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1.
Membranes (Basel) ; 12(3)2022 Mar 18.
Article in English | MEDLINE | ID: mdl-35323816

ABSTRACT

This study aimed to investigate the impact of real MBR effluent pre-ozonation on nanofiltration performances. Nanofiltration experiments were separately run with non-ozonated real MBR effluent, ozonated real MBR effluent and synthetic ionic solution mimicking the ionic composition of the real MBR effluent. The specific UV absorbance and the chemical oxygen demand were monitored during ozonation of real effluent, and the mineralization rate was calculated through the quantitative analysis of dissolved organic carbon. The membrane structure was characterized using SEM on virgin and fouled membrane surfaces and after different cleaning steps. The results confirm the low effect of the ozonation process in terms of organic carbon mineralization. However, the chemical oxygen demand and the specific UV absorbance were decreased by 50% after ozonation, demonstrating the efficiency of ozonation in degrading a specific part of the organic matter fraction. A benefic effect of pre-ozonation was observed, as it limits both fouling and flux decrease. This study shows that the partial mineralization of dissolved and colloidal organic matter by ozonation could have a positive effect on inorganic scaling and decrease severe NF membrane fouling.

2.
Chemosphere ; 172: 1-9, 2017 Apr.
Article in English | MEDLINE | ID: mdl-28064122

ABSTRACT

The evolution of the degradation by-products of an acetaminophen (ACE) solution was monitored by HPLC-UV/MS and IC in parallel with its ecotoxicity (Vibrio fischeri 81.9%, Microtox® screening tests) during electro-Fenton (EF) oxidation performed on carbon felt. The aromatic compounds 2-hydroxy-4-(N-acetyl) aminophenol, 1,4-benzoquinone, benzaldehyde and benzoic acid were identified as toxic sub-products during the first stage of the electrochemical treatment, whereas aliphatic short-chain carboxylic acids (oxalic, maleic, oxamic, formic, acetic and fumaric acids) and inorganic ions (ammonium and nitrate) were well identified as non-toxic terminal sub-products. Electrogenerated hydroxyl radicals then converted the eco-toxic and bio-refractory property of initial ACE molecule (500 mL, 1 mM) and subsequent aromatic sub-products into non-toxic compounds after 2 h of EF treatment. The toxicity of every intermediate produced during the mineralization of ACE was quantified, and a relationship was established between the degradation pathway of ACE and the global toxicity evolution of the solution. After 8 h of treatment, a total organic carbon removal of 86.9% could be reached for 0.1 mM ACE at applied current of 500 mA with 0.2 mM of Fe2+ used as catalyst.


Subject(s)
Acetaminophen/chemistry , Acetaminophen/toxicity , Water Pollutants, Chemical/chemistry , Water Pollutants, Chemical/toxicity , Aliivibrio fischeri/drug effects , Ammonium Compounds/chemistry , Benzaldehydes/chemistry , Benzaldehydes/toxicity , Benzoic Acid/chemistry , Benzoic Acid/toxicity , Benzoquinones/chemistry , Benzoquinones/toxicity , Carbon/chemistry , Carboxylic Acids/chemistry , Catalysis , Electrochemical Techniques , Electrodes , Hydrogen Peroxide/chemistry , Hydroxyl Radical/chemistry , Iron/chemistry , Kinetics , Nitrates/chemistry , Oxidation-Reduction , Phenols/chemistry , Phenols/toxicity
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