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  • 1
    Keywords: Conservation biology. ; Ecology . ; Environment. ; Biotechnology. ; Pollution. ; Earth sciences. ; Geography. ; Conservation Biology. ; Environmental Sciences. ; Biotechnology. ; Pollution. ; Earth and Environmental Sciences.
    Description / Table of Contents: Preface -- Concerns and Threats of Heavy Metals Contamination on Aquatic Ecosystem -- Pollution in Aquatic Environs: Sources and consequences -- A Recent Scenario of Groundwater Quality in Northwest Himalaya, India -- Polycyclic aromatic hydrocarbons: Toxic Effects and their Bioremediation Strategies -- Mechanisms and importance of phytoremediation -- Role of Soil Biota and Associated Threats -- Viability of in-situ and ex-situ bioremediation approaches for degradation of noxious substances in stressed environs -- Bioremediation: A viable approach for degradation of petroleum hydrocarbon -- Application of macrophytes for remediation of wastewater in constructed wetlands -- Application of Biotechnology for restoration of degraded environs -- Role of Free Floating Aquatic Macrophytes in abatement of the disturbed Environs -- Genetically Modified Microbes as Biofertilizers -- Nanotechnology: A Modern Waste management approach -- Restoration of Heavy Metal Contaminated Environs through Ectomycorrhizal Symbiosis -- Index.
    Abstract: The rapid thriving of industries, conversion of agricultural land to residential areas, habitat destruction, deforestation and use of recalcitrant synthetic substances enhanced the rate of degradation of the environment. Although there are various conventional techniques for degradation and cleaning of noxious pollutants from disturbed environs, they are energy inefficient and costly to install. Bioremediation has emerged recently as an alternative and novel approach to manage and control environmental pollutants. This volume focuses explicitly on the remediation of noxious substances in stressed environs. It includes expert-contributed chapters on bio-monitoring by way of evaluating the relationship of biota with the polluted/stressed environs, sustainable plant-based degradation of noxious pollutants, and the application of biotechnologies to achieve tailored responses. Academicians, researchers, scientists and students will find this work essential for sustainable treatment of noxious pollutants. This book also serves as a core guide for training, teaching and research in conservation biology and environmental rehabilitation.
    Type of Medium: Online Resource
    Pages: XX, 340 p. 41 illus., 28 illus. in color. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9783030486907
    DDC: 333.9516
    Language: English
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  • 2
    Keywords: Evolution (Biology). ; Environment. ; History. ; Conservation biology. ; Ecology . ; Ethics. ; Environmental sciences Social aspects. ; Evolutionary Biology. ; Environmental Sciences. ; History. ; Conservation Biology. ; Moral Philosophy and Applied Ethics. ; Environmental Social Sciences.
    Description / Table of Contents: Part I. Biology and Culture -- Chapter 1. Speciesism in Biology and Culture: How Human Exceptionalism is Pushing Planetary Boundaries -- Chapter 2. Race and Human Genomic Variation -- Chapter 3. Science Without Species: Doing Science With Tree-Thinking -- Part II. Culture and History -- Chapter 4. The Colonization of Islands as Microcosms for Human Impacts on an Interplanetary Scale -- Chapter 5. Species, God, and Dominion -- Chapter 6. Symbols and How We Came to be Human -- Part III. Conservation and Law -- Chapter 7. Law and Nature: Human, Nonhuman, and Ecosystem Rights -- Chapter 8. A Phylogenetic Approach to Conservation: Biodiversity and Ecosystem Functioning for a Changing Globe -- Part IV. Sustainability and the Future -- Chapter 9. Energy and Society: Toward a Sustainable Future.
    Abstract: This open access book explores a wide-ranging discussion about the sociopolitical, cultural, and scientific ramifications of speciesism and world views that derive from it. In this light, it integrates subjects across the natural sciences, social sciences, and humanities. The 21st-century western world is anthropocentric to an extreme; we adopt unreasonably self-centered and self-serving ideas and lifestyles. Americans consume more energy resources per person than most other nations on Earth and have little concept of how human ecology and population biology interface with global sustainability. We draw upon religion, popular culture, politics, and technology to justify our views and actions, yet remain self-centered because our considerations rarely extend beyond our immediate interests. Stepping upward on the hierarchy from “racism,” “speciesism” likewise refers to the view that unique natural kinds (species) exist and are an important structural element of biodiversity. This ideology manifests in the cultural idea that humans are distinct from and intrinsically superior to other forms of life. It further carries a plurality of implications for how we perceive ourselves in relation to nature, how we view Judeo-Christian religions and their tenets, how we respond to scientific data about social problems such as climate change, and how willing we are to change our actions in the face of evidence. .
