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How much oil does high-speed rail use?

oil-free transport HSR is electrically powered and can run 100% on clean, safe renewable energy.



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oil-free transport HSR is electrically powered and can run 100% on clean, safe renewable energy.

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The California HSR, for example, will remove 12 billion pounds of carbon dioxide per year by 2030 because it uses electricity generated from wind, solar, and other renewable resources. In addition, California's HSR will save 12.7 million barrels of oil by 2030.

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HSR is electrically powered and can run 100% on clean, safe renewable energy. One high speed train powered by the wind can carry more passengers than 9 oil-burning, carbon-spewing airplanes!

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HSR reduces traffic congestion and gaseous waste emissions, as well as environmental pollution, by replacing traditional transportation (Anderson, 2014). According to the study of Chen et al. (2016), HSR has a significant and positive effect on environmental degradation.

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The Little Engine That Couldn't: California's High-Speed Rail Costs Rise To $200 Million Per Mile. California's high-speed rail (HSR) pencils out to around $200 million per mile for the San Francisco–Los Angeles route.

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Most high-speed trains today get their electricity from overhead wires or catenaries using a pantograph.

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A rail tank car carries about 30,000 gallons (÷ 42 gallons/barrel = about 700 barrels).

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Fuel Tank. This huge tank in the underbelly of the locomotive holds up to 5,500 gallons (20,820 liters) of diesel fuel, plus an additional 300 gallons (1,135 liters) of coolant, and 250 gallons (946 liters) of engine oil.

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He said there are only a few examples of high-speed rail networks that turn a profit, due to a rare combination of passenger numbers and distance. For example, most of the companies that run Japan's Shinkansen or bullet train lines operate at a profit, as do some fast trains on France's state-owned SNCF network.

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In 2021, Beijing-Shanghai High-speed Railway Co., Ltd. earned a total net profit of 4.8 billion yuan, an increase of more than 49 percent from the previous year. Established in Beijing in 2007, it is the only railroad company in China that introduces social cash investors and Sino-foreign cooperative operations.

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While the US was a passenger train pioneer in the 19th century, after WWII, railways began to decline. The auto industry was booming, and Americans bought cars and houses in suburbs without rail connections. Highways (as well as aviation) became the focus of infrastructure spending, at the expense of rail.

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As of February 2021, the state of California has spent approximately $4.3 billion on the high-speed rail project that was planned to connect Los Angeles to San Francisco. However, it is important to note that the project is not entirely dead but has faced significant delays, cost overruns, and scaled-down plans.

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The Case against High-?Speed Rail
  • High-?Speed Rail Is Too Expensive. ...
  • Dedicated Infrastructure Is Wasted Infrastructure. ...
  • It's an Energy Hog. ...
  • It's Slow. ...
  • It Doesn't Go Where You Want to Go. ...
  • It Won't Get Many People Out of Cars or Planes. ...
  • There Is No “Sweet Spot” ...
  • It Won't Help and May Hurt the Economy.


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FUNDING IN BRIEF Funding for California high-speed rail has come from the legislative appropriation of state special funds and from federal competitive grants. No funding comes from traditional state sources, such as the gas taxes or general fund dollars.

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A lot cheaper. That high-speed train ticket would cost about $75, compared to more than $200 to fly or drive. Ready to ride?

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Modelling by Virgin Hyperloop One in 2016 estimated a per-mile cost of $84 to $121 million for a cut-down 107-mile Bay Area project. This compares to a projected cost of $178 million per mile for the full Californian high speed rail project.

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Interestingly, the researchers also find that an electric car is even slightly better than high-speed rail if 4 people are in the car. If it's only one person driving, taking a train is much better, but driving an electric car still solidly beats air travel.

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46.0 g CO2 / pkm The analysis concludes that the carbon footprint of high speed rail including operation, track construction and rolling stock construction is about 14 to 16 times less than transport by private car or airplane.

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