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Second-generation biofuel feedstocks are currently grown in land-based systems that use valuable resources like water, electricity and fertilizer. This study investigates the potential of near-shore marine (ocean) seawater filtration as a source of planktonic biomass for biofuel production. Mixed marine organisms in the size range of 20µm to 500µm were

Second-generation biofuel feedstocks are currently grown in land-based systems that use valuable resources like water, electricity and fertilizer. This study investigates the potential of near-shore marine (ocean) seawater filtration as a source of planktonic biomass for biofuel production. Mixed marine organisms in the size range of 20µm to 500µm were isolated from the University of California, Santa Barbara (UCSB) seawater filtration system during weekly backwash events between the months of April and August, 2011. The quantity of organic material produced was determined by sample combustion and calculation of ash-free dry weights. Qualitative investigation required density gradient separation with the heavy liquid sodium metatungstate followed by direct transesterification and gas chromatography with mass spectrometry (GC-MS) of the fatty acid methyl esters (FAME) produced. A maximum of 0.083g/L of dried organic material was produced in a single backwash event and a study average of 0.036g/L was calculated. This equates to an average weekly value of 7,674.75g of dried organic material produced from the filtration of approximately 24,417,792 liters of seawater. Temporal variations were limited. Organic quantities decreased over the course of the study. Bio-fouling effects from mussel overgrowth inexplicably increased production values when compared to un-fouled seawater supply lines. FAMEs (biodiesel) averaged 0.004% of the dried organic material with 0.36ml of biodiesel produced per week, on average. C16:0 and C22:6n3 fatty acids comprised the majority of the fatty acids in the samples. Saturated fatty acids made up 30.71% to 44.09% and unsaturated forms comprised 55.90% to 66.32% of the total chemical composition. Both quantities and qualities of organics and FAMEs were unrealistic for use as biodiesel but sample size limitations, system design, geographic and temporal factors may have impacted study results.
ContributorsPierre, Christophe (Author) / Olson, Larry (Thesis advisor) / Sommerfeld, Milton (Committee member) / Brown, Albert (Committee member) / Arizona State University (Publisher)
Created2011
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The United Nations outlined seventeen goals in their 2015 resolution aimed at securing a more sustainable future for the entire world. These goals cover all parts of life and are meant to standardize quality of life at a high level for all countries. Specific to the Maasai people of Kenya

The United Nations outlined seventeen goals in their 2015 resolution aimed at securing a more sustainable future for the entire world. These goals cover all parts of life and are meant to standardize quality of life at a high level for all countries. Specific to the Maasai people of Kenya and Tanzania, there are five main goals that would tackle some of the biggest issues facing the Maasai and greatly improve their lives. These goals include the promotion of good health and well-being, ensuring a quality education for school-age children, supporting efforts for gender equality in all communities, and securing clean and safe water and sanitation services for all people around the world. There are many Non-Governmental Organizations (NGOs) in the Maasai community that are striving to support them and realize these Sustainable Development Goals. Organizations like the Maasai Girls Education Fund and Aid Tanzania have established educational programs to support children, mainly girls, in their efforts to get an education. Others like End Water Poverty and the Maasai Association have programs to ensure safe, accessible drinking water is made available to Maasai communities across Kenya and Tanzania. Lastly, NGOs like My Chosen Vessels have programs that support the economic sustainability and livestock management of the Maasai while also ensuring that Maasai families receive clean water and access to an education. The work and practices of NGOs like these can serve as examples of how to efficiently and effectively address and tackle issues in developing countries, specifically regarding Maasai women and girls, to move closer to achieving these UN Sustainable Development Goals and lead a more sustainable future. Many studies have been done researching the political and economic struggles for Maasai communities and how it impacts them. Vandana Shiva coined the term, “Water Democracy” in her book Water Wars to express the multiple reasons why water is a necessity and right. Many Maasai groups do not have easy access to basic essentials for their everyday lives and NGOs have been noticing this more and more. Dorothy Hodgson writes about the history of Maasai NGOs, and mentions the multiple conflicts that they have had with each other, causing many Maasai groups to have different lifestyles. The connections between the history of the Maasai tribe, their current economy and their current relationship with the government and NGOs all impact women in their communities in different ways.
ContributorsWacloff, Jianna K (Author) / Martin, Thomas (Thesis director) / Oberle, Eric (Committee member) / College of Integrative Sciences and Arts (Contributor) / Barrett, The Honors College (Contributor)
Created2020-05
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Recognition of algae as a “Fit for Purpose” biomass and its potential as an energy and bio-product resource remains relatively obscure. This is due to the absence of tailored and unified production information necessary to overcome several barriers for commercial viability and environmental sustainability. The purpose of this research was

