Mixed Palm Oil Waste Utilization through Integrated Mushroom and Biogas Production
Stella Gilbert Temu, Anselm P. Moshi, Ivo Achu Nges, Anthony Manoni Mshandete, Amelia Kajumulo Kivaisi, Bo Mattiasson
Biotechnology Journal International · pp. 1–12 · Published 12 Jan 2016
10.9734/BBJ/2016/23385Abstract
Aim of the Study: The study was to integrate mushroom and biogas production using mixed palm oil to provide both food and energy source to palm oil producing communities as well as reducing environmental pollution. Design of the Study: Mixed palm oil waste was divided into two portions. One portion was used for mushroom cultivation and afterwards the spent mushroom substrate and the untreated portion were used for biogas production. Methodology: Structural sugars analysis was performed using double acid hydrolysis technique. Total crude protein was determined through kjeldal acid digestion method. Lipids were extracted using a mixture of chloroform and methanol and quantified gravimetrically. The mushroom strain (Coprinus scinereus) was cultivated on the mixed palm oil waste. Afterwards, the spent mushroom substrate and the untreated palm oil waste were subjected to anaerobic digestion in automatic methane potential test system. Place and Duration of Study: The study was completed in 2 years from 2014-2015. Mushroom cultivation was carried out at the University of Dar-e salaam, Tanzania, whereas feedstock characterization and anaerobic digestion were performed at Lund University, Sweden. Results: Compositional analysis disclosed that the feedstock contains (% w/w) 0.1 proteins, 3.3 carbohydrates, 22.5 lipids, and 73 lignin. Mushroom yield was 0.64 g /g of substrate at a biological efficiency of 71.4 g/100 g of substrate and productivity of 21.5±0.5%. Consequently total carbohydrates and lipids were decreased by 70% and 76% while the relative content of lignin and protein increased by 23% and 50%, respectively. Particle size reduction (<4 mm) resulted to increased methane yield by 66%. The untreated and biologically treated mixed palm oil wastes yielded 517 and 287 of CH4 L/Kg VS added which corresponded to 80% and 64.5% of theoretical methane yield, respectively. Conclusion: Combined mushroom and biogas production offer superior benefits in the utilization of the palm oil waste.
Cited by 6
Unknown author, Edwin Richard
Yoong Kit Leong, Sunita Varjani, Duu-Jong Lee · Bioresource Technology · 2022
Sri Suhartini, Nur Hidayat, Novita Ainur Rohma · International Journal of Sustainable Energy · 2022
Wan Nur Ain Shuhada Abdullah, Woei-Jye Lau, Farhana Aziz · Chemical Engineering & Technology · 2017
Garima Gupta, Sandhya Maurya, Durgesh Singh · Bioresource Technology · 2026
Aneth David, Anthony Manoni Mshandete · 2023
Related research
- Inhibitory Effects of Phenolic Monomers on Methanogenesis in Anaerobic Digestion — shares topic coverage
- The Bacteriological Index of Bioslurry and the Fate of Pathogenic Bacterial Organisms during Anaerobic Digestion of Domestic Waste in a Biogas Plant — shares topic coverage
- Enhanced Biogas Production from Anaerobic Codigestion of Lignocellulosic Waste for Efficient Bioenergy Utilization in Heating and Combustion Engine — shares topic coverage
- An Evaluation of the Global Potential of Cocoyam (Colocasia and Xanthosoma species) as An Energy Crop — shares topic coverage
- Comparative Study of Benzyl and Phenyl Compounds Chemical Structure Effects on the Inhibition of Methane Production by Digested Pig Manure Methanogens — 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.