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This book is a compilation of all the necessary attributes associated with the knowledge of Persistent Organic Pollutants (POPs) that have been meticulously identified and charted down by the Stockholm Convention. Essential details starting from technical characteristics of the POPs to their expanse of nationwide usage, their remedial procedures adopted in India in comparison to available international data, and their consequent effects on biota and future perspectives are summarized with precision. Additionally, in-house scientific works that have been performed on each chemical are presented. Moreover, a unique feature of this book is that each chapter is dedicated to focusing on a single POP so that all the aspects of its usage, effects and fate can be accurately laid out. The book aims to be a go-to guidebook for stakeholders and academicians dealing with these chemicals who wish to be more acquainted with the present scenario of POPs and their status.
Pollution. --- Environmental chemistry. --- Toxicology. --- Environmental Chemistry.
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Nanomaterials have recently garnered significant attention and practical importance for heterogeneous electrocatalysis. This book presents recent developments in the design, synthesis, and characterisation of nanostructured electrocatalytic materials, with a focus on applications to energy and wastewater treatment. Electrocatalytic nanomaterials can enhance process efficiency and sustainability, thus providing innovative solutions for a wide array of areas such as sustainable energy production, conversion, and wastewater treatment. Readers will gain insights into the latest breakthroughs in electrocatalysis and the activity of nanomaterials in energy conversion applications, e.g., fuel cells, hydrogen production, water splitting, and electro/photocatalytic water splitting, as well as for wastewater treatment. The book explores the development of advanced electrocatalysts, particularly hybrid materials.
Environmental chemistry. --- Water. --- Hydrology. --- Nanotechnology. --- Environmental Chemistry.
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This comprehensive volume on organic radicals explores the life cycle, generation, and chemical reactions of these molecules, emphasizing their significance in various environmental and biological contexts. The book delves into the toxicity of organic radicals for living organisms, their biological aspects, and their applications in biomedical fields such as bioimaging and therapies. It also covers the preparation and use of radical-based materials in magnetism, luminescence, and photocatalysis. Additionally, the text discusses methodologies for organic synthesis using radicals, and the application of radicals in environmental remediation, including soil and wastewater treatment. Aimed at researchers and practitioners in environmental science, chemistry, and related fields, this book provides a detailed analysis of the current understanding and future directions in the study of organic radicals.
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Arsenic contamination in drinking water and crops is a major health issue in many countries worldwide, threatening the health of millions of people due to arsenic’s toxicity and carcinogenicity. This edited volume brings together a diverse group of environmental science, sustainability and health researchers to address the challenges posed by arsenic contamination. The book sheds light on this global environmental issue and proposes solutions to aquatic contamination through multi-disciplinary sustainable approaches and case studies from different parts of the world. The chapters contained here present the status quo in different parts of the world and provide essential information on arsenic exposure risks for humans as well as possible measures for tackling arsenic poisoning. The mechanisms of arsenic uptake, translocation and distribution in plants and grains are also explained. In closing, the book reviews a variety of prospective sustainable solutions to the problem of arsenic accumulation in soil and water. The book is comprised of three sections. The first section describes the routes of exposure to environmental arsenic and its transport in soil and aquatic ecosystems. The second section explains the health risks linked to arsenic exposure in food and the environment. The third section addresses sustainable arsenic contamination mitigation strategies using the potential applications of recent biological technology such as biotechnology, bioremediation, phytoremediation, biochar, absorbent, genetic engineering, and nanotechnology approaches. The book is intended for a broad audience including researchers, scientists, and readers with diverse backgrounds.
Pollution. --- Environmental chemistry. --- Environmental health. --- Environmental Chemistry. --- Environmental Health.
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This textbook offers a basic understanding of aquatic ecotoxicology from molecular to physiological levels for graduate and advanced undergraduate students. The book covers the guidelines and lab protocols used by international organizations for ecotoxicology studies, and discusses the challenges faced by aquatic organisms in a changing climate from an ecotoxicological perspective. Readers will learn about pollutants, contaminants and chemicals of emerging concern (CECs) in aquatic environments, their impacts on environmental and human health, and what techniques can be used to curb and control their adverse impacts. The book will be useful for students in aquatic ecotoxicology, environmental pollution and marine biochemistry. .
Environment. --- Environmental chemistry. --- Pollution. --- Ecology. --- Environmental Sciences. --- Environmental Chemistry.
