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Sustainable Nanotechnology for Environmental Remediation. Micro and Nano Technologies

  • Book

  • January 2022
  • Elsevier Science and Technology
  • ID: 5390297

Sustainable Nanotechnology for Environmental Remediation provides a single-source solution to researchers working in environmental, wastewater management, biological and composite nanomaterials applications. It addresses the potential environmental risks and uncertainties surrounding the use of nanomaterials for environmental remediation, giving an understanding of their impact on ecological receptors in addition to their potential benefits. Users will find comprehensive information on the application of state-of-the-art processes currently available to synthesize advanced green nanocomposite materials and biogenic nanomaterials.

Other sections explore a wide range of promising approaches for green nanotechnologies and nanocomposites preparations. Case study chapters connect materials engineering and technology to the social context for a sustainable environment. Applications and different case studies provide solutions to the challenges faced by industry, thus minimizing negative social impacts.

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Table of Contents

ECTION 1: Insights, Synthesis and Properties 1. Appraisal of Nanotechnology for Sustainable Environmental Remediation 2. Green Nanotechnology for Environmental Remediation 3. Insights of green and biosynthesis of nanoparticles 4. Conventional techniques for nanomaterials preparation 5. Green Synthesis of Metal Nanoparticles for Environmental Remediation 6. Synthesis of green nanocomposite material for engineering application 7. Sustainable approaches for synthesis of biogenic magnetic nanoparticles and their water remediation applications 8. Nanoscale texture characterization of green nanoparticles and their hybrids 9. Chemical and Physical properties of Nanoparticles and Hybrid materials

SECTION 2: Environmental Remediation Applications and Future Prospective 10. Use of Nanotechnology for Wastewater Treatment: Potential Applications, Advantages, and Limitations 11. Green bio composite materials for Sustainable remediation application 12. Advanced green nano-composite materials for wastewater treatment 13. Application of green nanocomposites in removal of toxic chemicals, heavy metals, radioactive materials and pesticides from aquatic water bodies 14. Functionalized Green carbon-based nanomaterial for environmental application 15. Photocatalytic applications of biogenic nanomaterials 16. Synthesis and Photocatalytic Applications of CuxO/ZnO in Environmental Remediation 17. Phytogenic Nanoparticles for the Management of Water Pollution 18. Magnetic Nanoparticles and their application in sustainable environment 19. Future development, prospective and challenges in the application of Green nano-composites in environmental remediation

SECTION 3: Miscellaneous Applications 20. Nanotechnology for Biosensor Applications 21. Ultra-small fluorescent nanomaterials for sensing and bioimaging applications 22. Synthesis of advanced carbon-based nano-composites for biomedical application 23. Synthesis of metal oxide based nano-composites for energy storage application 24. Engineered uses of nanomaterials for sustainable cementitious composites 25. The Carbon Nanomaterials with Abnormally High Specific Surface Area for Liquid Adsorption 26. Magnetic nanoparticles and its composites towards the remediation of electromagnetic interference pollution 27. Role of Nanotechnology in enhancing crop production and produce quality 28. Sustainable environmentally friendly approaches to the recycling of spent selective catalytic reduction (SCR) catalysts

