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The Coastal Everglades

The Coastal Everglades

Author: Daniel L. Childers

Publisher: Oxford University Press, USA

ISBN: 9780190869007

Category: Nature

Page: 317

View: 721

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The Coastal Everglades presents a broad overview and synthesis of research on the coastal Everglades, a region that includes Everglades National Park, adjacent managed wetlands, and agricultural and urbanizing communities. Contributors for this volume are all collaborators on the Florida Coastal Everglades Long-Term Ecological Research Program (FCE LTER). The FCE LTER began in 2000 with a focus on understanding key ecosystem processes in the coastal Everglades, while also developing a platform for and linkages to related work conducted by an active and diverse Everglades research community. The program is based at Florida International University in Miami, but includes scientists and students from numerous other universities as well as staff scientists at key resource management agencies, including Everglades National Park and the South Florida Water Management District. Though the Everglades landscape spans nearly a third of the State of Florida, the focus on the coastal Everglades has allowed the contributors to examine key questions in social-ecological science in the context of ongoing restoration initiatives. As this book demonstrates, the long-term research of the FCE LTER has facilitated a better understanding of the roles of sea level rise, water management practices, urban and agricultural development, and other disturbances, such as fires and storms, on the past and future dynamics of this unique coastal environment. By comparing properties of the Everglades with other subtropical and tropical wetlands, the book challenges ideas of novelty while revealing properties of ecosystems at the ends of gradients that are often ignored. It also provides insights from, and encouragement for, long-term collaborative studies that inform resource management in similarly threatened coastal wetland landscapes.

The Ecology of Plant Litter Decomposition in Stream Ecosystems

The Ecology of Plant Litter Decomposition in Stream Ecosystems

Author: Christopher M. Swan

Publisher: Springer Nature

ISBN: 9783030728540

Category: Science

Page: 523

View: 738

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With almost 90% of terrestrial plant material entering the detrital pool, the processing of this significant carbon source is a critical ecosystem function to understand. Riverine ecosystems are estimated to receive, process and transport nearly 1.9 Pg of terrestrial carbon per year globally, highlighting the focus many freshwater ecologists have on the factors that explain decomposition rates of senesced plant material. Since Webster and Benfield offered the first comprehensive review of these factors in 1986, there has been an explosion of research addressing key questions about the ecological interactions at play. Ecologists have developed field and laboratory techniques, as well as created global scale collaborations to disentangle the many drivers involved in the decomposition process. This book encapsulates these 30+ years of research, describing the state of knowledge on the ecology of plant litter decomposition in stream ecosystems in 22 chapters written by internationally renowned experts on the subject.

Forest Hydrology

Forest Hydrology

Author: Devendra Amatya

Publisher: CABI

ISBN: 9781780646602

Category: Technology & Engineering

Page: 308

View: 380

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Forests cover approximately 26% of the world's land surface area and represent a distinct biotic community. They interact with water and soil in a variety of ways, providing canopy surfaces which trap precipitation and allow evaporation back into the atmosphere, thus regulating how much water reaches the forest floor as through fall, as well as pull water from the soil for transpiration. The discipline "forest hydrology" has been developed throughout the 20th century. During that time human intervention in natural landscapes has increased, and land use and management practices have intensified. The book will be useful for graduate students, professionals, land managers, practitioners, and researchers with a good understanding of the basic principles of hydrology and hydrologic processes.

Long-Term Monitoring and Research in Asian University Forests

Long-Term Monitoring and Research in Asian University Forests

Author: Toshiaki Owari

Publisher: CRC Press

ISBN: 9781000598186

Category: Nature

Page: 130

View: 854

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This book disseminates various long-term data and research results from university forests in Asia towards realizing adaptive forest management and conservation based on a comprehensive understanding of environmental changes and ecological responses. University forests - which refer to large, forested areas owned or controlled by universities and devoted primarily to research and teaching programs in forest-related sciences - have collected, managed and analyzed long-term meteorological, hydrological, biological and geographic data under an organizationally stable observation system. With the influence of global warming becoming apparent and extreme weather events occurring more frequently in the region, it is an important and urgent challenge to understand long-term environmental and ecosystem changes in forests and provide robust scientific knowledge on how ecosystems respond to those changes. This book is a step towards addressing the challenge. The chapters in this book were originally published as a special issue of the Journal of Forest Research.

Fundamentals of Ecosystem Science

Fundamentals of Ecosystem Science

Author: Kathleen C. Weathers

Publisher: Elsevier

ISBN: 9780128127629

Category: Science

Page: 358

View: 694

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Fundamentals of Ecosystem Science, Second Edition provides a comprehensive introduction to modern ecosystem science covering land, freshwater and marine ecosystems. Featuring full color images to support learning and written by a group of experts, this updated edition covers major concepts of ecosystem science, biogeochemistry, and energetics. Case studies of important environmental problems offer personal insights into how adopting an ecosystem approach has helped solve important intellectual and practical problems. For those choosing to use the book in a classroom environment, or who want to enrich further their reading experience, teaching and learning assets are available at Elsevier.com. Covers both aquatic (freshwater and marine) and terrestrial ecosystems with updated information Includes a new chapter on microbial biogeochemistry Features vignettes throughout the book with real examples of how an ecosystem approach has led to important change in policy, management, and ecological understanding Demonstrates the application of an ecosystem approach in synthesis chapters and case studies Contains new coverage of human-environment interactions

Proceedings

Proceedings

Author: D. Briane Adams

Publisher: Amer Water Resources Assn

ISBN: STANFORD:36105021869594

Category: Nature

Page: 438

View: 203

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Forest Ecosystems and Environments

Forest Ecosystems and Environments

Author: Takashi Kohyama

Publisher: Springer Science & Business Media

ISBN: 9784431293613

Category: Science

Page: 156

View: 455

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Coastal East and Southeast Asia are characterized by wet growing seasons, and species-rich forest ecosystems develop throughout the latitudinal and altitudinal gradients. In this region, the Global Change Impacts on Terrestrial Ecosystems in Monsoon Asia (TEMA) project was carried out as a unique contribution to the international project Global Change and Terrestrial Ecosystems. TEMA aimed to integrate forest ecosystem processes, from leaf physiology to meteorological budget and prediction of long-term change of vegetation composition and architecture through demographic processes. Special attention was given to watershed processes, where forest ecosystem metabolism affects the properties and biogeochemical budgets of freshwater ecosystems, and where rivers, wetlands, and lakes are subject to direct and indirect effects of environmental change. This volume presents the scaling-up concept for better understanding of ecosystem functioning.