Open Access
Issue
E3S Web Conf.
Volume 684, 2026
International Conference on Engineering for a Sustainable World (ICESW 2025)
Article Number 03002
Number of page(s) 10
Section Engineering Innovation and Social Environment
DOI https://doi.org/10.1051/e3sconf/202668403002
Published online 07 January 2026
  1. G. Grzinic, A. Piotrowicz-Cieslak, A. Klimkowicz-Pawlas, R.-L. Gorny, A. Lawniczek-Walczyk, L. Piechowicz, E. Olkowska, M. Potrykus, M. Tankiewicz, M. Krupka, G. Siebielec, L. Wolska. Intensive poultry farming: A review of the impact on the environment and human health. Science of The Total Environment, 858, 3, 160014 (2023). https://doi.org/10.1016/j.scitotenv.2022.160014 [Google Scholar]
  2. I.-R. Abubakar, K.-M. Maniruzzaman, U.-L. Dano, F.-S. AlShihri, M.-S. AlShammari, S.-M.-S. Ahmed, W.-A.-G. Al-Gehlani, T.-I. Alrawaf. Environmental Sustainability Impacts of Solid Waste Management Practices in the Global South. Int J Environ Res Public Health, 19(19), 12717 (2022). doi: 10.3390/ijerphl91912717 [CrossRef] [PubMed] [Google Scholar]
  3. N. Sawyerr, C. Trois, T. Workneh, V. Okudoh. Co-Digestion of Animal Manure and Cassava Peel for Biogas Production in South Africa, in Proceedings of the 9th Int'l Conference on Advances in Science, Engineering, Technology & Waste Management (ASETWM-17), Parys, South Africa, 27–28 (2017). doi:10.17758/eares.eap1117059 [Google Scholar]
  4. C.-H. Achebe, E. Onokpite, A.-O. Onokwai. Anaerobic Digestion and Co-digestion of Poultry Dropping (PD) and Cassava Peels (CP): Comparative Study of Optimal Biogas Production. Journal of Engineering and Applied Science, 15, 87-93 (2018). [Google Scholar]
  5. U.-J. Efetobor, A.-O. Onokwai, E. Onokpite, U.-C. Okonkwo. Response Surface Methodology Application for the Optimization of Biogas Yield from an Anaerobic Co-Digestion Process. Portugaliae Electrochemica Acta, 42, 187-203 (2024). https://doi.org/10.4152/pea.2023420304 [Google Scholar]
  6. N. Zhai, T. Zhang, D. Yin, G. Yang, X. Wang, G. Ren, Y. Feng. Effect of initial pH on anaerobic co-digestion of kitchen waste and cow manure. Waste Manag, 126e31 (2015). [Google Scholar]
  7. Y. Xia, D.-I. Massé, T.-A. McAllister, C. Beaulieu, E. Ungerfeld. Anaerobic digestion of chicken feathers with swine manure or slaughterhouse sludge for biogas production. Waste Management, 32, 404-409 (2012). doi:10.1016/j.wasman.2011.10.024 [Google Scholar]
  8. M.-M. Avicenna, S.-I. Ihsan, R.-H. Setyobudi. Process Improvement of Biogas Production from Anaerobic Co-digestion of Cow Dung and Corn Husk. 2nd Humboldt Kolleg in conjunction with International Conference on Natural Sciences, HK-ICONS 2014. Procedia Chemistry, 14, 91–100 (2015). http://creativecommons.org/licenses/by-nc-nd/4.0/ [Google Scholar]
  9. O.-L.-.Y. Momoh, I.-L. Nwaogazie. The effect of waste paper on the kinetics of biogas yield from the co-digestion of cow dung and water hyacinth. Biomass and Bioenergy, 35, 1345-1351 (2011). [Google Scholar]
  10. J.-D.-A. Rajlakshmi, Jadhav, S. Dutta, K.-C. Sherpa, K. Jayaswal, S. Saravanabhupathy, K.-T. Mohanty, R. Banerjee, J. Kumar, R.-C. Rajak. Co-digestion processes of waste: Status and perspective. Bio-Based Materials and Waste for Energy Generation and Resource Management, Pres. and Emerg. Waste Manag. Pract., 5, in Advanced Zero Waste Tools, 207–241 (2023). https://doi.org/10.1016/B978-0-323-91149-8.00010-7 [Google Scholar]
  11. S.-K. Khanal, T.-G.-T. Nindhia, S. Nitayavardhana. Biogas From Wastes: Processes and Applications. Sust. Res. Rec. and Zero Waste Appro., 165–174 (2019). https://doi.org/10.1016/B978-0-444-64200-4.00011-6 [Google Scholar]
  12. R.-A. Labatut, J.L. Pronto. Sustainable Waste-to-Energy Technologies: Anaerobic Digestion. Sust. Food Wast.-To-energ. Systs., 47–67 (2018). https://doi.org/10.1016/B978-0-12-811157-4.00004-8 [Google Scholar]
  13. T.-G. Induchoodan, A.-S.-K. Izharul. Factors affecting anaerobic digestion for biogas production: a review. Advanced Organic Waste Management Sustainable Practices and Approaches, 223–233 (2022). https://doi.org/10.1016/B978-0-323-85792-5.00020-4 [Google Scholar]
  14. N. Khayum, S. Anbarasu, S. Murugan. Biogas potential from spent tea waste: A laboratory scale investigation of co-digestion with cow manure. Energy, 165, 760–768 (2018). https://doi.org/10.1016/j.energy.2018.09.163 [Google Scholar]
  15. R. Kigozi, E. Muzenda, A.-O. Aboyade. Biogas technology: current trends, opportunities and challenges, in Proceedings of 6th International Conference on Green Technology, renewable energy and environmental engineering [ICGTREEE'2014), 311e7. Cape Town, South Africa (2014). [Google Scholar]

Current usage metrics show cumulative count of Article Views (full-text article views including HTML views, PDF and ePub downloads, according to the available data) and Abstracts Views on Vision4Press platform.

Data correspond to usage on the plateform after 2015. The current usage metrics is available 48-96 hours after online publication and is updated daily on week days.

Initial download of the metrics may take a while.