137
Thus, Eq. (7.14) is considered as modest electricity energy generation model that
is transformed from the biogas from bioreactor and it can be explained as simply as
the following equation:
V V
V
I
I
R I
n
n
n
=
+
+


 


 
−
oc
T
ph
s
,
,
,
ln 1
(7.15)
Results and Discussion
Since the anaerobic co-digestion of domestic biowaste including human feces is
done in an anaerobic bioreactor, the methanogenesis process begins to produce biogas into the bioreactor right way (Fig. 7.5). Naturally, the formation of biogas from
the biowaste is examined by computerized gas chromatograph [51–53].
Therefore, a model of bioreactor module described the generation of maximum
bioenergy from domestic waste considering protective anerobic detention chamber
(Fig. 7.1a). Naturally, the model of the bioreactor module is being simplified by the
determination of accurate form of the current–voltage (I–V) curb considering the
mode of single-diode electricity circuit [29, 34, 54].
The next step is to calculate the electricity energy generation I pv from biogas
production by the calculation of the mode of current flow in the diode panel
(Fig. 7.6a), accounting for I–V–R relationship (Fig. 7.6b), and biogas received by
the diode to convert to alternating current (AC) for the domestic energy demand
(Fig. 7.6c).
Fig. 7.5 The pathway of the methanogenesis mechanism depicts the biosynthesis of Methanococcus
maripaludis and Desulfovibrio vulgaris to conduct bioenergy generation by consuming sludge
Results and Discussion
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