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Narration of the Urban Jungle Sweet Sixteen encounter between #1 Harar Hyena and #7 Coyote, by Katie Hinde, Tara Chestnut, and Anne W. Hilborn

ContributorsChestnut, Tara (Creator) / Hinde, Katie (Creator) / Hilborn, Anne W. (Creator)
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Narration of the Jump Around Round 1 encounter between #8 Springhare and #9 Jackrabbit by Jessica Light.

ContributorsLight, Jessica (Creator)
Created2019
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Narration of the CAT-e-Gory Round 2 encounter between #2 Nimravid and #7 Tiger Quoll, by Katie Hinde and Patrice K. Connors.

ContributorsConnors, Patrice K. (Creator) / Hinde, Katie (Creator)
Created2019
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Narration of the Urban Jungle Round 2 encounter between #3 Berlin Boar and #6 Bobcat, by Katie Hinde, Jessica Light, Mauna Dasari, and Anne W. Hilborn

ContributorsHinde, Katie (Creator) / Light, Jessica (Creator) / Desari, Mauna (Creator) / Hilborn, Anne W. (Creator)
Created2018
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Description

Sustainable mobility policy for long-distance transportation services should consider emerging automobiles and aircraft as well as infrastructure and supply chain life-cycle effects in the assessment of new high-speed rail systems. Using the California corridor, future automobiles, high-speed rail and aircraft long-distance travel are evaluated, considering emerging fuel-efficient vehicles, new train

Sustainable mobility policy for long-distance transportation services should consider emerging automobiles and aircraft as well as infrastructure and supply chain life-cycle effects in the assessment of new high-speed rail systems. Using the California corridor, future automobiles, high-speed rail and aircraft long-distance travel are evaluated, considering emerging fuel-efficient vehicles, new train designs and the possibility that the region will meet renewable electricity goals. An attributional per passenger-kilometer-traveled life-cycle inventory is first developed including vehicle, infrastructure and energy production components. A consequential life-cycle impact assessment is then established to evaluate existing infrastructure expansion against the construction of a new high-speed rail system. The results show that when using the life-cycle assessment framework, greenhouse gas footprints increase significantly and human health and environmental damage potentials may be dominated by indirect and supply chain components. The environmental payback is most sensitive to the number of automobile trips shifted to high-speed rail, and for greenhouse gases is likely to occur in 20–30 years. A high-speed rail system that is deployed with state-of-the-art trains, electricity that has met renewable goals, and in a configuration that endorses high ridership will provide significant environmental benefits over existing modes. Opportunities exist for reducing the long-distance transportation footprint by incentivizing large automobile trip shifts, meeting clean electricity goals and reducing material production effects.

Created2012-03-16