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Original Articles

Olive fermentation brine: biotechnological potentialities and valorization

, , , , &
Pages 181-193 | Received 22 Oct 2011, Accepted 17 Apr 2012, Published online: 14 Jun 2012

References

  • Abdelkafi , S. , Chamkha , M. , Casalot , L. , Sayadi , S. and Labat , M. 2005 . Isolation and characterization of a novel Bacillus sp., strain YAS1, capable of transforming tyrosol under hypersaline conditions . FEMS Microbiol. Lett. , 252 : 79 – 84 . (doi:10.1016/j.femsle.2005.08.032)
  • Segovia-Bravo , K. A. , Arroyo-López , F. N. , García , P. , Durán-Quintana , M. C. and Garrido-Fernández , A. 2007 . Treatment of green table olive solutions with ozone. Effect on their polyphenol content and on Lactobacillus pentosus and Saccharomyces cerevisiae growth . Int. J. Food Microbiol. , 114 : 60 – 68 . (doi:10.1016/j.ijfoodmicro.2006.09.032)
  • Nychas , G. J.E. , Panagou , E. Z. , Parker , M. L. , Waldron , K. W. and Tassou , C. C. 2002 . Microbial colonization of naturally black olives during fermentation and associated biochemical activities in the cover brine . Lett. App. Microbiol. , 34 : 173 – 177 . (doi:10.1046/j.1472-765x.2002.01077.x)
  • Abdelkafi , S. , Labat , M. , Casalot , L. , Chamkha , M. and Sayadi , S. 2006 . Isolation and characterization of Halomonas sp. strain IMPC, a p-coumaric acid-metabolizing bacterium which decarboxilates other cinnamic acids under hypersaline conditions . FEMS Microbiol. Lett. , 255 : 108 – 114 . (doi:10.1111/j.1574-6968.2005.00061.x)
  • Romero , C. , Brenes , M. , Yousfi , K. , García , P. , García , A. and Garrido , A. 2004 . Effect of cultivar and processing method on the contents of polyphenols in table olives . J. Agric. Food Chem. , 11 : 479 – 484 . (doi:10.1021/jf030525l)
  • Romero , C. , Brenes , M. , García , P. , García , A. and Garrido , A. 2004 . Polyphenol changes during fermentation of naturally black olives . J. Agric. Food Chem. , 52 : 1973 – 1979 . (doi:10.1021/jf030726p)
  • Bouaziz , M. , Chamkha , M. and Sayadi , S. 2004 . Comparative study on phenolic content and antioxidant activity during maturation of the olive cultivar Chemlali from Tunisia . J. Agric. Food Chem. , 52 : 5476 – 5481 . (doi:10.1021/jf0497004)
  • Beltran-Heredia , F. J. , Gonzalez , T. and Garcia , J. 2008 . Kinetics of biodegradation of green table olive wastewaters by aerobic and anaerobic treatments . J. Haz. Mat. , 154 : 839 – 845 . (doi:10.1016/j.jhazmat.2007.10.102)
  • Kotsou , M. , Kyriacou , A. , Lasaridi , K. and Pilidis , G. 2004 . Integrated aerobic biological treatment and chemical oxidation with Fenton's reagent for the processing of green table olive wastewater . Proc. Biochem. , 39 : 1653 – 1660 . (doi:10.1016/S0032-9592(03)00308-X)
  • Kopsidas , G. C. 1992 . Wastewaters from the preparation of table olives . Water Res. , 26 : 629 – 663 . (doi:10.1016/0043-1354(92)90237-X)
  • Parinos , C. S. , Stalikas , C. D. , Giannopoulos , T. S. and Pilidis , G. A. 2007 . Chemical and physicochemical profile of wastewaters produced from the different stages of Spanish-style green olives processing . J. Hazard. Mat. , 145 : 339 – 343 . (doi:10.1016/j.jhazmat.2006.12.061)
  • Brenes , M. , García , A. , García , P. and Garrido , A. 2000 . Rapid and complete extraction of phenols from olive oil and determination by means of a coulometric electrode array system . J. Agric. Food Chem. , 48 : 5178 – 5183 . (doi:10.1021/jf000686e)
  • Servili , M. , Minnocci , A. , Veneziani , G. , Taticchi , A. , Urbani , A. , Esposto , S. , Sebastiani , L. , Valmorri , S. and Corsetti , A. 2008 . Compositional and tissue modifications induced by the natural fermentation process in table olives . J. Agric. Food Chem. , 56 : 6389 – 6396 . (doi:10.1021/jf8007019)
