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Books > Medicine > Other branches of medicine > Environmental medicine > General
Green chemistry is a work tool that can be applied in different areas such as medicine, materials, polymers, food, organic chemistry, etc., since it was propounded in the early 2000s. It has become a viable alternative for care, remediation and protection of the environment and has been implemented worldwide. In this book the twelve principles of green chemistry are presented in a simple way, with examples of the applications of green chemistry in numerous areas showcasing it as an ideal alternative for environmental care. It also provides information on current research being implemented at the pilot plant and industrial level. The book demonstrates the importance of the use of renewable raw materials, the use of catalysis and the implementation of alternative energy sources such as the use of microwaves and ultrasound in different separation and chemical processes.
This book covers the research fields in biodiversity conservation, the Belt and Road eco-environmental cooperation, China's five-year plan for eco-environmental protection, sustainable development goals assessment, and human health loss assessment. In the past, these achievements have played an important scientific role in supporting China's ecological and environmental protection, and produced extensive social impacts and significant environmental benefits. At the same time, the relevant research ideas and methods also show the latest progress and trend in the field of environmental strategy and planning in China in recent years, which can be used for reference by experts and scholars of other countries in the field of ecological environment.
This contributed volume motivates and educates across fields about the major challenges in global health and the interdisciplinary strategies for solving them. Once the purview of public health, medicine, and nursing, global health is now an interdisciplinary endeavor that relies on expertise from anthropology to urban planning, economics to political science, geography to engineering. Scholars and practitioners in the health sciences are seeking knowledge from a wider array of fields while, simultaneously, students across majors have a growing interest in humanitarian issues and are pursuing knowledge and skills for impacting well-being across geographic and disciplinary borders. Using a highly practical approach and illustrative case studies, each chapter of this edited volume frames a particular problem and illustrates how interdisciplinary problem-solving can address the greatest challenges in global health today. In doing so, each chapter spurs critical and creative thinking about emergent and future problems. Topics explored among the chapters include: Transforming health and well-being for refugees and their communities Governing to deliver safe and affordable water The global crisis of antimicrobial resistance Low-tech, high-impact interventions to prevent neonatal mortality Communicating taboo health subjects Alternative housing delivery for slum upgrades Transforming Global Health: Interdisciplinary Challenges, Perspectives, and Strategies is a vital and timely compendium for any reader invested in improving global health equity. It will find an audience with researchers, practitioners, policymakers, and program implementers, as well as undergraduate and graduate students and faculty in the fields of global health, public health, and the health sciences.
Microbial or biological degradation has long been the subject of active concern, and the rapid expansion and growing sophistication of various industries in the last century has significantly increased the volume and complexity of toxic residues of wastes. These can be remediated by plants and microbes, either natural origin or adapted for a specific purpose, in a process known as bioremediation. The interest in microbial biodegradation of pollutants has intensified in recent years in an attempt to find sustainable ways to clean contaminated environments. These bioremediation and biotransformation methods take advantage of the tremendous microbial catabolic diversity to degrade, transform or accumulate a variety of compounds, such as hydrocarbons, polychlorinated biphenyls, polaromatic hydrocarbons pharmaceutical substances, radionuclides and metals. Unlike conventional methods, bioremediation does not physically disturb the site. This book describes the basic principles of biodegradation and shows how these principles are related to bioremediation. Authored by leading, international environmental microbiologists, it discusses topics such as aerobic biodegradation, microbial degradation of pollutants, and microbial community dynamics. It provides valuable insights into how biodegration processes work and can be utilised for pollution abatement, and as such appeals to researchers and postgraduate students as well as experts in the field of bioremediation.
