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The financial feasibility of NextPotential's X-doped photocatalyst is uncertain, the outcome depends on how much the material cost becomes reduced due to mass production techniques. If carbon taxes continue on the current trend the photocatalyst is highly likely to become financially feasible. Without carbon taxes, it is still likely the

The financial feasibility of NextPotential's X-doped photocatalyst is uncertain, the outcome depends on how much the material cost becomes reduced due to mass production techniques. If carbon taxes continue on the current trend the photocatalyst is highly likely to become financially feasible. Without carbon taxes, it is still likely the photocatalyst will achieve economical feasibility. The land area required by the photocatalyst is a feasible size. The minimal environmental downsides are that more land will be used and water will be used, but both of these are minimal compared to the benefit of eliminating carbon emissions.
ContributorsMcmullan, Kyle Jonathan (Co-author) / Lahpai, Mun (Co-author) / Donnelly, Connor (Co-author) / Puzhaev, Boris (Co-author) / Adams, James (Thesis director) / Krause, Stephen (Committee member) / Barrett, The Honors College (Contributor) / Materials Science and Engineering Program (Contributor)
Created2015-05
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Description
Graphene has the ability to advance many common fields, including: membranes, composites and coatings, energy, and electronics. For membranes, graphene will be used as a filter for desalination plants which will reduce the cost of desalination and greatly increase water security in developing countries. For composites and coatings, graphene's strength,

Graphene has the ability to advance many common fields, including: membranes, composites and coatings, energy, and electronics. For membranes, graphene will be used as a filter for desalination plants which will reduce the cost of desalination and greatly increase water security in developing countries. For composites and coatings, graphene's strength, flexibility, and lightweight will be instrumental in producing the next generation of athletic wear and sports equipment. Graphene's use in energy comes from its theorized ability to charge a phone battery in seconds or an electric car in minutes. Finally, for electronics, graphene will be used to create faster transistors, flexible electronics, and fully integrated wearable technology.
ContributorsSiegel, Adam (Author) / Adams, James (Thesis director) / Krause, Stephen (Committee member) / Materials Science and Engineering Program (Contributor) / Barrett, The Honors College (Contributor)
Created2018-05
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Description

Lithium ion batteries are quintessential components of modern life. They are used to power smart devices — phones, tablets, laptops, and are rapidly becoming major elements in the automotive industry. Demand projections for lithium are skyrocketing with production struggling to keep up pace. This drive is due mostly to the

Lithium ion batteries are quintessential components of modern life. They are used to power smart devices — phones, tablets, laptops, and are rapidly becoming major elements in the automotive industry. Demand projections for lithium are skyrocketing with production struggling to keep up pace. This drive is due mostly to the rapid adoption of electric vehicles; sales of electric vehicles in 2020 are more than double what they were only a year prior. With such staggering growth it is important to understand how lithium is sourced and what that means for the environment. Will production even be capable of meeting the demand as more industries make use of this valuable element? How will the environmental impact of lithium affect growth? This thesis attempts to answer these questions as the world looks to a decade of rapid growth for lithium ion batteries.

ContributorsMelton, John (Author) / Brian, Jennifer (Thesis director) / Karwat, Darshawn (Committee member) / Chemical Engineering Program (Contributor) / Barrett, The Honors College (Contributor)
Created2021-05
Description

Soiled: An Environmental Podcast is a six episode series that addresses common environmental topics and debunks myths that surround those topics.

ContributorsTurner, Natalie Ann (Co-author) / Kuta, Tiffany (Co-author) / Jones, Cassity (Co-author) / Boyer, Mackenzie (Thesis director) / Ward, Kristen (Committee member) / Materials Science and Engineering Program (Contributor) / Barrett, The Honors College (Contributor)
Created2021-05
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ContributorsReed, Katherine (Author) / Stapp, Mark (Thesis director) / Tetreault, Colin (Committee member) / Barrett, The Honors College (Contributor) / School of Accountancy (Contributor)
Created2021-12
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ContributorsReed, Katherine (Author) / Stapp, Mark (Thesis director) / Tetreault, Colin (Committee member) / Barrett, The Honors College (Contributor) / School of Accountancy (Contributor)
Created2021-12
Description

Mitigation banks are a tool created to mitigate and compensate for negative impacts on the environment resulting from man made activities, especially damage caused to endangered wildlife, plants, and wetland ecosystems. The main objective of creating the system of mitigation banks is to achieve environmental equilibrium, meaning “No Net Loss”

Mitigation banks are a tool created to mitigate and compensate for negative impacts on the environment resulting from man made activities, especially damage caused to endangered wildlife, plants, and wetland ecosystems. The main objective of creating the system of mitigation banks is to achieve environmental equilibrium, meaning “No Net Loss” to all environmental functions. This means damage to one area is compensated for in another area of like-kind through restoration. There is great controversy surrounding this claim. There is a system of debits and credits to ensure ecological loss from development is preceded by restoration of a similar ecology and function. Wetland mitigation banks are the focus for the purpose of research. Background and benefits will be given first, followed by threats, issues, solutions and a personal experience with mitigation banks.

ContributorsReed, Katherine (Author) / Stapp, Mark (Thesis director) / Tetreault, Colin (Committee member) / Barrett, The Honors College (Contributor) / School of Accountancy (Contributor) / WPC Graduate Programs (Contributor) / Department of Finance (Contributor)
Created2021-12
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Description
This study aims to identify the self-reported sustainability goals, practices, and results of the five largest hotel companies that are headquartered in the United States through a comprehensive content analysis of each of their websites. The five companies included in the study are Best Western International, Wyndham Hotels and Resorts,

This study aims to identify the self-reported sustainability goals, practices, and results of the five largest hotel companies that are headquartered in the United States through a comprehensive content analysis of each of their websites. The five companies included in the study are Best Western International, Wyndham Hotels and Resorts, Choice Hotels International, Hilton Worldwide, and Marriott International. The main focus centered on the qualitative information they shared about their goals and implemented practices across the hotels owned and operated by each company. In addition, the published qualitative data was analyzed to look at the reported results of their implemented practices. The results showed a large variety in the level of information that was shared by each of the five companies.
Information was examined using thirteen indicators of sustainability. Eight indicators were chosen that represented environmental sustainability, plus five indicators that represent social and economic sustainability. Based on the information analyzed, each company received a score for each indicator according to the level of information disclosed. This created a sustainability scorecard, with Marriott and Hilton scoring the highest, Wyndham and Best Western scoring the lowest, and Choice Hotels falling in the middle .In summary, it was determined that Hilton is reporting at the highest level, based on the measured indicators in addition to receiving external assurance on their disclosed results from implemented practices, The other four companies have further steps they should take to better communicate their sustainable practices and overall commitment to sustainability.
ContributorsStefanowski, Stacey Rita (Author) / Nyaupane, Gyan (Thesis director) / Chhabra, Deepak (Committee member) / Watts College of Public Service & Community Solut (Contributor) / School of Accountancy (Contributor) / Department of Management and Entrepreneurship (Contributor) / Barrett, The Honors College (Contributor)
Created2019-05