2014 Toyota Camry Le on 2040-cars
3232 Harper Rd., Indianapolis, Indiana, United States
Engine:2.5L I4 16V MPFI DOHC
Transmission:6-Speed Automatic
VIN (Vehicle Identification Number): 4T4BF1FK1ER413973
Stock Num: 28562
Make: Toyota
Model: Camry LE
Year: 2014
Exterior Color: Barcelona Red
Interior Color: Ivory
Options: Drive Type: FWD
Number of Doors: 4 Doors
Butler Toyota Scion is Indiana's largest Toyota Scion dealer. We have been doing business with integrity since 1966. Be sure to visit WWW.BUTLER-TOYOTA.COM for exclusive Butler website specials.
Toyota Camry for Sale
2014 toyota camry le(US $23,780.00)
2014 toyota camry le(US $23,780.00)
2014 toyota camry le(US $23,780.00)
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2014 toyota camry le(US $23,780.00)
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HyFive hydrogen infrastructure gets $51M boost across Europe
Fri, Apr 4 2014"High five!" was one of the catch-phrases of Sacha Baron Cohen's Kazakh comedic alter ego Borat. A real-world HyFive is being announced by a power broker named Boris. And this is serious business. London Mayor Boris Johnson has announced a program called HyFive, which will see automakers and other entities invest 31 million British pounds ($51 million US) in a demonstration project for hydrogen fuel-cell vehicles. By next year, London will have three hydrogen refueling stations, while there will be one each in the Danish cities of Aarhus and Odense and one in Innsbruck, Austria. Leaders of the program are planning for other stations in Sweden, Germany and Italy. The five participating automakers are BMW, Mercedes-Benz parent Daimler, Honda, Hyundai and Toyota, while other companies involved include Copenhagen Hydrogen Network, ITM Power and Linde. Those OEMs will make 110 fuel-cell vehicles available for deployment in Bolzano, Copenhagen, Innsbruck, London, Munich and Stuttgart. The program represents an effort to address the "chicken or egg?" challenge inherent to establishing a hydrogen fuel cell vehicle market. While the powertrain technology provides benefits by combining fossil-fuel-like refueling times with long driving ranges and zero emissions, establishing a refueling network and building fuel-cell vehicles is prohibitively expensive, especially in low volumes. The London mayor is no stranger to green transportation technology. Late last year, Johnson made himself available for a photo opportunity with Ecotive and Frazer-Nash, which had developed a six-passenger extended-range plug-in taxicab. The mayor got a test drive in the cabs this week. You can check out the HyFive press release below. Global leaders sign up to GBP31m plan to demonstrate viability of hydrogen vehicles International project HyFive pioneers hydrogen fuel cell technology A pioneering GBP31 million deal will be struck today (3 April) to make hydrogen vehicles a viable and environmentally friendly choice for motorists across Europe. Leading motor manufacturers, hydrogen fuel suppliers, the Mayor of London's Office and energy consultancies from around the globe are signing up to the HyFive project, the largest of its kind in Europe, at City Hall in London today.
Toyota spending $168 million to make more Mirai fuel cell vehicles
Tue, Dec 9 2014The last semi-official number we had for pre-orders for the 2016 Toyota Mirai fuel cell vehicle was around 200. But demand is strong enough that Toyota is saying that it will spend 20 billion yen ($168 million US) to expand annual production capacity at the "secretive workshop" where the Mirai will be built from 700 in the first year (2015) to around 2,000 after that. Japanese newspaper Nikkei reported the increase and also breaks down where Toyota expects to sell the small number of Mirai vehicles it will make in the first few years: 400 in Japan by the end of 2015, 200 or 300 In the US in 2015 (and then 3,000 by the end of 2017) and between 50 and 100 in Europe annually starting around 2016. To make all of these hydrogen cars, Toyota will add two lines to the factory where the fuel cell stacks and tanks are built and it will also upgrade the assembly location. In the US, the Mirai will initially only be sold in California next year and will start at $57,500 or lease for $499 a month for 36 months (with $3,649 due at signing). The Japanese automaker is including hydrogen fuel for "up to three years" at that price, mostly because no one knows how to accurately measure and sell H2 for cars quite yet.
Toyota claims hydrogen fuel cell breakthrough
Tue, May 19 2015Platinum isn't cheap. And it's a necessary component of hydrogen fuel-cell technology. Which means that Toyota's recent discovery of a way to better analyze how platinum breaks down is a bit of an H2 vehicle breakthrough. Toyota worked with the Japan Fine Ceramics Center (JFCC) to observe nanometer-sized platinum particles and, specifically, how they deteriorate. Platinum is used as a catalyst for when electrons are stripped away from the hydrogen molecule to create an electrical charge and when hydrogen ions and electrons mix with oxygen to create water vapor. So, when platinum gets more course during the countless chemical reactions inside of fuel cells, things slow down. Now that Toyota says it's figured out a better way to observe this process, greater efficiency and durability within the fuel-cell process of electricity production are likely to follow, though more chemistry study will be needed to figure out how that will work. Still, it's topical because Toyota last year started producing the world's first production hydrogen fuel-cell vehicle. The Japanese automaker debuted sales of the Mirai fuel-cell vehicle in Japan late last year and plans to start selling the car in California this fall (the car will be priced at $57,500). Toyota also plans to boost Mirai production to about 2,000 units in 2016 from about 700 this year. Take a look at Toyota's documents and video below. R&D Breakthrough Sets Stage for More Efficient, Durable Fuel Cell Stacks Toyota City, Japan, May 18, 2015—A breakthrough in the real-time observation of fuel cell catalyst degradation could lead to a new generation of more efficient and durable fuel cell stacks. Toyota Motor Corporation and Japan Fine Ceramics Center (JFCC) have developed a new observation technique that allows researchers to monitor the behavior of nanometer-sized particles of platinum during chemical reactions in fuel cells, so that the processes leading to reduced catalytic reactivity can be observed. Platinum is an essential catalyst for the electricity-producing chemical reactions occurring between oxygen and hydrogen in fuel cell stacks. Reduced reactivity is the result of "coarsening" of platinum nanoparticles—a process whereby the nanoparticles increase in size and decrease in surface area. Up until now, however, it has not been possible to observe the processes leading to coarsening, making it difficult to analyze the root causes.
