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  1. Jan 1, 2022 · Abstract. The generation of bioenergy and bioproducts from biowaste streams has piqued global interest in achieving a cutting-edge circular economy. The integration of biowaste into the cutting-edge circular economy has the potential to significantly increase the production of sustainable bioproducts and bioenergy.

  2. Apr 1, 2023 · Bioenergy production requires analysis and optimization of various parameters such as biowaste composition and conversion potential to develop innovative and sustainable technologies for most effective utilization of biowaste with enhanced bioenergy production.

  3. Apr 15, 2023 · The review focuses on the use of bio-waste as a critical component of the circular economy for the production of bio-products and bioenergy. The sources and types of biowaste are briefly discussed in this review. Methods for product recovery and conversion have received a lot of attention.

  4. Mar 15, 2024 · Biomass wastes, including agricultural residues, forest residues, food waste, and municipal solid waste, are considered a promising feedstock for bioenergy production due to their abundance and potential to reduce greenhouse gas emissions.

  5. Mar 15, 2024 · Biomass accounts for around 5 quadrillion British thermal units (Btu) and approximately 5% of total primary energy consumption in the United States in 2021 (Adekoya et al., 2023).

  6. Sep 30, 2023 · Based on this review it can be concluded that bioenergy production utilizing biowaste can clearly open new avenues in the field of waste valorisation and energy research.

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  8. Aug 10, 2020 · Anaerobic digestion is arguably the most widely adopted bioenergy process for various biowastes, including sewage sludge, organic fraction of municipal solid waste, and agricultural and livestock waste. Biogas produced from the process can be utilized for heat and electricity generation. Biogas can also be upgraded to renewable natural gas.