Knowledge Agora



Similar Articles

Title Advances and Perspectives in Biohydrogen Production from Palm Oil Mill Effluent
ID_Doc 29477
Authors Albuquerque, MM; Martinez-Burgos, WJ; Sartor, GD; Letti, LAJ; De Carvalho, JC; Soccol, CR; Medeiros, ABP
Title Advances and Perspectives in Biohydrogen Production from Palm Oil Mill Effluent
Year 2024
Published Fermentation-Basel, 10.0, 3
Abstract Palm oil, the main vegetable oil produced globally, serves diverse purposes, ranging from cooking to the production of processed foods, cosmetics, and biodiesel. Despite contributing significantly to the economies of major producing nations, the escalating production of palm oil raises serious environmental concerns, including deforestation, biodiversity loss, and various forms of pollution. Palm oil mill effluent (POME), a byproduct of palm oil extraction, poses a severe environmental threat when left untreated. As an eco-friendly alternative, anaerobic digestion in controlled bioreactors has emerged, offering simultaneous POME treatment and biofuel generation, particularly hydrogen, with high energy efficiency. This review explores the challenges and opportunities associated with biohydrogen production from POME. Key considerations involve optimizing parameters through pretreatments, nanoparticle incorporation, defining optimal bioreactor conditions, determining hydraulic retention times, and integrating multi-stage processes like dark fermentation followed by photofermentation. This review also emphasizes the significance of sustainable practices and economic analyses in shaping the future of hydrogen production from POME, positioning it as a pivotal player in the palm oil industry's circular economy and the global energy transition.
PDF https://www.mdpi.com/2311-5637/10/3/141/pdf?version=1709273796

Similar Articles

ID Score Article
7166 Salehmin, MNI; Tiong, SK; Mohamed, H; Zainal, BS; Lim, SS; Yasin, NHM; Zakaria, Z Sustainable bioenergy from palm oil mill effluent: Advancements in upstream and downstream engineering with techno-economic and environmental assessment(2024)
14755 Sarkar, O; Modestra, JA; Rova, U; Christakopoulos, P; Matsakas, L Waste-Derived Renewable Hydrogen and Methane: Towards a Potential Energy Transition Solution(2023)Fermentation-Basel, 9, 4
24700 Anjum, S; Aslam, S; Hussain, N; Bilal, M; Boczkaj, G; Smulek, W; Jesionowski, T; Iqbal, HMN Bioreactors and biophoton-driven biohydrogen production strategies(2023)International Journal Of Hydrogen Energy, 48, 55
19855 Shanmugam, S; Mathimani, T; Rajendran, K; Sekar, M; Rene, ER; Chi, NTL; Ngo, HH; Pugazhendhi, A Perspective on the strategies and challenges in hydrogen production from food and food processing wastes(2023)
10229 Nasrin, A; Raman, AAA; Bukhari, NA; Sukiran, MA; Buthiyappan, A; Subramaniam, V; Aziz, AA; Loh, SK A critical analysis on biogas production and utilisation potential from palm oil mill effluent(2022)
16191 Garg, A; Basu, S; Shetti, NP; Bhattu, M; Alodhayb, AN; Pandiaraj, S Biowaste to bioenergy nexus: Fostering sustainability and circular economy(2024)
10715 Mohanakrishna, G; Sneha, NP; Rafi, SM; Sarkar, O Dark fermentative hydrogen production: Potential of food waste as future energy needs(2023)
6896 Puyol, D; Batstone, D; Hülsen, T; Astals, S; Peces, M; Krömer, JO Resource Recovery from Wastewater by Biological Technologies: Opportunities, Challenges, and Prospects(2017)
10504 Lim, SW; Kansedo, J; Tan, IS; Tan, YH; Nandong, J; Lam, MK; Ongkudon, CM Microbial valorization of oil-based substrates for polyhydroxyalkanoates (PHA) production-Current strategies, status, and perspectives(2023)
5176 Abdullah, MA; Nazir, MS; Hussein, HA; Shah, SMU; Azra, N; Iftikhar, R; Iqbal, MS; Qamar, Z; Ahmad, Z; Afzaal, M; Om, AD; Shaharah, MI; Rak, AE; Hung, YT New perspectives on biomass conversion and circular economy based on Integrated Algal-Oil Palm Biorefinery framework for sustainable energy and bioproducts co-generation(2024)
Scroll