| Literature DB >> 31500163 |
Florian Monlau1, Cecilia Sambusiti2, Abdellatif Barakat2.
Abstract
Biogas plants for waste treatment valorization are presently experiencing rapid development, especially in the agricultural sector, where large amounts of digestate are being generated. In this study, we investigated the effect of vibro-ball milling (VBM) for 5 and 30 min at a frequency of 20 s-1) on the physicochemical composition and enzymatic hydrolysis (30 U g-1 total solids (TS) of cellulase and endo-1,4-xylanase from Trichoderma longibrachiatum) of dry and wet solid digestates from an agricultural biogas plant. We found that VBM of dry solid digestate improved the physical parameters as both the particle size and the crystallinity index (from 27% to 75%) were reduced. By contrast, VBM of wet solid digestate had a minimal effect on the physicochemical parameters. The best results in terms of cellulose and hemicelluloses hydrolysis were noted for 30 min of VBM of dry solid digestate, with hydrolysis yields of 64% and 85% for hemicelluloses and cellulose, respectively. For the condition of 30 min of VBM, bioethanol and methane production on the dry solid separated digestate was investigated. Bioethanol fermentation by simultaneous saccharification and fermentation resulted in an ethanol yield of 98 geth kg-1 TS (corresponding to 90% of the theoretical value) versus 19 geth kg-1 TS for raw solid digestate. Finally, in terms of methane potential, VBM for 30 min lead to an increase of the methane potential of 31% compared to untreated solid digestate.Entities:
Keywords: anaerobic digestion; bioethanol production; energy balances; milling process; solid digestate; sugars recovery
Year: 2019 PMID: 31500163 PMCID: PMC6783974 DOI: 10.3390/bioengineering6030080
Source DB: PubMed Journal: Bioengineering (Basel) ISSN: 2306-5354
The main operational characteristics and performances of the agricultural biogas plant unit.
| Anaerobic Digester Parameters | |
|---|---|
| Number of reactors | 2 digesters, |
| Reactors Volume (m3) | Digesters: 2 × 2400 |
| Feeding (t FM day−1) a | 95 |
| HRT (d) a | 80 |
| pH a | 7.9 |
| Temperature (°C) a | 40 |
| Biogas | |
| Biogas (Nm3 day−1) | 12,000 |
| Methane (%) | 53 |
| Total Energy (kWh day−1) b | 63,600 |
a Referred to digesters and post-fermenter; b 10 kWh Nm−3 methane.
Physicochemical characteristics of untreated and pretreated digestate by vibro-ball milling of dry and wet solid separated digestate (SS-DIG).
| Parameters | SS-DIG | VBM Dry—5 min | VBM Dry—30 min | VBM Wet—5 min | VBM Wet—30 min |
|---|---|---|---|---|---|
| Volatile Solids (g/100 g TS) | 89.2 ± 2.3 | 91.3 ± 0.4 | 91.7 ± 0.5 | 91.0 ± 0.2 | 90.0 ± 0.2 |
| Proteins (g/100 g TS) | nd | 10.5 ± (0.1) | 9.9 ± (0.3) | 9.7 ± (0.6) | 10.8 ± (0.0) |
| Cellulose (g/100 g TS) | nd | 22.9 ± (3.1) | 20.2± (0.4) | 22.2 ± (1.5) | 21.1 ± (1.5) |
| Hemicelluloses (g/100 g TS) | nd | 16.6 ± (1.9) | 16.5 ± (0.2) | 16.9 ± (1.5) | 17.9 ± (2.2) |
| Lignin (g/100 g TS) | nd | 26.9 ± (0.3) | 28.2± (0.8) | 26.3 ± (0.3) | 29 ± (1.3) |
| Ash (g/100 g TS) | 10.1 ± 1.9 | 8.2 ± (0.4) | 8.1 ± (0.9) | 10.1 ± (1.9) | 9.9 ± (0.2) |
| Particle size (D50, µm) | - | 35 (± 7) | 48 (± 2) | 202 (± 28) | 162 (± 34) |
| Cri (%) | 44 | 32 | 11 | 46 | 41 |
nd = not determined.
Figure 1Granulometry repartition (in % of dry biomass) of the raw solid digestate.
Figure 2Enzymatic hydrolysis performances in terms of cellulose hydrolysis yield (A) and the hemicelluloses hydrolysis yields (B) for raw SS-DIG and vibro-ball milling (VBM)-pretreated samples in wet and dry modes.
Electrical and thermal energy requirements and energy efficiencies of the various milling modes applied to dry and wet SS-DIG.
| Electrical Consumption (kWhel kg−1 TS) | Thermal Energy (kWhth kg−1 TS) | C6 Sugars (g kg TS−1) | Efficiency ɳel (kg Sugars kWhel−1) | Efficiency ɳtot (kg Sugars kWh−1) | |
|---|---|---|---|---|---|
| SS-DIG | - | - | 44 | ||
| VBM dry—5 min | 9.9 | 3.0 | 101 | 0.102 | 0.078 |
| VBM dry—30 min | 54.4 | 3.0 | 191 | 0.035 | 0.033 |
| VBM wet—5 min | 9.9 | - | 76 | 0.076 | 0.076 |
| VBM wet—30 min | 54.4 | - | 86 | 0.015 | 0.015 |
Figure 3Hexose consumption and ethanol production for raw solid separated digestate and pretreated solid separated digestate with VBM for 30 min.
Figure 4Methane potential (NL CH4 kg−1 VS) of raw SS-DIG and pretreated SS-DIG by VBM at 30 min.