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Nanomaterials for Environmental Protection
Boris I. Kharisov (Edited by), B Kharisov (Author), Oxana Vasilievna Kharissova (Edited by), H. V. Rasika Dias (Edited by)
9781118496978, Wiley
Hardback, published 17 March 2015
592 pages
28.7 x 22.4 x 3.7 cm, 1.52 kg
This book is divided into four main sections thoroughly analyzing the use of nanomaterials for water, air and soil solutions, and emphasizing environmental risks. Providing background on nanomaterials' two-decade study, it discusses the characterization and application of unconventional disinfectants, called antimicrobial nanomaterials, which fall into three categories and, while seemingly harmless, have potential hazards if applied improperly. Special attention is given to the process of remediation, synthetics techniques, and properties of nanomaterials, with examples to which new and trained readers in the field can relate and understand.
Preface ix LIST OF CONTRIBUTORS xi LIST OF ABBREVIATIONS xv Part I Remediation with use of metals, metal oxides, complexes and composites 1 1 Groundwater Water Remediation by Static Diffusion Using Nano-Zero Valent Metals (Fe0, Cu0, Al0), n-FeHn+, n-Fe(OH)x, n-FeOOH, n-Fe-[OxHy](n+/−) 3 2 Nanostructured Metal Oxides for Wastewater Disinfection 27 3 Cu2O-Based Nanocomposites for Environmental Protection: Relationship between Structure and Photocatalytic Activity, Application, and Mechanism 41 4 Multifunctional Nanocomposites for Environmental Remediation 71 5 Nanomaterials for the Removal of Volatile Organic Compounds from Aqueous Solutions 85 6 Hybrid Metal Nanoparticle-Containing Polymer Nanofibers for Environmental Applications 95 7 Nanomaterials on the Basis of Chelating Agents, Metal Complexes, and Organometallics for Environmental Purposes 109 Part II Remediation with use of carbon nanotubes 125 8 Carbon Nanotubes: Next-Generation Nanomaterials for Clean Water Technologies 127 Part III Photo catalytical remediation 143 9 New Advances in Heterogeneous Photocatalysis for Treatment of Toxic Metals and Arsenic 145 10 Nanostructured Titanium Dioxide for Photocatalytic Water Treatment 169 11 Destruction of Chloroorganic Compounds with Nanophotocatalysts 183Rashid A. Khaydarov, Renat 12 Semiconductor Nanomaterials for Organic Dye Degradation and Hydrogen Production via Photocatalysis 193 Part IV Nanoadsorbents and Nanofiltration 205 13 Advanced Oxidation Processes, Nanofiltration, and Application of Bubble Column Reactor 207 14 Carbon Nanomaterials as Adsorbents for Environmental Analysis 217 15 Application of Nanoadsorbents in Water Treatment 237 16 Organo-Clay Nanohybrid Adsorbents in the Removal of Toxic Metal Ions 249 Part V Membranes on nanomaterials basis 269 17 Water Remediation Using Nanoparticle and Nanocomposite Membranes 271 Part VI Green methods in nanomaterials synthesis 293 18 Green Methodologies in the Synthesis of Metal and Metal Oxide Nanoparticles 295 19 An Environmentally Friendly and Green Approach for Synthesis and Applications of Silver Nanoparticles 313 20 Green Synthesis of Nanomaterials Using Biological Routes 329 Part VII CO2 adsorption 349 21 Nanomaterials for Carbon Dioxide Adsorption 351 Part VIII Intelligent nanomaterials 373 22 Development of Intelligent Nanomaterials as a Strategy to Solve Environmental Problems 375 Part IX Desalination 387 23 Engineered Nanomaterials for Purification and Desalination of Palatable Water 389 Part X Nanocatalysis 401 24 Nanocatalytic Wastewater Treatment System for the Removal of Toxic Organic Compounds 403 25 Catalyst Design Based on Nano-Sized Inorganic Core of Enzymes: Design of Environmentally Friendly Catalysts 429 Part XI Nanosensors 443 26 Neutron-Fluence Nanosensors Based on Boron-Containing Materials 445 Part XII Nanoreservoirs for hydrogen storage 451 27 Hydrogen Nanoreservoirs made of Boron Nitride 453 Part XIII Fuel cells on nanomaterials basis 469 28 Fuel Cells with Nanomaterials for Ecologically Pure Transport 471 Part XIV Remediation of radionuclides 483 29 Humic Functional Derivatives and Nanocoatings for Remediation of Actinide-Contaminated Environments 485 Part XV Environmental risks and toxicity 503 30 Environmental Risks of Nanotechnology: Evaluating the Ecotoxicity of Nanomaterials 505 31 Environmental Risk, Human Health, and Toxic Effects of Nanoparticles 523 32 Implications of the Use of Nanomaterials for Environmental Protection: Challenges in Designing Environmentally Relevant Toxicological Experiments 537 Concluding Remarks 551 Author Index 555 Subject Index 559
David D.J. Antia
Erick R. Bandala, Marco Antonio Quiroz Alfaro, Mónica Cerro-López, and Miguel A. Méndez-Rojas
Liangbin Xiong, Huaqing Yu, Xin Ba, Wenpei Zhang, and Ying Yu
Suying Wei, Jiahua Zhu, Hongbo Gu, Huige Wei, Xingru Yan, Yudong Huang, and Zhanhu Guo
Amro El Badawy and Hafiz H.M. Salih
Yunpeng Huang, Shige Wang, Mingwu Shen, and Xiangyang Shi
Boris I. Kharisov, Oxana V. Kharissova, and Ubaldo Ortiz Méndez
Yit Thai Ong, Kian Fei Yee, Qian Wen Yeang, Sharif Hussein Sharif Zein, and Soon Huat Tan
Marta I. Litter and Natalia Quici
David G. Rickerby
R. Khaydarov, and Olga Gapurova
Leticia M. Torres-Martínez, Isaías Juárez-Ramírez, and Mayra Z. Figueroa-Torres
Sukanchan Palit
Chaudhery Mustansar Hussain
Amit Bhatnagar and Mika Sillanpää
Peng Liu
Kian Fei Yee, Qian Wen Yeang, Yit Thai Ong, Vel Murugan Vadivelu, and Soon Huat Tan
Aniruddha B. Patil and Bhalchandra M. Bhanage
Muniyandi Jeyaraj, Muralidharan Murugan, Kevin John Pulikotil Anthony, and Sangiliyandi Gurunathan
Rajesh Ramanathan, Ravi Shukla, Suresh K. Bhargava, and Vipul Bansal
Luis Ángel Garza Rodríguez and Elsa Nadia Aguilera González
Jose Ruben Morones-Ramírez
Vijay C. Verma, Swechha Anand, Mayank Gangwar, and Santosh K. Singh
Sodeh Sadjadi
Mohammad Mahdi Najafpour
Levan Chkhartishvili
Levan Chkhartishvili
Gennady Gerasimov
Irina V. Perminova, Stepan N. Kalmykov, Natalia S. Shcherbina, Sergey A. Ponomarenko, Vladimir A. Kholodov, Alexander P. Novikov, Richard G. Haire, and Kirk Hatfield
Miguel A. Méndez-Rojas, José Luis Sánchez-Salas, Aracely Angulo-Molina, and Teresa de Jesús Palacios-Hernández
Jamuna Bai A. and Ravishankar Rai V.
Rute F. Domingos and José P. Pinheiro
Subject Areas: Mechanical engineering & materials [TG]
