Production of agricultural biogas with the use of a hydrodynamic mixing system of a polydisperse substrate in a reactor with an adhesive bed

Abstrakt

The properties, types, and physical and chemical aspects of pig slurry used in the fermentation process were presented. Characterization of the pig slurry microflora for a controlled biogas production process was performed. A pilot biogas treatment installation was presented on the example of a farm with 1100 Dan Bred fatteners kept in a grate system. The research was carried out to measure the biogas flow rate resulting from the reference pressure in the fermentor. An independent assessment of the amount of biogas and the pressure drop in the skeletal deposit was carried out. The basis for assessing the hydrodynamics of gas flow through the adhesive bed is the flow characteristic, which results from the pressure that forces this flow. In each case, the determination of this characteristic consists in determining the influence of the biogas stream on the value of this overpressure, equivalent to the pressure drop (it is tantamount to determining the total biogas flow resistance through the adhesive bed). The results of the measurements indicate the practical application of pig slurry‐a substrate in a polydisperse system for the production of agricultural biogas in the context of renewable energies. The article indicates that the ferment was periodically mixed during the day, together with the fermentation of the ferment with fresh substrate. The tests were conducted for 49 days, thus demonstrating that it is more advantageous to mix the ferment hydrodynamically, obtaining a CH4 level of about 80%.

Autorzy

Serhiy Syrotyuk
Serhiy Syrotyuk
Ryszard Konieczny
Ryszard Konieczny
Dorota Anders
Dorota Anders
Barbara Dybek
Barbara Dybek
Agnieszka Karwacka
Agnieszka Karwacka
Grzegorz Wałowski
Grzegorz Wałowski
artykuł
Energies
Angielski
2021
14
12
3538
otwarte czasopismo
CC BY 4.0 Uznanie autorstwa 4.0
ostateczna wersja opublikowana
w momencie opublikowania
2021-06-14
140
3,252
0
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