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Nanomaterials for CO2 Capture, Storage, Conversion and Utilization

Contributor(s): Nguyen-Tri, Phuong (Editor), Wu, Haobin (Editor), Barnabe, Simon (Editor), Benard, Pierre (Editor), Nguyen, Tuan Anh (Editor)

ISBN: 9780128228944

Publisher: Elsevier

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$240.00
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Pub Date: April 15, 2021

LCCN: 2022300748

Lexile Code: 0000

Features: Bibliography, Index

Target Age Group: NA to NA

Physical Info: 0.81" H x 9.25" L x 7.50" W ( 1.49 lbs) 394 pages

Series: Micro and Nano Technologies

Descriptions, Reviews, etc.

Description:

The gradual increase of population and the consequential rise in the energy demands in recent years have led to the widespread use of fossil fuels. CO2 transformation by various processes is considered as a promising alternative technology. This book sets out the fundaments of how nanomaterials are being used for this purpose.

Nanomaterials for CO2 Capture, Storage, Conversion and Utilization summarizes the research, development and innovations in the capture, storage, transformation and utilization of CO2 into useful products and raw chemicals for industry. This is achieved by using advanced processes such as CO2 reforming, bi-reforming and tri-reforming of hydrocarbons or biomass derivatives; homogeneous and heterogeneous hydrogenation; photochemical reduction; photoelectrochemical reduction; electrochemical reduction; biochemical reduction; supercritical CO2 technology; advanced catalyst synthesis for CO2 conversion; organic carbonates for polymers synthesis from CO2, and CO2 capture and sequestration. The systematic and updated reviews on the mentioned sectors, especially on the use of nanotechnology for the transformation of CO2 is scarce in the literature. Thus, the book addresses the recent knowledge gaps and potential solutions of the storage, utilization and transformation of CO2 as well as its promising applications.

This is an important reference source for materials scientists, engineers and energy scientists who want to understand how nanotechnology is helping us to solve some of the world's major energy problems.

Brief description: Haobin Wu is a Professor at the School of Materials Science and Engineering, Zhejiang University, China. His research interests are metal-organic framework-related materials for sustainable energy, designed synthesis of micro-/nanostructured materials, electrochemical energy storage technologies, and electrocatalysis and electrochemical production of fuels.

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