The book reviews and reports the recent progress and knowledge on the specific impact of current and projected urban overheating as well as of the urban mitigation technologies on mortality and morbidity and urban vulnerability. It presents recent data and developments on the topic reported by some of the more distinguished researchers in this area. In parallel, it discusses new findings related to the characteristics and the magnitude of urban overheating and reports and analyzes the recent knowledge on the synergies between urban heat island and heatwaves. This book helps to advance our understanding on the interaction between Urban Heat Island (UHI) and overheating as well as their impact on energy demand and public health globally. Exploring the interaction between UHI and energy consumption requires the understanding on the dynamics of UHI intensity and air pollution index in different land use and how such interactions may vary in different cities in the world. Moreover, this book focuses on different cities in Australia, Austria, Belgium, Brazil, Canada, Cyprus, Greece, Hong Kong, India, Asia, Spain, UK, and USA.
Volume 5 of the 5-volume Quantum Nanochemistry focuses on modeling and predicting of the enzyme kinetics and quantitative structure-activity relationships. It reveals the quantum implications to bio-organic and bio-inorganic systems, to enzyme kinetics, and to pharmacophore binding sites of chemical-biological interaction of molecules through cell membranes in targeting specific bindings modeled by celebrated QSARs (Quantitative Structure-Activity Relationships) here reshaped as Qu-SAR (Quantum Structure-Activity Relationships).
Most investigations of foreign-born migrants emphasize the successful adjustment and settlement of newcomers. Yet suicide, heavy drinking, violence, family separations, and domestic disharmony were but a few of the possible struggles experienced by those who relocated abroad in the nineteenth and twentieth centuries, and were among the chief reasons for committal to an asylum. Significant analysis of this problem, addressing the interconnected issues of migration, ethnicity, and insanity, has to date received little attention from the scholarly community. This international collection examines the difficulties that migrants faced in adjustment abroad, through a focus on migrants and mobile peoples, issues of ethnicity, and the impact of migration on the mental health of refugees. It further extends the migration paradigm beyond patients to incorporate the international exchange of medical ideas and institutional practices, and the recruitment of a medical workforce. These issues are explored through case studies which utilize different social and cultural historical methods, but with a shared twin purpose: to uncover the related histories of migration, ethnicity, and mental health, and to extend existing scholarly frameworks and findings in this under-developed field of inquiry.
This study demonstrates the emergence and development of the identity of the 'military medical officer' and places their work within the broader context of changes to British medicine during the first half of the nineteenth century.
This book gives a comprehensive survey of the epidemiology of common environmental exposures, including diet, water, particulates in outdoor air, nitrogen dioxide, ozone, environmental tobacco smoke, radon in homes, electromagnetic fields, and lead. Design and analysis issues, risk assessment and meta-analysis, and future directions in environmental epidemiology are also covered. All chapters provide a review of the literature as well as a discussion of important methodologic issues, particularly exposure assessment and statistical methods. The book's focus is on environmental exposures that are suspected of causing disease, but often remain controversial. Most of these exposures are widespread and low-level, and are thought to increase the risk of chronic diseases that have many causes. Although the disease risks due to these exposures may be low, the public health burden may be important because large numbers of people are exposed. Such exposures are inherently difficult to detect via observational epidemiology. This book seeks to clarify the challenges involved and suggests ways to move forward. It will be useful to students and practitioners of public health, environmental health, and epidemiology.
Nanotechnology has the potential to play an important role in increasing the sustainability of a wide range of industrial sectors. Nanomaterials could contribute to more sustainable manufacturing through cleaner, less wasteful production processes and can substitute conventional materials, leading to savings in raw materials and energy. Nanotechnology for Sustainable Manufacturing discusses recent progress in the areas of energy and materials efficiency related to resource savings and conservation of raw materials, which are drivers for the application of nanotechnology in the industrial setting. Written by leading experts from Europe, North America, Asia, and Australia, the book provides an innovative perspective by establishing connections between the subject areas associated with nanotechnology and by bridging the academic and industrial research gap. The topics covered include electronics, agrifood, aerospace, pulp and paper manufacturing, batteries, catalysts, solar energy, fuel cells, drinking water, and construction materials. The chapters offer insights into the diverse industries that are currently or likely to be impacted by developments in nanotechnology and nanomaterials. They cover applications such as nanotechnology for alternative energy generation, improving water quality, and novel uses in agriculture and forest products. The book also addresses the use of life-cycle analysis for assessing the sustainability of nanotechnology-based products and processes.
