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Pollution to solution: Capture and sequestration of carbon dioxide (CO2) and its utilization as a renewable energy source for a sustainable future

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TLDR
In this article, a sustainable method combining CCS and biofuel production using CO2 as a feedstock is proposed. But, the method is not suitable for large-scale CCS systems.
Abstract
The major contributor to global warming is human-generated greenhouse gases (GHGs) emissions that pollute the air. GHGs emissions are a global issue dominated by emission of carbon dioxide (CO2). Notably, CO2 accounts for an estimated 77% of GHGs and thus has a huge impact on the environment. The capture, sequestration, and utilization of CO2 emissions from flue gas are now becoming familiar worldwide. These methods are a promising solution to promote sustainability for the benefit of future generations. Previously, many researchers have focused on capturing and storing CO2; however, less effort has been spent on finding ways to utilize flue gas emissions. Moreover, several issues must be overcome in the field of carbon capture and sequestration (CCS) technology, especially regarding the cost, capacity of storage and the durability of the storage reservoir. In addition, this paper addresses new technology in carbon capture and sequestration. To make CCS technology more feasible, this paper suggests a sustainable method combining CCS and biofuel production using CO2 as a feedstock. This method offers many advantages, such as CO2 emission mitigation and energy security through the production of renewable energy. Due to the many advantages of biofuels, the conversion of CO2 into biofuel is a best practice and may provide a solution to pollution while encouraging sustainability practises.

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Citations
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Journal ArticleDOI

DFT-D3 calculations of the charge-modulated CO2 capture of N/Sc-embedded graphyne: Compilation of some factors

TL;DR: In this article, the CO2 capture behavior of N, Sc, and Sc/N embedded graphyne (GY) for neutral and negatively charge states by DFT-D3 calculations was investigated.
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Ionothermal synthesis of phosphonitrilic-core covalent triazine frameworks for carbon dioxide capture

TL;DR: In this article, a series of Covalent Triazine Frameworks (CTFs) with a phosphazene core for CO2 adsorption was synthesized using building blocks of hexakis(oxy)hexabenzonitrile phosphazenes (HCPz) under ionothermal conditions and ZnCl2 as catalyst.
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Nanocable catalysts MTe (M = Pt, PtCu)@UIO-67 for CO 2 conversion

TL;DR: In this article, metal-organic framework nanocable catalysts comprising MTe(M = Pt, PtCu)@UIO-67 resembling "sugarcoated haws on a stick" were assembled.
Journal ArticleDOI

Oil and gas pathway to net-zero: Review and outlook

TL;DR: In this article , a comprehensive overview on the oil and gas pathway to net-zero, which will not only technically guide the oil-and gas decarbonisations, also be of interest to wide-range readers who are not experts but intend to understand the energy transitions.
Journal ArticleDOI

Impact of structure, doping and defect-engineering in 2D materials on CO2 capture and conversion

TL;DR: In this paper, defect-engineered two-dimensional (2D) nanomaterials have received much attention in recent years and the significance of 2D nanommaterials such as graphene, transition metal dichalcogenides, hexagonal boron nitride, MXenes, graphitic carbon nitride and metal/covalent organic frameworks, nanoclays, borophenes, graphynes and green phosphorenes have been emphasized.
References
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Climate change 2007: the physical science basis

TL;DR: The first volume of the IPCC's Fourth Assessment Report as mentioned in this paper was published in 2007 and covers several topics including the extensive range of observations now available for the atmosphere and surface, changes in sea level, assesses the paleoclimatic perspective, climate change causes both natural and anthropogenic, and climate models for projections of global climate.
Journal ArticleDOI

Use of U.S. Croplands for Biofuels Increases Greenhouse Gases Through Emissions from Land-Use Change

TL;DR: This article found that corn-based ethanol, instead of producing a 20% savings, nearly doubled greenhouse emissions over 30 years and increased greenhouse gases for 167 years, by using a worldwide agricultural model to estimate emissions from land-use change.
Reference BookDOI

Handbook of Heterogeneous Catalysis

TL;DR: This paper presents a meta-modelling system that automates the very labor-intensive and therefore time-heavy and therefore expensive and expensive process of characterization and activation of Solid Catalysts.
Book

IPCC special report on carbon dioxide capture and storage

TL;DR: The implications of carbon dioxide capture and storage for greenhouse gas inventories and accounting are discussed in detail in this paper, where the authors present a list of publications related to CO2 and carbon-based fuels.

IPCC Special Report on carbon dioxide capture and storage. Full report + Summary for policymakers and technical summary./ Rapport spécial du GIEC. Piégeage et stockage du dioxyde de carbone. Rapport + Resumé à l'intention des décideurs et résumé technique.

TL;DR: In this paper, a special report, prepared by Working Group III of the Intergovernmental Panel on Climate Change, provides information for policymakers, scientists and engineers in the field of climate change and reduction of CO2 emissions.
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