Soil Carbon Dynamics In Indian Himalayan Region
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Author | : Gaurav Mishra |
Publisher | : Springer Nature |
Total Pages | : 390 |
Release | : 2024-01-08 |
Genre | : Technology & Engineering |
ISBN | : 981993303X |
The contributed volume assimilates the knowledge, experience, and exciting aspects of soil carbon research in the Indian Himalayan region. It includes different aspects and factors associated with soil carbon sequestration in the region, one of the biodiversity hot spots and highly vulnerable to climatic change impacts. Information on different aspects of soil organic carbon dynamics concerning adaptive land management practices and anthropogenic impacts is covered. Further topics include applying advanced tools and techniques to soil carbon vis-a-vis soil erosion research. This book is of interest to researchers and policymakers involved in soil carbon research and offer ideas to enhance the soil carbon in the region concerned. In addition, the book will provide up-to-date information for researchers interested in soil carbon research for the maintenance of soil quality and fertility in the climate-vulnerable Indian Himalayan region.
Author | : Gaurav Mishra |
Publisher | : Springer |
Total Pages | : 0 |
Release | : 2023-10-30 |
Genre | : Technology & Engineering |
ISBN | : 9789819933020 |
The contributed volume assimilates the knowledge, experience, and exciting aspects of soil carbon research in the Indian Himalayan region. It includes different aspects and factors associated with soil carbon sequestration in the region, one of the biodiversity hot spots and highly vulnerable to climatic change impacts. Information on different aspects of soil organic carbon dynamics concerning adaptive land management practices and anthropogenic impacts is covered. Further topics include applying advanced tools and techniques to soil carbon vis-a-vis soil erosion research. This book is of interest to researchers and policymakers involved in soil carbon research and offer ideas to enhance the soil carbon in the region concerned. In addition, the book will provide up-to-date information for researchers interested in soil carbon research for the maintenance of soil quality and fertility in the climate-vulnerable Indian Himalayan region.
Author | : Gaurav Mishra |
Publisher | : Springer Nature |
Total Pages | : 293 |
Release | : |
Genre | : |
ISBN | : 981975223X |
Author | : Anwesha Borthakur |
Publisher | : Springer Nature |
Total Pages | : 329 |
Release | : |
Genre | : |
ISBN | : 3031516966 |
Author | : Uday Chatterjee |
Publisher | : Springer Nature |
Total Pages | : 601 |
Release | : 2024-01-01 |
Genre | : Science |
ISBN | : 3031443977 |
This book aims to contribute to the discourse on climate crisis by bringing together high-quality empirical research on adaptive approaches and sustainability case studies from across the world. The book is divided into six sections. The introductory section has two chapters which sets the ground of the book as it discusses the framing of climate crisis and the different approaches towards it. It also situates the book within the global discourse. The first chapter seeks the traditional approaches to bridge the gap in the new climate science, while the second chapter delivers the ultimate reasons for temperature change, global warming and its consequences (extreme weather events) in a comprehensive way. It is hoped that the book as a whole will provide a timely synthesis of a rapidly growing and important field of climate science but will also bring forward new and stimulating ideas that will shape a coherent and fruitful vision for future work for the community of Undergraduates, Postgraduates, Ph.D. Scholars and Researchers in the fields of environmental sciences, humanistic and social sciences and geography. In addition, policy and decision makers, environmentalists, NGOs, corporate sectors, social scientists, and government organizations will find this book to be of great value. We believe that a diverse group of academics, scientists, geographers, environmentalists, environmental regulators, social scientists, and sustainable scientists with a common interest within the earth environmental sciences and humanistic and social sciences will find this book to be a comprehensive source for reference. Also, we strongly deemed that it will also provide some support for various levels of organizations and administrations for developing and achieving UN Sustainable Development Goals by 2030 in purview of climate change.
