Please use this identifier to cite or link to this item: http://hdl.handle.net/11189/9498
Title: Fractionated digestive juices of Nepenthes mirabilis for reducible sugar production and phenolic compound’s reduction from mixed agrowaste pretreatment
Authors: Angadam, Justine Oma 
Ntwampe, Seteno Karabo Obed 
Chidi, B.C. 
Lim, J-W 
Okudoh, Vincent 
Hewitt, Peter L. 
Keywords: Green biomass pretreatment;lignocellulosic waste;nepenthes mirabilis;phenolic compounds;reducible sugars
Issue Date: 2022
Source: Angadam, JO., Ntwampe, S.K.O., Chidi, BC. et al. 2022. Fractionated digestive juices of Nepenthes mirabilis for reducible sugar production and phenolic compound’s reduction from mixed agrowaste pretreatment. International Conference on Applied Energy, Thailand, Nov. 29 ‐ Dec. 5. [https://www.energy-proceedings.org/wp-content/uploads/icae2021/1644761761.pdf]
Journal: International Conference on Applied Energy 
Abstract: This paper provides a performance assessment of different fractions of crude plant digestive juices produced by Nepenthes mirabilis (N. mirabilis) which were used to pretreat mixed agro-waste to determine which fraction produces more holocelluloses while reducing phenolic compounds in the hydrolysate. Fractionation (<3kDa, ˃ 3kDa and <10kDa, ˃ 10kDa) was done with the different fractions being used to pretreat the mixed agro-waste (1:1 ratio, i.e., 25% (w/w) for each; 1 g orange peels, 1 g apples peels, 1 g maize cobs, 1 g grape pomace and 1 g oak plant yard litter) of various particle sizes, i.e., >106μm, >75μm <106μm. The highest results obtained indicated 46,63 (min) to 115,19 (max) g/L for total reducing sugars (TRS) production with a maximum of 6,61 g/L for total residual phenolic compounds (TRPCs) being observed using the <10 kDa/>106μm fraction/particle size of N. mirabilis/agrowaste after 72 hrs, revealing the efficacy of different juice fractions to pretreat the agro-waste. Overall, the digestive enzymes in N. mirabilis pods must be fractionated for agro-waste pretreatment, i.e., using a green chemistry approach for the development of biorefineries, for sustainable renewable energy generation and security.
URI: https://www.energy-proceedings.org/wp-content/uploads/icae2021/1644761761.pdf
http://hdl.handle.net/11189/9498
ISSN: 2004-2965
Appears in Collections:Eng - Conference Proceedings

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