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This volume discusses the adsorptive profiles of microplastic (MP) pollutants, covering their structural identity, sorption ability and degradation due to photolytic, hydrolytic, mechanical, and other environmental factors. In addition to the quantitation of (MPs) in the environment, the book unveils the deleterious effects on aquatic species and humans due to adsorbed inorganic/organic contaminants on the surface of MPs. The present book finds its uniqueness by presenting in-depth discussions on the interactions and mechanisms of microplastics with organic pollutants, microalgae, and human systems. The interactions and mechanisms between microplastics and microalgae are explored to understand the possible remediation pathways in microplastic contaminated water resources. Students and researchers in the fields of environmental science and engineering, biotechnology, aquaculture, marine technology, and water chemistry can benefit from this book. Furthermore, industries, NGOs and stakeholders dealing with wastewater, solid waste/environmental pollution will find this book useful. .
Pollution. --- Environmental chemistry. --- Environmental management. --- Pollution. --- Environmental Chemistry. --- Environmental Management.
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This book covers the fundamentals, limitations, and challenges of phytoremediation in contaminated water, air, and soil due to rapid demographic and industrial development. This foundational knowledge is necessary to combat negative impacts on human and environmental health brought on by practices such as ore mining, gas emission, pesticide application, and municipal waste generation. The book explains the phytoremediation of organic and inorganic pollutants via different types of microbes, fungi, and various plant groups to improve the quality of contaminated systems, and discusses emerging advancements and technologies, such as nanotechnology, for reducing toxic pollution. The mechanisms of phytoremediation are a primary point of focus to understand the basics, and for readers to apply this knowledge in a variety of contexts where phytoremediation is a useful tool in improving the quality of polluted water, air, and soil. The book is mainly intended for researchers in the fields of botany, agriculture, biotechnology, and environmental engineering, but will also be of interest to policymakers, NGOs, and academics working on environmental management.
Pollution. --- Environmental management. --- Environmental chemistry. --- Environmental Management. --- Environmental Chemistry.
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This volume of the series Fundamentals of Organic Geochemistry provides an overview of isotope analysis in organic geochemistry and related fields of applied sciences. It dives deep into the basics of isotopes and isotopic fractioning processes with applications e.g. in environmental biodegradation or correlations of fossil matter. This textbook helps students understanding the geoscientific, analytical, and chemical isotope aspects in complex natural systems. Students learn the importance of isotope organic geochemistry and its relationship to fundamental processes in the geosphere and biosphere, which include e.g. photosynthesis, evaporation/precipitation within the global water cycle, biotic degradation, and biosynthesis. The book is intended for chemistry and geoscience students at BSc, MSc, and PhD levels.
Geochemistry. --- Bioorganic chemistry. --- Environmental chemistry. --- Geochemistry. --- Bioorganic Chemistry. --- Environmental Chemistry.
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This volume of the series Fundamentals of Organic Geochemistry provides an overview of isotope analysis in organic geochemistry and related fields of applied sciences. It dives deep into the basics of isotopes and isotopic fractioning processes with applications e.g. in environmental biodegradation or correlations of fossil matter. This textbook helps students understanding the geoscientific, analytical, and chemical isotope aspects in complex natural systems. Students learn the importance of isotope organic geochemistry and its relationship to fundamental processes in the geosphere and biosphere, which include e.g. photosynthesis, evaporation/precipitation within the global water cycle, biotic degradation, and biosynthesis. The book is intended for chemistry and geoscience students at BSc, MSc, and PhD levels.
Geochemistry. --- Bioorganic chemistry. --- Environmental chemistry. --- Bioorganic Chemistry. --- Environmental Chemistry.
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This book presents an in-depth exploration of complex metal oxides, focusing on their applications in photocatalysis and biomedical materials. It highlights the practical importance of complex metal oxides, which have gained significant attention in recent years due to their diverse range of properties. The book specifically delves into the most representative series of compounds based on stable structural types of minerals, such as perovskite, fluorite, pyrochlore, corundum, and rutile. It also emphasizes the scientific interest in the pyrochlore mineral structure, which has been shown to exhibit photocatalytic activity. Recent studies have revealed that some compounds with the pyrochlore structure can act as promising candidates for photocatalysis. Additionally, the book highlights the use of photocatalysis in producing biomedical materials based on natural polymers. These materials possess a unique combination of components assembled in a specific structure, which makes them highly attractive for regenerative medicine associated with cell/tissue regeneration stimulation. Overall, this book offers a comprehensive analysis of the potential of complex metal oxides, particularly those with the pyrochlore structure, and is particularly useful for those researchers working in the fields of green chemistry and biomedical materials science. The book was translated from the original Russian. The translation was done with the help of artificial intelligence (machine translation by the service DeepL.com). A subsequent human revision was done primarily in terms of content, so that the book will read stylistically differently from a conventional translation.
Photocatalysis. --- Materials. --- Inorganic chemistry. --- Environmental chemistry. --- Biomaterials. --- Composite materials. --- Inorganic Chemistry. --- Environmental Chemistry. --- Biomedical Materials. --- Composites.
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