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(Reference retrieved automatically from SciELO through information on FAPESP grant and its corresponding number as mentioned in the publication by the authors.)

Efficient degradation of solid yeast biomass from ethanol industry by Fenton and UV-Fenton processes applying multivariate analysis

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Author(s):
Geórgia Labuto [1] ; Lilia Ribeiro da Silva [2] ; Heron Dominguez Torres da Silva [3] ; Elma Neide Vasconcelos Martins Carrilho [4] ; Norberto Sanches Goncalves [5] ; Christiane de Arruda Rodrigues [6]
Total Authors: 6
Affiliation:
[1] Universidade Federal de São Paulo. Grupo de Análises Químicas Aplicadas - Brasil
[2] Universidade Federal de São Paulo. Grupo de Análises Químicas Aplicadas - Brasil
[3] Universidade Federal de São Paulo. Grupo de Análises Químicas Aplicadas - Brasil
[4] Universidade Federal de São Carlos. Departamento de Ciências da Natureza, Matemática e Educação - Brasil
[5] Universidade Federal de São Paulo. Laboratório de Química de Calixarenos, Espectroscopia Molecular e Catálise - Brasil
[6] Universidade Federal de São Paulo. Laboratório de Engenharia e Controle Ambiental - Brasil
Total Affiliations: 6
Document type: Journal article
Source: Rev. Ambient. Água; v. 12, n. 6, p. 946-963, 2017-12-00.
Abstract

Abstract Organic agro-industrial residues have been successfully used as biosorbents and promoting new uses from agricultural wastes benefits the economy. However, the allocation of a solid waste biosorbent after the sorption of contaminants has limited their effective application on a large scale as an alternative treatment of water and wastewaters. One solution could be degradation to convert the biosorbent material and adsorbed organic contaminants into environmental friendly compounds suitable for discharge. This study used an experimental design to evaluate the Fenton degradation of yeast biomass (YB) from the alcohol industry as a potential biosorbent. The efficiency of degradation was monitored according to the degraded mass (DM) and total organic carbon (TOC) remaining in the solution. The ANOVA showed an error of 9.7% for the effects and the media of interaction for the employed model for DM. Conducting the experiments with the best-predicted conditions (60 min, 25 g of YB, pH 3, 8,000 mg L-1 H2O2 and 40 mg L-1 Fe2+) with 30 W UV irradiation resulted in a YB reduction of 72 ( 2% with a TOC of 30 ( 2%. This suggests that an advanced oxidative process is an alternative for degradation of a biosorbent after sorption. (AU)

FAPESP's process: 16/06271-4 - Development of adsorbents from yeast biomass residue from industrial fermentation processes to remove emerging contaminants from water and effluents
Grantee:Geórgia Christina Labuto Araújo
Support Opportunities: Regular Research Grants