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  • 1
    Keywords: Agriculture. ; Refuse and refuse disposal. ; Environmental management. ; Environmental policy. ; Sociology. ; Agriculture. ; Waste Management/Waste Technology. ; Environmental Management. ; Environmental Policy. ; Sociology.
    Description / Table of Contents: 1. Introduction -- 2. Composting as a Municipal Solid Waste Management Strategy: Lessons Learned from Cajicá, Colombia -- 3. Composting: a Sustainable Route for Processing of Biodegradable Wastes in India -- 4. Composting in Sri Lanka: Policies, Practices, Challenges, and Emerging Concerns -- 5. Valuing Wastes – a Multi-Method Analysis of the Use of Household Refuses from Cooking and Sanitation for Soil Fertility Management in Tanzanian Smallholdings -- 6. Urban Waste as a Resource: the Case of the Utilization of Organic Waste to Improve Agriculture Productivity Project in Accra, Ghana -- 7. Organic Waste Composting at Versalles: an Alternative that Contributes to the Economic, Social and Environmental Well-Being of Stakeholders -- 8. Traditional and Adapted Composting Practices Applied in Smallholder Banana-Coffee-Based Farming Systems: Case Studies from Kagera and Morogoro Regions, Tanzania -- 9. Co-composting: an Opportunity to Produce Compost with Designated Tailor-Made Properties -- 10. Biochar-Compost Mixtures as Promising Solution to Organic Waste Management Within a Circular Holistic Approach.
    Abstract: Organic waste composting is another excellent example to demonstrate the power and the benefits of nexus thinking. Even though organic waste composting itself is not a new topic, those who want to start a new project or align an ongoing project with nexus thinking, find it difficult to gather the necessary information. With nine case studies from four continents, this book aims to fill above gap in literature. While current literature on composting is often found to be limited to either soil/agriculture sector or waste management sector, this book presents a combined point of view. This open access book starts with an introductory chapter that describes the need to bring the waste management aspects and soil nutrient management aspects of compost production into one integrated theme. The relevance of nexus thinking and the Sustainable Development Goals (SDGs) are also presented in this introduction. The first three chapters after the introduction covers composting from the solid waste management and its policy aspects, taking examples from three developing countries. The next three examples are mostly about the benefits composting can provide to the soil and agriculture. These examples are also from three developing countries, but with a mixture of urban as well as rural settings. Last three chapters present more insight into the latest developments taking examples from Europe, as well as new methods adapted from the traditional styles from Africa. .
    Type of Medium: Online Resource
    Pages: VIII, 232 p. 64 illus., 61 illus. in color. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9783030362836
    DDC: 630
    Language: English
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  • 2
    Online Resource
    Online Resource
    Berlin, Heidelberg :Springer Berlin Heidelberg :
    Keywords: Agriculture. ; Environmental economics. ; Agriculture Economic aspects. ; Energy policy. ; Energy and state. ; Biotechnology. ; Ecology . ; Agriculture. ; Environmental Economics. ; Agricultural Economics. ; Energy Policy, Economics and Management. ; Biotechnology. ; Ecology.
    Description / Table of Contents: Chapter 1: Introduction -- Chapter 2: The origin of biomass -- Chapter 3: Food security and healthy nutrition in the context of the bioeconomy -- Chapter 4: The use of biomass for the production of fuel and chemicals -- Chapter 5: The importance of biotechnology for bioeconomy -- Chapter 6: The bioeconomy from the point of view of the innovation economy -- Chapter 7: Bioeconomy as a circular and integrated system -- Chapter 8: Criteria for the success of the bioeconomy -- Chapter 9: The conditions of a sustainable bioeconomy -- Chapter 10: Bioeconomy – Key to unlimited economic and consumer growth?.