  • Marsilio , V. and Lanza , B. 1998 . Characterisation of an oleuropein degrading strain of Lactobacillus plantarum. Combined effects of compounds present in olive fermenting brines (phenols, glucose and NaCl) on bacterial activity . J. Sci. Food Agric. , 76 : 520 – 524 . (doi:10.1002/(SICI)1097-0010(199804)76:4<520::AID-JSFA982>3.0.CO;2-I)
  • Servili , M. , Settanni , L. , Veneziani , G. , Esposto , S. , Massitti , O. , Taticchi , A. , Urbani , S. , Montedoro , G. F. and Corsetti , A. 2006 . The use of Lactobacillus pentosus 1MO to shorten the debittering process time of black table olives (Itrana and Leccino cv.): A pilot-scale application . J. Agric. Food Chem. , 54 : 3869 – 3875 . (doi:10.1021/jf053206y)
  • Abdelkafi , S. , Labat , M. , Ben Ali , Z. , Lorquin , J. , Casalot , L. and Sayadi , S. 2008 . Optimized conditions for the synthesis of vanillic acid under hypersaline conditions by Halomonas elongata DSM 2581T resting cells . World J. Microbiol. Biotechnol. , 24 : 675 – 680 . (doi:10.1007/s11274-007-9523-3)
  • Panagou , E. Z. and Katsaboxakis , C. Z. 2006 . Effect of different brining treatments on the fermentation of cv. Conservolea green olives processed by the Spanish-method . Food Microbiol. , 23 : 199 – 204 . (doi:10.1016/j.fm.2005.03.003)
  • Fernández-Diéz , M. J. 1983 . “ Olives ” . In Biotechnology: Food and Feed Production with Microorganisms , Edited by: Rehm , H. J. and Reed , G. 379 – 397 . Deerfield Beach , FL : Verlag Chenie .
  • Ruiz-Barba , J. and Jiménez-Díaz , R. 2011 . A novel Lactobacillus pentosus-paired starter culture for Spanish-style green olive fermentation . Food Microbiol. , 30 : 253 – 259 . (doi:10.1016/j.fm.2011.11.004)
  • H. Boriss, Commodity profile: Olives, Agricultural Issues Center, University of CA (2006). Available at http://aic.ucdavis.edu/profiles/Olives.
  • Casado , F. J. and Montano , A. 2008 . Influence of processing conditions on acrylamide content in black ripe olives . J. Agric. Food Chem. , 56 : 2021 – 2027 . (doi:10.1021/jf072960b)
  • Sánchez , J. I. , Martínez , B. , Guillén , R. , Jiménez-Díaz , R. and Rodríguez , A. 2006 . Culture conditions determine the balance between two different exopolysaccharides produced by Lactobacillus pentosus LPS26 . Appl. Environ. Microbiol. , 72 : 7495 – 7502 . (doi:10.1128/AEM.01078-06)
  • de Castro , A. , Montaño , A. , Casado , F. J. , Sánchez , A. H. and Rejano , L. 2002 . Utilization of Enterococcus casseliflavus and Lactobacillus pentosus as starter cultures for Spanish-style green olive fermentation . Food Microbiol. , 19 : 637 – 644 . (doi:10.1006/fmic.2002.0466)
  • Nychas , G. J.E. , Panagou , E. , Parker , M. L. , Waldron , K. W. and Tassou , C. C. 2002 . Microbial colonization of naturally-black olives during fermentation and associated biochemical activities in the cover brine . Lett. Appl. Microbiol. , 34 : 173 – 177 . (doi:10.1046/j.1472-765x.2002.01077.x)
  • Spyropoulou , K. E. , Chorianopoulos , N. G. , Skandamis , P. N. and Nychas , G. J.E. 2001 . Survival of Escherichia coli O157:H7 during the fermentation of Spanish-style green table olives (conservolea variety) supplemented with different carbon sources . Int. J. Food Microbiol. , 66 : 3 – 11 . (doi:10.1016/S0168-1605(00)00510-9)
  • Tassou , C. C. , Panagou , E. Z. and Katsaboxakis , K. Z. 2002 . Microbiological and physicochemical changes of naturally black olives fermented at different temperatures and NaCl levels in the brine, . Food Microbiol. , 19 : 605 – 615 . (doi:10.1006/fmic.2002.0480)
  • Kotzekidou , P. 1997 . Identification of yeasts from black olives in rapid system microtitre plates . Food Microbiol. , 14 : 609 – 616 . (doi:10.1006/fmic.1997.0133)
  • Vaughn , R. H. 1985 . “ The fermentation of olives ” . In Microbiology of Fermented Foods , Edited by: Wood , B. J.B. Vol. 1 , 74 – 100 . London : Elsevier Applied Science Publishers .
