Student capstone and applied projects from ASU's School of Sustainability.

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Description

For decades, understanding the complexity of behaviors, motivations, and values has interested researchers across various disciplines. So much so that there are numerous terms, frameworks, theories, and studies devoted to understanding these complexities and how they interact and evolve into actions. However, little research has examined how employee behaviors translate

For decades, understanding the complexity of behaviors, motivations, and values has interested researchers across various disciplines. So much so that there are numerous terms, frameworks, theories, and studies devoted to understanding these complexities and how they interact and evolve into actions. However, little research has examined how employee behaviors translate into the work environment, particularly regarding perceived organizational success. This study advances research by quantitatively assessing how a greater number of individual employees’ pro-environmental behaviors are related to the perceived success of environmentally sustainable workplace activities. We have concluded that the more pro-environmental behaviors an employee embodies, the more positively they perceive the success of their local government's sustainable purchasing policy. Additionally, other factors matter, including organizational behaviors, like training, innovation, and reduction of red tape.

ContributorsFox, Angela (Author) / Darnall, Nicole (Thesis advisor) / Bretschneider, Stuart (Committee member) / Behravesh, Shirley-Ann (Committee member) / School of Sustainability (Contributor)
Created2022-04-19
Description
Utuado, Puerto Rico, is a region that has witnessed many natural hazards, most notably Hurricane Maria that struck the island in 2017 and irrevocably altered its landscape to this day (Holladay et al., 2019; Ortiz, 2020; Benach et al., 2019). In combination with layers of pre-existing vulnerability, such as socio-economic

Utuado, Puerto Rico, is a region that has witnessed many natural hazards, most notably Hurricane Maria that struck the island in 2017 and irrevocably altered its landscape to this day (Holladay et al., 2019; Ortiz, 2020; Benach et al., 2019). In combination with layers of pre-existing vulnerability, such as socio-economic vulnerability and food insecurity, this has made for a disaster situation (Klein, 2018; Benach et al., 2019; Garriga-López, 2019). However, this disaster has also opened up a window for citizens to rise up and self-organize for the revitalization of their shared communities and spaces; in the agricultural sector, this has manifested as a drive towards a stronger regional economy and the building of food sovereignty through agritourism (Holladay et al., 2019).

In contribution to a larger Southern SARE project, my Master of Sustainability Solutions (MSUS) Culminating Experience (CE) project aims to support this local movement through a collaboration with key local farmers to identify local farm assets through the reconstruction of solution strategies (Forrest & Wiek, 2014) and the designing of an educational program for the adaptation and scaling of identified sustainability solutions to other regional farms (Fraser & Galinsky, 2010). The intended outcomes for this project include (1) the building of community resilience and livelihood opportunity; (2) the increasing of awareness and knowledge of agritourism best practices; (3) the dissemination of knowledge on practices to increase farm- and visitor-readiness; (4) and the strengthening and interconnection of the regional economy. Based on the array of exemplary farms and enterprises that I have conducted research on and engaged with through this project, I have witnessed the potential that the widespread dissemination of agritourism best practices offers for the progressive building up of the regional economy in Utuado, Puerto Rico.
Created2021-04-28
Description
This document contains a feasibility study that explores the necessity, collaborations, and
possible methods of installing a 1 megawatt lithium-ion battery storage facility at San Diego Gas
& Electric’s Century Park campus located in the Kearny Mesa neighborhood in central San
Diego, California. The battery will serve purposes of adding renewable energy to

This document contains a feasibility study that explores the necessity, collaborations, and
possible methods of installing a 1 megawatt lithium-ion battery storage facility at San Diego Gas
& Electric’s Century Park campus located in the Kearny Mesa neighborhood in central San
Diego, California. The battery will serve purposes of adding renewable energy to the energy mix,
reducing operations costs via peak shaving, an educational component for the region, and
meeting stringent State of California and California Public Utilities Commission mandates for
both renewable energy and battery storage capacity.
ContributorsShamblin, Sandra M. (Writer of accompanying material)
Created2020-05-15
Description
Before the rise in renewable energy, few people considered the consequences of adding large amounts of intermittent power onto the grid. As renewable energy has become more prevalent, utility companies must adapt their business practices to accommodate these unique sources of power. This is leading to challenges on how best

Before the rise in renewable energy, few people considered the consequences of adding large amounts of intermittent power onto the grid. As renewable energy has become more prevalent, utility companies must adapt their business practices to accommodate these unique sources of power. This is leading to challenges on how best to manage a grid with large amounts of renewable power. Arizona Public Service (APS), the largest electricity provider in the state of Arizona, has more than 70,000 distributed solar customers on their grid and the number of solar customers increases every day. With this increase in distributed solar customers comes the solar duck curve—the phenomenon whereby solar produces energy during times of low demand. However, with the use of storage, the duck curve problem may be mitigated. This project examines the sustainability of three storage options: pumped hydro energy storage, compressed air energy storage, and lithium-ion batteries. Using several sustainability indicators, this project makes a policy recommendation to APS on the most sustainable choice for large-scale energy storage. This project found that compressed air energy storage was the most sustainable option for APS. This considered the impacts of compressed air on the environment, communities, and the costs of this storage option. One important aspect to acknowledge regarding this technology is that in its current form, it does emit some carbon emissions. However, the carbon emissions may have less of an impact if this storage facility can allow APS to use its renewable energy assets most efficiently and continue to use energy from Palo Verde, the nuclear facility in Arizona.
ContributorsRood, Devon (Author) / Romito, Marc (Contributor)
Created2018-04-25