    Abstract: This book provides an interdisciplinary and comprehensible introduction to bioeconomy. It thus offers basic knowledge for understanding a transformation process that will shape the 21st century and requires the integration of many, so far unrelated disciplines and industries. We are talking about the gradual and necessary transition from the age of fossil fuels, which began around 200 years ago, to a global economy based on renewable raw materials (and renewable energies). The success of this transition is key to coping with the challenge of climate change. This book conceives the realization of bioeconomy as a threefold task – a scientific, an economic and an ecological one. · Where does the biomass come from that we need primarily for feeding the growing world population but also for future energy and material use? How can it be processed in biorefineries and what role does biotechnology play in this regard? · Which aspects of innovation economics need to be considered, which economic aspects of value creation, competitiveness and customer acceptance are important? · What conditions must a bioeconomy fulfil in order to enable a sustainable development of life on earth? May it be regarded as a key to further economic growth or shouldn’t it rather orient itself towards the ideal of sufficiency? By dealing with these questions from the not necessarily consistent perspectives of proven experts, this book provides an interdisciplinary overview of a dynamic field of research and practice that raises more questions than answers and thus may nurture the motivation of many more people to seriously engage for the realization of a bioeconomy.
    Type of Medium: Online Resource
    Pages: XIII, 214 p. 170 illus., 168 illus. in color. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9783662603901
    DDC: 630
    Language: English
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  • 3
    Keywords: Agriculture. ; Environmental engineering. ; Biotechnology. ; Bioremediation. ; Refuse and refuse disposal. ; Pollution. ; Agriculture. ; Environmental Engineering/Biotechnology. ; Waste Management/Waste Technology. ; Pollution. ; Biotechnology.
    Description / Table of Contents: Chapter 1: Pretreatment And Enzymatic Hydrolysis Of Lignocellulosic Biomass For Reducing Sugar Production -- Chapter 2: Mangosteen Peel Antioxidant Extraction And Its Use To Improve The Stability Of Biodiesel B20 Oxidation -- Chapter 3: Biotechnological Potential Of Cottonseed, A By-Product Of Cotton Production -- Chapter 4: Bioprocessing With Cashew Apple And Its Byproducts -- Chapter 5: Agro-Processing Residues For The Production Of Fungal Bio-Control Agents -- Chapter 6: Production Of Activated Carbon From Agro-Industrial Wastes And Its Potential Use For Removal Of Heavy Metal In Textile Industrial Wastewater -- Chapter 7: Utilization Of Glycerol From Biodiesel Industry By-Product Into Several Higher Value Products -- Chapter 8: Potential Application Of Native Fruits Waste From Argentina As Non-Conventional Sources Of Functional Ingredients -- Chapter 9: Conventional And Alternative Strategies Of Pretreatment Of Chili Post-Harvest Residue For The Production Of Different Value Added Products -- Chapter 10: Valorization Of Sugarcane-Based Bioethanol Industry Waste (Vinasse) To Organic Fertilizer -- Chapter 11: Pyrolytic Products From Oil Palm Biomass And Its Potential Applications.
    Abstract: The world’s population is expected to reach the eight billion mark very soon. As a result, there is a need for increased industrial and agricultural production to ensure human wellbeing. This in turn generates huge amounts of waste. Current waste treatment solutions are effective, but usually require huge capital investment, are labour intensive and potentially lead to hazardous by-products. This book presents the latest non-biological approaches to address issues related to the abundance of waste, offering insights into best practices in various regions around the globe. It highlights techniques such as chemical extraction, pyrolysis and ultrasonics, and a number of chapters include individual case studies to further enhance readers’ understanding. This comprehensive reference resource is intended for graduate students, researchers and scientists, and is also a valuable addition to all agriculture and biotechnology libraries.
