Current Trends and Future Developments on Bio-membranes: Membranes in Environmental Applications. Questo articolo non è disponibile.
Lingua: inglese
Editore: Elsevier, 2019
- Brossura
- Nuovo

Da: Revaluation Books, Exeter, Regno UnitoRevaluation Books
Venditore AbeBooks dal 6 gennaio 2003
Condizione: Nuovo
EUR 240,55
Descrizione dell’articolo da parte del venditore
360 pages. 9.25x7.50x0.87 inches. In Stock. This item is printed on demand.
Codice articolo __0128167785
- Titolo
- Current Trends and Future Developments on Bio-membranes: Membranes in Environmental Applications
- Autore
- Basile, Angelo/ Figoli, Alberto/ Li, Yongdan
- Editore
- Elsevier
- Anno di pubblicazione
- 2019
- Condizione
- Brand New
- Rilegatura
- Paperback
- Lingua
- inglese
- ISBN 10
- 0128167785
- ISBN 13
- 9780128167786
- Peso dell'articolo
- 0,65 chilogrammi
Current Trends and Future Developments in (Bio-) Membranes: Membranes in Environmental Applications offers an overview of environmental pollution, covering the air, water, waste from agriculture and climate change, and including emerging offenders such as microplastics and electronic waste which can be solved by conventional and advanced membrane techniques. Chapters cover environmental pollution issues followed by specific membrane processes, problems related to environmental pollution, and the different techniques used for solving these problems. For each pollutant, such as CO2 and fuel, water and wastewater, waste from agriculture, etc., specific membrane processes are described.
Users will find a comprehensive overview on the environmental problems that influence climate change and aquatic/water preservation, CO2 emission and air pollution, metals, toxic pollutants in water, wastewater problems and treatments, and more.
"Riassunto" può appartenere a un’altra edizione di questo titolo.
Informazioni sull’autore
Dr. Alberto Figoli obtained his PhD degree at Membrane Technology Group, Twente University (Enschede, The Netherlands) in 2001. He graduated in Food Science and Technology at the Agriculture University of Milan 1996. Since December 2001, he has a permanent position as Researcher at Institute on Membrane Technology (ITM-CNR) in Rende (CS), Italy.
He also had international experience in industrial research labs: about 1 year (1996) at Quest International Nederland B.V. (ICI), Process Research Group, Naarden (The Netherlands) on “Setting of a pilot plant for aromatic compounds extraction using the pervaporation (PV) membrane technology; Secondment in 2010 and 2011 at GVS, SpA, Bologna, within the EU project “Implementation of Membrane Technology to Industry (IMETI) on “Preparation and Characterisation of hybrid membranes for VOCs removal.
He was granted for the “Short Term Mobility Programme by CNR, in 2004 and 2005, at the “Environmental Protection Agency of United States (USEPA), Sustainable Technology Division, Cincinnati (USA) on “Volatile Organic Compounds (VOCs) and aroma removal using a novel asymmetric membrane by pervaporation nell’ambito dello “Short Term Mobility Programme funded CNR.
He is responsible and involved in various National and International projects. He is also responsible, within the CNR organisation, for two research lines on membrane preparation and characterisation and on pervaporation (PV) applications.
He is author of more than 60 research papers in peer reviewed journals, several book chapters, a book, two patents and many oral presentations (also as invited lecture) in National and International Conferences and Workshops.
Yongdan Li serves as the Professor of Industrial Chemistry in Aalto University, Finland. In the academic community, he serves as the Associate Editor of Catalysis Today and the Editorial Board Member of a number of international journals. He served as the Professor of Industrial Catalysis and Changjiang Chair in Tianjin University, China for 24 years. The focus of his research is on the development of catalytic reactors and processes for energy conversion, including membrane reactors and processes. In recent years, he guided active research projects on CO2 separation from flue gas based on membrane processes, syngas production with catalytic membrane reactors, photo catalytic water splitting, lignin de-polymerization, solid oxide fuel cell with non-hydrogen fuels, direct carbon fuel cell, selective catalytic reduction of NOx with ammonia, and non-aqueous flow batteries. The purpose of his efforts is to increase the efficiency of energy conversion both for renewable and fossil resources. The keys are the design principles of catalysts, membranes, films and reactors. Those are the scientific bases in multiscale and are the frontier topics in chemistry, physics and engineering disciplines.
"Descrizione articolo" può appartenere a un’altra edizione di questo titolo.