Advanced oxidation process and biological treatments for table olive processing wastewaters: constraints and a novel approach to integrated recycling process: a review

被引:22
作者
Ayed, Lamia [1 ]
Asses, Nedra [1 ]
Chammem, Nadia [1 ]
Ben Othman, Nada [1 ]
Hamdi, Moktar [1 ]
机构
[1] Carthage Univ, INSAT, Dept Biol & Chem Engn, Lab Microbial Ecol & Technol, BP 676, Tunis 1080, Tunisia
关键词
Table olive wastewaters; Advanced oxidation process; Biological treatment; Combined technologies; Recycling; MILL WASTE-WATER; DOPED DIAMOND ELECTRODES; WET AIR OXIDATION; PHENOLIC-COMPOUNDS; ELECTROCHEMICAL OXIDATION; LACTOBACILLUS-PLANTARUM; PLEUROTUS-OSTREATUS; GEOTRICHUM-CANDIDUM; WASHING WASTEWATERS; FACTORIAL DESIGN;
D O I
10.1007/s10532-017-9782-0
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Table olive processing wastewaters constitute a dangerous environmental problem in the Mediterranean countries because of their large volumes, high organic matter and salt concentration. The quantity and the characteristics of wastewaters produced, and thus, their environmental impact, varied depending on the season, varieties, soil and process employed. Several chemicals, biological and combined technologies have proven effective at bringing down organic pollution and toxicity of these effluents. Advanced oxidation processes have recognized as highly efficient treatments for the degradation of organic matter. Nonetheless, complete mineralization is generally expensive without salt removal. Biological processes are the most environmentally compatible and least-expensive treatment methods, but these operations do not always provide satisfactory results. This article surveys the current available technologies and suggests an effective, cheaper alternative for the recycling and the valorization of green table olives wastewaters.
引用
收藏
页码:125 / 138
页数:14
相关论文
共 70 条
[21]   Ozonation and biodegradation processes in batch reactors treating black table olives washing wastewaters [J].
Benitez, FJ ;
Acero, JL ;
Gonzalez, T ;
Garcia, J .
INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2001, 40 (14) :3144-3151
[22]  
Benitez FJ, 2001, PROCESS BIOCHEM, V37, P257
[23]   Wet oxidation and catalytic wet oxidation [J].
Bhargava, SK ;
Tardio, J ;
Prasad, J ;
Föger, K ;
Akolekar, DB ;
Grocott, SC .
INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2006, 45 (04) :1221-1258
[24]  
Brenes M, 2000, J CHEM TECHNOL BIOT, V75, P459, DOI 10.1002/1097-4660(200006)75:6<459::AID-JCTB234>3.0.CO
[25]  
2-D
[26]   BIOCHEMICAL-CHANGES IN PHENOLIC-COMPOUNDS DURING SPANISH-STYLE GREEN OLIVE PROCESSING [J].
BRENES, M ;
REJANO, L ;
GARCIA, P ;
SANCHEZ, AH ;
GARRIDO, A .
JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 1995, 43 (10) :2702-2706
[27]   PHENOL REMOVAL FROM WASTEWATERS BY ELECTROCHEMICAL OXIDATION USING BORON DOPED DIAMOND (BDD) AND Ti/Ti0.7Ru0.3O2 DSA® ELECTRODES [J].
Britto-Costa, P. H. ;
Ruotolo, L. A. M. .
BRAZILIAN JOURNAL OF CHEMICAL ENGINEERING, 2012, 29 (04) :763-773
[28]   Advanced oxidation processes for the treatment of olive-oil mills wastewater [J].
Canizares, P. ;
Lobato, J. ;
Paz, R. ;
Rodrigo, M. A. ;
Saez, C. .
CHEMOSPHERE, 2007, 67 (04) :832-838
[29]   Combined effect of alkali pretreatment and sodium chloride addition on the olive fermentation process [J].
Chammem, N ;
Kachouri, M ;
Mejri, M ;
Peres, C ;
Boudabous, A ;
Hamdi, M .
BIORESOURCE TECHNOLOGY, 2005, 96 (11) :1311-1316
[30]   Photocatalytic treatment of black table olive processing wastewater [J].
Chatzisymeon, Efthalia ;
Stypas, Elias ;
Bousios, Spiridon ;
Xekoukoulotakis, Nikolaos P. ;
Mantzavinos, Dionissios .
JOURNAL OF HAZARDOUS MATERIALS, 2008, 154 (1-3) :1090-1097