    Type of Medium: Online Resource
    Pages: X, 236 p. 56 illus., 26 illus. in color. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9783030392086
    Series Statement: Applied Environmental Science and Engineering for a Sustainable Future,
    DDC: 630
    Language: English
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  • 4
    Keywords: Agriculture. ; Environmental engineering. ; Biotechnology. ; Bioremediation. ; Refuse and refuse disposal. ; Pollution. ; Agriculture. ; Environmental Engineering/Biotechnology. ; Waste Management/Waste Technology. ; Pollution. ; Biotechnology.
    Description / Table of Contents: Chapter 1: Dark fermentation and bioelectrochemical systems for enhanced biohydrogen production from palm oil mill effluent: current progress, potentials, and future perspectives -- Chapter 2: Spent mushroom substrate as biofertilizer for agriculture application -- Chapter 3: Biological treatment of agro-industrial waste -- Chapter 4: Proteomics of lignocellulose substrates bioconversion in anaerobic digesters to increase carbon recovery as methane -- Chapter 5: Circular economy and agroindustrial wastewater: potential of microalgae in bioremediation processes -- Chapter 6: Utilization of agro-waste as carbon source for biohydrogen production: prospect and challenges in Malaysia -- Chapter 7: Agro-industrial waste as substrates for the production of bacterial pigment -- Chapter 8: Analysis of termite microbiome and biodegradation of various phenolic compounds by a bacterium isolated from the termite gut in louisiana, usa -- Chapter 9: Compatible technologies to anaerobic digestion for the integral valorization of organic waste -- Chapter 10: Recycling and reuse of ayurvedic pharma industry wastes -- Chapter 11: Production of unicellular biomass as a food ingredient from agro-industrial waste -- Chapter 12: Cyanobacterial degradation of organophosphorus pesticides -- Chapter 13: Microbial identification and extracellular polymeric substances characterization of aerobic granules developed in treating rubber processing waste water -- Chapter 14: Granulation and biodegradation by microbial species in granular sequencing batch reactor for soy-sauce wastewater treatment.
    Abstract: Agriculture and industry are the two most important economic sectors for various countries around the globe, providing millions of jobs as well as being the main source of income for these countries. Nevertheless, with the increasing demand for agricultural and industrial produce, huge amounts of waste are also being produced. Without proper management, this waste (both liquid and solid) poses a serious threat to overall environmental quality, mainly due to its toxicity and slow degradation processes. Current approaches are effective but would normally require huge capital investments, are labour intensive and generate potential hazardous by-products. As such, there is a need for alternative approaches that are cheaper, easier-to-handle and have a minimum potential impact on environmental quality. This book presents up-to-date approaches using biological techniques to manage the abundance of waste generated from agricultural and industrial activities. It discusses techniques such as bioconversion, biodegradation, biotransformation, and biomonitoring as well as the utilization of these wastes. A number of chapters also include individual case studies to enhance readers’ understanding of the topics. This comprehensive book is a useful resource for anyone involved in agricultural and industrial waste management, green chemistry or biotechnology. It is also recommended as a reference work for graduate students and all agriculture and biotechnology libraries.
    Type of Medium: Online Resource
    Pages: XI, 308 p. 33 illus., 18 illus. in color. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9783030391379
    Series Statement: Applied Environmental Science and Engineering for a Sustainable Future,
    DDC: 630
    Language: English
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  • 5
    Keywords: Agriculture. ; Sustainability. ; Climatology. ; Environmental management. ; Environmental economics. ; Economic development. ; Agriculture. ; Sustainability. ; Climate Sciences. ; Environmental Management. ; Environmental Economics. ; Development Studies.