    Type of Medium: Online Resource
    Pages: XVI, 203 p. 28 illus., 20 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783030990312
    DDC: 576.8
    Language: English
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  • 3
    Keywords: Plant physiology. ; Botanical chemistry. ; Cytology. ; Environment. ; Environmental engineering. ; Biotechnology. ; Bioremediation. ; Plant Physiology. ; Plant Biochemistry. ; Cell Biology. ; Environmental Sciences. ; Environmental Engineering/Biotechnology.
    Description / Table of Contents: Chapter 1. Introduction -- PART I: Photosynthesis and Biomass Production under Changing World -- Chapter 2. Climate Change: Challenges to Reduce Global Warming and Role of Biofuels -- Chapter 3. The multifaceted connections between photosynthesis and mitochondrial metabolism -- Chapter 4. Regulation of assimilatory processes and distribution of energy for improved productivity -- Chapter 5. Strategies to enhance photosynthesis for the improvement of crop yields -- Chapter 6. Photosynthetic Acclimation and Adaptation to Cold Ecosystems -- Chapter 7. What is the limiting factor? – The key question for grain yield of maize as a renewable resource under salt stress -- PART II: Microalgae and engineered crops for production of biofuels and high-value products -- Chapter 8. Bio-production from microalgal resources -- Chapter 9. Hydrogen photoproduction in green algae: novel insights and future perspectives -- Chapter 10. Synthetic Biofuels and Green-House Gas Mitigation -- Chapter 11. Synthetic biology and future production of biofuels and high-value products -- PART III: Genetic resources and engineering methods to improve crop plants -- Chapter 12. Kinetics, genetics and heterosis -- Chapter 13. Genome information resources to improve plant biomass productivity -- Chapter 14. RNA interference: formproving traits and disease management in plants -- Chapter 15. Current transformation methods for genome editing applications in energy crop sugarcane -- Chapter 16. Development of transgenic sugarcane for insect resistance -- Chapter 17. Rapid Agrobacterium-mediated transformation of tobacco cotyledons using toothpicks Yuan-Yeu Yau, Mona Easterling and Lindsey Brennan -- Chapter 18. Genetic improvement of Jatropha curcas through conventional and biotechnological tools -- Chapter 19. Plant cell manipulation technology for bio-refinery. .
    Abstract: The use of fossil fuels results in rising CO2 and other greenhouse gas (GHG) emissions, causing global temperature rise and climate change that will negatively impact human health, the food supply, and eventually worsen hunger and misery. Presently, fossil fuels meet 88% of the energy demand, resulting in rising CO2/GHG emissions at alarming rates. The increased use of biofuels would help to mitigate climate change. Efficiently designing methods for the production of biofuels and plant-derived high-value products requires a deeper understanding of photosynthetic processes as a prerequisite for applying novel biotechnologies. Accordingly, this book provides ample information and a wealth of illustrative examples. The book’s eighteen richly illustrated chapters are divided into three thematic parts. I: Photosynthesis and Biomass Production under Changing Conditions, II: Microalgae and Engineered Crops for Production of Biofuels and High-value Products, and III: Genetic Resources and Engineering Methods to Improve Crop Plants. Readers will find the latest information on the molecular basis of photosynthetic processes in plants (including the regulatory principles that allow plants to maintain homeostasis under changing conditions), stress resistance and synthetic pathways. In addition, the basic principles of important biotechnologies, as well as examples of specially designed crops capable of growing under stress conditions with improved productivity, are presented. The book sets the course for future research in the field of biofuel development and production and provides both general and specific information for students, teachers, academic researchers, industrial teams, and general readers who are interested in new developments concerning the production of biofuels with value-added properties.
