Recent advances of hybrid solar-biomass thermo-chemical conversion systems

JLJ Ling, ES Go, YK Park, SH Lee - Chemosphere, 2022 - Elsevier
Solar biomass hybridization is a promising energy technique for efficient utilization while
mitigating the disadvantages associated with both biomass and solar energy source. In …

Thermoeconomic investigation and multi-objective optimization of a novel efficient solar tower power plant based on supercritical Brayton cycle with inlet cooling

J Zhou, MA Ali, FM Zeki, HA Dhahad - Thermal Science and Engineering …, 2023 - Elsevier
The solar tower power plant technology offers a promising potential for large scale power
generation, amongst various solar-based systems. To decrease the produced electricity cost …

Design, modeling and multi-objective techno-economic optimization of an integrated supercritical Brayton cycle with solar power tower for efficient hydrogen …

T Hai, HA Dhahad, EA Attia, Z Zakaria, S Rashidi… - Sustainable Energy …, 2022 - Elsevier
Solar-driven hydrogen production systems are environmentally benign alternatives to gain
more benefits of green hydrogen. In this work, a novel power generation plant based on …

Renewable Energy Potential and CO2 Performance of Main Biomasses Used in Brazil

EPR Alves, O Salcedo-Puerto, J Nuncira, S Emebu… - Energies, 2023 - mdpi.com
This review investigates the effects of the Brazilian agriculture production and forestry sector
on carbon dioxide (CO2) emissions. Residual biomasses produced mainly in the agro …

A transient study on a solar-assisted combined gas power cycle for sustainable multi-generation in hot and cold climates: Case studies of Dubai and Toronto

E Assareh, N Agarwal, A Arabkoohsar, M Ghodrat… - Energy, 2023 - Elsevier
Efficiently managing heat losses continues to be a prominent obstacle within gas-fired
power plants. The discharge of high-temperature gases from turbines and the considerable …

Optimal design of a novel hybrid renewable energy CCHP system considering long and short-term benefits

Z Ma, F Dong, J Wang, Y Zhou, Y Feng - Renewable Energy, 2023 - Elsevier
The combination of biomass and solar energy in the combined cooling heating and power
(CCHP) system is conducive to reducing carbon dioxide emissions of the system. To …

[HTML][HTML] Thermodynamic and economic analysis of a supermarket transcritical CO2 refrigeration system coupled with solar-fed supercritical CO2 Brayton and organic …

D Tsimpoukis, E Syngounas, E Bellos… - Energy Conversion and …, 2023 - Elsevier
Aiming to reduce the use of conventional energy sources, alternative methods should be
applied in order to cover society's needs. In this context, in the present study, the operation …

Multi-objective optimization with thermodynamic analysis of an integrated energy system based on biomass and solar energies

J Wang, F Dong, Z Ma, H Chen, R Yan - Journal of Cleaner Production, 2021 - Elsevier
The integrated energy system (IES) can effectively utilize the distributed renewable
energies, but its performance improvement requires advanced design and optimization …

Multi-variable study and MOPSO-based multi-objective optimization of a novel cogeneration plant using biomass fuel and geothermal energy: a complementary hybrid …

X Lv, Y Lv, Y Zhu - Energy, 2023 - Elsevier
Structural modification and waste management are vital for newly designed Brayton cycles
thermodynamically and environmentally. In this regard, the current paper suggests a novel …

Exergoeconomic and Thermodynamic Analyses of Solar Power Tower Based Novel Combined Helium Brayton Cycle‐Transcritical CO2 Cycle for Carbon Free Power …

Y Khan, D Singh, H Caliskan, H Hong - Global Challenges, 2023 - Wiley Online Library
In the present study, a novel combined power cycle for solar power tower (SPT) system
consisting of helium Brayton cycle (HBC) and transcritical CO2 (TCO2) for waste heat …