A Review on Conversion of Agricultural Waste to Bioenergy: Processes and Environmental Impacts
Donatus Chigozie Egwuatu, Rachael Olakunmi Ogunye, Peter Chidendu Anene, Yusuf Alhassan, Ifeoma Roseline Nwafor, Joseph Ifeanyi Udoh, Oluwabusola Oluwakorede Asenuga, Chibuzo Valentine Nwokafor
Biotechnology Journal International · pp. 18–34 · Published 25 Oct 2024
10.9734/bji/2024/v28i6746Abstract
Agricultural waste is a substantial and underutilized resource with the potential to contribute enormously to sustainable bioenergy production. The conversion technologies for these wastes is a significant step in the bioenergy process, therefore analyzing their impacts on the environment is considered valuable. A review of current literature, with an emphasis on studies that examines the relationship between agricultural wastes, different conversion technologies of wastes to bioenergy, and their environmental impacts was carried out. Databases like PubMed, Google scholar and Web of Science were searched using keywords like “Lignocellulosic biomass hydrolysis”, “bioenergy”, “Agricultural food wastes”, and “environmental impacts”. This review demonstrates how different conversion methods may alleviate climate change, enhance energy security while fostering sustainable development. We examined biochemical conversion methods such as anaerobic digestion and fermentation to show their advantages over the thermochemical approaches. It was found that these conversion processes are not only circular but also environmentally friendly with respect to biofuel production. Anaerobic digestion was identified as one of the most promising options because of its high energy yields and decentralized character. However, there are still issues in optimizing bioenergy conversion processes and conducting a comprehensive life cycle assessment that explains some of these challenges is required. This review highlights the current and emerging technologies for transformation of agricultural wastes into bioenergy and its environmental impacts, as it is necessary to transition into a bioenergy-driven economy to foster a healthy and robust future.
Cited by 6
6 citations reported by external sources — individual citing-article records aren't available to list yet.
Related research
- Invertase Production by Irradiated Aspergillus niger OSH5 Using Agricultural Wastes as Carbon Source — shares topic coverage
- Screening and Identification of Mannanase-Producing Fungi Isolated from Selected Agricultural Wastes — shares topic coverage
- Isolation and Screening of Mannanase Producing Bacteria from Agricultural Wastes — shares topic coverage
- Performance of Agricultural Wastes as a Biofilter Media for Low-Cost Wastewater Treatment Technology — shares topic coverage
- Hydrolysis and Analysis of Agricultural Wastes Using Mineral Acids for Possible Glucose Synthesis — shares topic coverage
Article metrics
Real usage data collected on this platform.
0
Page views
0
PDF downloads
0
Outbound clicks
6
Citations
Views by country
Approximate, from request IP at view time — not citizenship or institution. Countries with fewer than 5 views are grouped as "Other".
No views recorded yet.
Traffic sources
Referring site, by host.
No traffic recorded yet.
Views and downloads exclude known bots/crawlers. Citations combines this platform's own DOI-resolved index with each external source's own reported total — see Cited by above for individually listed citing works. Last refreshed 0 seconds ago.