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

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Description
The Arizona State University (ASU) Masters of Sustainability Solutions (MSUS) program connects student teams with real-world clients to solve real-world sustainability problems as a part of the students’ Culminating Experience in the program. This report details the project assigned to our group, the Emissions Data Detectives (EDD), in partnership with

The Arizona State University (ASU) Masters of Sustainability Solutions (MSUS) program connects student teams with real-world clients to solve real-world sustainability problems as a part of the students’ Culminating Experience in the program. This report details the project assigned to our group, the Emissions Data Detectives (EDD), in partnership with our client, Gannett Fleming. This project focuses on calculating greenhouse gas (GHG) emissions from the client’s leased office spaces across the United States and Canada. In excess, GHGs trap heat in the atmosphere, negatively affecting global air quality and human health. In addition, top companies similar to our client are already disclosing their emissions, new legislation is aiming to require such reporting, and stakeholders are trending to gravitate towards firms measuring and reducing their environmental impact. During the first semester of this project, we noticed that Gannett Fleming lacked data on specific utility usage in their leased office spaces, as not all data is shared, standardized, or robust enough for accurate emissions calculations. After conducting a landscape analysis where group members interviewed companies facing a similar problem, the team identified best practices for addressing this issue. Such practices included using mixed methods for calculations based on data availability, leveraging organizational connections for efficient communication with landlords, creating custom communication plans, and using concise language with landlords. The team also conducted an sTOWS analysis to understand better how our research could best be applied to Gannett Fleming’s problem. From there, we developed a project plan that included an Invitation to Participate and Data Request to collect the necessary data. Next, the team outlined strategies for emissions calculations, including applying calculations from the GHG Protocol and compiling all calculations in a navigable spreadsheet. Greenhouse gas calculations were made using a mix of asset-specific data from the Data Request forms and average data from the EPA estimates using equations from Scope 3, Category 8, or Leased Upstream Assets per the Greenhouse Gas Protocol. Emissions were categorized under Scope 3 since the client has no control over the leased offices, and the control approach was used. Final results showed that the emissions calculated for the 8 offices where asset-specific data was used combined with the 31 offices where average data was used totaled 2,390 metric tonnes of CO2e for FY2022. In order to ensure that this project can be helpful to Gannet Fleming long-term, we came up with three main deliverables including a GHG spreadsheet including all calculations and findings, a GHG roadmap with simplified step-by-step instructions of our methodology, and a Sustainable Leasing Policy information to ensure the client’s emissions reduction goals are communicated and considered in the decision-making process for future lease agreements. This version contains results that have been edited to ensure client confidentiality. Offices have been anonymized, and numbers used are not representative of actual emissions findings.
ContributorsGutierrez, Lukas (Author) / Carlson, Chloe (Author) / Davitt, Akilah (Author) / Cobb, James (Author)
Created2023-04-24
Description
The current global food system is not designed to support local populations. It is a complex network of technologies and behaviors that optimize production and distribution, but simultaneously interact to result in many of the sustainability challenges that we face today, particularly when it comes to food insecurity within communities

The current global food system is not designed to support local populations. It is a complex network of technologies and behaviors that optimize production and distribution, but simultaneously interact to result in many of the sustainability challenges that we face today, particularly when it comes to food insecurity within communities and the resulting health dynamics. Current frameworks intended to guide outside entities working with communities in Maricopa County are generally insufficient to empower these communities to sustainably develop and manage their own local food systems. Many protocols are designed for effective interventions, but community organizers often lack effective pre-community engagement strategies and fail to get target participants to show up to meetings. Primarily, existing protocols and frameworks overly emphasize problems at the expense of identifying what assets the community has to be able to address challenges from within.

For the community engagement piece of the project, existing community engagement protocols and frameworks were compared. The most effective strategies were then selected and combined into a single adaptive framework. Assets Based Community Development, the Sustainable Neighborhood for Happiness Index, and the six types of capital are used as the foundational structure of the Community System Map. A Community Food System map was then organized using a “hub” approach, and the Residential Edible Landscaping map was organized based off of field experience. The nested systems illustrate just how complex the community food system really is. The outcome of the project is the first iteration of an adaptive tool that can be used by for-profit or non-profit organizations to co-create and interdependently manage local community food systems.
ContributorsTibbetts, Jason (Contributor)
Created2019-05-15
Description
In universities, such as Arizona State, students are becoming homeless at an alarming rate. These homeless ASU students are often invisible, as seen through the lack of information on who they are and what resources the university has developed to help them. Typically, students arrive at university campuses with most

In universities, such as Arizona State, students are becoming homeless at an alarming rate. These homeless ASU students are often invisible, as seen through the lack of information on who they are and what resources the university has developed to help them. Typically, students arrive at university campuses with most of the resources required for them to pursue a degree. However, several economic factors such as unemployment or financial instability can impact these resources which influence students ability to stay enrolled in classes. This feature is reflected in the well understood concept of the starving student. Despite this paradigm, the fact remains that students under this stress are attending classes and are under financial stress to do so while being unable to meet their basic needs. These intertwined elements result in ASU students becoming exposed to cyclical needs-insecurities including homelessness.

Therefore, the team decided to develop a project called Sun Devils Together which addresses the needs of ASUs students facing homelessness and overall aims to help increase the accessibility of available resources through reducing the silo effect that occurs due to lack of communication between different departments and increases faculty, staff, and student awareness regarding the issue. In order to achieve this, the team has collaborated with the Assistant Dean of Students to produce a training module for ASU faculty, professional staff, and students. The team is contributing information to the creation of a new website that will have all the resources available to students in one place. In addition, the team will create a coded pamphlet with a map of resources that will be given out to different departments around campus that students may potentially reach out to for help while informing those departments regarding the existence of other departments that work towards the same cause.
ContributorsAbdul Rashid, Maryam (Writer of accompanying material) / Dosier, Skyliana (Writer of accompanying material) / Sanchez Marquez, Omar (Writer of accompanying material)
Created2020-05-13
Description
These documents were developed as part of the culminating experience project for the Masters of Sustainability Solutions (MSUS) graduate program. This report was developed for the ASU Foundation and the Fulton Center by Team Green Impact with the goal of establishing a facility based year for the foundation to meet their

These documents were developed as part of the culminating experience project for the Masters of Sustainability Solutions (MSUS) graduate program. This report was developed for the ASU Foundation and the Fulton Center by Team Green Impact with the goal of establishing a facility based year for the foundation to meet their 2035 net-zero target. Contents of this report include: Scope 1 and Scope 2 GHG emission measurements for the Fulton Center, GHG emission reduction recommendations, an infographic for internal stakeholder engagement, and an example net-zero strategy the foundation can utilize in their current and future building. The purpose of the report and the infographic is to inform next steps for reducing GHG emissions and to help the ASU Foundation make progress towards their net-zero target.
ContributorsFowler, Carissa (Author) / Boss, Lauren (Author) / Austin, Lesley (Author)
Created2023-05-01
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ContributorsFowler, Carissa (Author) / Boss, Lauren (Author) / Austin, Lesley (Author)
Created2023-05-01
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ContributorsFowler, Carissa (Author) / Boss, Lauren (Author) / Austin, Lesley (Author)
Created2023-05-01