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- W3119245522 endingPage "124706" @default.
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- W3119245522 abstract "• Solid digestate disposal significantly affected environmental and energy benefits. • The most significant environmental impact among all scenarios was GWP 100 . • Digestate subunits in scenarios 1–3 showed large contributions to GWP 100 . • Composting and landfill had the most and least inputs of net energy, respectively. • Scenario rank by environmental impact was: composting < incineration < landfill. This study examined the environmental impacts and energy consumption of three solid digestate treatment scenarios to quantify their impacts on the entire food waste (FW)-based biogas system: (1) incineration; (2) composting, and; (3) landfill. The results showed that composting had the largest net energy consumption, but least total environmental impact of 57.3 kWh and 8.75 E-03, respectively, whereas landfill showed the opposite pattern. Moreover, there were significant differences (p < 0.05) and relatively high contributions between the digestate treatment subunits among the three scenarios. The most significant contributions of digestate subunits in methods 1–3 to the 100-year global warming potential (GWP 100 ) were 70.5%, 52.5%, and 103.4%, respectively. The results indicated that solid digestate treatment had a significant impact, and reasonable disposal of solid digestate could significantly reduce the environmental impacts and energy consumption of the entire FW-based biogas system." @default.
- W3119245522 created "2021-01-18" @default.
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- W3119245522 date "2021-04-01" @default.
- W3119245522 modified "2023-10-17" @default.
- W3119245522 title "Solid digestate disposal strategies to reduce the environmental impact and energy consumption of food waste-based biogas systems" @default.
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- W3119245522 doi "https://doi.org/10.1016/j.biortech.2021.124706" @default.
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