From the art of efficient pack swimming to the best dryland & pool workouts for improving endurance, strength & power, Open Water Swimming covers it all.
Key features: Captures the historic context and recent developments in science and policy arenas that address the potential for coastal wetlands to be considered as significant contributors to carbon sequestration Links multiple levels of science (biogeochemistry, geomorphology, paleoclimate, etc.) with blue carbon concepts (science, policy, mapping, operationalization, economics) in a single compendium Concludes with a discussion of future directions which covers integrated scientific approaches, impending threats and specific gaps in current knowledge Includes 7 case studies from across the globe that demonstrate the benefits and challenges of blue carbon accounting Written by over 100 leading global blue carbon experts in science and policy. Blue Carbon has emerged as a term that represents the distinctive carbon stocks and fluxes into or out of coastal wetlands such as marshes, mangroves, and seagrasses. The Blue Carbon concept has rapidly developed in science literature and is highly relevant politically, as nations and markets are developing blue carbon monitoring and management tools and policies. This book is a comprehensive and current compendium of the state of the science, the state of maps and mapping protocols, and the state of policy incentives (including economic valuation of blue carbon), with additional sections on operationalizing blue carbon projects and 7 case studies with global relevance.
The Topic Editors Paul F. J. Wassmann, dorte Krause-Jensen, Markus A. Janout, and Bodil Annikki Bluhm declare that they are collaborating with pan-arctic community.
The Polar and Subpolar region comprise one of the seven regions in the world, from the Arctic to the Antarctic, the Atlantic, Pacific, and Indian Oceans. Marine biodiversity in the polar and subpolar regions is one of the richest on earth, hosting important populations of crustaceans, pelagic and benthic species that provide resources for the many seabirds and marine mammals that congregate there. However, these ecosystems, as well as their biodiversity, are vulnerable and already affected by the impacts of climate change and other threats. The high climatic dynamics in those areas have already generated strong modifications to the environment, with irreversible losses in biodiversity and diminished ecosystem services that are essential for the whole planet. The current need to study and understand the biodiversity of the world's oceans makes polar and sub-polar areas key regions for taxonomic and ecological studies.
Under the pressure of climate and social changes, agriculture is called to play a fundamental role in the world food challenge of the next few decades. A severe reduction of arable land and water scarcity combined with a growing food demand, changes in the dietary preferences in many countries and, more recently, a growing threat to food security and logistics from supply chains interruptions and global trade fragmentation, all require the implementation of processes, techniques, and innovations able to increase productivity and make a better use of scarce resources. Against this backdrop, a growing number of investors and asset managers have started looking at agriculture as an interesting investment theme to exploit the long-term strategic opportunities emerging from technological innovation and social changes. The industry is undergoing a process of transformation driven, on the one hand, by the emergence of new data and technologies that promise enhancing process efficiency and improve yields and, on the other hand, by an increased attention on the GHG emissions of agricultural processes and the impact of farmland on climate change, water and land scarcity. All these factors call for a radical rethinking of many agriculture business models. This book provides a detailed overview and analysis of those new technologies with the greatest potential to disrupt agriculture products and processes by improving productivity and the management of food loss and waste, making a more efficient and sustainable use of resources and enhancing food security. Then, it discusses the implications for investors and asset managers, starting with an assessment of the status quo of agriculture investing and providing a thorough description of the agriculture asset class with an emphasis on its distinctive characteristics and the innovations in the technological processes used in agriculture and farming with the greatest potential to obtain long-term sustainable returns.