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Ben Goldman – portal: Libraries and the Academy, 2024
It is now widely understood that societies must rapidly decarbonize to avoid the worst impacts of future climate change. To contribute to this urgent effort, academic libraries should develop an understanding of the carbon footprint resulting from their activities. This article shares the results of an effort at the Penn State University Libraries…
Descriptors: Academic Libraries, Climate, Influence of Technology, Conservation (Environment)
Victoria Newton; Thomas Ellis – Journal of Adult and Continuing Education, 2025
There is general consensus within students and staff in higher education that designers have to be 'eco-conscious', making decisions every day that will consciously or non-consciously impact their carbon footprint in multiple ways, from the files they are saving, to the designs they are creating. However, in further/higher education, it is still…
Descriptors: Design, Sustainability, Higher Education, Ecology
Timmons, David S.; Weil, Benjamin – International Journal of Sustainability in Higher Education, 2022
Purpose: Many institutions of higher education have committed to carbon neutrality. Given this goal, the main economic issue is minimizing cost. As for society as a whole, dominant decarbonization strategies are renewable electricity generation, electrification of end uses and energy efficiency. The purpose of this paper is to describe the optimum…
Descriptors: Cost Effectiveness, Higher Education, Energy Conservation, Climate
Experimental Demonstration of Photocatalytic Hydrogen Production in Series with a Hydrogen Fuel Cell
Hanbing Li; Hongyan Zhang; Wenquan Liu; Jie Huang; Kejian Lu; Jinwen Shi; Hui Jin; Wenshuai Chen; Maochang Liu – Journal of Chemical Education, 2023
In recent years, solar-powered photocatalytic water splitting for hydrogen production has drawn great attention as a method to supply clean energy and reduce environmental pollution. This approach, driven by solar energy to synthesize hydrogen gas, is completely renewable and can be used to power hydrogen fuel cells to effectively solve the global…
Descriptors: Fuels, Chemistry, Science Instruction, Undergraduate Students
Jorling, Thomas C. – New England Journal of Higher Education, 2021
Climate change is real and accelerating. It requires an urgent response that focuses all the strategies and tactics necessary to stabilize the Earth's temperature regime. According to Thomas Jorling, the objective to guide research, development and implementation is straightforward: Achieve an all-electric economy. Simply put, all sectors of…
Descriptors: Climate, Change, Energy, Energy Conservation
Hendrickson, Danica L. – ProQuest LLC, 2022
While deep disciplinary knowledge will be required to develop next-generation clean energy technologies, the skills to work across disciplines and with diverse stakeholders will also be required. Providing authentic and explicit opportunities for graduate students in science, technology, engineering, and math (STEM) to engage in the broader…
Descriptors: Energy, Fuels, Conservation (Environment), Graduate Students
Laura A. Schifter; Jonathan Klein, Contributor – Harvard Education Press, 2025
Laura A. Schifter and Jonathan Klein highlight the many ways in which K-12 schools and students have tremendous potential to advance solutions on environmental issues, and they provide frameworks for enacting change, in "Students, Schools, and Our Climate Moment." Schifter and Klein demonstrate how the effects of climate change intersect…
Descriptors: Kindergarten, Elementary Secondary Education, Climate, Environmental Education
Barnes, Melissa; Moore, Deborah; Almeida, Sylvia – Prospects: Quarterly Review of Comparative Education, 2019
In light of Australian policy and curriculum initiatives aimed to prioritize Education for Sustainability (EfS) practices, this article discusses a study that evaluated a smart meter program introduced by a local government of an Australian state/territory. The program aimed to provide teachers and students from 86 primary and secondary schools…
Descriptors: Foreign Countries, Sustainability, Elementary Secondary Education, Conservation (Environment)
Irwin, Ruth – Educational Philosophy and Theory, 2020
Understanding climate change is becoming an urgent requirement for those in education. The normative values of education have long been closely aligned with the global, modernised world. The industrial model has underpinned the hidden and overt curriculum. Increasingly though, a new eco-centric orientation to economics, technology, and social…
Descriptors: Climate, Change, Educational Methods, Ecology
Eaton, Emily M.; Day, Nick A. – Environmental Education Research, 2020
The corporate control of energy production and the reach of fossil capital into civil and political society can be understood as a regime of obstruction that is preventing necessary action on climate change and blocking a just energy transition. In addition to overt forms of economic power and influence, hegemonic power is central to the fossil…
Descriptors: Energy, Fuels, Climate, Change
Gray, Donald; Colucci-Gray, Laura; Donald, Robert; Kyriacou, Aristea; Wodah, Daniel – Scottish Educational Review, 2019
Profound socio-environmental changes taking place at a planetary scale are threatening food security (Godfray et al., 2011), with food production located at a critical nexus between land-use, reduced availability of fossil fuels and the urgent need to reduce emissions (Harvey & Pilgrim, 2011). While debates on food security and energy…
Descriptors: Gardening, Sustainability, Food, Land Use
Smithsonian Institution, 2016
As a trust instrumentality of the United States, the Smithsonian is committed to the goals which Executive Order 13693 set for federal agencies, and is focused on making improvements in environmental, energy, and economic performance. As stated in the current Smithsonian Strategic Plan, one of the four grand challenges we have undertaken is…
Descriptors: Strategic Planning, Sustainability, Museums, Institutional Mission
Lowan-Trudeau, Greg – Journal of Environmental Education, 2021
This article presents a comparative exploration of news media portrayals of Indigenous environmental issues in Canada and the United States guided by a qualitative multimodal critical discourse analysis methodology. Theoretical framing was provided by Elliot Eisner's three curricula, Antonio López's visual literacy framework, and the broader…
Descriptors: Comparative Analysis, Discourse Analysis, Fuels, American Indians
MacLean, Tristan – School Science Review, 2014
This article looks at the potential of bioenergy as a replacement for fossil fuels, the cutting-edge research being undertaken by scientists, and classroom resources available for teaching this topic. There is currently a large programme of scientific research aiming to develop advanced biofuels (replenishable liquid biofuels from non-food plants,…
Descriptors: Energy, Biology, Fuels, Scientific Research
Bendall, Sophie; Birdsall-Wilson, Max; Jenkins, Rhodri; Chew, Y. M. John; Chuck, Christopher J. – Journal of Chemical Education, 2015
Chemical engineering is rarely encountered before higher-level education in the U.S. or in Europe, leaving prospective students unaware of what an applied chemistry or chemical engineering degree entails. In this lab experiment, we report the implementation of a three-day course to showcase chemical engineering principles for 16-17 year olds…
Descriptors: Science Instruction, Chemical Engineering, Science Laboratories, Laboratory Experiments