Authors

Rama Rao Karri Senior Assistant Professor, Universiti Teknologi Brunei, Brunei Darussalam. Dr. Rama Rao Karri is a Professor (Sr. Asst) in the Faculty of Engineering, Universiti Teknologi Brunei, Brunei Darussalam. He has a Ph.D. from the Indian Institute of Technology (IIT) Delhi, Master's from IIT Kanpur in Chemical Engineering. He has worked as a Post-Doctoral research fellow at NUS, Singapore for about six years and has over 18 years of working experience in Academics, Industry, and Research. He has experience of working in multidisciplinary fields and has expertise in various evolutionary optimization techniques and process modelling. He has published 150+ research articles in reputed journals, book chapters, and conference proceedings with a combined Impact factor of 611.43 and has an h-index of 28 (Scopus - citations: 2600+) and 27 (Google Scholar -citations: 3000+). He is an editorial board member in 10 renowned journals and a peer-review member for more than 93 reputed journals and has peer-reviewed more than 410 articles. Also, he handled 112 articles as an editor. He also has the distinction of being listed in the top 2% of the world's most influential scientists in the area of environmental sciences and chemicals for the Years 2021 & 2022. The List of the Top 2% of Scientists in the World compiled and published by Stanford University is based on their international scientific publications, the number of scientific citations for research, and participation in the review and editing of scientific research. He held a position as Editor-in-Chief (2019-2021) in the International Journal of Chemoinformatics and Chemical Engineering, IGI Global, USA. He is also an Associate editor in Scientific Reports, Springer Nature & International Journal of Energy and Water Resources (IJEWR), Springer Inc. He is also a Managing Guest editor for Spl. Issues: 1) "Magnetic nanocomposites and emerging applications", in Journal of Environmental Chemical Engineering (IF: 5.909), 2) "Novel CoronaVirus (COVID-19) in Environmental Engineering Perspective", in Journal of Environmental Science and Pollution Research (IF: 4.223), Springer. 3) "Nanocomposites for the Sustainable Environment�, in Applied Sciences Journal (IF: 2.679), MDPI. He along with his mentor, Prof. Venkateswarlu is authoring an Elsevier book, "Optimal state estimation for process monitoring, diagnosis, and control�. He is also co-editor and managing editor for 8 Elsevier, 1 Springer and 1 CRC edited books. Elsevier: 1) Sustainable Nanotechnology for Environmental Remediation, 2) Soft computing techniques in solid waste and wastewater management, 3) Green technologies for the defluoridation of water, 4) Environmental and health management of novel coronavirus disease (COVID-19), 5) Pesticides remediation technologies from water and wastewater: Health effects and environmental remediation, 6) Hybrid Nanomaterials for Sustainable Applications, 7) Sustainable materials for sensing and remediation of noxious pollutants. Springer: 1) Industrial wastewater treatment using emerging technologies for sustainability. CRC: 1) Recent Trends in Advanced Oxidation Processes (AOPs) for micro-pollutant removal. Janardhan Reddy Koduru Associate Professor, Department of Environmental Engineering, Kwangwoon University, Seoul, South Korea. Dr Janardhan Reddy Koduru is an Associate Professor, in the Department of Environmental Engineering, Kwangwoon University, Seoul, South Korea. His research interests are as follows: Development of low-toxic nanomaterials or nanocomposites by synthetic chemistry and green routes and were utilized for energy and environmental applications. Synthesis of graphene oxide-based nanocomposites and nano-metal oxides impregnated bio-sorbents by advanced green ways for sustainable environmental remediation (water remediation). Management of waste biomaterials and re-use for environmental remediation. Nabisab Mujawar Mubarak Associate Professor, Department of Chemical Engineering, Curtin University, Sarawak Campus, Miri, Sarawak, Malaysia. Dr Mubarak Mujawar is currently an Associate Professor in the Department of Chemical Engineering at Curtin University, Sarawak Campus, Malaysia. His main research areas are carbon nanotube/nanofiber synthesis using microwave heating, synthesis of magnetic biochar and activated carbon using microwave technology, synthesis of biofuel using microwave heating, advanced materials syntheses such as hydro char, and graphene using microwave technology, functionalization of carbon nanotube for sensor application, application of CNTs and CNFs for removal liquids and gases pollutant, protein purification using carbon nanomaterials, immobilization of enzyme on carbon nanotubes and advanced material and reaction engineering etc. Erick R. Bandala Assistant Research Professor in the Division of Hydrologic Sciences, at the Desert Research Institute. Erick,R Bandala is an Assistant Research Professor in the Division of Hydrologic Sciences, at the Desert Research Institute. Las Vegas, USA. His research is in water quality, water treatment and site restoration. His major experience is in developing countries on the generation and adaptation of technology for the generation of safe drinking water and proper sanitation. Specific research interest includes solar driven advanced oxidation processes, assessing the effect of climate change on water quality, developing adaptive technologies for sustainable water quality management, water chemistry, stormwater quality and treatment.