  • Vaughn , R. H. , Stevenson , K. E. , Dave , B. A. and Park , H. C. 1972 . Fermenting yeasts associated with softening and gas-pocket formation in olives . Appl. Microbiol. , 23 : 316 – 320 .
  • Thomas , D. S. and Davenport , R. R. 1985 . Zygosaccharomyces bailii – A profile of characteristics and spoilage activities . Food Microbiol. , 2 : 157 – 169 . (doi:10.1016/S0740-0020(85)80008-3)
  • Durán Quintana , M. C. , Barranco , R. C. , García García , P. , Brenes Balbuena , M. and Garrido Fernández , A. 1997 . Bacterias del ácido láctico en la fermentación de aceitunas de mesa . Grasas Aceites , 48 : 297 – 311 . (doi:10.3989/gya.1997.v48.i5.806)
  • Tsapatsaris , S. and Kotzekidou , P. 2004 . Application of central composite design and response surface methodology to the fermentation of olive juice by Lactobacillus plantarum and Debaryomyces hansenii . Int. J. Food Microbiol. , 95 : 157 – 168 . (doi:10.1016/j.ijfoodmicro.2004.02.011)
  • Boddy , L. and Wimpenny , J. W.T. 1992 . Ecological concepts in food microbiology . J. App. Bact. , 73 : 23 – 38 . (doi:10.1111/j.1365-2672.1992.tb03622.x)
  • Kavvadias , V. , Doula , M. K. , Komnitsas , K. and Liakopoulou , N. J. 2010 . Disposal of olive oil mill wastes in evaporation ponds: Effects on soil properties . J. Hazard. Mater. , 182 : 144 – 155 . (doi:10.1016/j.jhazmat.2010.06.007)
  • Beltran-Heredia , J. , Joaquin , T. , Joaquin , R. D. and Garcia , J. 2000 . Aerobic biological treatment of black table olive washing wastewaters: Effect of an ozonation stage . Proc. Biochem. , 35 : 1183 – 1190 . (doi:10.1016/S0032-9592(00)00160-6)
  • Aggelis , G. , Gavala , N. H. and Lyberatos , G. 2001 . Combined and separate aerobic and anaerobic biotreatment of green olive debittering wastewater . J. Agric. Eng. Res. , 80 : 283 – 292 . (doi:10.1006/jaer.2001.0732)
  • Benitez , F. J. , Acero , J. L. , Gonzalez , T. and Garcia , J. 2001 . Organic matter removal from wastewaters of the black olive industry by biochemical and biological procedures . Proc. Biochem. , 37 : 257 – 265 . (doi:10.1016/S0032-9592(01)00209-6)
  • Garcia , I. , Pena , J. P.R. , Venceslada , B. J.L. , Martin , M. A. , Santos , M. M.A. and Gomez , R. E. 2000 . Removal of phenol compounds from olive mill wastewater using Phanerochaete chrysosporium, Aspergillus niger, Aspergillus terreus and Geotrichum candidum . Proc. Biochem. , 35 : 751 – 758 . (doi:10.1016/S0032-9592(99)00135-1)
  • Rivas , F. J. , Beltran , F. J. , Gimero , O. and Alvarez , P. 2001 . Chemical-biological treatment of table olive manufacturing wastewater . J. Environ. Eng. , 127 : 611 – 619 . (doi:10.1061/(ASCE)0733-9372(2001)127:7(611))
  • Kyriacou , A. , Lasaridi , K. E. , Kotsou , M. , Balis , C. and Pilidis , G. 2005 . Combined bioremediation and advanced oxidation of green table olive processing wastewater . Proc. Biochem. , 40 : 1401 – 1408 . (doi:10.1016/j.procbio.2004.06.001)
  • Rivas , F. J. , Beltran , F. J. , Gimero , O. and Alvarez , P. 2003 . Optimization of Fenton's reagent usage as a pre-treatment for fermentation brines . J. Hazard. Mater. , 96 : 277 – 290 . (doi:10.1016/S0304-3894(02)00217-0)
  • Benitez , F. J. , Acero , J. L. , Gonzalez , T. and Garcia , J. 2001 . Ozonation and biodegradation processes in batch reactors treating black table olives washing wastewaters . Ind. Eng. Chem. Res. , 40 : 3144 – 3151 . (doi:10.1021/ie000735c)
  • Benitez , F. J. , Acero , J. L. , Gonzalez , T. and Garcia , J. 2002 . The use of ozone, ozone plus UV radiation, and aerobic microorganisms in the purification of some agro-industrial wastewaters . J. Environ. Eng. Sci. Health , 37 : 1307 – 1325 .
