An Integrated Energy Recovery Approach of Biohythane-Biocrude Production from Microalgae-Sludge Through Co-Digestion and Co-Liquefaction
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Elsevier BV
Reference51 articles.
1. Renewable fuels and chemicals by thermal processing of biomass;A V Bridgwater;Chem Eng J,2003
2. Performance optimization of organic solid waste and peat co-liquefaction mechanism for processing sustainable biocrude;S B Kabir;Fuel Process Technol,2022
3. Substituting microalgal biomass with faecal sludge for high-quality biocrude production through co-liquefaction: A sustainable biorefinery approach;M B Islam;Fuel Process Technol,2022
4. Co-liquefaction of organic solid waste with fecal sludge for producing petroleum-like biocrude for an integrated waste to energy approach;S B Kabir;J Clean Prod,2022
5. Cleaner energy for cleaner production: modelling, simulation, optimisation and waste management;J Y Yong;J Clean Prod,2016
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1. Biohythane as a sustainable fuel – A review on prospective synthesis based on feedstock preprocessing, optimization approach and circular economy concept;Process Safety and Environmental Protection;2024-05
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