    Type of Medium: Online Resource
    Pages: XXVII, 490 p. 142 illus., 99 illus. in color. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9789811552281
    DDC: 571.2
    Language: English
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  • 4
    Keywords: Freshwater ecology. ; Marine ecology. ; Conservation biology. ; Ecology . ; Geography. ; Environment. ; Power resources. ; Freshwater and Marine Ecology. ; Conservation Biology. ; Regional Geography. ; Environmental Sciences. ; Natural Resource and Energy Economics.
    Description / Table of Contents: Intro: Navigating Patagonian freshwaters- and this book -- 1: Are freshwaters wetlands? -- 2: Patagonian Andean lakes and climate change -- 3: Current state and recent changes of glaciers in the Patagonian Andes (35 °S to 55°S) -- 4: Biogeographical patterns of Patagonian freshwater microbiota -- 5: Extreme freshwater ecosystems from Patagonia: The Copahue-Agrio system -- 6: Mercury in aquatic systems of North Patagonia: sources, processes and trophic transfer -- 7: Diversity patterns across aquatic communities from peat bogs -- 8: Hydrologic Systems, water uses and emerging conflicts around freshwater availability in Patagonia -- 9: Land-use effects on aquatic ecosystems: An overview of environmental impacts and tools for ecological assessment -- 10: Patagonian wetlands: vertientes, vegas, mallines,turberas and lagunas -- 11: Fish and fisheries of the Patagonian steppe -- 12: Invasive species: The case of Didymosphenia geminata in Neuquén Province -- 13: Influence of the fish introduction in lakes of the arid Patagonia -- 14: Patagonian cultural limnology: knowledge and water management in Mapuche rural communities -- 15: Political Ecology, water valoration and Water Law deliberation in the Province of Tierra del Nacional de Tierra del Fuego -- 16: Freshwater systems in protected areas in Patagonia -- 17: Amphibians and waterbirds as bridges to conserve aquatic and terrestrial habitat in Patagonia -- 18: Integrated long term conservation strategies to recover the critically endangered Hooded Grebe (Podiceps gallardoi),an endemic waterbird of Austral Patagonia -- Conclusion: Reaching out for the UNDP Sustainable Development Goals in Patagonia.
    Abstract: The Freshwaters of Patagonia adopts a socioecological approach, in which experts from across Patagonia review recent, scientifically rigorous literature and data of their own, thus synthesizing the current knowledge directly relevant to understand the present state and future trends of icefields, freshwater and wetland ecosystems in this region. The book’s organization into three parts provides a studied and comprehensive view on the patterns and processes of the various ecosystems in Patagonia, and describes the sociological aspects of freshwater ecosystems, as well as characterizes the conservation of the freshwater and wetland ecosystems, in Patagonia. The chapters offer a broad, state-of-the-art overview of the current status of glaciers, freshwater and wetland ecosystems of this region, as well as studies of both local and large scale biodiversity patterns, and study cases of extreme and naturally polluted environments.The volume concludes with the current status of Patagonian freshwaters, and discusses the scientific, legal and administrative tools aimed at their sustainable management within the framework of the UNEP Sustainable Development Goals 2030 Agenda. A broad audience of students, scientists, engineers, environmental managers, and policy makers will be interested in this volume.
    Type of Medium: Online Resource
    Pages: XI, 541 p. 104 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783031100277
    Series Statement: Natural and Social Sciences of Patagonia,
    DDC: 577.6
    Language: English
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  • 5
    Online Resource
    Online Resource
    Singapore :Springer Nature Singapore :
    Keywords: Microbial ecology. ; Biotechnology. ; Environment. ; Industrial microbiology. ; Bacteria. ; Microbial Ecology. ; Biotechnology. ; Environmental Sciences. ; Industrial Microbiology. ; Bacteria.