Author | : Manish Kumar |
Publisher | : Elsevier |
Total Pages | : 484 |
Release | : 2024-06-11 |
Genre | : Science |
ISBN | : 0323915469 |
River Basin Ecohydrology in the Indian Sub-Continent: Sustainable Strategies and Sustenance provides a multidisciplinary approach that focuses on conservation strategies, water quality management in the eco-regions, catchment management practices, estuaries, preservation of in-stream habitat populations, and natural /bioengineering techniques for the sustainable management of ecological resources in the Indian sub-continent. The book provides a unique platform for readers from branches of science and technology, including engineering sciences, agricultural sciences, biogeochemical sciences, hydrogeochemistry, toxicological sciences, social sciences, environmental policy, and governance, etc. to exchange ideas and information at multiple levels on sustainable water management, degradation of marine quality and indicators of ecological degradation. The book's contributors provide impressive and comprehensive information on different management strategies for sustainable restoration of aquatic ecological systems covering vital aspects of hydrogeochemical and geoenvironmental parameters. This book aims to provide a "platform" for scientists and environmental researchers/planners to discuss the environmental degradation, spatial heterogeneity on water quality and aquatic species, methodological approaches on sustainable management of biodiversity, etc. - Presents an extensive collection of eco-hydrological changes in the river basin driven by both nature and anthropological factors - Provides state of the art modeling, data analysis methodologies for complex socio – ecological complexity applied in the Indian Sub-Continent - Includes specific cases of ecohydrology in the river basin, especially from the Indian Sub-Continent
Author | : V. Venkatramanan |
Publisher | : Springer Nature |
Total Pages | : 402 |
Release | : 2020-11-16 |
Genre | : Technology & Engineering |
ISBN | : 9811573018 |
The existential environmental crisis prompted the United Nations to formulate the Millennium Development Goals at the turn of the 21st century in order to embark on an era of sustainable development. The progress and deficiencies in achieving the Millennium Development Goals provided impetus to the intelligentsia and policymakers to map out the pertinent goals for a sustainable growth trajectory for humanity and the planet. The United Nations’ 2030 Agenda for Sustainable Development, which was adopted in September 2015, took the shape of 17 Sustainable Development Goals (SDGs) and 169 targets. In effect, the 17 Sustainable Development Goals focus on protecting the earth's life support systems for intra- and inter-generational equity and for development that is rooted in sustainability science. Attaining these goals is an uphill task; nevertheless, scientific knowledge, trans and interdisciplinary inquiries, concerted global action and capacity building would provide an enabling environment for achieving the SDGs. This book explores the synergies and trade-offs between climate change management and other SDGs. It highlights the policy imperatives as well as the interrelations between combating climate change and its impacts (SDG 13) and food and nutritional security (SDG 2), water security (SDG 6), soil security (SDG 15), energy security (SDG 7), poverty eradication (SDG 1), gender equality (SDG 5), resilient infrastructure (SDG 9), and sustainable and resilient cities (SDG 11).
Author | : Rattan Lal |
Publisher | : CRC Press |
Total Pages | : 428 |
Release | : 2021-12-09 |
Genre | : Science |
ISBN | : 1000483916 |
Soil organic matter (SOM) is the primary determinant of soil functionality. Soil organic carbon (SOC) accounts for 50% of the SOM content, accompanied by nitrogen, phosphorus, and a range of macro and micro elements. As a dynamic component, SOM is a source of numerous ecosystem services critical to human well-being and nature conservancy. Important among these goods and services generated by SOM include moderation of climate as a source or sink of atmospheric CO2 and other greenhouse gases, storage and purification of water, a source of energy and habitat for biota (macro, meso, and micro-organisms), a medium for plant growth, cycling of elements (N, P, S, etc.), and generation of net primary productivity (NPP). The quality and quantity of NPP has direct impacts on the food and nutritional security of the growing and increasingly affluent human population. Soils of agroecosystems are depleted of their SOC reserves in comparison with those of natural ecosystems. The magnitude of depletion depends on land use and the type and severity of degradation. Soils prone to accelerated erosion can be strongly depleted of their SOC reserves, especially those in the surface layer. Therefore, conservation through restorative land use and adoption of recommended management practices to create a positive soil-ecosystem carbon budget can increase carbon stock and soil health. This volume of Advances in Soil Sciences aims to accomplish the following: Present impacts of land use and soil management on SOC dynamics Discuss effects of SOC levels on agronomic productivity and use efficiency of inputs Detail potential of soil management on the rate and cumulative amount of carbon sequestration in relation to land use and soil/crop management Deliberate the cause-effect relationship between SOC content and provisioning of some ecosystem services Relate soil organic carbon stock to soil properties and processes Establish the relationship between soil organic carbon stock with land and climate Identify controls of making soil organic carbon stock as a source or sink of CO2 Connect soil organic carbon and carbon sequestration for climate mitigation and adaptation
Author | : Ramesh K. Agarwal |
Publisher | : BoD – Books on Demand |
Total Pages | : 198 |
Release | : 2018-09-12 |
Genre | : Technology & Engineering |
ISBN | : 1789237645 |
This book is divided in two sections. Several chapters in the first section provide a state-of-the-art review of various carbon sinks for CO2 sequestration such as soil and oceans. Other chapters discuss the carbon sequestration achieved by storage in kerogen nanopores, CO2 miscible flooding and generation of energy efficient solvents for postcombustion CO2 capture. The chapters in the second section focus on monitoring and tracking of CO2 migration in various types of storage sites, as well as important physical parameters relevant to sequestration. Both researchers and students should find the material useful in their work.
Author | : Zhanhuan Shang |
Publisher | : Springer |
Total Pages | : 354 |
Release | : 2019-07-23 |
Genre | : Science |
ISBN | : 3030205916 |
This book contributes to our understanding of linkages between carbon management and local livelihoods by taking stock of the existing evidence and drawing on field experiences in the Hindu Kush Himalayan (HKH) region, an area that provides fresh water to more than 2 billion people and supports the world’s largest population of pastoralists and millions of livestock. This edited volume addresses two main questions: 1. Does carbon management offer livelihood opportunities or present risks, and what are they? 2. Do the attributes of carbon financing alter the nature of livelihood opportunities and risks? Chapters analyze the most pressing deficiencies in understanding carbon storage in both soils and in above ground biomass, and the related social and economic challenges associated with carbon sequestration projects. Chapters deliver insights to both academics from diverse disciplines (natural sciences, social sciences and engineering) and to policy makers.