  • Beltran , F. J. , Garcia-Araya , J. F. , Frades , J. , Alvarez , P. and Gimeno , O. 1999 . Effects of single and combined ozonation with hydrogen peroxide or UV radiation on the chemical degradation and biodegradability of debittering table olive industrial wastewaters . Water Res. , 33 : 723 – 773 . (doi:10.1016/S0043-1354(98)00239-5)
  • Panizza , M. , Bocca , C. and Cerisola , G. 2000 . Electrochemical treatment of wastewater containing polyaromatic organic pollutants . Water Res. , 34 : 2601 – 2605 . (doi:10.1016/S0043-1354(00)00145-7)
  • Levec , J. and Pintar , A. 2007 . Catalytic wet-air oxidation processes: A review . Cat. Today , 124 : 172 – 184 . (doi:10.1016/j.cattod.2007.03.035)
  • Bhargava , S. K. , Tardio , J. , Prasad , J. , Foger , K. , Akolekar , D. B. and Grocott , S. C. 2006 . Wet oxidation and catalytic wet oxidation . Ind. Eng. Chem. Res. , 45 : 1221 – 1258 . (doi:10.1021/ie051059n)
  • Katsoni , A. , Zaharias , F. , Nikolaos , P. X. , Evan , D. and Dionissios , M. 2008 . Wet air oxidation of table olive processing wastewater: Determination of key operating parameters by factorial design . Water Res. , 42 : 3591 – 3600 . (doi:10.1016/j.watres.2008.05.007)
  • Rivas , F. J. , Beltran , F. J. , Gimero , O. and Alvarez , P. 2003 . Treatment of brines by combined Fenton's reagent-aerobic biodegradation: II. Process modelling . J. Hazard. Mater. , 96 : 259 – 276 . (doi:10.1016/S0304-3894(02)00216-9)
  • Brocakli , M. , Özay , G. , Alperden , I. and Erdek , Y. 1993 . Changes in chemical and microbiological composition of the two varieties of olives during fermentation . Grasas Y Acetrites , 44 : 253 – 258 . (doi:10.3989/gya.1993.v44.i4-5.1075)
  • Özay , G. and Brocakli , M. 1996 . Effect of brine replacement and salt concentration on the fermentation of naturally black olives . Food Res. Int. , 28 : 553 – 559 . (doi:10.1016/0963-9969(95)00054-2)
  • Godon , J. J. , Zumstein , E. , Dabert , P. , Habouzit , F. and Moletta , R. 1997 . Molecular microbial diversity of an anaerobic digestor as determined by small-subunit rDNA sequence analysis . App. Environ. Microbiol. , 63 : 2802 – 2813 .
  • Chamkha , M. , Sayadi , S. , Bru , V. and Godon , J. J. 2008 . Microbial diversity in Tunisian olive fermentation brine as evaluated by small subunit rRNA – Single strand conformation polymorphism analysis . Int. J. Food Microbiol. , 122 : 211 – 215 . (doi:10.1016/j.ijfoodmicro.2007.11.052)
  • Chachkhiani , M. , Dabert , P. , Abzianidze , T. , Partskhaladze , G. , Tsiklauri , L. , Dudauri , T. and Godon , J. J. 2004 . 16S rDNA characterisation of bacterial and archaeal communities during start-up of anaerobic thermophilic digestion of cattle manure . Bioresour. Technol. , 93 : 227 – 232 . (doi:10.1016/j.biortech.2003.11.005)
  • Rosado , W. and Govind , N. S. 2003 . Identification of carbohydrate degrading bacteria in sub-tropical regions . Rev. Biol. Tropical , 51 : 205 – 210 .
  • Ampe , F. , Omar , N. B. , Moizan , C. , Wacher , C. and Guyot , J. P. 1999 . Polyphasic study of the spatial distribution of microorganisms in Mexican pozol, a fermented maize dough, demonstrated the need for cultivation-independent methods to investigate traditional fermentations . Appl. Environ. Microbiol. , 65 : 5464 – 5473 .
