Knowledge Agora



Similar Articles

Title Anaerobic Digestion of Lignocellulose Components: Challenges and Novel Approaches
ID_Doc 29820
Authors Agregán, R; Lorenzo, JM; Kumar, M; Shariati, MA; Khan, MU; Sarwar, A; Sultan, M; Rebezov, M; Usman, M
Title Anaerobic Digestion of Lignocellulose Components: Challenges and Novel Approaches
Year 2022
Published Energies, 15.0, 22
Abstract The reuse of lignocellulosic biomaterials as a source of clean energy has been explored in recent years due to the large amount of waste that involves human activities, such as those related to agriculture and food. The anaerobic digestion (AD) of plant-based biomass for bioenergy production poses a series of challenges that new technologies are attempting to solve. An improved decomposition of recalcitrant lignocellulose together with an increase in biogas production yield are the main objectives of these new approaches, which also seek the added value of being environmentally friendly. Recent research has reported significant progress in this regard, offering promising outcomes on the degradation of lignocellulose and its subsequent transformation into biomethane by specialized anaerobic microorganisms, overcoming the drawbacks inherent to the process and improving the yield of methane production. The future of the agri-food industry seems to be heading towards the implementation of a circular economy through the introduction of strategies based on the optimized use of lignocellulosic residues as a source of clean and sustainable energy.
PDF

Similar Articles

ID Score Article
12398 Archana, K; Visckram, AS; Kumar, PS; Manikandan, S; Saravanan, A; Natrayan, L A review on recent technological breakthroughs in anaerobic digestion of organic biowaste for biogas generation: Challenges towards sustainable development goals(2024)
1844 Sarsaiya, S; Jain, A; Awasthi, SK; Duan, YM; Awasthi, MK; Shi, JS Microbial dynamics for lignocellulosic waste bioconversion and its importance with modern circular economy, challenges and future perspectives(2019)
21761 Mujtaba, M; Fraceto, LF; Fazeli, M; Mukherjee, S; Savassa, SM; de Medeiros, GA; Pereira, ADS; Mancini, SD; Lipponen, J; Vilaplana, F Lignocellulosic biomass from agricultural waste to the circular economy: a review with focus on biofuels, biocomposites and bioplastics(2023)
8177 Rathour, RK; Behl, M; Dhashmana, K; Sakhuja, D; Ghai, H; Sharma, N; Meena, KR; Bhatt, AK; Bhatia, RK Non-food crops derived lignocellulose biorefinery for sustainable production of biomaterials, biochemicals and bioenergy: A review on trends and techniques(2023)
9021 Srivastava, N; Singh, R; Singh, P; Ahmad, I; Singh, RP; Rai, AK; Asiri, M; Gupta, VK Recent advances on lignocellulosic bioresources and their valorization in biofuels production: Challenges and viability assessment(2023)
12528 Aboudi, K; Gómez-Quiroga, X; Alvarez-Gallego, CJ; Romero-García, LI Insights into Anaerobic Co-Digestion of Lignocellulosic Biomass (Sugar Beet By-Products) and Animal Manure in Long-Term Semi-Continuous Assays(2020)Applied Sciences-Basel, 10.0, 15
29454 Wang, Z; Li, J; Yan, BB; Zhou, SQ; Zhu, XC; Cheng, ZJ; Chen, GY Thermochemical processing of digestate derived from anaerobic digestion of lignocellulosic biomass: A review(2024)
9157 Cazier, EA; Pham, TN; Cossus, L; Abla, M; Ilc, T; Lawrence, P Exploring industrial lignocellulosic waste: Sources, types, and potential as high-value molecules(2024)
13876 Padrino, B; Lara-Serrano, M; Morales-delaRosa, S; Campos-Martín, JM; Fierro, JLG; Martínez, F; Melero, JA; Puyol, D Resource Recovery Potential From Lignocellulosic Feedstock Upon Lysis With Ionic Liquids(2018)
5461 Qayyum, S; Tahir, A; Mian, AH; Zeb, S; Siddiqui, MF; Rehman, B Optimizing biogas production through anaerobic digestion: transforming food waste and agricultural residues into renewable energy within a circular economy paradigm(2024)
Scroll