Title of article
Bioaugmentation with an acetate-oxidising consortium as a tool to tackle ammonia inhibition of anaerobic digestion
Author/Authors
Thomas A. and Fotidis، نويسنده , , Ioannis A. and Karakashev، نويسنده , , Dimitar and Angelidaki، نويسنده , , Irini، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2013
Pages
6
From page
57
To page
62
Abstract
Ammonia is the major inhibitor of anaerobic digestion (AD) process in biogas plants. In the current study, the bioaugmentation of the ammonia tolerant SAO co-culture (i.e. Clostridium ultunense spp. nov. in association with Methanoculleus spp. strain MAB1) in a mesophilic up-flow anaerobic sludge blanket (UASB) reactor subjected to high ammonia loads was tested. The co-cultivation in fed-batch reactors of a fast-growing hydrogenotrophic methanogen (i.e. Methanoculleus bourgensis MS2T) with the SAO co-culture was also investigated. Results demonstrated that bioaugmentation of SAO co-culture in a UASB reactor was not possible most likely due to the slow maximum growth rate (μmax = 0.007 h−1) of the culture caused by the methanogenic partner. The addition of M. bourgensis to SAO led to 42% higher growth rate (μmax = 0.01 h−1) in fed-batch reactors. This indicates that methanogens were the slowest partners of the SAO co-culture and therefore were the limiting factor during bioaugmentation in the UASB reactor.
Keywords
Ammonia inhibition , Syntrophic acetate oxidation , Biomethanation , UASB reactor
Journal title
Bioresource Technology
Serial Year
2013
Journal title
Bioresource Technology
Record number
1933943
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