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Applied Water Science, Volume 2
Remediation Technologies
(Edited by), Mohd Imran Ahamed (Edited by), Rajender Boddula (Edited by), Tauseef Ahmad Rangreez (Edited by)
9781119724735, Wiley
Hardback, published 14 December 2021
688 pages
1 x 1 x 1 cm, 0.454 kg
APPLIED WATER SCIENCE VOLUME 2 The second volume in a new two-volume set on applied water science, this book provides understanding, occurrence, identification, toxic effects and control of water pollutants in an aquatic environment using green chemistry protocols. The high rate of industrialization around the world has led to an increase in the rate of anthropogenic activities which involve the release of different types of contaminants into the aquatic environment. This generates high environmental risks, which could affect health and socio-economic activities if not treated properly. There is no doubt that the rapid progress in improving water quality and management has been motivated by the latest developments in green chemistry. Over the past decade, sources of water pollutants and the conventional methods used for the treatment of industrial wastewater treatment have flourished. Water quality and its adequate availability have been a matter of concern worldwide particularly in developing countries. According to a World Health Organization (WHO) report, more than 80% of diseases are due to the consumption of contaminated water. Heavy metals are highly toxic and are a potential threat to water, soil, and air. Their consumption in higher concentrations gives hazardous outcomes. Water quality is usually measured in terms of chemical, physical, biological, and radiological standards. The discharge of effluent by industries contains heavy metals, hazardous chemicals, and a high amount of organic and inorganic impurities that can contaminate the water environment, and hence, human health. Therefore, it is our primary responsibility to maintain the water quality in our respective countries. This book provides understanding, occurrence, identification, toxic effects and control of water pollutants in an aquatic environment using green chemistry protocols. It focuses on water remediation properties and processes including industry-scale water remediation technologies. This book covers recent literature on remediation technologies in preventing water contamination and its treatment. Chapters in this book discuss remediation of emerging pollutants using nanomaterials, polymers, advanced oxidation processes, membranes, and microalgae bioremediation, etc. It also includes photochemical, electrochemical, piezoacoustic, and ultrasound techniques. It is a unique reference guide for graduate students, faculties, researchers and industrialists working in the area of water science, environmental science, analytical chemistry, and chemical engineering. This outstanding new volume: Audience: This book is an invaluable guide to engineers, students, professors, scientists and R&D industrial specialists working in the fields of environmental science, geoscience, water science, physics and chemistry.
Preface xvii 1 Insights of the Removal of Antibiotics From Water and Wastewater: A Review on Physical, Chemical, and Biological Techniques 1 1.1 Introduction 2 1.2 Antibiotic Removal Methods 4 1.3 Conclusion 32 References 33 2 Adsorption on Alternative Low-Cost Materials-Derived Adsorbents in Water Treatment 49 2.1 Introduction 50 2.2 Water Treatment 50 2.3 Adsorption 51 2.4 Application of Low-Cost Waste-Based Adsorbents in Water Treatment 51 2.5 Disadvantages 84 2.6 Conclusions 86 References 86 3 Mathematical Modeling of Reactor for Water Remediation 107 3.1 Introduction 108 3.2 Water Remediation 109 3.3 Reactor Modeling 112 3.4 Conclusions 154 References 156 4 Environmental Remediation Using Integrated MicrobialElectrochemical Wetlands: iMETLands 171 4.1 Introduction 172 4.2 Constructed Wetland–Microbial Fuel Cell (CW–MFC) System 174 4.3 iMETLand State of the Art 177 4.3.1 iMETLand as a Potential Treatment Unit for Industrial Wastewater 184 4.4 Conclusion, Challenges and Future Directions 184 References 185 5 Forward Osmosis Membrane Technology for the Petroleum Industry Wastewater Treatment 191 5.1 Introduction 191 5.2 Forward Osmosis Membrane Process 192 5.4 Challenges Ahead and Future Perspectives 206 5.5 Conclusions 207 References 208 6 UV/Periodate Advanced Oxidation Process: Fundamentals and Applications 215 6.1 Introduction 216 6.2 Periodate Speciation in Aqueous Solution 217 6.3 Generation of Reactive Species Upon UV-Photolysis of Periodate 218 6.4 Application of UV/IO-4 for Organics Degradation 223 6.5 Scavenging of the Reactive Species Under Laboratory Conditions 234 6.6 Factors Influencing the Degradation Process 236 6.7 Advantages of UV/Periodate Process 240 6.8 Conclusion 241 Acknowledgements 242 References 242 7 Trends in Landfill Leachate Treatment Through Biological Biotechnology 249 7.1 Introduction 250 7.2 Landfill Leachate Characteristics 252 7.3 Wastewater Treatment Techniques 255 7.4 Comparison of Aerobic and Anaerobic Processes 258 7.5 Different Biological Systems for Landfill Leachate Treatment 260 7.6 Conclusion 