    Description / Table of Contents: PART 1 Food security as a global issue -- Chapter 1 Climate change and food security: A glance on principles and strategic road map -- Chapter 2 Commentary on evolution of policy and operationalization of action to make “food security” the first priority -- Chapter 3 Agricultural productivity and food security: Land degradation and changes over time -- Chapter 4 A Comprehensive Overview of Water and Food Security crisis influencing Human Mobility patterns -- PART 2 Climate variability and food security -- Chapter 5 The critical role of Smallholders in Survival food security -- Chapter 6 Climate change and food security in the Bamenda Highlands of Cameroon -- Chapter 7 Building capacities for agricultural disaster risk reduction in the Western Balkan Countries -- Chapter 8 Commentary on China’s current food security status, future trends and responses under climate variability -- PART 3 Food Security and Livelihoods -- Chapter 9 Leaving No One Behind from farm to fork; Building resilience along smallholder value chain in the context of climate change -- Chapter 10 Establishing Multi-Partnerships in Environmental Governance in Indonesia: Case of “DesaMakmurPerduliApi” (Prosperous and Fire Free Villages) Program -- Chapter 11 From Zero-Acreage Farming to Zero Hunger in African Cities: Some Possibilities and Opportunities -- Chapter 12 Organic Farming Practices can combat Drought and Land Degradation through efficient use of Land and Water -- Part 4 Concluding thoughts and reflections -- Chapter 13 Reality and Consequence for Livestock Production, Human Nutrition, Health and Food Security under the impact of climate change -- Chapter 14 Changes in Agricultural Land Use and Food Security: Challenges -- Chapter 15 Diversification and land use management practices for food and nutritional security under climate change scenario in arid and semi-arid regions -- Chapter 16 Unifying concepts, synthesis and conclusions.
    Abstract: This volume analyzes the global challenges of food security, land use changes, and climate change impacts on food production in order to recommend sustainable development policies, anticipate future food services and demands, and identify the economic benefits and trade-offs of meeting food security demands and achieving climate change mitigation objectives. The key points of analysis that form the conclusions of this book are based on measuring the quantity and quality of land and water resources, and the rate of use of sustainable management of these resources in the context of socio-economic factors, including food security, poverty, and climate change impacts. In six parts, readers will learn about these crucial dimensions of the affects of climate change on food security, and will gain a better understanding of how to assess the trade-offs when combating multiple climate change challenges and how to develop sustainable solutions to these problems. The book presents multidimensional perspectives from expert contributors, offering holistic and strategic approaches to link knowledge on climate change and food security with action in the form of policy recommendations, with a focus on sociological and socio-economic components of climate change impacts. The intended audience of the book includes students and researchers engaged in climate change and food security issues, NGOs, and policy makers.
    Type of Medium: Online Resource
    Pages: XIV, 355 p. 129 illus., 81 illus. in color. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9783030367626
    DDC: 630
    Language: English
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  • 6
    Keywords: Agriculture. ; Biodiversity. ; Environmental management. ; Cytology. ; Stress (Physiology). ; Environmental monitoring. ; Agriculture. ; Biodiversity. ; Environmental Management. ; Cellular Stress. ; Environmental Monitoring.
    Description / Table of Contents: Part 1. Abiotic stress response in plants and approaches towards mitigation -- Chapter 1. Physiological responses and resilience of plants to climate change -- Chapter 2. Allelopathy: Implications in Natural and Managed Ecosystems -- Chapter 3. Effect of Drought Stress on Crop Production -- Chapter 4. Impact of salinity stress in crop plants and mitigation strategies -- Chapter 5. Sustainable production of Rice under sodicity stress condition -- Chapter 6. Chilling stress during postharvest storage of fruits and vegetables -- Chapter 7. Chemical stress on plants -- Chapter 8. Role of ionizing radiation-induced mutations in the development of rice cultivars -- Chapter 9. Adverse Effect of Heavy Metal Toxicity in Plants Metabolic Systems and Biotechnological Approaches for Its Tolerance Mechanism -- Chapter 10. Crop growth under heavy metals stress and its mitigation -- Chapter 11. Conservation