work evaluated a coupled bio-electrochemical system to reduce chloramphenicol (CAP) and chemical oxygen demand (COD) on swine wastewater (SWW). SWW characterization found CAP of <10 μg/L and 17,434 mg/L of COD. The coupled system consisted of preliminary use of an Up-flow Anaerobic Sludge Blanket Reactor (UASB) followed by electrooxidation (EO). The UASB reactor (primary stage) was operated for three months at an organic load of 8.76 kg of COD/m3d and 50 mg CAP/L as initial concentration. In EO, we carried out a 22 (time operation and intensity) factorial design with a central composite design; we tried two Ti cathodes and one anode of Ti/PbO2. Optimal conditions obtained in the EO process were 240 min of operation time and 1.51 A of current intensity. It was possible to eliminate 44% of COD and 64.2% of CAP in the preliminary stage. On bio-electrochemicals, total COD and CAP removal were 82.35 and >99.99%, respectively. This coupled system can be applied to eliminate antibiotics and other organic pollutants in agricultural, industrial, municipal, and other wastewaters.

Publisher

IWA Publishing

Subject

Water Science and Technology,Environmental Engineering

Reference54 articles.

1. Anaerobic digestion of piggery wastes;Water Science and Technology,1992

2. Simultaneous determination of sulfonamides, tetracyclines and tiamulin in swine wastewater by solid-phase extraction and liquid chromatography-mass spectrometry;Journal of Chromatography A,2008

3. Electrodegradation of tetracycline on BDD anode;Chemical Engineering Journal,2012

4. Evaluation of the performance of the anaerobic sludge blanket reactor (UASB) at laboratory scale in the removal of the organic load of swine wastewater;Ciência e Agrotecnologia,2005

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