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Islands are some of the smallest contributors to global carbon emissions, yet are among the most vulnerable to the impacts of climate change (e.g. rising sea levels, extreme storms, and declining fish populations due to warming seas). At the same time, due to their smaller scale and local limitations on

Islands are some of the smallest contributors to global carbon emissions, yet are among the most vulnerable to the impacts of climate change (e.g. rising sea levels, extreme storms, and declining fish populations due to warming seas). At the same time, due to their smaller scale and local limitations on resources, island communities have been driving adaptation efforts for responding to the impacts of climate change based on their lived experiences and indigenous knowledge. Recognizing that local community members are in the best position to advance sustainability solutions in their respective island communities, our project sought to uncover best practices of islands that are collaboratively working with their communities to promote sustainable development and adapt to climate change, while leading the way in measuring progress on the SDGs. To this end, we interviewed island leaders from Hawaii, Guam, and Tasmania, who have already launched strategies for achieving these goals, and combined their experiences into a framework requested by other island leaders to encourage locally-driven, culturally-relevant green growth initiatives in partnership with our project partner, the Local2030 Islands Network (Local2030IN). Through designing the framework, we learned 17 possible actions islands can take when developing their own green growth initiative, key insights for implementing the SDGs on islands, and how to work alongside a project partner to create a final deliverable.
Created2021-04-28
Description
Incorporating a Sustainability (S) focus curriculum through a sustainability lens, across all degree pathways in higher educational institutions using Indigenous Knowledge as a foundational learning platform can increase successful student learning outcomes. By realizing shared values of open communication, respect and diversity, and high expectation of knowledge explorations; Science, Sustainability,

Incorporating a Sustainability (S) focus curriculum through a sustainability lens, across all degree pathways in higher educational institutions using Indigenous Knowledge as a foundational learning platform can increase successful student learning outcomes. By realizing shared values of open communication, respect and diversity, and high expectation of knowledge explorations; Science, Sustainability, and Indigenous Knowledge systems can build upon curriculum that supports the college, students, our community, and global awareness of unsustainable practice. Higher education institutions have relied mainly on empirical evidence that supports reasoning and logic while Indigenous Knowledge systems uses experiential observations and learning. Being Indigenous Native Hawaiian and doing academic research from scholarly works of Native Hawaiians and their methodology in Science observations; I realized that a sustainability systems model share common value systems, but there is a disconnect between these two powerful systems. Building a coalition of experts in each field of study can create a new learning paradigm through curriculum as a holistic approach to systems thinking. All of the key components to creating a Sustainability focus curriculum are already in place at universities, and now is the time to bridge them together through collective shared values.
ContributorsKakalia, Gordean (Author)
Created2019-05-15
Description
While the term sustainability is commonly used in 2019, in 1950, it was sparsely uttered. To understand how Contento Recycling LLC became Central New York’s leader in sustainable development, you must go back to Gerald Contento Sr, and the year 1950. This was the year my grandfather started our family’s

While the term sustainability is commonly used in 2019, in 1950, it was sparsely uttered. To understand how Contento Recycling LLC became Central New York’s leader in sustainable development, you must go back to Gerald Contento Sr, and the year 1950. This was the year my grandfather started our family’s vehicle dismantling and scrap metal recycling business. Over the course of the next 70 years, Contento’s and now, Contento Recycling, has evolved into a leader in recycling and environmental work in Central New York. To see how I created a sustainable business enterprise, you must analyze my family’s past. My family’s history provides a roadmap to a more sustainable future.
When I established Contento Recycling LLC in 2017, it was poised to be Central New York’s first ever construction and demolition debris recycling business. I was tasked with the challenge that many sustainability professionals are tasked with and that was to show the community why they should stop taking their construction debris to the landfill, and instead bring it to my recycling center for processing, recycling, and landfill diversion. Over the last several years I applied for state grant funding, spread awareness about my new business, designed and constructed a material recovery facility, outfitted equipment, and trained staff. I now have a facility that accepts about 40 tons of mixed C&D debris per day, and diverts about 20% of that from the landfill.
On a more personal level, I learned a tremendous amount about dealing with change management. I’ve learned a lot about business development, and some keys to success when building a business. I’ve figured out how to help my employees and customers grow. I’ve learned to be more patient and flexible with my business endeavors. I have a much clearer vision of what I want for my business and for myself. I have developed a rousing optimism on the impact that my business, and myself can have on the sustainable development of Central New York. I will be a leader in environmental stewardship and partner with other people and organizations who want to work towards a more sustainable future.
ContributorsContento, Anthony (Author, Project director)
Created2019-05-15
Description
In northern Arizona, the removal of woody biomass from forested land has garnered a high level of interest as threats of catastrophic wildfires have increased in recent years. Although there has been a great deal of vocal support for forest restoration, efforts on the ground are often stalled by complex

