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Recovery of volatile fatty acids via membrane contactor using flat membranes: Experimental and theoretical analysisTUGTAS, Adile Evren.Waste management (Elmsford). 2014, Vol 34, Num 7, pp 1171-1178, issn 0956-053X, 8 p.Article

Utilization patterns of volatile fatty acids in the denitrification reactionELEFSINIOTIS, P; WAREHAM, D. G.Enzyme and microbial technology. 2007, Vol 41, Num 1-2, pp 92-97, issn 0141-0229, 6 p.Article

Volatile fatty acid production in aerobic thermophilic pre-treatment of primary sludgeMCINTOSH, K. B; OLESZKIEWICZ, J. A.Water science and technology. 1997, pp 189-196, issn 0273-1223, isbn 0-08-043377-4Conference Paper

Use of volatile fatty acids from an acid-phase digester for denitrificationELEFSINIOTIS, P; WAREHAM, D. G; SMITH, M. O et al.Journal of biotechnology. 2004, Vol 114, Num 3, pp 289-297, issn 0168-1656, 9 p.Article

Volatile fatty acid production during anaerobic mesophilic digestion of tea and vegetable market wastesLATA, Kusum; RAJESHWARI, K. V; PANT, D. C et al.World journal of microbiology & biotechnology. 2002, Vol 18, Num 6, pp 589-592, issn 0959-3993, 4 p.Article

Acides gras volatils : des actions sur le métabolisme glucidique ? = Volatile fatty acids: do they act on carbohydrate metabolism?BORNET, F; ALAMOWITCH, C; SLAMA, G et al.La Revue du praticien (Paris). 1994, Vol 44, Num 8, pp 1051-1055, issn 0035-2640Article

Performance and characteristics of an anaerobic baffled reactorJIANLONG WANG; YONGHENG HUANG; XUAN ZHAO et al.Bioresource technology. 2004, Vol 93, Num 2, pp 205-208, issn 0960-8524, 4 p.Article

Untersuchungen über charakteristische Inhaltsstoffe in Destillatfraktionen aus Obstmaischen, die als Leitsubstanzen zur sicheren Erkennung von Nachläufen geeignet sind = Examination of the distillation characteristics of the distillate from numerous fruit mashes using GC analysisGUAN, S; PIEPER, H. J.Deutsche Lebensmittel-Rundschau. 1998, Vol 94, Num 11, pp 365-374, issn 0012-0413Article

Action moléculaire et cellulaire du butyrate = Molecular and cellular effects of butyrateKRUH, J; DEFER, N; TICHONICKY, L et al.Comptes rendus des séances de la Société de biologie et de ses filiales. 1992, Vol 186, Num 1-2, pp 12-25, issn 0037-9026Article

Experimental co-digestion of corn stalk and vermicompost to improve biogas production : Anaerobic Digestion (AD) of solid wasteGUANGYIN CHEN; ZHENG ZHENG; SHIGUAN YANG et al.Waste management (Elmsford). 2010, Vol 30, Num 10, pp 1834-1840, issn 0956-053X, 7 p.Article

Recovery of energy from Taro (Colocasia esculenta) with solid-feed anaerobic digesters (SOFADs)BINDU, T; RAMASAMY, E. V.Waste management (Elmsford). 2008, Vol 28, Num 2, pp 396-405, issn 0956-053X, 10 p.Article

Competitive Oxidation of Volatile Fatty Acids by Sulfate-and Nitrate-Reducing Bacteria from an Oil Field in ArgentinaGRIGORYAN, Aleksandr A; CORNISH, Sabrina L; BUZIAK, Brenton et al.Applied and environmental microbiology (Print). 2008, Vol 74, Num 14, pp 4324-4335, issn 0099-2240, 12 p.Article

Biological hydrogen production by enriched anaerobic cultures in the presence of copper and zincZHENG, Xian-Jun; YU, Han-Qing.Journal of environmental science and health. Part A, Toxic/hazardous substances & environmental engineering. 2004, Vol 39, Num 1, pp 89-101, 13 p.Article

Production of poly(hydroxybutyrate-hydroxyvalerate) from waste organics by the two-stage process: Focus on the intermediate volatile fatty acidsLIANG SHEN; HONGYOU HU; HONGFANG JI et al.Bioresource technology. 2014, Vol 166, pp 194-200, issn 0960-8524, 7 p.Article

Semi-continuous anaerobic co-digestion of orange peel waste and residual glycerol derived from biodiesel manufacturingMARTÍN, M. A; FERNÁNDEZ, R; SERRANO, A et al.Waste management (Elmsford). 2013, Vol 33, Num 7, pp 1633-1639, issn 0956-053X, 7 p.Article

Volatile fatty acid-sensing system involving coenzyme-A transferaseRAJASHEKHARA, Eranna; HOSODA, Akihumi; SODE, Koji et al.Biotechnology progress. 2006, Vol 22, Num 1, pp 334-337, issn 8756-7938, 4 p.Article

In vitro gas and volatile fatty acids production profiles of barley and maize and their soluble and washout fractions after feed processingYANG, H. J; TAMMINGA, S; WILLIAMS, Barbara A et al.Animal feed science and technology. 2005, Vol 120, Num 1-2, pp 125-140, issn 0377-8401, 16 p.Article

Effect of process configuration and substrate complexity on the performance of anaerobic processesAZBAR, Nuri; URSILLO, Pepi; SPEECE, Richard E et al.Water research (Oxford). 2001, Vol 35, Num 3, pp 817-829, issn 0043-1354Article

Performance of fibrous bed bioreactor for treating odorous gas : Scientific noteHONG CHUA; LI, X. Z; YU, P. H. F et al.Applied biochemistry and biotechnology. 1999, Vol 77-79, pp 561-569, issn 0273-2289Conference Paper

Methodology for estimation of kinetic constants for anaerobic digestion of organic matter from field and laboratory dataAZEITEIRO, C; CAPELA, I. F; DUARTE, A. C et al.Environmental technology. 1998, Vol 19, Num 11, pp 1139-1144, issn 0959-3330Article

Concentrations and correlations of faecal short-chain fatty acids and faecal water content in manSHGUR, U; NORIN, K. E; ALLGOOD, G et al.Microbial ecology in health and disease. 1994, Vol 7, Num 6, pp 287-294, issn 0891-060XConference Paper

Ensilage of mangopeel for methane generationMADHUKARA, K; KRISHNA NAND; RAJU, N. R et al.Process biochemistry (1991). 1993, Vol 28, Num 2, pp 119-123, issn 1359-5113Article

Vertebrate gastrointestinal fermentation : transport mechanisms for volatile fatty acidsTITUS, E; AHEARN, G. A.American journal of physiology. Regulatory, integrative and comparative physiology. 1992, Vol 31, Num 4, pp R547-R553, issn 0363-6119Article

Effect of pH on fecal recovery of energy derived from volatile fatty acidsLAWRENCE KIEN, C; LIECHTY, E. A.Journal of pediatric gastroenterology and nutrition. 1987, Vol 6, Num 6, pp 923-925, issn 0277-2116Article

Bacterial community structure in maximum volatile fatty acids production from alginate in acidogenesisJIYUN SEON; TAEHO LEE; SEONG CHAN LEE et al.Bioresource technology. 2014, Vol 157, pp 22-27, issn 0960-8524, 6 p.Article

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