Nanomaterials for Carbon Dioxide Capture and Conversion Technologies. Este artículo no está disponible.
Idioma: inglés
Editorial: Elsevier Science Ltd, 2022
- Tapa blanda
- Nuevo

Librería: Revaluation Books, Exeter, Reino UnidoRevaluation Books
Vendedor de IberLibro desde 6 de enero de 2003
Condición: Nuevo
EUR 213,15
Descripción del artículo del vendedor
500 pages. 9.25x7.50x1.05 inches. In Stock. This item is printed on demand.
N° de ref. del artículo __0323898513
- Título
- Nanomaterials for Carbon Dioxide Capture and Conversion Technologies
- Autor
- Mazari, Shaukat Ali (Editor)/ Mujawar, Mubarak Nabisab (Editor)/ Tripathi, Manoj (Editor)
- Editorial
- Elsevier Science Ltd
- Año de publicación
- 2022
- Estado
- Brand New
- Encuadernación
- Paperback
- Idioma
- inglés
- ISBN 10
- 0323898513
- ISBN 13
- 9780323898515
- Peso del artículo
- 0,79 kilogramos
- Serie
- Libro 380 de 393: Micro and Nano Technologies
Nanomaterials for Carbon Dioxide Capture and Conversion Technologies focuses on the applications of nanomaterials for CO2 capture and conversion. The book highlights the need for CO2 mitigation, followed by the basic principles for CO2 capture and conversion, using different nanomaterials, while also discussing and highlighting challenges and perspectives.
Abundant CO2 emissions from industries and the transportation sector are a threat to the planet due to overwhelming concerns regarding CO2-induced climate change. Nanomaterials are being widely investigated for CO2 capture and conversion processes. Nano absorbents, adsorbents and nanomembranes for CO2 capture, nano catalysts for catalytic CO2 conversion, and chemical fixation of CO2 are some of the broader applications of nanomaterials for CO2 mitigation.
- Helps readers understand the basic mechanisms and theories behind CO2 capture and conversion using nanomaterials
- Provides information on the range of nanomaterials types used in CO2 capture and storage systems
- Assesses the major challenges for integrating nanotechnology into carbon dioxide capture and storage systems at an industrial scale
“Sinopsis” puede pertenecer a otra edición de este título.
Acerca del autor
Dr. Mubarak Mujawar is an Associate Professor in the Department of Chemical Engineering at Curtin University, Malaysia. His areas of interest include carbon nanomaterials, synthesis, magnetic biochar production using microwaves, and wastewater treatment using advanced materials. Dr. Mubarak has published journal papers, conference proceedings, book chapters, and patent filings. He currently serves as an editorial board member for Scientific Report (Nature), and as a scientific reviewer in numerous journals in the areas of chemical engineering and nanotechnology. He was named as an outstanding scientist for publications and citations by I Proclaim Malaysia in 2017. Dr. Mubarak is fellow (FIEAust) and a chartered chemical engineer (CPEng, MIEAust) with Engineers Australia, and a chartered chemical engineer (CEng MIchemE IchemE, UK) with the Institution of Chemical Engineers, UK.
Manoj Tripathi is Assistant Professor in the Department of Physics & Material Science & Engineering at Jaypee Institute of Information Technology, Noida, India. His research interests are renewable energy, energy storage materials, biomass-based studies, polymer composites, and thermophysical properties.
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