This book gathers 22 papers which were presented at the 6th International Symposium of the ICA Commission on the History of Cartography in Dubrovnik, Croatia on 13-15 October 2016. The overall conference theme was 'The Dissemination of Cartographic Knowledge: Production - Trade - Consumption - Preservation'. The book presents original research by internationally respected authors in the field of historical cartography, offering a significant contribution to the development of this field of study, but also of geography, history and the GIS sciences. The primary target audience includes researchers, educators, postgraduate students, map librarians and archivists.
Renewable fuel research and process development requires interdisciplinary approaches involving chemists and physicists from both scientific and engineering backgrounds. Here is an important volume that emphasizes green chemistry and green engineering principles for sustainable process development from an interdisciplinary point of view. It creates an enriching knowledge base on green chemistry of biofuel production, sustainable process development, and green engineering principles for renewable fuel production. This book includes chapters contributed by both research scientists and research engineers with significant experience in biofuel chemistry and processes. The book offers an abundance of scientific experimental methods and analytical procedures and interpretation of the results that capture the state-of-the-art knowledge in this field. The wide range of topics make this book a valuable resource for academicians, researchers, industrial practitioners and scientists, and engineers in various renewable energy fields. Key features: * Emphasizes green chemistry and green engineering principles for sustainable process development for biofuel production * Discusses a wide array of biofuels from algal biomass to waste-to-energy technologies and wastewater treatment and activated sludge processes * Presents advances and developments in biofuel green chemistry and green engineering, including process intensification (microwaves/ultrasound), ionic liquids, and green catalysis * Looks at environmental assessment and economic impact of biofuel production
Extensive revision of the discussion questions at the end of each chapter to require more critical thinking skills Updates to the environmental data Includes a glossary of important terms An excellent, user friendly and thought-provoking presentation which will appeal to students with little or no science background A qualitative approach to the chemistry behind many of our environmental issues today
Analytical pyrolysis allows scientists to use routine laboratory instrumentation for analyzing complex, opaque, or insoluble samples more effectively than other analytical techniques alone. Analytical Pyrolysis Handbook, Third Edition is a practical guide to the application of pyrolysis techniques to various samples and sample types for a diversity of fields including microbiology, forensic science, industrial research, and environmental analysis. The much-anticipated third edition incorporates recent technological advances that increase the technique's sensitivity to trace elements, improve its reproducibility, and expand its applicability. The book reviews the types of instrumentation available to perform pyrolysis and offers guidance for interfacing instruments and integrating other analytical techniques, including gas chromatography and mass spectrometry. Fully updated with new sample pyrograms, figures, references, and real-world examples, this edition also highlights new areas of application including cultural materials, forensic analysis, and environmental studies. This book illustrates how the latest advances make pyrolysis a practical, cost-effective, reliable, and flexible alternative for increasingly complex sample analyses. Analytical Pyrolysis Handbook, Third Edition is an essential, one-stop guide for determining if pyrolysis meets application-specific needs as well as performing pyrolysis and handling the data obtained.
This book presents an integrated discussion on ecotoxicology, containing both general concepts and specific ecotoxicological issues of major biological groups, extending beyond conventional systems. It explores worldwide, regional, and biocompartmentalized topics, bringing forth new points of view on global issues and addressing the increasing diversity and complexity of the ecotoxicological field. It also contains novel information on emerging contaminants, presents bioaccumulation effects on different levels of ecological organization and risk analyses, and discusses novel fields of methodological applications, including key aspects in ecotoxicological and environmental monitoring studies.