276 References 277 8 Metal–Organic Framework Nanoparticle Technology for Water Remediation: Road to a Sustainable Ecosystem 289 8.1 Introduction to MOF Nanoparticles 290 8.2 MOFs for Decontamination of Water 291 8.3 Impact of MOFs for Remediation of Water 295 8.4 Removal of Organic Contaminant 303 8.5 MOF Nanoparticle Magnetic Iron-Based Technology for Water Remediation 307 8.5.1 Iron as a Remediation Tool 308 8.5.2 Research Needs and Limitations 310 8.6 Conclusions 311 References 311 9 Metal–Organic Frameworks for Heavy Metal Removal 321 9.1 Introduction 322 9.2 Heavy Metals in Environment 323 9.3 Heavy Metals Removal Technologies 325 9.4 Applications of Metal–Organic Framework in Heavy Metals Removal 330 9.5 Conclusion 344 References 345 10 Microalgae-Based Bioremediation 357 10.1 Introduction to Microalgae-Based Bioremediation 357 10.2 Microalgae Bioremediation Mechanisms 358 10.3 Inorganic Pollutants Bioremediation 360 10.4 Organic Pollutants Bioremediation 363 10.5 Emerging Pollutants Removal 368 10.6 Bioremediation Associated with the Bioproducts Production 370 10.7 Integrated Technology for Microalgae-Based Bioremediation 372 10.8 Conclusion 372 References 373 11 Photocatalytic Water Disinfection 381 11.1 Introduction 381 11.2 Techniques for Water Disinfection 383 11.3 Conclusion 398 References 398 12 Phytoremediation and the Way Forward: Challenges and Opportunities 405 12.1 Introduction 405 12.2 Biosorbant for Phytoremediation 410 12.3 Soil Amendments for Enhancement of Bioremediation 423 12.4 Challenges & Future Prespectives 424 12.4.1 Future Perspectives 424 12.5 Conclusion 425 References 426 13 Sonochemistry for Water Remediation: Toward an Up-Scaled Continuous Technology 437 13.1 Introduction 438 13.2 Water Remediation Technologies: The Place of Ultrasound and Sonochemistry 439 13.3 Continuous-Flow Sonochemistry: State-of-the-Art 456 13.4 Perspectives for an Up-Scaled Continuous Sonochemical Technology for Water Remediation 460 References 461 14 Advanced Oxidation Technologies for the Treatment of Wastewater 469 14.1 Introduction 469 14.2 Principle Involved 471 14.3 Advanced Oxidation Process 472 14.4 Perspectives and Recommendations 478 14.5 Conclusions 479 Acknowledgment 480 References 480 15 Application of Copper Oxide-Based Catalysts in Advanced Oxidation Processes 485 15.1 Introduction 485 15.2 An Overview of Catalytic AOPs 487 15.3 Recent Advances in Copper Oxide-Based Catalysts 492 15.4 Literature Review of Application of Copper Oxide-Based Catalysts for AOPs 499 15.5 Conclusion and Future Perspectives 514 Acknowlegments 516 References 516 16 Biochar-Based Sorbents for Sequestration of Pharmaceutical Compounds: Considering the Main Parameters in the Adsorption Process 527 16.1 Introduction 527 16.2 Adsorption Fundamentals 529 16.3 Effect of Various Parameters on Adsorption of Pharmaceuticals 530 16.4 Isotherm Models 542 16.5 Adsorption Kinetics 548 16.6 Conclusion 553 References 554 17 Bioremediation of Agricultural Wastewater 565 Abbreviations 565 17.1 Introduction 566 17.2 Sources of Agricultural Wastewater 566 17.3 Bioremediation Processes for Agricultural Wastewater Treatment 567 17.4 Conclusion and Future Outlook 575 Acknowledgements 576 References 576 18 Remediation of Toxic Contaminants in Water Using Agricultural Waste 581 18.1 Introduction 582 18.2 Components in Wastewater and Their Negative Impact 583 18.3 Techniques for Remediation of Wastewater 583 18.4 Agricultural Waste Materials 584 18.5 Agricultural Waste-Assisted Synthesis of Nanoparticles and Wastewater Remediation Through Nanoparticles 608 18.6 Adsorption Models for Adsorbents 609 18.7 Conclusions 611 References 611 19 Remediation of Emerging Pollutants by Using Advanced Biological Wastewater Treatments 623 19.1 Introduction 624 19.2 Pharmaceutical Wastewater 626 19.3 Pesticide Contaminated Wastewater 628 19.4 Surfactant Pollution 632 19.5 Microplastic Pollution 634 19.6 Endocrine Disrupters in Environment 636 19.7 Remedies for Endocrine Disrupters 637 19.8 Conclusion 637 Acknowledgement 638 References 638 Index 645
Ali Khadir, Amin M. Ramezanali, Shabnam Taghipour and Khadijeh Jafari
Wojciech Stawiñski and Katarzyna Wal
Hamidreza Bagheri, Ali Mohebbi, Maryam Mirzaie and Vahab Ghalandari
A. Biswas and S. Chakraborty
Shahryar Jafarinejad and Nader Vahdat
5.3 FO Technology for the Petroleum Industry Wastewater Treatment 194
Slimane Merouani and Oualid Hamdaoui
Ali Khadir, Arman N. Ardestani, Mika Sillanpää and Shreya Mahajan
Rashmirekha Tripathy, Tejaswini Sahoo, Jagannath Panda, Madhuri Hembram, Saraswati Soren, C.K. Rath, Sunil Kumar Sahoo and Rojalin Sahu
Anam Asghar, Mustapha Mohammed Bello and Abdul Aziz Abdul Raman
Rosangela R. Dias, Mariany C. Deprá, Leila Q. Zepka and Eduardo Jacob-Lopes
Prachi Upadhyay and Sankar Chakma
Shinomol George K. and Bhanu Revathi K.
Kaouther Kerboua and Oualid Hamdaoui
Pallavi Jain, Sapna Raghav and Dinesh Kumar
D. Mohammady Maklavany, Z. Rouzitalab, S. Jafarinejad, Y. Mohammadpourderakhshi and A. Rashidi
Ali Khadir
Shivani Garg, Nelson Pynadathu Rumjit, Paul Thomas and Chin Wei Lai
Arti Jain and Ritu Payal
S. Ghosh and S. Chakraborty
Subject Areas: Civil engineering, surveying & building [TN]
