info:eu-repo/semantics/article
Coupling of bioaugmentation and biostimulation to improve lindane removal from different soil types
Fecha
2019-08Registro en:
Raimondo, Enzo Emanuel; Sáez, Juliana María; Aparicio, Juan Daniel; Fuentes, María Soledad; Benimeli, Claudia Susana; Coupling of bioaugmentation and biostimulation to improve lindane removal from different soil types; Pergamon-Elsevier Science Ltd; Chemosphere; 238; 8-2019; 124512
0045-6535
CONICET Digital
CONICET
Autor
Raimondo, Enzo Emanuel
Sáez, Juliana María
Aparicio, Juan Daniel
Fuentes, María Soledad
Benimeli, Claudia Susana
Resumen
Lindane is an organochlorine pesticide that, due to its persistence in the environment, is still detected in different matrices. Bioremediation using actinobacteria consortia proved to be promising for the restoration of contaminated soils. Another alternative to remove xenobiotics is to use agricultural residues, which stimulates microbial activity, increasing its capacity to degrade organic pollutants. The present work studies the coupling of sugarcane bagasse biostimulation and bioaugmentation with the actinobacteria consortium composed of Streptomyces sp. A2, A5, A11 and M7 on lindane removal in different soil types. In this sense, factorial designs with three factors (proportion and size of sugarcane bagasse particles, and moisture content) were employed. A response optimizer identified the combination of factors levels that jointly allowed obtaining the maximum lindane removal in the evaluated conditions. In the optimal conditions, the effect of the bioremediation process on soil microbiota was studied by evaluating different parameters. The highest lindane removal percentages were detected in biostimulated microcosms bioaugmented with the microbial consortium, which were accompanied by a decrease in lindane half-life respect to the controls. Also, the bioaugmentation of biostimulated microcosms increased the microbial counts and enhanced soil enzymatic activities, corroborating the bioremediation process efficiency. The survival of the four actinobacteria at the end of the assay confirmed the ability of all Streptomyces strains to colonize amended soils. Bioremediation by simultaneous application of biostimulation with sugarcane bagasse and bioaugmentation with the actinobacteria consortium, in the optimized conditions, represents an efficient strategy to restore lindane contaminated soils.