of Tropical Agriculture in the era of Changing Climate -- Chapter 12. Alleviation of abiotic stress by Non-conventional plant growth regulators in plant physiology -- Chapter 13. Use of different agronomic practices to minimize ozone injury in plants: A step towards Sustainable Agriculture -- Chapter 14. Micro-nutrient seed priming: A pragmatic approach towards abiotic stress management. Chapter 15. Bioactive Compost: An approach for managing plant growth in environmentally stressed soils -- Chapter 16. Seed priming: Implicationin Agriculture to Manage Salinity Stress in Crops -- Chapter 17. Application of nano-particles in agriculture as fertilizers and pesticides: challenges and opportunities -- Chapter 18. Phenomics assisted breeding: An emerging way for stress management -- Chapter 19. Prediction of Climate Change using Statistical Downscaling Techniques -- Part 2. Improving crops resistance to biotic stress -- Chapter 20. Microbial Bio-agents in Agriculture: Current status and Prospects -- Chapter 21. Application of plant-volatile mediated signaling in sustainable agriculture -- Chapter 22. Biological host response: a paradigm and strategy to overcome biotic stress caused by powdery mildew causalagents in plants -- Chapter 23. CRISPR/Cas9-edited rice: a new frontier for sustainable agriculture -- Part 3. Research highlights in different crops -- Chapter 24. Agronomic Interventions for Drought Management in Crops -- Chapter 25. Flower crops response to biotic and abiotic stresses -- Chapter 26. Begomovirus menance and its management in vegetable crops -- Chapter 27. Management of abiotic stresses in vegetable crops -- Chapter 28. Realizing the potential of coastal flood-prone areas for rice production in West Bengal: prospects and challenges -- Chapter 29. Mechanisms of abiotic stress tolerance and their management strategies in fruit crops -- Chapter 30. Biotic Stress Management in Rice (Oryza sativa L.) through Conventional and Molecular Approaches -- Chapter 31. System of Assured Rice Production in kharif: A resource-conserving and climate-resilient methodology for higher productivity and profitability. .
    Abstract: Using accessible farming practices to meet the growing demands on agriculture is likely to result in more intense competition for natural resources, increased greenhouse gas emissions, and further deforestation and land degradation, which will in turn produce additional stress in the soil-water-plant-animal continuum. Stress refers to any unfavorable force or condition that inhibits customary functioning in plants. Concurrent manifestations of different stresses (biotic and abiotic) are very frequent in the environment of plants, which consequently reduces yield. Better understanding stress not only changes our perspective on the current environment, but can also bring a wealth of benefits, like improving sustainable agriculture and human beings’ living standards. Innovative systems are called for that protect and enhance the natural resource base, while increasing productivity via ‘holistic’ approaches, such as agroecology, agro-forestry, climate-smart agriculture and conservation agriculture, which also incorporate indigenous and traditional knowledge. The book ‘New Frontiers in Stress Management for Durable Agriculture’ details the current state of knowledge and highlights scientific advances concerning novel aspects of plant biology research on stress, biotic and abiotic stress responses, as well as emergent amelioration and reclamation technologies to restore normal functioning in agroecology. .
    Type of Medium: Online Resource
    Pages: XXIV, 660 p. 72 illus., 53 illus. in color. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9789811513220
    DDC: 630
    Language: English
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  • 7
    Keywords: Agriculture. ; Environmental engineering. ; Biotechnology. ; Bioremediation. ; Food science. ; Environment. ; Manufactures. ; Pollution. ; Agriculture. ; Environmental Engineering/Biotechnology. ; Food Science. ; Environmental Sciences. ; Machines, Tools, Processes. ; Pollution.
    Description / Table of Contents: Preface -- Chapter 1 Hemp Production -- Chapter 2 Traditional and New Applications of Hemp -- Chapter 3 Industrial Hemp in the USA: A Brief Synopsis -- Chapter 4 Hemp Fibers in Serbia: Cultivation, Processing, and Applications -- Chapter 5 Physico-chemical Characterization and Development of Hemp Aggregates for Highly Insulating Construction Building Materials -- Chapter 6 Modelling of the Hygrothermal Behaviour of Hemp Concrete -- Chapter 7 Hempseed Protein: Processing and Functional Properties -- Chapter 8 Functional and Bioactive Properties of Hemp Proteins -- Chapter 9 Hemp Seed as a Source of Food Proteins -- Chapter 10 Hemp Fibers for Wastewater Treatment.
