International audienceThe degradation of olive mill wastewater was investigated by a Fenton-like process using Cu (II) as a catalyst and hydrogen peroxide as an oxidant. Phenolic compounds degradation increased from 43% at 30°C to 62% at 50°C after 65 min treatment. Nonlinear regression methods allowed to accurately describe the experimental results and among the tested models, namely Lewis, Page-modified, Henderson/Pabis, and diffusion models, the most appropriate was found to be the Lewis model. The degradation was found to follow a first-order kinetic and the activation energy was 21 kJ/mol
The production of olive oil, leads to the co-production of large quantities of olive mill wastewater...
The high production of raw olive oil mill wastewater (OMW) is a current environmental problem due to...
The aim of this study was to investigate the applicability of Fenton process and combined ozone/Fen...
During olive oil extraction, large amounts of phenolics are generated in the corresponding wastewate...
Degradation of total phenol (TPh) and organic matter, (expressed as total organic carbon TOC), of a ...
International audienceThis work describes the application of Fenton's like system (H2O2/Cu2+) assist...
International audienceThis work describes the application of Fenton's like system (H2O2/Cu2+) assist...
PubMedID: 21879543The electrochemical oxidation of vanillic acid, o-coumaric acid and protocatechuic...
In this study, recalcitrant total phenol (TPh) and organic matter removal were investigated at olive...
The objective of this paper is to develop and validate a mechanistic model for the degradation of ph...
The objective of this paper is to develop and validate a mechanistic model for the degradation of ph...
The objective of this paper is to develop and validate a mechanistic model for the degradation of ph...
International audienceOlive mill wastewater (OMW) is a substantial pollutant not only because of its...
Olive mill wastewaters (OMW) constitute an environmental problem affecting mainly Mediterranean Sea ...
The removal of chemical oxygen demand (COD) and phenol from olive oil mill wastewaters (OOMW) was i...
The production of olive oil, leads to the co-production of large quantities of olive mill wastewater...
The high production of raw olive oil mill wastewater (OMW) is a current environmental problem due to...
The aim of this study was to investigate the applicability of Fenton process and combined ozone/Fen...
During olive oil extraction, large amounts of phenolics are generated in the corresponding wastewate...
Degradation of total phenol (TPh) and organic matter, (expressed as total organic carbon TOC), of a ...
International audienceThis work describes the application of Fenton's like system (H2O2/Cu2+) assist...
International audienceThis work describes the application of Fenton's like system (H2O2/Cu2+) assist...
PubMedID: 21879543The electrochemical oxidation of vanillic acid, o-coumaric acid and protocatechuic...
In this study, recalcitrant total phenol (TPh) and organic matter removal were investigated at olive...
The objective of this paper is to develop and validate a mechanistic model for the degradation of ph...
The objective of this paper is to develop and validate a mechanistic model for the degradation of ph...
The objective of this paper is to develop and validate a mechanistic model for the degradation of ph...
International audienceOlive mill wastewater (OMW) is a substantial pollutant not only because of its...
Olive mill wastewaters (OMW) constitute an environmental problem affecting mainly Mediterranean Sea ...
The removal of chemical oxygen demand (COD) and phenol from olive oil mill wastewaters (OOMW) was i...
The production of olive oil, leads to the co-production of large quantities of olive mill wastewater...
The high production of raw olive oil mill wastewater (OMW) is a current environmental problem due to...
The aim of this study was to investigate the applicability of Fenton process and combined ozone/Fen...