Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
6306557 | Chemosphere | 2016 | 8 Pages |
Abstract
In this study, a fed-batch acidogenic reactor was operated at a 3 d hydraulic retention time (HRT) and fed with alkaline pre-treated sludge to investigate salinity effects on methanogens' abundance, activities and their consumption of produced acetic acid (HAc) and total volatile fatty acids (VFAs). The salinity concentration was increased step-wise by adding sodium chloride. At 3â° (parts per thousand) salinity, the average produced volatile fatty acids (VFAs) concentration was 2410.16 ± 637.62 mg COD Lâ1 and 2.70 ± 0.36 L methane was produced daily in the acidogenic reactor. Further batch tests indicated methanogens showed a HAc degradation rate of 3.81 mg COD gâ1 VSS hâ1 at initial HAc concentration of 1150 mg COD Lâ1, and showed tolerance up to 16â° salinity (3.76 g Na+ Lâ1) as indicated by a constant HAc degradation rate. The microbiological study indicated this can be related to the predominance of acetate-utilizing Methanosarcinaceae and Methanomicrobiales in the reactor. However, with salinity increased to 20â° and 40â°, increases in VFAs and HAc production and decreases in methane production, methanogens population, acidogenic bacteria population and acidification extent were observed. This study demonstrated presence of acetate-utilizing methanogens in an acidogenic reactor and their high tolerance to salinity, as well as their negative impacts on net VFAs production. The results would suggest the presence of methanogens in the acidogenic reactor should not be ignored and the recovery of methane from the acidogenic reactor needs to be considered to avoid carbon loss.
Keywords
NaClsRTn.a.MSCTCDSCODVFAsHRTTDSHNO3CH4MBTNaOHHClqPCRMSTMMBMethanobacterialesArgonthermal conductivity detectorflame ionization detectorAcetic acidhydrochloric acidVolatile fatty acidsOxygenHACAcidogenic fermentationchemical oxygen demandsecondsTotal solidsvolatile solidsMinFIDNot availableminutesCarbon dioxidedaysSolids retention timehydraulic retention timeAcclimationhoursSodium chlorideHydrogen fluorideMethaneMethanogensTotal dissolved solidssoluble chemical oxygen demandNitrogenNitric acidHalf-saturation constantHeliumHydrogensodium hydroxidequantitative polymerase chain reactionCodCO2Gas chromatography
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Authors
Keke Xiao, Chenghong Guo, Yogananda Maspolim, Yan Zhou, Wun Jern Ng,