2000 Toyota 4runner Limited on 2040-cars
730 E 106th St, Indianapolis, Indiana, United States
Engine:3.4L V6 24V MPFI DOHC
Transmission:4-Speed Automatic
VIN (Vehicle Identification Number): JT3HN87R8Y0299020
Stock Num: 10795
Make: Toyota
Model: 4Runner Limited
Year: 2000
Exterior Color: Millennium Silver Metallic
Interior Color: Gold
Options: Drive Type: 4WD
Number of Doors: 4 Doors
Mileage: 213996
At Recovery Auto we do our homework so you can get the best car at the best possible price. All vehicles have clean titles and are backed with a 3 month warranty. Hello, my name is Sam Sun and I will be happy to assist you in your car or truck buying needs. We have a great reputation in our community and are looking forward to serving you. So please call me at 877-886-5485
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Auto blog
Toyota, Morgan Spurlock say hydrogen can be bullsh*t
Thu, Apr 23 2015Toyota wants the world to know that it's not full of crap about hydrogen as the future of fuel. Months before the Mirai arrives at dealers on the West Coast, the automaker is trying to get the word out through documentary series called Fueled by Everything. In the first episode, director Morgan Spurlock (best known for Super Size Me) shows how to make the futuristic fuel cell sedan run on a load of dung. After some processing, anyway. The whole point of the series is to show viewers the myriad sources available to generate hydrogen, and Toyota starts at an attention-grabbing extreme. A pickup truck takes a bed full of cow manure and demonstrates the steps needed to make it into hydrogen for the Mirai. Of course, the new model gets lots of screen time, too. For those in the audience curious to learn more, Toyota also digs a little deeper into the generation process on the series' website. Fueled by Bullsh*t Toyota Taps Morgan Spurlock to Direct First Video in "Fueled by Everything" Series TORRANCE, Calif. (April 22, 2015) – Sometimes reality stinks. Toyota has tapped award-winning documentary filmmaker Morgan Spurlock to show how calling hydrogen fuel cell vehicles "bullsh*t" isn't far from the truth. "Fueled by Bullsh*t" is the first online video in a multi-part "Fueled by Everything" series aimed to educate a broad audience about the innovative ways hydrogen fuel can be made from renewable sources. Spurlock directed the 3-minute piece which features a dairy farmer and mechanical engineer as they follow cow manure from a mooing supply source to its ultimate use in powering the hydrogen fuel cell electric Toyota Mirai. "This project gave us the opportunity to dive into a world that most people don't understand but has the potential to change our world," said Spurlock. "Witnessing manure, something most of us view as being pretty disposable, being transformed into hydrogen fuel to power a car was pretty remarkable. I think this short film is pretty compelling evidence of what could be possible in the years ahead." Beyond high quality dung, hydrogen can be manufactured from other renewable energy sources like solar, wind and biogas from landfills. These production methods can result in a domestic and locally sourced fuel that powers the Mirai while emitting only water vapor from the tailpipe. The multi-series video campaign is launching through the Toyota Mirai website (www.toyota.com/mirai) and additional digital properties with paid online media support.
McLaren, Koenigsegg, Toyota, Ford, Dodge and Corvette Lego kits announced for 2021
Tue, May 4 2021Lego has announced a slew of car-themed sets for 2021. The six kits comprise nine vehicles and fall under the brick pusher's Speed Champion line of official OEM-licensed kits. News of their arrival comes from German toy retailer JB Spielwaren's pre-order listings, which show three single-car sets and three dual-car sets of matched marques. Starting with the McLaren Elva roadster, the kit consists of 263 pieces and is finished in blue. It seems to have a difficult time capturing the curves of the real-life Elva, but there's only so much you can do with a bunch of plastic blocks. Lego has made several other McLaren kits before, including the Senna, 720S, and a more advanced Senna GTR for the Technics line. Next up is the Koenigsegg Jesko, made up of 280 pieces and finished in white. Though the real-life Jesko is still curvy, this kit does a better job of replicating its aggressive maw, vents and cantilevered rear wing. Rounding out the single-car sets is the 299-piece Toyota GR Supra in yellow. This marks the first time Toyota has lent their license to Lego. Again, it struggles a bit to represent the curvy Supra, relying on printed details like logos and headlights to identify. On the other hand, the Chevrolet two-car does a stupendous job with the 1968 Corvette. The C3 is instantly recognizable as such. The C8-R race car it's paired with suffers from the same issues as some of the previous cars, though. The set contains 512 pieces, and funnily enough the C8 driver has short hair while the C3 driver sports a period-correct wavy mane. The next set is a 627-piece Mopar-themed pair, including a purple (Plum Crazy?) 1970 Dodge Challenger T/A and an SRT top fuel dragster. The race car is spot on, but the Challenger was probably tough to make given the width restrictions. It looks a couple of pegs too narrow compared to the wide proportions of the real deal. Last but not least, the Ford set contains a Bronco R and Ford GT Heritage Edition. Consisting of 660 pieces, the set does an excellent job of representing both cars. The GT looks faithful in its Gulf livery, and the Bronco R looks more like a real Bronco than the actual Bronco R race truck. All in all, it's always fun to see more Lego sets with real cars, and we're glad to see more manufacturers added to the roster. The single-car sets are recommended for ages 7 and up, while the double-car sets have an 8 years and up rating. Price in U.S.
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.




























