A review of computational modeling techniques for wet waste valorization: Research trends and future perspectives

J Li, M Suvarna, L Li, L Pan, J Pérez-Ramírez… - Journal of Cleaner …, 2022 - Elsevier
The conversion of wet waste (eg, food waste, sewage sludge, and animal manure) into
bioenergy is a promising strategy for sustainable energy generation and waste …

[HTML][HTML] Biogas-based trigeneration system: a review

TD Agonafer, WB Eremed, KD Adem - Results in Engineering, 2022 - Elsevier
Electricity and thermal energy are important and increasing demand for commercial,
industrial, and domestic use. To respond to this rising energy demand trigeneration, the so …

Thermodynamic and economic evaluation of a novel waste-to-energy design incorporating anaerobic digestion and incineration

H Chen, J Li, J Liu, T Li, G Xu, W Liu - Energy Conversion and Management, 2022 - Elsevier
To synergistically exploit organic waste and municipal solid waste, a novel design
combining anaerobic digestion and incineration for waste-to-energy has been developed. In …

Flexibility concept in design of advanced multi-energy carrier systems driven by biogas fuel for sustainable development

M Ebadollahi, M Amidpour, O Pourali… - Sustainable Cities and …, 2022 - Elsevier
In this paper, a new and comprehensive multigeneration system is developed exploiting
biogas fuel. The system is examined from the perspective of energy, exergy …

Post-harvest losses of fruits and vegetables in supply centers in Salvador, Brazil: Analysis of determinants, volumes and reduction strategies

SF Dos Santos, RCV Cardoso, ÍMP Borges… - Waste Management, 2020 - Elsevier
Food losses and waste are a global problem, with an estimated 1.3 billion tons lost annually.
In Brazil, fruit and vegetable losses amount to approximately 30% and occur in the …

Thermodynamic and economic analysis of a novel design for combined waste heat recovery of biogas power generation and silicon production

X Zhao, H Chen, J Li, P Pan, F Gui, G Xu - Energy, 2024 - Elsevier
A novel hybrid system based on a combination of a gas turbine cycle, a supercritical carbon
dioxide cycle, and an organic Rankine cycle is devised for power generation. Based on the …

Thermo-economic analysis of a novel hydrogen production system using medical waste and biogas with zero carbon emission

X Zhao, H Chen, Q Zheng, J Liu, P Pan, G Xu, Q Zhao… - Energy, 2023 - Elsevier
The low-cost and continuous hydrogen production from waste has recently received much
attention. To achieve clean and efficient in-situ resource utilization, this study proposes a …

Process design and techno-economic analysis of the coproduction of oil, electricity, and protein from plastics and biomass using an integrated system

X Zhao, H Chen, H Zhao, P Pan, W Li, G Xu - Energy Conversion and …, 2024 - Elsevier
To synergistically exploit plastic and biomass, a hybrid system combining pyrolysis and
gasification has been proposed, which has been dedicated towards the conversion of non …

Analysis of LNG cold energy utilization and regasification process for a gas turbine power plant integrated with a novel polygeneration process

F Chen, W Zhang, J Xuan, J Cai, H Zhang - Applied Thermal Engineering, 2025 - Elsevier
In the presented study, a polygeneration process is presented. This process consists of a
gas turbine cycle, an internal trigeneration unit, an internal cogeneration unit, a proton …

Thermo-economic analysis of a polygeneration system using biogas and waste tire based on the integration of solid oxide fuel cell, gas turbine, pyrolysis, and organic …

J Liu, H Sun, H Chen, W Li, P Pan, L Wu, G Xu… - Applied Thermal …, 2023 - Elsevier
To optimize the biogas power generation process and waste tire disposal, a novel
polygeneration system has been conceptualized. The hybrid design comprises a solid oxide …