    Description / Table of Contents: Part 1. Climate Change and Microbial Ecology -- Chapter 1. Microbes and Climate: A tangled relation -- Chapter 2. Carbon sequestration in aquatic system using Microbial pump -- Chapter 3. Climate change extenuation by green house gas quenching microflora -- Chapter 4. Role of Methanotrophs in Mitigating Global Warming -- Chapter 5. Paradigm Ecological Shift and Succession in Microbiomes – A Climatic Advent -- Chapter 6. Exploring the diversity of marine microbiome in response to changes in the environment -- Chapter 7. Polar microbes as climate resilient pathways for mitigation of climate change -- Part 2. Climate Change and pathogens -- Chapter 8. Climate change and population health -- Chapter 9. Impact of Climate Change on the Incidence and Transfer of Food and Water borne Diseases -- Chapter 10. Climate change: any dangers from antimicrobial resistant bacteria? -- Chapter 11. Phyllosphere Microbiome: Plant defense strategies -- Part 3. Climate Change and Agriculture -- Chapter Chapter 12. Understanding Methanogens, Methanotrophs and Methane Emission in Rice Ecosystem -- Chapter 13. Soil micro-flora and its role in diminution of global climate change -- Chapter 14. Role of microorganisms in plant adaptation towards climate change for sustainable agriculture -- Chapter 15. Novel approaches for genome editing to develop climate smart crops -- Part 4. Climate change and the Environmental Microbiology -- Chapter 16. Role of soil microbial flora in remediation of hydrocarbon stressed soils -- Chapter 17. Biosurfactant Producing Bacteria as Potent Scavengers of Petroleum Hydrocarbons -- Chapter 18. Potent biotechnological applications of psychrozymes -- Chapter 19. Role of Green Nanotechnology in Alleviating Climate Change.
    Abstract: This book covers the contemporary environmental issues faced by life on the planet and the role planetary microbiomes play in such issues. Providing insights on the net favorable and adverse effect of microbial processes, this volume covers both the spontaneous and anthropocentric events that impact climate change and life on the planet. The book describes the ecological significance of microbiomes associated with the kingdoms Plantae and Animalia with respect to climate change, natural and anthropogenic causes of climate change, microbial interactions in nature, planetary microbiomes and food security, climate change in relation to disease epidemiology and human health and engineering microorganisms to mitigate the consequences of climate change. The individual chapters in the intended book provide both theoretical and practical exposure to the current issues and future challenges of climate change in relation to the microbiomes. This collection should serve as ready reference to the researchers working in the area to reshape their future research in addressing the challenges of global climate change.
    Type of Medium: Online Resource
    Pages: XIII, 374 p. 41 illus., 33 illus. in color. , online resource.
    Edition: 1st ed. 2021.
    ISBN: 9789813345089
    DDC: 579.17
    Language: English
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  • 6
    Online Resource
    Online Resource
    Singapore :Springer Nature Singapore :
    Keywords: Ecology . ; Environmental sciences Mathematics. ; Environment. ; Conservation biology. ; Statistics . ; Ecology. ; Mathematical Applications in Environmental Science. ; Environmental Sciences. ; Conservation Biology. ; Statistics.
    Description / Table of Contents: 0. Introduction - Ecologist in Wonderland -- Part 1. Linking Ecotoxicology and Ecology -- Chapter 1. Basic Concepts of Ecological Risk Assessment -- Chapter 2. Population-level assessment -- Chapter 3. Population models of extinction -- Chapter 4. Population level assessment using the canonical model -- Part 2. Models for ecotoxicology -- Chapter 5. Species Sensitivity Distribution in Ecological Risk Assessment -- Chapter 6. BLM: A model for predicting metal toxicities -- Chapter 7.Mathematical models for chemical mixtures -- Chapter 8.Statistics and related topics.
    Abstract: This book introduces various mathematical models used in ecological risk assessment, primarily discussing models used in hazard assessment. The book aims to link ecology and conservation biology with risk assessments, bringing together the knowledge of ecotoxicology and ecology for effective risk assessment. The first part describes population-level assessment in ecological risk assessment. The chapters cover current methodologies for ecological risk assessment, individual-level assessment, population dynamics models for population-level assessment, case studies, mathematical models for population extinctions, the derivation of mean time to extinction (MTE) and their case studies. The second part of the book discusses the mathematical models involved in hazard assessments. It introduces the method of risk assessment using species sensitivity distributions (SSDs), hazard assessment of metals, chemical mixtures using the Michaelis-Menten equation, basic elements of statistics and related topics. Expected readers are risk assessors in governments and public sectors, students and young researchers interested in environmental science. The book is made accessible and easy to follow by beginners in mathematical biology and theoretical ecology.
