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| Content Provider | Directory of Open Access Journals (DOAJ) |
|---|---|
| Author | Chibueze G. Achi Amro Hassanein Stephanie Lansing |
| Abstract | Currently, there are challenges with proper disposal of cassava processing wastewater, and a need for sustainable energy in the cassava industry. This study investigated the impact of co-digestion of cassava wastewater (CW) with livestock manure (poultry litter (PL) and dairy manure (DM)), and porous adsorbents (biochar (B-Char) and zeolite (ZEO)) on energy production and treatment efficiency. Batch anaerobic digestion experiments were conducted, with 16 treatments of CW combined with manure and/or porous adsorbents using triplicate reactors for 48 days. The results showed that CW combined with ZEO (3 g/g total solids (TS)) produced the highest cumulative $CH_{4}$ (653 mL $CH_{4}$/g VS), while CW:PL (1:1) produced the most $CH_{4}$ on a mass basis (17.9 mL $CH_{4}$/g substrate). The largest reduction in lag phase was observed in the mixture containing CW (1:1), PL (1:1), and B-Char (3 g/g TS), yielding 400 mL $CH_{4}$/g volatile solids (VS) after 15 days of digestion, which was 84.8% of the total cumulative $CH_{4}$ from the 48-day trial. Co-digesting CW with ZEO, B-Char, or PL provided the necessary buffer needed for digestion of CW, which improved the process stability and resulted in a significant reduction in chemical oxygen demand (COD). Co-digestion could provide a sustainable strategy for treating and valorizing CW. Scale-up calculations showed that a CW input of 1000−2000 L/d co-digested with PL (1:1) could produce 9403 $m^{3}$ $CH_{4}$/yr using a 50 $m^{3}$ digester, equivalent to 373,327 MJ/yr or 24.9 tons of firewood/year. This system would have a profit of $5642/yr and a $47,805 net present value. |
| e-ISSN | 19961073 |
| DOI | 10.3390/en13020491 |
| Journal | Energies |
| Issue Number | 2 |
| Volume Number | 13 |
| Language | English |
| Publisher | MDPI AG |
| Publisher Date | 2020-01-01 |
| Publisher Place | Switzerland |
| Access Restriction | Open |
| Subject Keyword | Technology Methane Fermentation Dairy Poultry Absorbent |
| Content Type | Text |
| Resource Type | Article |
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