  • Randazzo , C. L. , Restuccia , C. , Romano , A. D. and Caggia , C. 2004 . Lactobacillus casei, dominant species in naturally fermented Sicilian green olives . Int. J. Food Microbiol. , 90 : 9 – 14 . (doi:10.1016/S0168-1605(03)00159-4)
  • Abdelkafi , S. , Sayadi , S. , Ben Ali Gam , Z. , Casalot , L. and Labat , M. 2006 . Bioconversion of ferulic acid to vanillic acid by Halomonas elongata isolated from table-olive fermentation . FEMS Microbiol. Lett. , 262 : 115 – 120 . (doi:10.1111/j.1574-6968.2006.00381.x)
  • Ruiz-Barba , J. L. and Jiménez-Diaz , R. 1995 . Availability of essential B-group vitamins to Lactobacillus plantarum in green olive fermentation brines . App. Environ. Microbiol. , 61 : 1294 – 1297 .
  • Lavermicocca , R. , Gobbetti , M. , Corsetti , A. and Caputo , L. 1998 . Characterization of lactic acid bacteria isolated from olive phylloplane and table olive brines . Italian J. Food Sci. , 10 : 27 – 39 .
  • de Castro , A. , García , P. , Romero , C. , Brenes , M. and Garrido , A. 2007 . Industrial implementation of black ripe olive storage under acid conditions . J. Food Eng. , 80 : 1206 – 1212 . (doi:10.1016/j.jfoodeng.2006.09.010)
  • Skandamis , P. N. and Nychas , G. J.N. 2003 . Modelling the microbial interaction and the death of Escherichia coli during the fermentation of Spanish-style green table olives . J. Food Prot. , 66 : 3 – 11 .
  • Bouaziz , M. , Chamkha , M. and Sayadi , S. 2004 . Comparative study on phenolic content and antioxidant activity during maturation of the olive cultivar Chemlali from Tunisia . J. Agric. Food Chem. , 52 : 5476 – 5481 . (doi:10.1021/jf0497004)
  • Allouche , N. , Feki , I. and Sayadi , S. 2004 . Toward a high yield recovery of antioxidants and purified hydroxytyrosol from olive mill wastewaters . Agric. Food Chem. , 52 : 267 – 273 . (doi:10.1021/jf034944u)
  • Bouaziz , M. and Sayadi , S. 2005 . Isolation and evaluation of antioxidants from leaves of a Tunisian cultivar olive tree . Eur. J. Lipid Sci. Tech. , 107 : 497 – 504 . (doi:10.1002/ejlt.200501166)
  • Bouaziz , M. , Grayer , R. J. , Simmonds , M. S.J. , Damak , M. and Sayadi , S. 2005 . Identification and antioxidant potential of flavonoids and low molecular weight phenols in olive cultivar chemlali growing in Tunisia . J. Agric. Food Chem. , 53 : 236 – 241 . (doi:10.1021/jf048859d)
  • Scalbert , A. , Johnson , I. T. and Saltmarsh , M. 2005 . Polyphenols: Antioxidants and beyond . Am. J. Clin. Nutr. , 81 : 215 – 217 .
  • Visioli , F. and Galli , C. 2001 . Antiatherogenic components of olive oil . Curr. Atherosclerosis Rep. , 3 : 64 – 67 . (doi:10.1007/s11883-001-0012-0)
  • Jemai , H. , Fki , I. , Bouaziz , M. , Bouallagui , Z. , El feki , A. , Isoda , H. and Sayadi , S. 2008 . Lipid-lowering and antioxidant effects of hydroxytyrosol and its triacetylated derivative recovered from olive tree leaves in cholesterol-fed rats . J. Agric. Food Chem. , 56 : 2630 – 2636 . (doi:10.1021/jf072589s)
  • Fendri , I. , Chaari , A. , Dhouib , A. , Jlassi , B. , Abousalham , A. , Carriere , F. , Sayadi , S. and Abdelkafi , S. 2010 . Isolation, identification and characterization of a new lipolytic Pseudomonas sp., from Tunisian soil . Environ. Technol. , 31 : 87 – 95 . (doi:10.1080/09593330903369994)
  • Chamouleau , F. , Coulon , D. , Girardin , M. and Ghoul , M. 2001 . Influence of water activity and water content on sugar esters lipase-catalyzed synthesis in organic media . J. Mol. Cat. B , 11 : 949 – 954 . (doi:10.1016/S1381-1177(00)00166-1)
  • Xi-Yu , C. , Min-Hua , Z. , Wen-Yong , L. and Hong , W. 2008 . Highly efficient region-selective synthesis of 5’-O-lauroyl-5-azacytidine catalysed by Candida antarctica lipase B . App. Biochem. Biotechnol. , 151 : 21 – 28 . (doi:10.1007/s12010-008-8152-0)
  • Bhagwat , S. S. , Bevinakatti , H. S. and Mukesh , D. 2005 . Transesterificatin of substituted ethanols with ethyl acetate-modelling studies . Biochem. Eng. J. , 22 : 253 – 259 . (doi:10.1016/j.bej.2004.09.002)
  • Mateos , R. , Dominguez , M. M. , Espartero , J. L. and Cert , A. 2003 . Antioxidant effect of phenolic compounds, R-tocopherol, and other minor components in virgin olive oil . J. Agric. Food Chem. , 51 : 7170 – 7175 . (doi:10.1021/jf034415q)
  • Giovannini , C. , Straface , E. , Modesti , D. , Coni , E. , Cantafora , A. and De Vincenzi , M. 1999 . Tyrosol, the major olive oil biophenol, protects against oxidized LDL-induced injury in Caco2 cells . J. Nutr. , 129 : 1269 – 1277 .
