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1.
Bioresour Technol ; 247: 1-6, 2018 Jan.
Article in English | MEDLINE | ID: mdl-28942207

ABSTRACT

The aim of this work was to study the impact of reduced mixing time in a full-scale CSTR biogas reactor from 10 to 5 and to 2min in half an hour on the distribution of DM, acetic acid and FOS/TAC as a measure to cut electricity consumption. The parameters in the digestate were unevenly distributed with the highest concentration measured at the point of feeding. By reducing mixing time, the FOS/TAC value increases by 16.6%. A reduced mixing time of 2min lead to an accumulation of 15% biogas in the digestate.


Subject(s)
Biofuels , Bioreactors , Anaerobiosis , Food
2.
Bioresour Technol ; 178: 341-349, 2015 Feb.
Article in English | MEDLINE | ID: mdl-25453437

ABSTRACT

The degradation efficiency of 21 full-scale agricultural CSTR biogas plants was investigated. The residual methane potential of the digestion stages was determined in batch digestion tests (20.0 and 37.0 °C). The results of this study showed that the residual methane yield is significantly correlated to the HRT (r=-0.73). An almost complete degradation of the input substrates was achieved due to a HRT of more than 100 days (0.097±0.017 Nm(3)/kg VS). The feedstock characteristics have the largest impact to the degradation time. It was found that standard values of the methane yield are a helpful tool for evaluating the degradation efficiency. Adapting the HRT to the input materials is the key factor for an efficient degradation in biogas plants. No influence of digester series configuration to the VS degradation was found. The mean VS degradation rate in the total reactor systems was 78±7%.


Subject(s)
Agriculture , Biofuels , Refuse Disposal/methods , Fatty Acids, Volatile/analysis , Methane/biosynthesis , Reference Standards , Time Factors , Volatilization
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