Gas Hydrate in Carbon Capture, Transportation and Storage
Technological, Economic, and Environmental Aspects
Herausgeber: Lal, Bhajan; Manjusha, Anipeddi
Gas Hydrate in Carbon Capture, Transportation and Storage
Technological, Economic, and Environmental Aspects
Herausgeber: Lal, Bhajan; Manjusha, Anipeddi
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Gas Hydrate in Carbon Capture, Transportation and Storage: Technological, Economic, and Environmental Aspects is an essential resource for all academicians, researchers, flow assurance engineers, industry professional and students working in this field.
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Gas Hydrate in Carbon Capture, Transportation and Storage: Technological, Economic, and Environmental Aspects is an essential resource for all academicians, researchers, flow assurance engineers, industry professional and students working in this field.
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Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: CRC Press
- Seitenzahl: 230
- Erscheinungstermin: 31. Oktober 2024
- Englisch
- Abmessung: 234mm x 156mm x 14mm
- Gewicht: 517g
- ISBN-13: 9781032692067
- ISBN-10: 1032692065
- Artikelnr.: 70733229
- Verlag: CRC Press
- Seitenzahl: 230
- Erscheinungstermin: 31. Oktober 2024
- Englisch
- Abmessung: 234mm x 156mm x 14mm
- Gewicht: 517g
- ISBN-13: 9781032692067
- ISBN-10: 1032692065
- Artikelnr.: 70733229
Dr. Bhajan Lal Chartered Chemist, is Associate Professor in the Chemical Engineering Department and Centre for Carbon Capture, Storage and Utilization (CCUS) in the Institute of Sustainable Energy at the Universiti Teknologi PETRONAS (2012-conti..). After receiving M.Sc. and Ph.D. degrees (2004) from Jamia Millia Islamia Central University, New Delhi, India, Dr. Lal worked as postdoc fellow and Research Scientist in the USA, Canada, South Africa, Turkey, and Malaysia. His main areas of research are CO2 hydrates and its application in CCS, desalination and Flow Assurance. He has helped graduate 8 M.Sc., 11 Ph.D., 2 postdocs and more than 70 undergraduates FYPI students since 2013. Dr. Bhajan Lal has published 5 research books, 12 book chapters, 200+ peer review research papers, 45 conference papers and filed 2 patents (desalination) in CO2 gas hydrate research area with a high citation record of 5138 with H-index of 42 and i10-index of 110. In addition, as project leader, he has secured 18 gas hydrate-related research projects worth RM 4 million from oil and gas industries, UTP, and the Malaysian Government. Dr. Lal has actively presented his research and teaching at national as well as international platforms such as conferences, webinars etc. He has delivered motivational and career guidance talks at national as well as international schools. Dr. Bhajan has delivered 4 industrial consultancy projects and 10 short courses related to flow assurance, production chemistry via CAPE-UTP. Anipeddi Manjusha is pursuing her Ph.D. research work on CO2 capture via gas hydrate formation using gas hydrate semi continue system in the Chemical Engineering Department of Universiti Teknologi PETRONAS (UTP) Malaysia. She obtained her M.Sc. degree from R V College of Engineering, Bangalore, India in Chemical Engineering. She has a good track record of published book chapters and research papers.
Preface. Gas Hydrate in Oil and Gas Systems. Chemical in Carbon Capture and
Storage. Feasibility of Long-Distance Transportation of Captured CO2 using
Transmission Pipelines: An Overview of Techno-economic Models.
Gas-Hydrate-Forming Reactors for Carbon Capture and Storage. Advancements
and Challenges in Techno-Economic Analysis of CO2 Capture Technologies. CO2
Sequestration via Clathrate Gas Hydrates. Risk Analysis in Carbon Capture
and Storage. Methods for Modelling and Simulating CO2 Capture Utilizing
Hydrate Technology. Leveraging Machine Learning and Artificial Intelligence
for Enhanced Carbon Capture and Storage (CCS). Decarbonizing Global
Industry: Technologies and Policies. Carbon Capture and Storage Information
Resources. Index.
Storage. Feasibility of Long-Distance Transportation of Captured CO2 using
Transmission Pipelines: An Overview of Techno-economic Models.
Gas-Hydrate-Forming Reactors for Carbon Capture and Storage. Advancements
and Challenges in Techno-Economic Analysis of CO2 Capture Technologies. CO2
Sequestration via Clathrate Gas Hydrates. Risk Analysis in Carbon Capture
and Storage. Methods for Modelling and Simulating CO2 Capture Utilizing
Hydrate Technology. Leveraging Machine Learning and Artificial Intelligence
for Enhanced Carbon Capture and Storage (CCS). Decarbonizing Global
Industry: Technologies and Policies. Carbon Capture and Storage Information
Resources. Index.
Preface. Gas Hydrate in Oil and Gas Systems. Chemical in Carbon Capture and
Storage. Feasibility of Long-Distance Transportation of Captured CO2 using
Transmission Pipelines: An Overview of Techno-economic Models.
Gas-Hydrate-Forming Reactors for Carbon Capture and Storage. Advancements
and Challenges in Techno-Economic Analysis of CO2 Capture Technologies. CO2
Sequestration via Clathrate Gas Hydrates. Risk Analysis in Carbon Capture
and Storage. Methods for Modelling and Simulating CO2 Capture Utilizing
Hydrate Technology. Leveraging Machine Learning and Artificial Intelligence
for Enhanced Carbon Capture and Storage (CCS). Decarbonizing Global
Industry: Technologies and Policies. Carbon Capture and Storage Information
Resources. Index.
Storage. Feasibility of Long-Distance Transportation of Captured CO2 using
Transmission Pipelines: An Overview of Techno-economic Models.
Gas-Hydrate-Forming Reactors for Carbon Capture and Storage. Advancements
and Challenges in Techno-Economic Analysis of CO2 Capture Technologies. CO2
Sequestration via Clathrate Gas Hydrates. Risk Analysis in Carbon Capture
and Storage. Methods for Modelling and Simulating CO2 Capture Utilizing
Hydrate Technology. Leveraging Machine Learning and Artificial Intelligence
for Enhanced Carbon Capture and Storage (CCS). Decarbonizing Global
Industry: Technologies and Policies. Carbon Capture and Storage Information
Resources. Index.