    Type of Medium: Online Resource
    Pages: XIV, 202 p. 90 illus. , online resource.
    Edition: 1st ed. 2023.
    ISBN: 9789819903092
    Series Statement: Theoretical Biology,
    DDC: 577
    Language: English
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  • 7
    Keywords: Zoology. ; Environment. ; Bioinformatics. ; Ecology . ; Biodiversity. ; Physical geography. ; Zoology. ; Environmental Sciences. ; Computational and Systems Biology. ; Ecology. ; Biodiversity. ; Earth System Sciences.
    Description / Table of Contents: Introduction -- Historical review of research on Arctic and Subarctic Aleocharinae -- Material and methods -- Impact of climate change on northern fauna and flora -- Aleocharinae as indicators of change -- Faunal analysis and discussion -- Key to tribes occurring in Arctic and Subarctic zones -- Tribe Gymnusini Heer, 1839 -- Tribe Aleocharini Fleming, 1821 -- Tribe Oxypodini C.G. Thomson, 1859 -- Tribe Tachyusini C.G. Thomson, 1859 -- Tribe Hypocyphtini Laporte, 1835 -- Tribe Myllaenini Ganglbauer, 1895 -- Tribe Liparocephalini Fenyes, 1918 -- Tribe Homalotini Heer, 1839 -- Tribe Placusini Mulsant and Rey, 1871 -- Tribe Athetini Casey, 1910 -- Tribe Falagriini Mulsant and Rey, 1873.
    Abstract: Arctic and Subarctic North America is particularly affected by climate change, where average temperatures are rising three times faster than the global average. Documenting the changing climate/environment of the north requires a structured knowledge of indicator taxa that reflect the effects of climate changes. Aleocharine beetles are a dominant group of forest insects, which are being used in many projects as indicators of environmental change. Many species are forest specialists restricted to certain microhabitats, some are generalists and others are open habitat specialists. They represent many ecological niches and, as such, are good indicators for many other species as well. The majority of Canadian aleocharine beetle species (about 600 spp.) has been studied and published by Jan Klimaszewski et al. (2018, 2020), mainly from southern, central, and western Canada, while the northern taxa remain poorly known and documented. The aim of the present book is to summarize the knowledge on this insect group in the Arctic and Subarctic North America and to provide a diagnostic and ecological tool for scientists studying and monitoring insects in northern Canada and Alaska. The book includes a review of the literature, information on 238 species and their habitats, taxonomic review, images, and identification tools.
    Type of Medium: Online Resource
    Pages: XIV, 712 p. 315 illus., 307 illus. in color. , online resource.
    Edition: 1st ed. 2021.
    ISBN: 9783030681913
    DDC: 590
    Language: English
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  • 8
    Keywords: Agriculture. ; Environment. ; Plant genetics. ; Agriculture. ; Environmental Sciences. ; Plant Genetics.
    Description / Table of Contents: Chapter 1 Advances in research trends in vegetables under a changing climate: A way forward -- Chapter 2 Emerging obstacles of vegetable production due to climate change and mitigation strategies -- Chapter 3 Impact of climate change on nutraceutical properties of vegetables -- Chapter 4 Nutritional stress management in vegetable crops under changing climate scenario -- Chapter 5 Impact of climate change on tuber crops production and mitigation strategies -- Chapter 6 Impact of climate change on leafy vegetables and mitigation strategies -- Chapter 7 Impact of climate change on perennial vegetable production and mitigation strategies -- Chapter 8 Impact of climate change on vegetables seed production and mitigation strategies -- Chapter 9 Protected cultivation of high-value vegetables crop under changing climate -- Chapter 10 Impact of climate change on underexploited vegetable crops production and mitigation strategies -- Chapter 11 Improvement of vegetables through grafting techniques in changing climate scenario -- Chapter 12 Improvement of vegetables through molecular breeding in changing climate scenario -- Chapter 13 Kitchen gardening for nutritional security under changing climate -- Chapter 14 Emerging insect-pests of vegetables due to changing climate -- Chapter 15 Emerging diseases of vegetables due to changing climate -- Chapter 16 Impact of climate change on postharvest quality of vegetables.