  • Yamaguchi , T. , Machida , K. and Kikuchi , M. 1995 . Analysis of the components of Ligustrum species. XVII. On the components of the flower of Ligustrum ovalifolium Hassk . Annu. Rep. Tohoku Coll. Pharm. , 42 : 105 – 107 .
  • Acevedo , L. , Martinez , E. , Castaneda , P. , Franzblau , S. , Timmermann , B. N. , Linares , E. , Bye , R. and Mata , R. 2000 . New phenylethanoids from Buddleja cordata subsp . Cordata Planta Med. , 66 : 257 – 261 . (doi:10.1055/s-2000-8570)
  • Bianco , A. , Melchioni , C. , Ramunno , A. , Romeo , G. and Uccella , N. 2004 . Phenolic components of Olea europaea – Isolation of tyrosol derivatives . Nat. Prod. Res. , 18 : 29 – 32 . (doi:10.1080/1478641031000111570)
  • Trujillo , M. , Mateos , R. , Collantes de Teran , L. , Espartero , J. L. , Cert , R. , Jover , M. , Alcudia , F. , Bautista , J. , Cert , A. and Parrado , J. 2006 . Lipophilic hydroxytyrosyl esters. Antioxidant activity in lipid matrices and biological systems . J. Agric. Food Chem. , 54 : 3779 – 3785 . (doi:10.1021/jf060520z)
  • Aissa , I. , Bouaziz , M. , Ghamgui , H. , Kammoun , A. , Miled , N. , Sayadi , S. and Gargouri , Y. 2007 . Optimization of lipase-catalysed synthesis of acetylated tyrosol by response surface methodology . J. Agric. Food Chem. , 55 : 10298 – 10305 . (doi:10.1021/jf071685q)
  • Marsilio , V. , Russi , F. , Lannucci , E. and Sabatini , N. 2008 . Effects of alkali neutralization with CO 2 on fermentation, chemical parameters and sensory characteristics in Spanish-style green olives (Olea europaea L.) . LWT Food Sci. Technol. , 41 : 796 – 802 . (doi:10.1016/j.lwt.2007.05.013)
  • Fernández-Díez , M. J. , de Castro-Ramos , R. , Garrido-Fernández , A. , González-Cancho , F. , González-Pellissò , F. , Nosti-Vega , M. , Heredia-Moreno , A. , Mínguez-Mosquera , M. I. , Rejano Navarro , L. , Durán-Quintana , M. C. , Sánchez-Roldán , F. , García García , P. and de Castro , A. 1985 . Biotecnologia de la Aceituna de Mesa , Madrid : Consejo Superior de Investigaciones Cientificas, Instituto de la Grasa .
  • García-García , P. , Garrido-Fernández , A. , Chakman , A. , Lemonier , J. P. , Overend , R. P. and Chornet , E. 1990 . Application of the jet-reactor technology to the wet oxidation of waste-waters from the olive industries, . Grasas y Aceites , 41 : 158 – 162 .
  • G.M. Cappelletti, G.M. Nicoletti, and C. Russo, Wastewater from table olive industries, in Waste Water – Evaluation and Management, F.S. García Einschlag, ed., In Tech, Rijeka, Croatia, 2011, pp. 351–376.

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