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Brings together disparate conversations about wildlife conservation and renewable energy, suggesting ways these two critical fields can work hand in hand. Renewable energy is often termed simply "green energy," but its effects on wildlife and other forms of biodiversity can be quite complex. While capturing renewable resources like wind, solar, and energy from biomass can require more land than fossil fuel production, potentially displacing wildlife habitat, renewable energy infrastructure can also create habitat and promote species health when thoughtfully implemented. The authors of Renewable Energy and Wildlife Conservation argue that in order to achieve a balanced plan for addressing these two crucially important sustainability issues, our actions at the nexus of these fields must be directed by current scientific information related to the ecological effects of renewable energy production. Synthesizing an extensive, rapidly growing base of research and insights from practitioners into a single, comprehensive resource, contributors to this volume • describe processes to generate renewable energy, focusing on the Big Four renewables—wind, bioenergy, solar energy, and hydroelectric power • review the documented effects of renewable energy production on wildlife and wildlife habitats • consider current and future policy directives, suggesting ways industrial-scale renewables production can be developed to minimize harm to wildlife populations • explain recent advances in renewable power technologies • identify urgent research needs at the intersection of renewables and wildlife conservation Relevant to policy makers and industry professionals—many of whom believe renewables are the best path forward as the world seeks to meet its expanding energy needs—and wildlife conservationists—many of whom are alarmed at the rate of renewables-related habitat conversion—this detailed book culminates with a chapter underscoring emerging opportunities in renewable energy ecology. Contributors: Edward B. Arnett, Brian B. Boroski, Regan Dohm, David Drake, Sarah R. Fritts, Rachel Greene, Steven M. Grodsky, Amanda M. Hale, Cris D. Hein, Rebecca R. Hernandez, Jessica A. Homyack, Henriette I. Jager, Nicole M. Korfanta, James A. Martin, Christopher E. Moorman, Clint Otto, Christine A. Ribic, Susan P. Rupp, Jake Verschuyl, Lindsay M. Wickman, T. Bently Wigley, Victoria H. Zero
The development of alternative forms of energy supply since the mid-1970s has brought with it a range of new issues and concerns, ranging from nuclear waste disposal to land use planning for energy efficiency. This latest volume in the acclaimed Energy Policy Studies series brings together an interdisciplinary group of researchers to examine the relationship between energy and planning policy, with emphasis on urban and regional impacts.Like other volumes in the series, the articles included focus on the social, political, and economic dimensions of energy technology, resources, and use. The emphasis on issues of technological scale, resource allocation, environmental impact and quality, and urban and regional studies makes this a unique contribution to the literature.Contents: "Creating Land-Energy Transitions," by Andrew F. Huston, U.S. Department of Housing and Urban Development; "Land Use Planning for Energy Efficiency," by Susan E. Owens, Cambridge University; "Nuclear Waste Landscapes," by Barry Solomon, U.S. Energy Information Administration; "Economic Development, Growth and Land Use Planning in Oil and Gas Producing Regions," by Robert L. Mansell, University of Calgary; "The Land Use Focus of Energy Impacts," by M. J. Pasqualetti, Arizona State University; "Energy Use and Land Use," by Stephen Lonergan, McMaster University; and a concluding essay by J. Barry Cullingworth, University of Delaware.
This report assesses an array of transportation policies designed to reduce energy use and describes the intersection of these policies with general transportation problems such as congestion and air pollution. The report: describes the U.S. transportation system and its energy use; presents and evaluates forecasts of energy use to 2010; compares and contrasts U.S. and European travel and energy use patterns; discusses reasons governments may choose to intervene in transportation markets; and describes and evaluates a range of policy options to reduce U.S. transport energy use, from gasoline taxes to urban planning. Its objective is to provide a balanced, qualitative perspective of issues and problems rather than a highly quantified analysis.
Provides consumers with home energy and money savings tips such as insulation, weatherization, heating, cooling, water heating, energy efficient windows, landscaping, lighting, and energy efficient appliances.
This book fills a gap in the available literature on energy policy by dealing with the relationship between energy and land-use planning. It considers, in a systematic way, energy developments in national, regional and local planning policy contexts, concentrating particularly on energy supply issues in Europe.
This report is about energy-efficient site and neighborhood design. It examines recent experiences of local governments that have adopted new development regulation or amended existing ones to promote energy conservation, alternative, renewable sources.
Dr. Daniel B. Botkin objectively assesses the true prospects, limitations, costs, risks, dangers, and tradeoffs associated with every leading and emerging source of energy, including oil, natural gas, coal, hydroelectric, nuclear, wind, solar, ocean power, and biofuels. Next, Botkin addresses the energy distribution system, outlining how it currently works, identifying its inefficiencies, and reviewing options for improving it. Finally, Botkin turns to solutions, offering a realistic, scientifically and economically viable path to a sustainable, energy-independent future: one that can improve the quality of life for Americans and for people around the world. The Future of Fossil Fuels What can we realistically expect from oil, gas, and coal? Will Alternative Energy Sources Really Matter? Running the numbers on solar, wind, biofuels, and other renewables Must We All Wear Sweaters and Live in Caves? The right role for efficiency--and why energy minimalism isn’t the solution Where We Can Start--and What Will Happen if We Don’t No magic bullet, but there are sensible, realistic solutions