Duke Athletics Zero Waste to Landfill Initiative

Loading...
Thumbnail Image

Date

2013-04-26

Journal Title

Journal ISSN

Volume Title

Repository Usage Stats

326
views
1252
downloads

Abstract

Landfills are a growing threat to public health, releasing emissions to air, soil, and water. With space and resource constraints, recycling and composting are becoming increasingly economically attractive. Duke, as a leading academic institution, has the opportunity to become a leader in waste reduction. Piloting a zero waste to landfill initiative at Cameron Indoor Stadium will bring the Duke community together to reduce waste while garnering public attention. A zero waste program, in which 90% of waste is diverted from the landfill, can be achieved through upstream, downstream, and courtside changes. Through consumer behavior observations, technology evaluation, and empirical data for waste segregation, we have recommended educational, operational, and product packaging changes to achieve Zero Waste at Cameron Indoor Stadium. These recommendations focus on the addition of composting capacity at Duke, educational initiatives for game attendees and staff, the sourcing of products with easily recyclable or compostable packaging, and negotiations with local recycling facilities to increase acceptance of a variety of materials. This long-term project has the opportunity to expand throughout Duke University and to peer institutions to make the greatest impact.

Description

Provenance

Citation

Citation

Victor, Britta, and Esi Waters (2013). Duke Athletics Zero Waste to Landfill Initiative. Master's project, Duke University. Retrieved from https://hdl.handle.net/10161/6869.


Except where otherwise noted, student scholarship that was shared on DukeSpace after 2009 is made available to the public under a Creative Commons Attribution / Non-commercial / No derivatives (CC-BY-NC-ND) license. All rights in student work shared on DukeSpace before 2009 remain with the author and/or their designee, whose permission may be required for reuse.