Title: | Comparison of different procedures to stabilize biogas formation after process failure in a thermophilic waste digestion system: influence of aggregate formation on process stability |
Author(s): | Kleybocker A; Liebrich M; Kasina M; Kraume M; Wittmaier M; Wurdemann H; |
Address: | "Microbial GeoEngineering, Helmholtz Centre Potsdam, GFZ German Research Centre for Geosciences, 14473 Potsdam, Germany" |
DOI: | 10.1016/j.wasman.2012.01.015 |
ISSN/ISBN: | 1879-2456 (Electronic) 0956-053X (Linking) |
Abstract: | "Following a process failure in a full-scale biogas reactor, different counter measures were undertaken to stabilize the process of biogas formation, including the reduction of the organic loading rate, the addition of sodium hydroxide (NaOH), and the introduction of calcium oxide (CaO). Corresponding to the results of the process recovery in the full-scale digester, laboratory experiments showed that CaO was more capable of stabilizing the process than NaOH. While both additives were able to raise the pH to a neutral milieu (pH>7.0), the formation of aggregates was observed particularly when CaO was used as the additive. Scanning electron microscopy investigations revealed calcium phosphate compounds in the core of the aggregates. Phosphate seemed to be released by phosphorus-accumulating organisms, when volatile fatty acids accumulated. The calcium, which was charged by the CaO addition, formed insoluble salts with long chain fatty acids, and caused the precipitation of calcium phosphate compounds. These aggregates were surrounded by a white layer of carbon rich organic matter, probably consisting of volatile fatty acids. Thus, during the process recovery with CaO, the decrease in the amount of accumulated acids in the liquid phase was likely enabled by (1) the formation of insoluble calcium salts with long chain fatty acids, (2) the adsorption of volatile fatty acids by the precipitates, (3) the acid uptake by phosphorus-accumulating organisms and (4) the degradation of volatile fatty acids in the aggregates. Furthermore, this mechanism enabled a stable process performance after re-activation of biogas production. In contrast, during the counter measure with NaOH aggregate formation was only minor resulting in a rapid process failure subsequent the increase of the organic loading rate" |
Keywords: | "*Biofuels Bioreactors Calcium Compounds Calcium Phosphates Fatty Acids, Volatile/metabolism Hydrogen-Ion Concentration Microscopy, Electron, Scanning Oxides Phosphorus Waste Management/instrumentation/*methods;" |
Notes: | "MedlineKleybocker, A Liebrich, M Kasina, M Kraume, M Wittmaier, M Wurdemann, H eng Comparative Study Research Support, Non-U.S. Gov't 2012/03/13 Waste Manag. 2012 Jun; 32(6):1122-30. doi: 10.1016/j.wasman.2012.01.015. Epub 2012 Mar 8" |