Recognition of algae as a “Fit for Purpose” biomass and its potential as an energy and bio-product resource remains relatively obscure. This is due to the absence of tailored and unified production information necessary to overcome several barriers for commercial viability and environmental sustainability. The purpose of this research was to provide experimentally verifiable estimates for direct energy and water demand for the algal cultivation stage which yields algal biomass for biofuels and other bio-products. Algal biomass productivity was evaluated using different cultivation methods in conjunction with assessment for potential reduction in energy and water consumption for production of fuel and feed. Direct water and energy demands are the major focal sustainability metrics in hot and arid climates and are influenced by environmental and operational variables connected with selected algal cultivation technologies. Evaporation is a key component of direct water demand for algal cultivation and directly related to variations in temperature and relative humidity. Temperature control strategies relative to design and operational variables were necessary to mitigate overheating of the outdoor algae culture in panel photobioreactors and sub-optimal cultivation temperature in open pond raceways. Mixing in cultivation systems was a major component in direct energy demand that was provided by aeration in panel bioreactors and paddlewheels in open pond raceways. Management of aeration time to meet required biological interactions provides opportunities for reduced direct energy demand in panel photobioreactors. However, the potential for reduction in direct energy demand in raceway ponds is limited to hydraulics and head loss. Algal cultivation systems were reviewed for potential integration into dairy facilities in order to determine direct energy demand and nutrient requirements for algal biomass production for animal feed. The direct energy assessment was also evaluated for key components of related energy and design parameters for conventional raceway ponds and a gravity fed system. The results of this research provide a platform for selecting appropriate production scenarios with respect to resource use and to ensure a cost effective product with the least environmental burden.
ContributorsBadvipour, Shahrzad (Author) / Sommerfeld, Milton (Thesis advisor) / Downes, Meghan (Committee member) / Abbott, Joshua (Committee member) / Chester, Mikhail (Committee member) / Arizona State University (Publisher)
Created2015
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Description

Background: Household activities are responsible for up to 80% of direct and indirect greenhouse gas emissions in the United States. These greenhouse gas emissions come from activities including actions taken in relation to food, energy, and water (FEW) resource consumption. Therefore, actions taken at a household level have the potential

Background: Household activities are responsible for up to 80% of direct and indirect greenhouse gas emissions in the United States. These greenhouse gas emissions come from activities including actions taken in relation to food, energy, and water (FEW) resource consumption. Therefore, actions taken at a household level have the potential to significantly reduce greenhouse gas emissions. A game-based learning approach can be used to educate youth on what actions they can take around their household to reduce their carbon footprint. <br/>Aim: FEWS for change is a first player role-playing game developed to educate high school students on how their actions impact the FEW resources and carbon emissions. The game also aims to measure how player’s beliefs and worldview effect their game play regarding sustainability and the environment. <br/>Methods: We developed the FEWS (Food, Energy, and Water Systems) for Change role-playing game based on transdisciplinary research of the food, energy, and water nexus, social, economic, and environmental factors. We piloted the game with a few students for initial results and will have a high school classroom pilot the game in mid-May.<br/>Preliminary Results: Results from the 4 participants demonstrated achievement of the learning goal of the pilot testing. This is objective was met by measuring the players improvement on the postsurvey compared to the presurvey. Due to limitations of time and virtual facilitation of this game, the other two learning objectives could not be measured in this initial pilot because not all post-game activities were included which are needed to measure the other learning objectives. When the game is piloted in mid-May, the other two learning objectives will be tested and measured.

ContributorsFielding, Raven (Author) / Agusdinata, Datu Buyung (Thesis director) / Lukosch, Heide (Committee member) / School of Sustainability (Contributor, Contributor) / Dean, W.P. Carey School of Business (Contributor) / College of Integrative Sciences and Arts (Contributor) / Barrett, The Honors College (Contributor)
Created2021-05
Description
This project, Building the Backdrop, Expanding Perspectives on Sustainability, is a sculpture of a desert sunset that seeks to explore important sustainability issues and highlight the beauty in sustainable practices. Constructed for an honors thesis project at Arizona State University, the primary medium used was cardboard repurposed from package deliveries

This project, Building the Backdrop, Expanding Perspectives on Sustainability, is a sculpture of a desert sunset that seeks to explore important sustainability issues and highlight the beauty in sustainable practices. Constructed for an honors thesis project at Arizona State University, the primary medium used was cardboard repurposed from package deliveries to bring attention to modern overconsumption of packaging materials and showcase our ability to give new life to traditionally single use materials. I invite you to interact with the piece by sharing photos of yourself in front of it to help spread its message and exploring the resources shared along with the sculpture.
ContributorsSandoval, Nicole (Author) / Hines, Taylor (Thesis director) / Meissinger, Ellen (Committee member) / Barrett, The Honors College (Contributor) / Department of Supply Chain Management (Contributor) / Dean, W.P. Carey School of Business (Contributor) / College of Integrative Sciences and Arts (Contributor)
Created2024-05