Nanotechnology for Environmental Remediation
The newly discovered advanced oxidation technology using nanoscale zero-valent iron, which is reported in this book, could be widely used to treat pesticides, herbicides, and industrial chemicals as well as to purify contaminated water for domestic use. In addition, it can contribute to advancing science and technology and providing valuable information to all readers - researchers, scientists, engineers, and students - in this field for their further research and studies.
Hydrogeophysics
This ground-breaking work is the first to cover the fundamentals of hydrogeophysics from both the hydrogeological and geophysical perspectives. A series of hydrogeophysical case studies illustrate hydrogeophysical approaches for mapping hydrological units, estimation of hydrogeological parameters, and monitoring of hydrogeological processes.
Emerging Environmental Technologies
This book exclusively focuses on the technologies that would be in the forefront in near to far future. Each and every article in the book discusses the current environmental challenges, the novel innovation and future directions. The topics covered in the book include microbial fuel cells, hybrid solar lighting, bacterial swimming for environmental remediation, cleaner engines, nanoparticles for effluent treatment, surface catalysis and proteins as gas hydrates inhibitors.
Chemicals as Intentional and Accidental Global Environmental Threats
The book contains fields of ecology, chemistry, medicine, epidemiology, public health, toxicology, risk assessment, environmental protection and management, modelling, environmental remediation technologies came together to discuss the chemicals threats for the global environment. The intentional or accidental release of chemicals into environment poses a global threat to public health and security.
Advanced Nanomaterials
Covers synthesis, characterization, and applications of diverse types of nanomaterials. Specifically, it describes carbon, graphene, and graphene oxide-based nanomaterials and their use for environmental remediation. Nanomaterials for concrete coating applications and advances in the processing of high-entropy alloys by means of mechanical alloying are also covered. Subsequently, the use of nanomaterials in endodontics and the use of nanotechnology strategies to enhance restorative resin-based dental nanomaterials are reported.




