2001 Pontiac Grand Prix Se on 2040-cars
969 N Range Line Rd, Carmel, Indiana, United States
Engine:3.1L V6 12V MPFI OHV
Transmission:4-Speed Automatic
VIN (Vehicle Identification Number): 1G2WK52J91F176944
Stock Num: EV-176944
Make: Pontiac
Model: Grand Prix SE
Year: 2001
Exterior Color: Red
Options: Drive Type: FWD
Number of Doors: 4 Doors
Mileage: 140750
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700 horsepower Porsche GT2 RS is the wildest 911 ever
Fri, Jun 30 2017The Porsche 911 comes in a variety of flavors, each filling a certain taste for a certain customer. Sitting atop the range is the new 911 GT2 RS. In previous generations, the GT2 had a bit of a reputation as a widowmaker, a 911 with massive power that could snap and bite with the slightest agitation. Porsche says the new model has been civilized, but with 700 horsepower going to the rear wheels, we're sure it's going to be as mad as ever. Power comes from a highly massaged version of the 3.8-liter flat-six from the 911 Turbo S. The rear-mounted engine makes an outrageous 700 horsepower and 553 lb-ft of torque. Like we previously reported, the new car will use water injection to help keep things cool. The only transmission is Porsche's PDK. While enthusiasts may lament the loss of the manual, the RS models have always been about performance above all else. Simply put, the PDK is the better performance option. All that power translates to a 0-60 mph time of 2.7 seconds and a top speed of 211 mph. The engine makes 80 more horsepower than the previous model. That makes it the most powerful road-going 911 ever built. In fact, the 887 horsepower 918 Spyder is the only road-going Porsche that makes more power. The fact that Porsche trusts all of that power to go to the rear is both thrilling and terrifying at the same time. In order to manage traction, the GT2 RS gets a number of upgrades. Rear-wheel steering has become commonplace in the 911 lineup, so it's no surprise to see it here. Sticky tires with 265/35 ZR 20 section rubber at the front and 325/30 ZR 21 section rubber at the rear keep things planted. That comically large rear wing adds downforce, adding to stability. The car gets standard carbon ceramic brakes. While some people prefer traditional rotors for the street, like the PDK, this is all about performance. A number of intakes and outlets complement the rear wing and maximize aerodynamic efficiency. It's a bit of a surprise that with all the focus on downforce, the GT2 RS still manages to top out at 211 mph. The hood, front wings, wheel housing vents, door mirrors, side air intakes, parts of the rear end, and a number of interior components are all made from carbon fiber. The roof has been made of magnesium. If you want to drop any pretense of civility and comfort in the pursuit of speed, Porsche is offering a Weissach package that shaves off another 40 pounds from the already impressive wet weight of 3,241.
Junkyard Gem: 1984 Pontiac Fiero with supercharged 3800 V6 swap
Tue, Dec 31 2019Like the Corvair, the Vega, and the Citation, the Pontiac Fiero was a very innovative machine that ended up causing General Motors more headaches than happiness, and Fiero aficionados and naysayers continue to beat each other with tire irons (figuratively speaking, I hope) to this day. The General has often proved willing to take the occasional big gamble and huge GM successes in engineering prowess (including the first overhead-valve V8 engine for the masses and the first real-world-usable true automatic transmission) and marketing brilliance (e.g., the Pontiac GTO and related John DeLorean home runs) meant that the idea of a mid-engined sporty economy car (or economical sports car) got a shot from the suits on the 14th floor. Sadly, the Fiero ended up being the marketplace victim of too many issues to get into here, and The General pulled the plug immediately after the 1988-model-year suspension redesign that made the Fiero the sports car it should have been all along. But what if the plastic Pontiac had never suffered from the misery of the gnashy, pokey Iron Duke engine and had been built from the start with a screaming supercharged V6 making way better than 200 horsepower? The final owner of today's Junkyard Gem sought to make that very Fiero, by dropping in one of the many supercharged 3.8-liter V6s installed in 1990s and 2000s GM factory hot rods. The first Fieros came out in 1983 for model year 1984, and the only engine available that year was the Iron Duke 2.5-liter four-cylinder, which generated its 92 horsepower with the full-throated song of a Soviet tractor stuck in the freezing mud of a Polish sugar-beet field. The 2M4 badging stood for "two seats, mid-engine, four cylinders," just as the numbers in the Oldsmobile 4-4-2 once represented "four carburetor barrels, four-speed manual transmission, dual exhaust." This car is a top-trim-level SE model, which listed for $9,599 (about $24,200 today). The no-frills Fiero cost just $7,999 that year, making these cars far cheaper than the only other reasonably affordable new mid-engined car Americans could buy at that time: the $13,990 Bertone (aka Fiat) X1/9. The Toyota MR2 appeared in North America as a 1985 model with a base price of $10,999 and promptly siphoned off the car-buying cash from a bunch of potential Fiero shoppers.
Vitruvian Energy crowdfunding to make EEB, a trashy biofuel
Sat, Nov 22 2014When sewage is treated at a wastewater treatment facility, biosolids are the byproduct. After being separated from the water, biosolids are usually sent to a landfill or incinerated. That doesn't mean that they're without value, however. Vitruvian Energy has created a process to make a usable fuel out of this human waste product, and while the source is pretty gross, it is undeniably abundant, and the results are much cleaner. EEB can be made for less than $4 a gallon. In a process that Vitruvian Energy claims is energy efficient, biosolids are femented and introduced to a type of bacteria to create PHA plastic. Reacting the PHA with ethanol creates the ethyl-3-ethoxybutyrate (EEB) biofuel. Vitruvian says EEB can be blended up to 20 percent with gasoline or diesel without any engine modifications. This lowers the carbon footprint of the fuel it's blended into, and serves to oxygenate diesel, leading to fewer harmful emissions. EEB can also be made using other organic waste products, such as corn stover, rice straw and distillers grains. EEB can be made for less than $4 a gallon and isn't subject to the maddening market fluctuations and international politics of fossil fuels. Furthermore, EEB's carbon footprint is 70 percent less than that of fossil fuels. Vitruvian also sees potential for EEB to be used on its own to power vehicles or burned to produce electricity for the grid. So far, Vitruvian Energy has used grants from the California Energy Commission and National Science Foundation to develop EEB, and has tested the fuel in a Pontiac Solstice at Oak Ridge National Laboratory. Now, Vitruvian is wants to test EEB on a larger scale in the real world in order to prove EEB's viability to interested parties in the wastewater treatment industry. In an Indiegogo crowdfunding campaign, Vitruvian Energy hopes to raise $200,000 to build a prototype EEB production line and to run a test vehicle for a year on an EEB-diesel blend on the streets of Seattle. Donors can score some interesting perks such as shirts and bumper stickers that say "Get Clean with Poopaline." Learn more about EEB in the video and press release below. This content is hosted by a third party. To view it, please update your privacy preferences. Manage Settings.