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Aircraft Greenhouse Gas Emissions During The Landing And Takeoff Cycle At Bay Area Airports, Travis M. Norton May 2014

Aircraft Greenhouse Gas Emissions During The Landing And Takeoff Cycle At Bay Area Airports, Travis M. Norton

Master's Projects and Capstones

The aviation industry is a growing industry and has global environmental impacts. Throughout all phases of air transit, pollutant emissions, including greenhouse gases (GHGs), are released. The goal of this study is to quantify and characterize these emissions produced from aircraft in the LTO cycle at Bay Area airports.

FAA data was used along with the Emissions and Dispersion Modeling System (EDMS) to produce GHG emissions inventory for the LTO cycle at SFO, OAK, and SJC. These emissions inventories were compared to comparable sized airports both domestically and internationally.

Results indicate that CO2 represents 99.5% of all aircraft LTO …


What Role Can Ceqa Play In Reaching Ghg Emissions Reductions Goals Set Forth In Ab 32 – An Analysis Of Ceqa, Ab 32, And Recommendations For Ceqa Reform, Eleanor Gilbert May 2014

What Role Can Ceqa Play In Reaching Ghg Emissions Reductions Goals Set Forth In Ab 32 – An Analysis Of Ceqa, Ab 32, And Recommendations For Ceqa Reform, Eleanor Gilbert

Master's Projects and Capstones

The Global Warming Solutions Act of 2006 (AB 32) intends to reduce the effects of climate change through several mechanisms, including greenhouse gas (GHG) emissions reduction. AB 32 established a statewide GHG emissions goal, which requires California to decrease its GHG emissions to 1990 levels by 2020. The California Environmental Quality Act (CEQA) is an environmental assessment law adopted in 1970 that requires lead agencies (private developers, public agencies, etc.) to consider and disclose the potential significant environmental impacts of new development projects the lead agency is planning. CEQA has attracted much controversy since adoption and continues to be the …


Tapping The Apocalypse & Healing With Intention, Julianne E. Henderson Ms. Apr 2014

Tapping The Apocalypse & Healing With Intention, Julianne E. Henderson Ms.

Creative Activity and Research Day - CARD

When crisis strikes, practical skills and strategies are critical to one's survival. However, one's positive mentality, relationship with and knowledge of his or her environment, and capacity for compassion when faced with an apocalyptic landscape are just as likely to boost their morale. Maintaining an optimistic consciousness assists human beings with survival, regardless of what level of adversity we face. This research project combines an important skill, which is knowing how to heal oneself naturally with what Nature provides, with the power of our consciousness to determine our success, strength, and overall capacity for withstanding the hurricanes of change.


Modeling Tidal Marsh Distribution With Sea-Level Rise: Evaluating The Role Of Vegetation, Sediment, And Upland Habitat In Marsh Resiliency, Lisa M. Schile, John Callaway, J T. Morris, Diana Stralberg, V Thomas Parker, Maggi Kelly Jan 2014

Modeling Tidal Marsh Distribution With Sea-Level Rise: Evaluating The Role Of Vegetation, Sediment, And Upland Habitat In Marsh Resiliency, Lisa M. Schile, John Callaway, J T. Morris, Diana Stralberg, V Thomas Parker, Maggi Kelly

Environmental Science

Tidal marshes maintain elevation relative to sea level through accumulation of mineral and organic matter, yet this dynamic accumulation feedback mechanism has not been modeled widely in the context of accelerated sea-level rise. Uncertainties exist about tidal marsh resiliency to accelerated sea-level rise, reduced sediment supply, reduced plant productivity under increased inundation, and limited upland habitat for marsh migration. We examined marsh resiliency under these uncertainties using the Marsh Equilibrium Model, a mechanistic, elevation-based soil cohort model, using a rich data set of plant productivity and physical properties from sites across the estuarine salinity gradient. Four tidal marshes were chosen …


Using Field Data To Assess Model Predictions Of Surface And Ground Fuel Consumption By Wildfire In Coniferous Forests Of California, J M. Lydersen, B M. Collins, C M. Ewell, A L. Reiner, J A. Fites, C B. Dow, P Gonzalez, David Saah, J J. Battles Jan 2014

Using Field Data To Assess Model Predictions Of Surface And Ground Fuel Consumption By Wildfire In Coniferous Forests Of California, J M. Lydersen, B M. Collins, C M. Ewell, A L. Reiner, J A. Fites, C B. Dow, P Gonzalez, David Saah, J J. Battles

Environmental Science

Inventories of greenhouse gas (GHG) emissions from wildfire provide essential information to the state of California, USA, and other governments that have enacted emission reductions. Wildfires can release a substantial amount of GHGs and other compounds to the atmosphere, so recent increases in fire activity may be increasing GHG emissions. Quantifying wildfire emissions however can be difficult due to inherent variability in fuel loads and consumption and a lack of field data of fuel consumption by wildfire. We compare a unique set of fuel data collected immediately before and after six wildfires in coniferous forests of California to fuel consumption …