Cyanide Biodegradation by a Native Bacterial Consortium and Its Potential for Goldmine Tailing Biotreatment

Author:

Alvarado-López María José1ORCID,Garrido-Hoyos Sofía E.2,Raynal-Gutiérrez María Elena3ORCID,El-Kassis Elie G.1ORCID,Luque-Almagro Víctor M.4ORCID,Rosano-Ortega Genoveva1

Affiliation:

1. Decanato de Ciencias Biológicas, Universidad Popular Autónoma del Estado de Puebla, 21 Sur 1103, Barrio de Santiago, Puebla 72410, Puebla, Mexico

2. Instituto Mexicano de Tecnología del Agua (IMTA), Paseo Cuauhnáhuac 8532, Colonia Progreso, Jiutepec 62550, Morelos, Mexico

3. Decanato de Ingenierías, Universidad Popular Autónoma del Estado de Puebla, 21 Sur 1103, Barrio de Santiago, Puebla 72410, Puebla, Mexico

4. Departamento de Bioquíımica y Biología Molecular, Universidad de Córdoba, Edificio Severo Ochoa, 14071 Córdoba, Spain

Abstract

A native cyanide-degrading bacterial consortium was isolated from goldmine tailing sediments. Mine tailings are toxic effluents due to their metal–cyanide complexes. The bacterial consortium was able to degrade an initial sodium cyanide concentration ranging from 5 to 120 mg L−1 in alkaline synthetic wastewater (pH > 9.2), for a maximum of 15 days. The free cyanide biodegradation efficiency was 98% for the highest initial free cyanide concentration tested and followed a first-order kinetic profile, with an estimated kinetic rate constant of 0.12 ± 0.011 d−1. The cyanide-degrading consortium was streaked with serial dilutions on a specific medium (R2A). 16S rRNA gene sequencing and mass spectrometry proteomic fingerprinting of the isolates showed that the bacterial strains belonged to Microbacterium paraoxydans, Brevibacterium casei, Brevundimonas vesicularis, Bacillus cereus and Cellulosimicrobium sp. The first four genera had previously been identified as cyanide-degrading bacteria. Microbacterium and Brevibacterium had previously been found in alkaline conditions, showing resistance to heavy metals. As for Cellulosimicrobium, to our knowledge, this is the first study to implicate it directly or indirectly in cyanide biodegradation. In this research, these genera were identified as functional bacteria for cyanide degradation, and they might be suitable for mine tailing biotechnological tertiary treatment.

Funder

Research Department of the Universidad Popular Autónoma del Estado de Puebla

the Consejo Nacional de Ciencia y Tecnología

Publisher

MDPI AG

Subject

Water Science and Technology,Aquatic Science,Geography, Planning and Development,Biochemistry

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