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- W2613152044 abstract "A modified version of an in-situ CO 2 removal process was applied during anaerobic digestion of food waste with two types of walnut shell biochar at bench scale under batch operating mode. Compared with the coarse walnut shell biochar, the fine walnut shell biochar has a higher ash content (43 vs. 36 wt%) and higher concentrations of calcium (31 vs. 19 wt% of ash), magnesium (8.4 vs. 5.6 wt% of ash) and sodium (23.4 vs. 0.3 wt% of ash), but a lower potassium concentration (0.2 vs. 40% wt% of ash). The 0.96–3.83 g biochar (g VS added ) -1 fine walnut shell biochar amended digesters produced biogas with 77.5%–98.1% CH 4 content by removing 40%–96% of the CO 2 compared with the control digesters at mesophilic and thermophilic temperature conditions. In a direct comparison at 1.83 g biochar (g VS added ) -1 , the fine walnut shell biochar amended digesters (85.7% CH 4 content and 61% CO 2 removal) outperformed the coarse walnut shell biochar amended digesters (78.9% CH 4 content and 51% CO 2 removal). Biochar addition also increased alkalinity as CaCO 3 from 2800 mg L -1 in the control digesters to 4800–6800 mg L -1 , providing process stability for food waste anaerobic digestion." @default.
- W2613152044 created "2017-05-19" @default.
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- W2613152044 date "2017-05-10" @default.
- W2613152044 modified "2023-10-12" @default.
- W2613152044 title "In-situ biogas upgrading during anaerobic digestion of food waste amended with walnut shell biochar at bench scale" @default.
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- W2613152044 doi "https://doi.org/10.1177/0734242x17704716" @default.
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