The adsorption of phenolic compounds from olive oil wastewater by commercial activated carbon was studied as a function of adsorbent quantity and temperature. The sorption kinetics and the equilibrium isotherms were evaluated. Under optimum conditions (8 g of activated carbon per 100 mL), the maximum sorption capacity of activated carbon expressed as mg of caff eic acid equivalent per g of activated carbon was 35.8 at 10 °C, 35.4 at 25 °C and 36.1 at 40 °C. The pseudo-second-order model was considered as the most suitable for kinetic results, and Langmuir isotherm was chosen to bett er describe the sorption system. The results confi rmed the effi ciency of activated carbon to remove almost all phenolic compound fractions from olive mill eff...
Olive oil extraction generates a large quantity of wastewater which is a strong pollutant due to its...
The rise in olive oil production coincides with an increase in olive oil side-streams, such as olive...
open7siA procedure for the selection of the optimal adsorbent for phenolic compounds (PC) recovery f...
The adsorption of phenolic compounds from olive oil wastewater by commercial activated carbon was st...
The adsorption of phenolic compounds from olive oil wastewater by commercial activated carbon was st...
The adsorption of phenolic compounds from olive oil wastewater by commercial activated carbon was st...
A series of adsorbents was developed by physical (CO2) and chemical (KOH) activation of two bio-resi...
Activated carbon is prepared with chemical activation of olive stones, by using H3PO4. Batch adsorpt...
A procedure for the selection of the optimal adsorbent for phenolic compounds (PC) recovery from PC-...
AbstractThis study explores the possibility of using olive mill waste to remove phenol from aqueous ...
Olive oil production generates solid and liquid wastes that cause various environmental problems due...
Agricultural activities such as olive mills generate highly polluted wastewater together with solid ...
Olive mill technology generates a considerable amount of solid (olive pomace) and liquid (olive mill...
Removal of polyphenols from crude olive mill wastewaters (COMWW) is vital to the development of oliv...
open5siBACKGROUND: Olive mill wastewaters (OMWs) represent a major environmental concern due to thei...
Olive oil extraction generates a large quantity of wastewater which is a strong pollutant due to its...
The rise in olive oil production coincides with an increase in olive oil side-streams, such as olive...
open7siA procedure for the selection of the optimal adsorbent for phenolic compounds (PC) recovery f...
The adsorption of phenolic compounds from olive oil wastewater by commercial activated carbon was st...
The adsorption of phenolic compounds from olive oil wastewater by commercial activated carbon was st...
The adsorption of phenolic compounds from olive oil wastewater by commercial activated carbon was st...
A series of adsorbents was developed by physical (CO2) and chemical (KOH) activation of two bio-resi...
Activated carbon is prepared with chemical activation of olive stones, by using H3PO4. Batch adsorpt...
A procedure for the selection of the optimal adsorbent for phenolic compounds (PC) recovery from PC-...
AbstractThis study explores the possibility of using olive mill waste to remove phenol from aqueous ...
Olive oil production generates solid and liquid wastes that cause various environmental problems due...
Agricultural activities such as olive mills generate highly polluted wastewater together with solid ...
Olive mill technology generates a considerable amount of solid (olive pomace) and liquid (olive mill...
Removal of polyphenols from crude olive mill wastewaters (COMWW) is vital to the development of oliv...
open5siBACKGROUND: Olive mill wastewaters (OMWs) represent a major environmental concern due to thei...
Olive oil extraction generates a large quantity of wastewater which is a strong pollutant due to its...
The rise in olive oil production coincides with an increase in olive oil side-streams, such as olive...
open7siA procedure for the selection of the optimal adsorbent for phenolic compounds (PC) recovery f...