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Herth, Annika; Blok, Kornelis – International Journal of Sustainability in Higher Education, 2023
Purpose: The purpose of this paper is to present a comprehensive analysis of the carbon footprint of the Delft University of Technology (TU Delft), including direct and indirect emissions from utilities, logistics and purchases, as well as a discussion about the commonly used method. Emissions are presented in three scopes (scope 1 reports direct…
Descriptors: Universities, Climate, Pollution, Real Estate
Abu Qdais, Hani; Saadeh, Osama; Al-Widyan, Mohamad; Al-tal, Raed; Abu-Dalo, Muna – International Journal of Sustainability in Higher Education, 2019
Purpose: The purpose of this study is to describe the efforts undertaken to convert the large university campus of Jordan University of Science and Technology (JUST) into a green, resource-efficient and low-carbon campus by following an action-oriented strategy. Sustainability features of the campus were discussed and benchmarked. Challenges were…
Descriptors: Sustainability, Conservation (Environment), Campuses, Universities
Hogan, Theodore J.; Kelter, Paul – Science Educator, 2015
Environmental issues can serve as a marvelous framework for high-level student analysis of critical scientific and social concerns. We describe a series of activities and discussions that motivate students to explore environmentalism, sustainable development, carbon offsets, and related ideas with an engaged learning format that helps students to…
Descriptors: Sustainable Development, Sustainability, Learning Activities, Environmental Education
Houck, Jason; Rickerson, Wilson – Bulletin of Science, Technology & Society, 2009
Climate change, energy price spikes, and concerns about energy security have reignited interest in state and local efforts to promote end-use energy efficiency, customer-sited renewable energy, and energy conservation. Government agencies and utilities have historically designed and administered such demand-side measures, but innovative…
Descriptors: Energy Conservation, Fuels, Energy, Utilities
US Department of Energy, 2008
Energy costs are a school district's second highest expenditure after personnel. Public schools currently spend more than $8 billion per year for energy. School energy expenditures rose, on average, 20 percent per year between 2000 and 2002--and the costs continue to rise. Natural gas prices alone increased 14 percent annually between 2003 and…
Descriptors: Energy Conservation, Energy Management, Energy, School Buildings
Aliotta, Joe; Pde, Gerald – American School & University, 2008
Many people narrowly focus on energy efficiency when defining a "high-performance" school--a school building that is economical with respect to heating, cooling, and electric lighting. That is certainly true, but in the broadest terms, a high-performance school is designed to minimize reliance on fossil fuels--and provide a comfortable, healthful,…
Descriptors: Educational Facilities Design, Fuels, Architecture, Energy Conservation

Alcamo, Joseph; De Vries, Bert – International Environmental Affairs, 1992
Links proposed low-energy scenarios for different Western European countries with the amount of pollutants that may result from these scenarios. Sulfur dioxide, nitrogen oxide, and carbon dioxide emissions are calculated for the 10 countries for which low-energy scenarios are available, resulting in reductions of 54%, 37%, and 40%, respectively.…
Descriptors: Acid Rain, Air Pollution, Computation, Energy Conservation

Hirst, Eric; Carney, Janet – Science, 1978
An engineering-economic simulation model of residential energy use is employed to evaluate the effects of nine different residential energy-use "futures" as to economic impact on Americans to the year 2000. (Author/CP)
Descriptors: Conservation (Environment), Economics, Energy, Energy Conservation