In northern Arizona, the removal of woody biomass from forested land has garnered a high level of interest as threats of catastrophic wildfires have increased in recent years. Although there has been a great deal of vocal support for forest restoration, efforts on the ground are often stalled by complex federal contracting systems, a weak logging and sawmill industry, low-quality timber, and inabilities to guarantee long-term biomass supplies to processers. These barriers are exceedingly apparent in in the Flagstaff area, where the vast majority of forested land falls under the jurisdiction of the federal government and little infrastructure exists for wood product industries. In order to address these obstacles, forest stakeholders in Coconino County are actively searching for enterprises to utilize material that urgently needs to be removed from the surrounding forests. This project aimed to assist stakeholders in this endeavor by identifying and researching a number of practical and innovative woody biomass utilization enterprises that are suited to the existing regional infrastructure. While there are a variety of ways to process biomass, this project focuses on the following four end products because of their ability to use residual materials from harvest and sawmill operations, their low-tech nature, and the end product’s proximity to potential markets: biochar, compost, wood-plastic composites, and mushroom cultivation. Each of these products, and the processes used to create them, were analyzed and evaluated using a sustainable enterprise framework, and the final results were summarized in a portfolio for stakeholders in the region to review. Although this project offered just a glimpse of what is possible, the ultimate aim was to foster collaborative conversations regarding how forest restoration residues can be used in sustainable and innovative ways.
ContributorsPaulus, Caitlin (Contributor)
Created2019-05-15
Description

One solution to the problems of poor air quality in Phoenix, Arizona and global climate change is to alter the way the population uses transportation. In the US, around one-fifth of all carbon dioxide (CO2) emissions are due to cars and trucks used for transportation and the increasing level of

One solution to the problems of poor air quality in Phoenix, Arizona and global climate change is to alter the way the population uses transportation. In the US, around one-fifth of all carbon dioxide (CO2) emissions are due to cars and trucks used for transportation and the increasing level of CO2 emissions is exacerbating our impact on the climate and is causing a shift in climate. By switching from combustion engine vehicles to public transportation, electric vehicles, or going entirely vehicle-less, the amount of CO2 being released into the atmosphere every day will be decreased and overall air quality within cities will improve. If public transportation, riding a bicycle or walking is not an option, electric vehicles (EVs) are ideal as a lower-carbon emitting option over traditional combustion engines when they are recharged using renewable energy sources, like solar.

To encourage the adoption of EVs, this project pushed to overcome a few of the traditional barriers to adoption – initial cost, charging station infrastructure, and education about EVs. First, charging infrastructure was installed on all four ASU campuses. Then, to discover the biggest barriers to EV adoption, a literature review was conducted to develop a general understanding of barriers which guided the creation of survey questions. This survey was distributed to all staff and faculty at ASU (over 9,500 individuals) and received over 1,400 responses. To begin building the EV program at ASU, other universities with EV programs were interviewed to learn best practices and to understand what is most effective in encouraging EV adoption on campus. The responses determined that ASU needs to:

1. Install more charging stations on campus.
2. Offer premium parking for EV/hybrid users or a discounted parking pass or free charging.
3. Add charging stations to ASU interactive map.
4. Develop an incentive program with EV dealerships.

The project built partnerships with EV dealerships to lower the initial costs associated with buying and leasing EVs. Finally, to increase awareness of EVs, the dealership partners brought EVs to campus for a demonstration day paired with Earth Day. The ASU EV program will reduce barriers to EV adoption to help reduce CO2 emissions related to transportation at the ASU campuses and improve city air quality.

ContributorsKutter, Kayla (Author, Project director)
Created2019-05-15
Description

The American food system creates a significant amount of waste and relies on significant energy, land, and freshwater inputs, accounting for a large amount of the United States GHG emissions (US EPA, 2009). Across the supply chain, a total of 40-50% of all food is not consumed. Reducing food waste

The American food system creates a significant amount of waste and relies on significant energy, land, and freshwater inputs, accounting for a large amount of the United States GHG emissions (US EPA, 2009). Across the supply chain, a total of 40-50% of all food is not consumed. Reducing food waste is a way to decrease the impacts of the food system across the supply chain. At present, restaurants do not know of options available to them to mitigate their food waste and decrease their impact on climate change. For this project I partnered with Local First Arizona to use food recovery, or donating unused food to organizations that serve food insecure people, as an attempt to close the loop between the food that is being wasted and those who struggle to meet their caloric needs. The restaurants at Devour Culinary Classic, a weekend long food festival in Phoenix, AZ, received information about food donation and were prompted to donate at the end of the event. In total, 24 restaurants donated food, diverting 500 pounds of food, or 7% of all diverted waste, from the event’s waste stream. Donations were given to refugees recently released from ICE custody through a partnership with Arizona Jews for Justice. Following the event, recommendations on how to improve the project in future years were given to Local First Arizona in the categories of organization & logistics, marketing, communication, financial, and sustainability. A diffusion of innovation framework was used to identify the barriers faced by restaurants and analyzed how food festivals are a way to overcome those barriers.