Sustainable Catalysis in Ionic Liquids provides an up-to-date overview of the relatively underexplored area of the use of room temperature ionic liquids as organocatalysts for a range of organic reactions, including polymerizations. Using organic molecules to promote reactions is an attractive option as these organic molecules can be safer than metal-based options. However, it is still important to be able to recycle and reuse these organic promoters. Ionic liquids provide this opportunity.
The health-related effects of asbestos have long been mired in controversy, with industry and plaintiff attorneys playing a significant role. This comprehensive book provides a balanced and extensive evidence-based critical analysis of the literature concerning asbestos-related diseases, from a scientific and historical perspective. The book presents a carefully referenced review of the medical literature on the health effects of asbestos, and reflects the extensive experience of the author in evaluating patients with asbestos-related disorders.
Carbon nanomaterials possess special physical and chemical properties. As adsorbents, they are widely used for the purification of water and other liquids, recovery of valuable substances from liquid and gaseous media, and oil refining and also in petrochemical, wine, oil and fat, and other industries. They can be used in medicine, both for the creation of hemosorption systems that are capable of performing specific purification of blood and other physiological fluids, including removal of various exo- and endotoxicants, and for the construction of highly effective adsorbed probiotics. The creation of nanostructured carbon-containing materials is one of many rapidly developing research fields and also the theme of this book. The book focuses on the recent developments in the synthesis of nanostructured carbon multifunctional sorbents and covers topics such as fusicoccin compounds as anticancer agents, entero- and vulnerosorption, and blood purification. It will be useful for scientists, chemical industry specialists, professors, and master's and PhD students of chemical, physical, and biological sciences.
Over the last few decades, unprecedented global population growth has led to increased demand for food and shelter. At the same time, extraction of natural resources beyond the Earth's resilience capacity has had a devastating effect on ecosystems and environmental health. Furthermore, climate change is having a significant impact in a number of areas, including the global hydrological cycle, ecosystem functioning, coastal vulnerability, forest ecology, food security, and agricultural sustainability. According to the Intergovernmental Panel on Climate Change (IPCC), only immediate and sustained action will prevent climate change causing irreversible and potentially catastrophic damage to our environment. This book presents various scientific views and concepts, research, reviews, and case studies on contemporary environmental issues in changing climate scenarios and highlights different adaptation measures. Increasing awareness of modern-day patterns of climate change, it addresses questions often raised by environmental scientists, researchers, policymakers and general readers.
This book aims to give a contribution to a more comprehensive and interdisciplinary understanding of the cross-cutting issues on energy, environment and health research topics in the current world scenario, where nations all over the world are struggling to accomplish the United Nations Sustainable Development Goals and to ensure sustainable patterns for all. This interdisciplinary implies a commitment between all fields of science, working together to provide knowledge that could result in the promotion of quality of life. At the present, it is evident that not all people benefit from sustainable policies and practices and the communication between health, energy, environmental and social problems is undeniable. A call for different views could be a pathway attracting universities, stakeholders, organizations and civil society to deeply discuss how one solution does not fit all societies. Few publications are coherently handling this matter. This book is expected to fill this gap and to develop an interest in a larger audience working in general sustainable development and cross-cutting issues. This book is produced by the European School of Sustainability Science and Research (ESSSR). It gives special emphasis to state-of-the-art descriptions of approaches, methods, initiatives and projects from universities, stakeholders, organizations and civil society across the world, regarding cross-cutting issues in energy, environment and health research.
