Industrial carbon dioxide capture and utilization: state of the art and future challenges

W Gao, S Liang, R Wang, Q Jiang, Y Zhang… - Chemical Society …, 2020 - pubs.rsc.org
Dramatically increased CO2 concentration from several point sources is perceived to cause
severe greenhouse effect towards the serious ongoing global warming with associated …

Modeling and simulation of Power-to-X systems: A review

AC Ince, CO Colpan, A Hagen, MF Serincan - Fuel, 2021 - Elsevier
Power to X (PtX) denotes methods for converting renewable energy into liquids or gases,
which can be stored, distributed or converted to valuable products. Furthermore, PtX can …

Limits to Paris compatibility of CO2 capture and utilization

K de Kleijne, SV Hanssen, L van Dinteren… - One Earth, 2022 - cell.com
Summary The Paris Agreement's temperature goals require global CO 2 emissions to halve
by 2030 and reach net zero by 2050. CO 2 capture and utilization (CCU) technologies are …

Power-to-hydrogen & district heating: Technology-based and infrastructure-oriented analysis of (future) sector coupling potentials

H Böhm, S Moser, S Puschnigg, A Zauner - International journal of …, 2021 - Elsevier
Numerous studies suggest that power-to-hydrogen (PtH 2) will take a decisive part in future
sustainable energy systems. District heating (DH) networks are also assigned a crucial role …

A combined heating and power system based on compressed carbon dioxide energy storage with carbon capture: Exploring the technical potential

W Xu, P Zhao, F Gou, W Wu, A Liu, J Wang - Energy Conversion and …, 2022 - Elsevier
The development of large-scale energy storage system is of great significance on the
construction of future sustainable energy supply system. The compressed carbon dioxide …

Continuous and flexible Renewable-Power-to-Methane via liquid CO2 energy storage: Revisiting the techno-economic potential

M Qi, J Park, RS Landon, J Kim, Y Liu, I Moon - Renewable and Sustainable …, 2022 - Elsevier
Abstract Power to Methane (PtM) processes directly coupled with renewables are limited by
their ability to handle uncertainties caused by the intermittent nature of the power supply and …

[HTML][HTML] Bottom-up energy system models applied to sustainable islands

MG Prina, D Groppi, B Nastasi, DA Garcia - Renewable and Sustainable …, 2021 - Elsevier
This paper reviews the existing bottom-up energy system models applied at island level. The
aim of the paper is to answer the following research questions: i) which energy system …

Development of a hybrid energy storage system for heat and electricity: Application to green hydrogen production process integrated with a municipal solid waste …

Y Kim, S Oh, D Kim, S Hong, J Park - Energy Conversion and Management, 2024 - Elsevier
To address the climate crisis and transition to a hydrogen economy, large-scale systems for
green hydrogen production must be developed. Achieving this goal requires continuous …

From landfill to hydrogen: Techno-economic analysis of hybridized hydrogen production systems integrating biogas reforming and Power-to-Gas technologies

GL Basso, LM Pastore, A Mojtahed… - International Journal of …, 2023 - Elsevier
In the new hydrogen economy, bio-hydrogen derived from organic material can represent an
opportunity to valorise current waste management systems. The present work deals with …

Integrated carbon capture and utilization in the cement industry: a comparative study

M Meijssen, V Becattini, M Mazzotti - ACS Sustainable Chemistry …, 2024 - ACS Publications
This study analyzes a novel carbon capture and utilization pathway that has been proposed
for the decarbonization of the cement sector and compares its performance in terms of …