ContributorsFields-Austin, Lexie (Author, Project director)
Created2019-05-15
Description

Domestic energy is an important component of our day to day lives and is something we cannot live without. Imagine how life would be without a means to cook our food, to warm our house, life would be unbearable. As we enjoy these comforts rarely do we stop to think

Domestic energy is an important component of our day to day lives and is something we cannot live without. Imagine how life would be without a means to cook our food, to warm our house, life would be unbearable. As we enjoy these comforts rarely do we stop to think what the opportunity cost is. For those using renewable sources, it is not a big issue, but for those who rely on wood fuel, they have to strike a delicate balance between need for fuel and the need to conserve the greatest support systems of their livelihoods, the forests. The main source of energy for households in many developing countries is biomass, mainly from forests and woodlands. The continued use of firewood and charcoal fuel puts a strain on forests, resulting in adverse effects on the environment such as prolonged droughts, loss of biodiversity, dwindling water resources, changing weather patterns among other sustainability challenges. An alternative to firewood to charcoal lies in biochar briquettes. This paper discusses the role of biochar briquettes in mitigating climate change and serves as a step by step guide on how biochar briquettes may be produced.

ContributorsNganga, Patrick M. (Author)
Created2018
Description
People everywhere should be doing everything they can to be more sustainable so that climate change can begin to be mitigated. We are already feeling the negative effects of climate change, and they are thoroughly documented. Despite this people are not changing to be more sustainable fast enough. Many either

People everywhere should be doing everything they can to be more sustainable so that climate change can begin to be mitigated. We are already feeling the negative effects of climate change, and they are thoroughly documented. Despite this people are not changing to be more sustainable fast enough. Many either reject the idea of climate change, do not know what they could do, or are unaware of how climate change affects them. Sustainability also impacts more than just climate change. Living more sustainably can have positive impacts economically as well as positive impacts on human health. In a world that is so connected and with such a wealth of information, we can no longer afford to have communities in the dark. Leaders need to rise on a community level to make a difference. Leadership is an aspect of an organization or a project that can elevate it to new heights. A leader is not everything, but the difference a good leader makes is universal. In this paper I will teach you about organizing a sustainability fair that educates and engages marginalized communities that typically are not included in the conversation on how to save our world.
ContributorsSalinas, Jorge (Author)
Created2018-11-10
Description

Cities with a car-oriented mobility system are significant consumers of energy and require drastic transformations in their structure and function to minimize their harmful impacts on environment and people and to achieve sustainability goals. To promote such sustainable transformations, municipal administrators need to act as change-agents. Because municipal governments are

Cities with a car-oriented mobility system are significant consumers of energy and require drastic transformations in their structure and function to minimize their harmful impacts on environment and people and to achieve sustainability goals. To promote such sustainable transformations, municipal administrators need to act as change-agents. Because municipal governments are often not agile organizations, they tend toward incrementalism even in the pursuit of transformational goals. Therefore, there is a need in municipal governments to build individual transformative capacity so that municipal administrators can design, test, and implement plans, projects, and policies that are capable of transforming cities toward sustainability. This research presents a game-based workshop, “Stadt-liche Ziele” (AudaCity), that uses a backcasting approach to make municipal administrators build a sustainability strategy. I conducted a pilot study to test the effects of the game on municipal administrators’ confidence in their own ability and power to implement sustainability actions, a key determinant of transformative capacity. Five municipal administrators from Lüneburg, Germany, working on mobility issues, participated in a three-hour-workshop playing the game. Interviews and questionnaires were used before and after the workshop and participants’ contributions during the event were recorded to explore collective changes in confidence. Results indicate that the game increased participant confidence by rewarding collective success, breaking down an ambitious goal into achievable tasks, and acknowledging how administrators’ current actions already contribute to the goal.

ContributorsReutter, Leo (Author) / Withycombe Keeler, Lauren (Contributor) / von Wehrden, Henrik (Contributor) / Lang, Daniel (Contributor)
Created2018-06-28
Description
The City of Apache Junction is located in an environmentally and culturally rich location on the eastern edge of the Phoenix Metropolitan area. This suburb is expected to grow in the future with undeveloped land zoned for development. Despite its uniqueness, the city is challenged by a negative reputation in

The City of Apache Junction is located in an environmentally and culturally rich location on the eastern edge of the Phoenix Metropolitan area. This suburb is expected to grow in the future with undeveloped land zoned for development. Despite its uniqueness, the city is challenged by a negative reputation in the region. To help improve the city's image and promote development, the City of Apache Junction has partnered with Arizona State University's Project Cities program. Through this partnership both parties work to work toward sustainable development of Apache Junction. This Culminating Experience project is one of several initiatives working for and with the city to help improve quality of life for residents. The project asks, how can we measure, identify, and promote locations of high community value in Apache Junction to attract new residents and create more development opportunities? A Public Participation GIS methodology was used to survey residents about their favorite locations in Apache Junction, participants were asked to mark their favorite locations on a paper map with stickers. Each sticker had a different color and corresponded with different values. The values were: recreational, cultural, spiritual, aesthetic, and special place values. All survey responses were transferred from physical maps to online geographic survey website Maptionnaire. Running statistical and geospatial analysis, survey found 6 locations in Apache Junction with highest density values. Findings from this project will be delivered to city of Apache Junction for integration into the Positively Apache Junction rebranding campaign and future urban development decisions.
ContributorsGonzalez, Andres (Author) / Prosser, Paul (Contributor)
Created2018-04-27