    Abstract: This book reviews recent research and applications, developments, research trends, methods and issues related to the applications of industrial hemp for fundamental research and technology. Contains a complete overview of traditional and new applications of hemp.
    Type of Medium: Online Resource
    Pages: XV, 326 p. 72 illus., 51 illus. in color. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9783030413842
    Series Statement: Sustainable Agriculture Reviews, 42
    DDC: 630
    Language: English
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  • 8
    Keywords: Agriculture. ; Biotic communities. ; Environment. ; Soil science. ; Environmental management. ; Plant biotechnology. ; Agriculture. ; Ecosystems. ; Environmental Sciences. ; Soil Science. ; Environmental Management. ; Plant Biotechnology.
    Description / Table of Contents: Chapter 1. Global and regional perspective of climate smart agriculture -- Chapter 2. Climate Smart Horticulture -- Chapter 3. Climate resilient forage production systems in rainfed regions of India -- Chapter 4. Climate Smart Agroforestry -- Chapter 5. Climate Smart Livestock production -- Chapter 6. Climate Smart Agriculture and Gender Policy -- Chapter 7. Precision farming: a step towards sustainable, climate smart agriculture -- Chapter 8. Climate Smart Agriculture in Mauritius: Moving towards a landscape approach -- Chapter 9. Scope and Strategic intervention for Climate Smart Agriculture in North Eastern India -- Chapter 10. Green Agriculture: Transforming Agriculture in India -- Chapter 11. Defining a policy nexus for sustainable agriculture and food security in the Caribbean Region -- Chapter 12. Current policies and practices behind Scaling up Climate Smart Agriculture in India -- Chapter 13. Global climate change impacts: Perspectives from Sri Lanka -- Chapter 14. Integration of geospatial technology and simulation modelling for climate change studies -- Chapter 15. Integrated Farming Systems option to cope with climate change for sustainable food production in Indian Himalayan Region (IHR).
    Abstract: This book provides essential insights into methods and practices of ‘Climate-smart Agriculture,’ which is driven by the principles of climate resilience and smart resource use in agricultural production. Climate-smart agriculture is a key policy instrument for achieving poverty eradication and a hunger-free world, as well as mitigating the effects of climate change. This book discusses in detail climate-smart agricultural technologies and practices that can reduce the vulnerability of agricultural systems, improve the livelihoods of farmers and other stakeholders, and reduce the greenhouse gas emissions from crop production and livestock husbandry. The agriculture, forestry and other land use (AFOLU) sector produces roughly 10–12 gigatons of CO2-equivalent per year; therefore, sustainable practices for agriculture and related land use hold immense potential to mitigate climate change. The potential impacts of climate variability and climate change on agriculture are extensively documented and articulated, especially with regard to global and national environmental agendas that call for innovation, transformation and climate-resilient advances in agriculture. As the book demonstrates, climate-smart agriculture offers an excellent tool for boosting agricultural output to feed the growing global population; for reducing greenhouse gases emissions from agriculture and other land use; and for protecting agricultural production systems from the impending dangers of climate change.
    Type of Medium: Online Resource
    Pages: XIII, 358 p. 78 illus., 70 illus. in color. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9789813298569
    DDC: 630
    Language: English
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  • 9
    Online Resource
    Online Resource
    Singapore :Springer Nature Singapore :
    Keywords: Agriculture. ; Plant biotechnology. ; Environmental engineering. ; Biotechnology. ; Bioremediation. ; Environmental management. ; Energy policy. ; Energy and state. ; Agriculture. ; Plant Biotechnology. ; Environmental Engineering/Biotechnology. ; Environmental Management. ; Energy Policy, Economics and Management.
