Turning CO2 into Sustainable Graphene: A Comprehensive Review of Recent Synthesis Techniques and Developments DOI Creative Commons
Mohammad Sajad Sorayani Bafqi, Nargiz Aliyeva, Havva Baskan-Bayrak

et al.

Nano Futures, Journal Year: 2024, Volume and Issue: 8(2), P. 022002 - 022002

Published: May 23, 2024

Abstract The synthesis of graphene through environmentally friendly and efficient methods has posed a persistent challenge, prompting extensive research in recent years to access sustainable sources attain high quality competing with the one obtained from graphite ores. Addressing this challenge becomes even more intricate when aiming convert captured CO 2 into structures, encountering hurdles stemming inherent stability molecule its steadfast transformation. Together , there is great potential create carbon source by using natural biomass, cellulosic plant industrial wastes. This comprehensive review delves techniques developments, exploring both direct indirect pathways for integration that strive overcome complexities associated transforming graphene. critically analyzes capturing mechanisms designed air, ocean, alternative sources, outlining progress made harnessing as feedstock production evaluating values. consolidates advancements providing roadmap future directions pursuit greener, circular economy.

Language: Английский

CO2 Capture: A Comprehensive Review and Bibliometric Analysis of Scalable Materials and Sustainable Solutions DOI Creative Commons
Domingo César Carrascal-Hernández, Carlos David Grande‐Tovar, Maximiliano Méndez‐López

et al.

Molecules, Journal Year: 2025, Volume and Issue: 30(3), P. 563 - 563

Published: Jan. 26, 2025

The greenhouse effect and global warming, driven by the accumulation of pollutants, such as sulfur oxides (SOx), nitrogen (NOx), CO2, are primarily caused combustion fossil fuels volcanic eruptions. These phenomena represent an international crisis that negatively impacts human health environment. Several studies have reported novel carbon capture, utilization, storage (CCUS) technologies, promising solutions. Notable methods include chemical absorption using solvents, development functionalized porous materials, MCM-41, impregnated with amines like polyethyleneimine. technologies demonstrated high capture capacity thermal stability; however, they face challenges related to recyclability operating costs. In parallel, biodegradable polymers hydrogels present sustainable alternatives a lower environmental impact, although their industrial scalability remains limited. This review comprehensively analyzes CO2 methods, focusing on silica-based supports, polymers, hydrogels, emerging techniques, CCUS MOFs, while including traditional bibliometric analysis update field’s scientific dynamics. With increasing investigations focused developing new this study highlights growing interest in eco-friendly alternatives. A 903 articles published between 2010 2024 provides overview current research environmentally friendly technologies. Countries United States, Kingdom, India leading efforts field, emphasizing importance collaboration. Despite these advancements, implementing sectors gas emissions scarce. underscores need for public policies financing promote application sectors. Future should prioritize materials capacity, efficient transformation, valorization promoting circular economy approaches decarbonizing challenging sectors, energy transportation. Integrating optimization, strategies is essential position key tools fight against climate change.

Language: Английский

Citations

3

Emerging towards zero carbon footprint via carbon dioxide capturing and sequestration DOI Creative Commons
Anjana Krishnan, Amrita Nighojkar, Balasubramanian Kandasubramanian

et al.

Carbon Capture Science & Technology, Journal Year: 2023, Volume and Issue: 9, P. 100137 - 100137

Published: Sept. 3, 2023

Concerns about climatic changes and global temperature enhancements have sparked efforts worldwide to curb the magnitude of atmospheric carbon dioxide. A key tactic for achieving dioxide emission mitigation goals is Carbon capturing sequestration, which critical seamless changeover from prevailing fossil-based power systems more eco-friendly future energy systems. Among techniques, post-combustion capture most practical method retrofitting existing plants although results with 3-15 vol.% concentrated gas stream. Chemical looping combustion receives much attention because yielding highly streams up 100% non-pollution offered. This review also explores a variety sequestration strategies, including geological multiple storage sinks, mineral carbonation as well marine sequestration. The transportation facilities comprising pressure vessels, pipelines, cryogenic tanks are discussed briefly. Enhanced recovery, water oil rely on geologically stored taken into account in this analysis part commercial-economic application Along risk considerations related processes, efficient exploitation sequestered delineated road map leading prospects. been raised that widespread adoption will likely be affected by general public perceptions due unawareness, along potential leakages enormous cost, should considered effective uptake strategies.

Language: Английский

Citations

36

Solid adsorbent material: A review on trends of post-combustion CO2 capture DOI

Hind F. Hasan,

Farah T. Al-Sudani, Talib M. Albayati

et al.

Process Safety and Environmental Protection, Journal Year: 2023, Volume and Issue: 182, P. 975 - 988

Published: Dec. 14, 2023

Language: Английский

Citations

36

Optimizing sustainability and profitability: A multi-step approach to the synthesis of X-zeolite from blast furnace slag DOI
Wenjun Duan,

Rongmin Li,

Zhimei Wang

et al.

Process Safety and Environmental Protection, Journal Year: 2024, Volume and Issue: 189, P. 1527 - 1537

Published: July 9, 2024

Language: Английский

Citations

14

Valorization of argan paste cake waste: Enhanced CO2 adsorption on chemically activated carbon DOI Creative Commons
El Habib Yahia, Jarosław Serafin,

Mari Carmen Román-Martínez

et al.

Journal of Analytical and Applied Pyrolysis, Journal Year: 2024, Volume and Issue: 181, P. 106637 - 106637

Published: July 10, 2024

Language: Английский

Citations

10

Integrating solar photovoltaic and thermal energies into a fuel cell-heat engine hybrid system to produce solar fuel for improving energy conversion and reducing carbon emission DOI
Wanjun Qu, Dongjiang Han, Jing Zhang

et al.

Energy, Journal Year: 2025, Volume and Issue: unknown, P. 134562 - 134562

Published: Jan. 1, 2025

Language: Английский

Citations

1

Engineering biomass-derived CO2 capture materials via hydrothermal processes DOI

Aleesha Nabhai,

Nayomi Z. Plaza, Nathan J. Bechle

et al.

Progress in Natural Science Materials International, Journal Year: 2025, Volume and Issue: unknown

Published: March 1, 2025

Language: Английский

Citations

1

Metal- based eggshell particles prepared via successive incipient wetness impregnation method as a promoted sorbent for CO2 capturing in the calcium looping process DOI Creative Commons

Mehri Imani,

Maryam Tahmasebpoor, Pedro E. Sánchez‐Jiménez

et al.

Journal of environmental chemical engineering, Journal Year: 2023, Volume and Issue: 11(5), P. 110584 - 110584

Published: July 18, 2023

Language: Английский

Citations

18

Surface oxidation modification of nitrogen doping biochar for enhancing CO2 adsorption DOI

Tianxiang Guo,

Yonghe Zhang,

Yuhan Geng

et al.

Industrial Crops and Products, Journal Year: 2023, Volume and Issue: 206, P. 117582 - 117582

Published: Oct. 19, 2023

Language: Английский

Citations

18

A comprehensive review of post-combustion CO2 capture technologies for applications in the maritime sector: A focus on adsorbent materials DOI Creative Commons

Esther Pancione,

Alessandro Erto, Francesco Di Natale

et al.

Journal of CO2 Utilization, Journal Year: 2024, Volume and Issue: 89, P. 102955 - 102955

Published: Oct. 13, 2024

Language: Английский

Citations

6