Warianty tytułu
Języki publikacji
Abstrakty
The color of sugar beet molasses vinasse is produced mainly by melanoidins (from Maillard reaction of sugars (carbohydrates) with proteins (amino groups)), caramels (from overheated sugars), and invert degradation products of alkaline hydrolysis. The aim of this study was to remove colorants from vinasse using lactic acid bacteria (Lactobacillus coryniformis, Lactobacillus sakei, Lactobacillus plantanim, Weisella soli, Pediococcus parvulus, and Pediococcus pentosaceus). The highest color removal was obtained with L. plantarum (44%). The highest reduction in melanoidins and invert degradation products was observed with P. parvulus (38% and 36%, respectively). The colorants underwent biotransformation. No correlation was found between color removal and COD reduction.
Wydawca
Czasopismo
Rocznik
Tom
Numer
Opis fizyczny
p.943-948,fig.,ref.
Twórcy
autor
- Department of Bioprocess Engineering, Wroclaw University of Economics, Komandorska 118/120, 53-345 Wroclaw, Poland
autor
Bibliografia
- 1. GRFA, Global ethanol production to reach 85.9 billion litres in 2010: Global Renewable Fuels Alliance releases 2010 biofuels production forecast, in: Global Renewable Fuels Alliance, 2010, http://www.globalrfa.org/pr_032110.php.
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- 3. SAHA N.K., BALAKRISHNAN M„ BATRA V.S. Improving industrial water use: case study for an Indian distillery. Res. Conserv. Recycl., 43, (2), 163, 2005.
- 4. MORALES F.J., JIMÉNEZ-PÉREZ S. Free radical scavenging capacity of Maillard reaction products as related to colour and fluorescence. Food Chem. 72, (1), 119, 2001.
- 5. COCA M., GARCÍA M.T., GONZÁLEZ G., PEÑA M., GARCÍA J.A. Study of coloured components formed in sugar beet processing. Food Chem. 86, (3), 421, 2004.
- 6. BENITO G.G., MIRANDA M.P., DE LOS SANTOS D.R. Decolorization of wastewater from an alcoholic fermentation process with Trametes versicolor. Bioresour. Technol. 61,(1) 33,1997.
- 7. BARKÓCZI M., SZAKÁL P., SCHMIDT R., LEŒNY J., BEKE D. Beneficial and harmful effects of using vinasse. Cereal Res. Commun. 35, (2), 221, 2007.
- 8. TONDEE T., SIRIANUNTAPIBOON S. Decolorization of molasses wastewater by Lactobacillus plantarum No. PV71-1861. Bioresour. Technol. 99, (14), 6258, 2008.
- 9. KIM S.J., SHODA M. Batch decolorization of molasses by suspended and immobilized fungus of Geotrichum candidum Dec 1. J. Biosci. Bioeng. 88, (5), 586, 1999.
- 10. PANT D., ADHOLEYA A. Biological approaches for treatment of distillery wastewater: a review. Bioresour. Technol. 98,(12), 2321,2007.
- 11. SATYAWALI Y., BALAKRISHNAN M. Wastewater treatment in molasses-based alcohol distilleries for COD and color removal: a review. J. Environ. Manage. 86, (3), 481, 2008.
- 12. OHOMOMO S., DAENGSUBHA W., YOSHIKAWA H., YUI M., NOZAKI K., NAKAJIMA T., NAKAMURA I. Screening of anaerobic bacteria with the ability to decolorize molasses melanoidin. Agrie. Biol. Chem. 52, 2429, 1988.
- 13. SHIBU A.R., KUMAR V., WATI L., CHAUDHARY K., SINGH D., NIGAM P. A bioprocess for the remediation of anaerobically digested molasses spentwash from biogas plant and simultaneous production of lactic acid. Bioproc. Biosys. Eng. 20, (4) 337, 1999.
- 14. KRZYWONOS M., EBERHARD T. High density process to cultivate Lactobacillus plantarían biomass using wheat stillage and sugar beet molasses. Electron. J. Biotechnol. 14. (2), 2011. http://www.ejbiotechnology.info/index.php/ejbiotechnology/ article/view/v 14n2
- 15. ANON. Handbook of Photometrical Operation Analysis. Dr. Lange, BDB 079 February 2000 [In German],
- 16. BHARAGAVA R.N., CHANDRA R., RAI V. Isolation and characterization of aerobic bacteria capable of the degradation of synthetic and natural melanoidins from distillery effluent. World J. Microbiol. Biotechnol. 25, 737, 2009.
- 17. SAPRONOV A.R. Quantitative determination of colorants in the sugar industry products. Sacharnaja Promyslennost' SSSR, 37, 32, 1963 [In Russian],
- 18. DWYER J., KAVANAGH L., LANT P., The degradation of dissolved organic nitrogen associated with melanoidin using a UV/H202 AOP. Chemosphere 71, (9), 1745, 2008.
- 19. ZUB S., KURISSOO T., MENERT A., BLONSKAJA V. Combined biological treatment of high-sulphate wastewater from yeast production. Water Environ. J. 22, (4), 274, 2008.
- 20. BHARAGAVA R., CHANDRA R. Biodegradation of the major color containing compounds in distillery wastewater by an aerobic bacterial culture and characterization of their metabolites. Biodegradation, 21, (5), 703, 2010.
Typ dokumentu
Bibliografia
Identyfikatory
Identyfikator YADDA
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