    Description / Table of Contents: Chapter 1: Biofuels: perspective for sustainable development and climate change mitigation -- Chapter 2: Nanoparticles for Sustainable Bioenergy and Biofuel Production -- Chapter 3: Bio-hydrogen: technology developments in microbial fuel cells and their future prospects -- Chapter 4: Recent Advances in Genetic Improvement of Jatropha curcas: a potent biodiesel plant -- Chapter 5: Catalytic approach for production of hydrocarbon rich bio-oil from a red seaweed species -- Chapter 6: Seaweed biomass and microbial lipids as a source of biofuel -- Chapter 7: Microbial Biofuels: an economic and eco-friendly approach -- Chapter 8: Biofuels: sources, modern technology developments and views on bioenergy management -- Chapter 9: Integrating omics and microbial biotechnology for the production of Biofuel -- Chapter 10: An Overview on Biomass of Bamboo as a Source of Bioenergy -- Chapter 11: Advances and challenges in sugarcane biofuel development. .
    Abstract: The depletion of petroleum-derived fuel and environmental concerns have prompted many millennials to consider biofuels as alternative fuel sources. But completely replacing petroleum-derived fuels with biofuels is currently impossible in terms of production capacity and engine compatibility. Nevertheless, the marginal replacement of diesel with biofuel could delay the depletion of petroleum resources and abate the radical climate change caused by automotive pollutants. Energy security and climate change are the two major driving forces for worldwide biofuel development, and also have the potential to stimulate the agro-industry. The development of biofuels as alternative and renewable sources of energy has become critical in national efforts towards maximum self-reliance, the cornerstone of our energy security strategy. At the same time, the production of biofuels from various types of biomass such as plants, microbes, algae and fungi is now an ecologically viable and sustainable option. This book describes the biotechnological advances in biofuel production from various sources, while also providing essential information on the genetic improvement of biofuel sources at both the conventional and genomic level. These innovations and the corresponding methodologies are explained in detail.
    Type of Medium: Online Resource
    Pages: XI, 288 p. 49 illus., 32 illus. in color. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9789811537615
    DDC: 630
    Language: English
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  • 10
    Keywords: Agriculture. ; Climatology. ; Sustainability. ; Plant ecology. ; Environmental management. ; Botany. ; Agriculture. ; Climate Sciences. ; Sustainability. ; Plant Ecology. ; Environmental Management. ; Plant Science.
    Description / Table of Contents: Chapter1: Introduction -- Chapter2: Changing environmental constraints facing agricultural system -- Chapter3: Adaptive agronomic practices for sustaining food production -- Chapter4: Increasing resilience in crops for future changing environment -- Chapter5: Modelling as a tool for future climate predictions and adaptation -- Chapter6: Sustainability challenges for agricultural system and food security -- Chapter7: Farmers role in agricultural adaptation under changing climate -- Chapter8: Policy implications and future prospects -- Chapter9: Conclusion .
    Abstract: This brief explores several adaptive agricultural practices from around the world to fulfill current and future agricultural demands for food security due to the challenges posed by climate change and growing global population. Readers will discover how farmers adapt to environmental changes by adopting various agronomic practices at crop, farm and landscape levels. Particular attention is given to systemic and transformational adaptation strategies employed by farmers such as mulching, organic farming and crop diversification. This is a highly informative and carefully presented book that provides insights on how crops can build up resilience against periods of drought, high salinity, disasters such as floods, and diseases. The policy implications and future prospects of these adaptation strategies are also addressed. Environmental and plant scientists, agronomists and researchers in climate sciences will find this book interesting.
    Type of Medium: Online Resource
    Pages: XVIII, 132 p. 40 illus. in color. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9783030155193
    Series Statement: SpringerBriefs in Environmental Science,
    DDC: 630
    Language: English
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