    Abstract: This second volume on the topic will be extremely useful for the researchers and postgraduate students working on vegetable crops with a special focus on climate change. Today, the entire world is suffering from global warming and its consequent, climate change. This has emerged as the most prominent global environmental issue and there is an urgent need to mitigate its impact on agriculture. Over the past 20 years South Asia has had a robust economic growth, yet it is home to more than one fourth of the world’s hunger and 40% of the world’s malnourished children and women. Persistent climatic variability, which results in frequent drought and flood, is among the major reasons for this phenomenon. Vegetables are in general more succulent (have 90% water) and more sensitive to climatic vagaries and sudden changes in temperature, as well as irregular precipitation at any phase of crop growing, can affect the normal growth, flowering, pollination, fruit setting, fruit development and fruit ripening which eventually decreases the yield. The irregular precipitation also causes the soil salinity and is a major challenge in many vegetable growing areas. To mitigate the harmful impact of climatic change there is an urgent need to develop adequate adaptation strategies for adverse effect of climate change and preference should be given to the development of heat, cold, drought, flood and salinity stress tolerant genotypes along with climate proofing through conventional and non-conventional breeding techniques, as well as exploiting the beneficial effects of CO2 enhancement on crop growth and yield. Available evidence shows that there is high probability of increase in the frequency and intensity of climate related natural hazards due to climate change and hence increase the potential threat due to climate change related natural disasters in the world. At present protected cultivation and grafted seedlings are also popularizing among vegetable growers because of the huge scope as well as, molecular breeding, emerging insect-pests & diseases and postharvest quality of vegetables under this climate change scenario. Moreover, underexploited vegetables, perennial vegetable and tuber crops have a more tolerant ability to climate vagaries compare to major vegetables which are also discussed in this book.
    Type of Medium: Online Resource
    Pages: XVII, 369 p. 1 illus. , online resource.
    Edition: 1st ed. 2023.
    ISBN: 9783031208409
    Series Statement: Advances in Olericulture,
    DDC: 630
    Language: English
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  • 9
    Keywords: Biotechnology. ; Environment. ; Renewable energy sources. ; Cogeneration of electric power and heat. ; Fossil fuels. ; Biotechnology. ; Environmental Sciences. ; Renewable Energy. ; Fossil Fuel.
    Description / Table of Contents: Chapter 1. Growth of Biofuels Sector: Opportunities, Challenges and Outlook -- Chapter 2. Bioconversion of Agro-Industrial Residues to Second-Generation Bioethanol -- Chapter 3. Catalytic Transformation of Ethanol to Industrially Relevant Fine Chemicals -- Chapter 4. Selective Bioethanol Conversion to Chemicals and Fuels via Advanced Catalytic Approaches -- Chapter 5. A Spotlight on Butanol and Propanol as Next-Generation Synthetic Fuels -- Chapter 6. Technological Advancements in the Production and Application of Biomethanol -- Chapter 7. Biorefinery Approaches for Production of Fuels and Chemicals from Lignocellulosic and Algal Feedstocks -- Chapter 8. Conversion of Rice Husk and Nutshells into Gaseous, Liquid and Solid Biofuels -- Chapter 9. A Review of Thermochemical and Biochemical Conversion of Miscanthus to Biofuels -- Chapter 10. Process Improvements and Techno-Economic Feasibility of Hydrothermal Liquefaction and Pyrolysis of Biomass for Bio-Crude Oil Production -- Chapter 11. Biocrude Oil Production via Hydrothermal Liquefaction of Algae and Upgradation Techniques to Liquid Transportation Fuels -- Chapter 12. Co-pyrolysis of Lignocellulosic Biomass and Polymeric Wastes for Liquid Oil Production -- Chapter 13. Conversion of Waste Biomass to Bio-oils and Upgradation by Hydrothermal Liquefaction, Gasification and Hydrodeoxygenation -- Chapter 14. Upgrading of Bio-oil from Biomass Pyrolysis: Current Status and Future Development -- Chapter 15. Heterogeneous catalysis in Hydroxymethylfurfural Conversion to Fuels and Chemicals -- Chapter 16. Conversion of Glycerol to Value-added Products -- Chapter 17. Recent Advances in Steam Reforming of Glycerol for Syngas Production -- Chapter 18. Conversion of Biogas to Syngas via Catalytic Carbon Dioxide Reforming Reaction: An Overview of Thermodynamic Aspects, Catalytic Design and Reaction Kinetics -- Chapter 19. Opportunities of Biodiesel Compatibility as a Modern Combustion Engine Fuel -- Chapter 20. Current Advancements in Microbial Fuel Cell Technologies.
