Basile / Cassano / Rahimpour | Textile Industry | Buch | 978-0-443-38399-1 | www2.sack.de

Buch, Englisch, 350 Seiten, Format (B × H): 191 mm x 235 mm, Gewicht: 449 g

Basile / Cassano / Rahimpour

Textile Industry


Erscheinungsjahr 2026
ISBN: 978-0-443-38399-1
Verlag: Elsevier Science

Buch, Englisch, 350 Seiten, Format (B × H): 191 mm x 235 mm, Gewicht: 449 g

ISBN: 978-0-443-38399-1
Verlag: Elsevier Science


Textile Industry comprehensively explores the composition, ecological implications, and potential health risks associated with textile industry effluents. The book covers various treatment methods that are specifically tailored to address the unique characteristics of textile wastewater. These methods range from conventional techniques like sedimentation and flotation to physiochemical methods such as activated carbon filtration and chemical precipitation. Biological treatments like aerobic and anaerobic processes are also explored. In addition, the book discusses the application of advanced technologies in textile wastewater treatment, including ozonation, photocatalysis, advanced oxidation processes, electrolysis, and microbial fuel cells, along with dedicated chapters on mechanisms and effectiveness.

By defining these technologies' intricate mechanisms and practical applications, this book equips researchers with the knowledge and tools necessary to develop sustainable and efficient wastewater treatment strategies.

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Weitere Infos & Material


Section I. Introduction to Textile Industries
1. Overview of the Textile Industry: Economic Significance and Environmental Concerns
2. Challenges in Textile Industry Wastewater Treatment: Pollutants and Environmental Impact

Section II. Methods of Textile industries and their challenges
3. Physical Treatment Methods: Filtration and Adsorption Techniques
4. Chemical Treatment Methods: Coagulation-Flocculation and Oxidation Processes
5. Biological Treatment Methods: Aerobic and Anaerobic Biodegradation
6. Advanced Oxidation Processes (AOPs) for Textile Wastewater Treatment
7. Membrane Technologies: Reverse Osmosis and Nanofiltration
8. Electrochemical Treatment Techniques for Textile Effluents
9. Hybrid Treatment Processes: Integration of Multiple Technologies
10. Nanotechnology Applications in Textile Wastewater Treatment
11. Bioremediation Strategies for Textile Dye Degradation
12. Process Intensification Approaches in Textile Wastewater Treatment
13. Intelligent Systems and Automation in Textile Industry Wastewater Treatment
14. Life Cycle Assessment (LCA) of Advanced Technologies for Textile Industry Wastewater Treatment


Haghighatjoo, Fatemeh
Fatemeh Haghighatjoo is a Chemical Engineering PhD holder with expertise in designing and optimizing chemical processes. She has a thorough knowledge of evaluating processes from environmental, economic, energy, and exergy points of view. She has been teaching various courses in process control, unit operations, thermodynamics, and HSE at different universities for the past seven years. Additionally, she has two years of experience reviewing reference books in Chemical Engineering. She has reviewed books on topics such as renewable energies, methanol, homogeneous catalysts, natural gas, and greenhouse gases.

Cassano, Alfredo
Alfredo Cassano, a Biologist, is senior Researcher at ITM-CNR since 2000. He has a long experience in the field of membrane science and technology with research expertise including pressure-driven membrane processes, membrane contactors and integrated membrane operations mainly applied to wastewater treatments and agro-food productions.
Cassano also prepared 4 special issues on membrane science and technology for 3 international journals (Membranes, Foods and Journal of Membrane Science and Research). He is involved as scientific responsible or main investigator in different national projects with both Italian Ministry of Education, University & Research and private companies and international projects funded by EU. He has been tutoring of 28 Thesis for master and Ph.D. students at ITM-CNR.

Basile, Angelo
Angelo Basile, a Chemical Engineer with a Ph.D. in Technical Physics, was a senior Researcher at the ITM-CNR as a responsible for the research related to both ultra-pure hydrogen production and CO2 capture using Pd-based Membrane Reactors. He is a reviewer for 165 int. journals, an editor/author of more than 50 scientific books and 140 chapters on international books on membrane science and technology; with various patens (7 Italian, 2 European, and 1 worldwide). He is a referee of 1more than 150 international scientific journals and a Member of the Editorial Board of more than 20 of them. Basile is also an associate editor of the: Int. J. Hydrogen Energy; Asia-Pacific Journal of Chemical Eng.; journal Frontiers in Membrane Science and Technology; and co-Editor-in-chief of the Int. J. Membrane Science & Technol.

Rahimpour, Mohammad Reza
Prof. Mohammad Reza Rahimpour is a professor in Chemical Engineering at Shiraz University, Iran. He received his Ph.D. in Chemical Engineering from Shiraz University joint with University of Sydney, Australia 1988. He started his independent career as Assistant Professor in September 1998 at Shiraz University. Prof. M.R. Rahimpour, was a Research Associate at University of California, Davis from 2012 till 2017. During his stay in University of California, he developed different reaction networks and catalytic processes such as thermal and plasma reactors for upgrading of lignin bio-oil to biofuel with collaboration of UCDAVIS. He has been a Chair of Department of Chemical Engineering at Shiraz University from 2005 till 2009 and from 2015 till 2020. Prof. M.R. Rahimpour leads a research group in fuel processing technology focused on the catalytic conversion of fossil fuels such as natural gas, and renewable fuels such as bio-oils derived from lignin to valuable energy sources. He provides young distinguished scholars with perfect educational opportunities in both experimental methods and theoretical tools in developing countries to investigate in-depth research in the various field of chemical engineering including carbon capture, chemical looping, membrane separation, storage and utilization technologies, novel technologies for natural gas conversion and improving the energy efficiency in the production and use of natural gas industries.



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