Global climate change threatens human existence through its potential impact on agriculture and the environment. Agriculture is climate-sensitive, and climate variability and climate change have net negative impact on it. Additionally, the agricultural landscape is affected by monoculture and agro-biodiversity loss, soil fertility depletion and soil loss, competition from biofuel production, crop yield plateaus and invasive species. Nevertheless, the global agricultural production system has to meet the food demands from the growing human population, which is set to exceed 10 billion by 2050. This book discusses the impacts of climate change on agriculture, animal husbandry and rural livelihoods. Further, since agriculture, forestry and other land-use sectors contribute about 10-12 gigatonnes of CO2-equivalent per year, it argues that agricultural policy must dovetail adaptation and mitigation strategies to reduce greenhouse gases emissions. This calls for a reformative and disruptive agricultural strategy like climate-smart agriculture, which can operate at all spatio-temporal scales with few modifications. The book also redefines sustainable agriculture through the lens of climate-smart agriculture in the context of the sustainability of Earth's life- support system and inter- and intra-generational equity. The climate-smart agriculture approach is gaining currency thanks to its inherent positive potential, and its goal to establish an agricultural system which includes "climate-smart food systems", "climate-proof farms", and "climate-smart soils". Climate-smart agriculture provides a pathway to achieve sustainable development goals which focus on poverty reduction, food security, and environmental health.
Details Thomas Trotter's important contributions, as a naval surgeon and after, to the eradication of scurvy and typhus, to the study of addiction, and to improved health and safety in mines. Thomas Trotter, after studying medicine at Edinburgh, began his naval career as a surgeon's mate in 1779 and saw continuous service up to the peace of 1802, rising as a result of great abilities and the right patronage to become Physician to the Channel Fleet, and being present at the great battles of Dogger Bank in 1781 and the Glorious First of June in 1794. As Physician to the Channel Fleet, he was a major player in the conquest of scurvy and the control of typhus and smallpox in the navy. After the peace he settled in Newcastle where he produced pioneering work on alcoholism and neurosis, as a result of which he is regarded as one of the founders of the field of addiction studies. This book provides an intimate account of naval life in the great age of sail from the perspective of a surgeon, describing the impact of Enlightenment ideas and new medical techniques, and showing how improved health was a crucial factor in making possible the British fleet's great victories in this period. BRIAN VALE is a maritime historian, whose books include Independence or Death: British sailors and Brazilian Independence (Tauris 1996), A Frigate of King George, Life and Duty on a British Man-of-War (Tauris 2001) and The Audacious Admiral Cochrane (Conway 2004). GRIFFITH EDWARDS, Emeritus Professor at King's College, London, is one of the country's leading experts on addiction. His publications include Alchohol: the Ambiguous Molecule (Penguin 2000) and Matters of Substance (Penguin 2005).
It is necessary to perform an accurate and complete characterization of the solid pollutants in air and especially to discuss the analytical data obtained by taking into account the physio-chemical and technological data available concerning the origin, transformation, and the effects of dust. This synoptic approach, which is known as SISintegrated dust analysis is the underlying concept of this book.
Instrumentation for Trace Organic Monitoring provides comprehensive coverage of instrumental analysis techniques for trace organic analytes in environmental analysis. Sampling/sample preparation is discussed, in addition to mass spectrometry techniques, including GC-MS, HRMS, LCMS, APIMS, and MS-MS. This important book also covers new chromatography techniques, supercritical fluid, solid-phase extraction, and ion mobility spectrometry, which is a new ultra-sensitive technique. Difficult problems, such as dioxin/furan analysis, organometallic speciation, atmospheric organic vapors, water analysis, and flyash toxicity testing are addressed.
This book represents the first comprehensive reference volume available on subsurface transport and fate processes. The volume is organized into four sections covering the basics of contaminant properties and how they affect transport and fate, the fundamental processes affecting subsurface transport and fate of contaminants, applications of transport and fate information to various contaminant types, and utilization of transport and fate information for predicting contaminant behavior. Specific topics such as traditional hydrodynamic processes of advection and dispersion, facilitated transport and contaminant flushing, and individual ground water contaminants are also explored in detail. Subsurface Transport and Fate Processes is ideal for environmental and ground water consultants, regulatory agency personnel, and educators in geology, hydrogeology, civil engineering, and environmental engineering. |
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