    Abstract: This book summarizes recent advances in the processing of waste biomass resources to produce biofuels and biochemicals. Worldwide interest in clean energy sources, environmental protection, and mitigating global warming is rapidly gaining momentum and spurring on the search for alternative energy sources, especially for the transportation and industrial sectors. This book reviews the opportunities presented by low-cost organic waste materials, discussing their suitability for alternative fuel and fine chemical production, physicochemical characterization, conversion technologies, feedstock and fuel chemistry, refining technologies, fuel upgrading, residue management, and the circular economy. In addition, it explores applied aspects of biomass conversion by highlighting several significant thermochemical, hydrothermal and biological technologies. In summary, the book offers comprehensive and representative descriptions of key fuel processing technologies, energy conversion and management, waste valorization, eco-friendly waste remediation, biomass supply chain, lifecycle assessment, techno-economic analysis and the circular bioeconomy.
    Type of Medium: Online Resource
    Pages: XVIII, 494 p. 111 illus., 63 illus. in color. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9789811518041
    DDC: 660.6
    Language: English
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  • 10
    Online Resource
    Online Resource
    Singapore :Springer Nature Singapore :
    Keywords: Ecology . ; Forestry. ; Plant ecology. ; Biotic communities. ; Environment. ; Ecology. ; Forestry. ; Plant Ecology. ; Ecosystems. ; Environmental Sciences.
    Description / Table of Contents: Part I. Introduction -- Chapter 1. The Ooyamazawa Riparian Forest: Introduction and Overview -- Part II. Life History and Regeneration Processes of Riparian Woody Species.-Chapter 2. Fraxinus platypoda -- Chapter 3. Pterocarya rhoifolia -- Chapter 4. Cercidiphyllum japonicum -- Chapter 5. Acer Tree Species -- Part III. Diversity and Coexistence in Riparian Forests -- Chapter 6. Diversity of Herbaceous Plants in the Ooyamazawa Riparian Forest -- Chapter 7. Coexistence of Tree Canopy Species -- Part IV. Ecosystem Changes in Riparian Forests -- Chapter 8. Changes in Forest Floor Vegetation -- Chapter 9. Temporal Changes in Browsing Damage by Sika Deer in a Natural Riparian Forest in Central Japan -- Chapter 10. Characteristics and Temporal Trends of a Ground Beetle (Coleoptera: Carabidae) Community in Ooyamazawa Riparian Forest -- Chapter 11. Avifauna at Ooyamazawa: Decline of Birds that Forage in Bushy Understories -- Part V. Conclusion -- Chapter 12. General Conclusion. .
    Abstract: This open access book presents and analyzes the results of more than 30 years of long-term ecological research in riparian forest ecosystems with the aim of casting light on changes in the dynamics of riparian forests over time. The research, focusing on the Ooyamazawa riparian forest, one of the remaining old-growth forests in Japan, has yielded a number of interesting outcomes. First, it shows that large-scale disturbances afford various trees opportunities for regeneration and are thus the driving force for the coexistence of canopy trees in riparian forests. Second, it identifies changes in reproductive patterns, highlighting that seed production has in fact quantitatively increased over the past two decades. Third, it describes the decline in forest floor vegetation caused by deer grazing and reveals how this decline has affected bird and insect populations. The book illustrates the interconnectedness of phenomena within an ecosystem and the resultant potential for cascade effects and also stresses the need for long-term ecological studies of climate change impacts on forests. It will be of interest to both professionals and academics in the field of forest science. .
    Type of Medium: Online Resource
    Pages: VIII, 234 p. 173 illus., 65 illus. in color. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9789811530098
    Series Statement: Ecological Research Monographs,
    DDC: 577
    Language: English
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