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Chrysler Introduces 2011 Extended Range-Electric Vehicle Line Up

In addition to the Viper look a-like Dodge EV introduced this morning on CNBC [which we posted on here], Chrysler also revealed two other extended-range electric vehicles: the Chrysler Town and Country EV, and the Jeep EV Chrysler. CEO Bob Nardelli confirmed that one of the three vehicles introduced will being production in 2010, though he didn’t reveal which one - suspense that provides the perfect betting statistics with which to bide our time before NBA March Madness begins.

View gallery and press release after the jump
[via autobloggreen.com]

Press Release [Source, Chrysler]:
Chrysler LLC Surges Forward with Production-intent Electric Vehicles

Company Introduces Three Advanced Electric-drive Vehicle Prototypes

* One targeted to be produced in 2010 for consumers in North American markets, and European markets after 2010
* Chrysler LLC to have approximately 100 electric vehicles on the road in government, business, utility and development fleets in 2009
* Chrysler electric-drive technology to be applied to front-wheel-drive, rear-wheel-drive, and body-on-frame four-wheel-drive platforms
* Dodge EV: All-electric Performance Sports Car
* Jeep® EV: Wrangler Range-extended Electric Vehicle to allow customers to roam the planet and take care of it at the same time
* Chrysler EV: Town & Country Range-extended Electric Vehicle
* Chrysler and General Electric pursue joint project with U.S. Department of Energy

Auburn Hills, Mich., Sep 23, 2008 - Actions speak louder than words.

Chrysler LLC announced today that the Company and its ENVI organization have new production-intent, advanced electric-drive technology packaged in three different vehicles – one for each of its brands, Chrysler, Jeep® and Dodge.

Chrysler will select one electric-drive model to be produced in 2010 for consumers in North American markets, and European markets after 2010. Additionally, approximately 100 Chrysler electric vehicles will be on the road in government, business, utility and Chrysler development fleets in 2009.

The Company said that it is well into the development of advanced, production-intent electric vehicles, and that it will apply electric-drive technology to its front-wheel-drive, rear-wheel-drive and body-on-frame four-wheel-drive platforms in the next several years.

At its World Headquarters here today, Chrysler revealed its electric-drive prototypes – Dodge EV, Jeep EV and Chrysler EV – and demonstrated the driving performance and capability of each.

“We have a social responsibility to our consumers to deliver environmentally friendly, fuel-efficient, advanced electric vehicles, and our intention is to meet that responsibility quickly and more broadly than any other automobile manufacturer,” said Bob Nardelli, Chairman and CEO – Chrysler LLC. “The introduction of the Chrysler, Jeep and Dodge electric vehicles provides a glimpse of the very near future, and demonstrates that we are serious and well along in the development of bringing electric vehicles to market.”

ENVI Organization
The development of Chrysler’s Electric Vehicles and Range-extended Electric Vehicles is led by ENVI – representing the first four letters of “environmental” – the Company’s in-house organization that was formed to focus on electric-drive production vehicles and related advanced technologies. The development of electric-drive systems for future Chrysler, Jeep and Dodge vehicles is maturing quickly.

“ENVI was created just over one year ago with the strategic intent to develop electric-drive vehicles quickly for Chrysler, and it is surpassing expectations,” said Tom LaSorda, Vice Chairman and President – Chrysler LLC. “With ENVI, Chrysler is developing technology to bring Electric Vehicles and extremely fuel-efficient Range-extended Electric Vehicles to market.”

Electric Vehicle Technology
Chrysler’s Electric Vehicles utilize just three primary components. These include an electric motor to drive the wheels, an advanced lithium-ion battery system to power the electric-drive motor and a controller that manages energy flow. The electric-drive system is being developed for front-wheel-drive, rear-wheel-drive, and body-on-frame four-wheel-drive vehicle applications.

“This technology provides customers with a vehicle that has zero tailpipe emissions and a 150- to 200-mile driving range – far exceeding most Americans’ daily commutes, as nearly 80 percent of Americans drive less than 40 miles per day, or 14,000 miles per year,” said Frank Klegon, Executive Vice President – Product Development, Chrysler LLC. “Electric Vehicles provide the opportunity to fulfill social responsibility, reduce dependency on foreign oil, and eliminate monthly gasoline bills, while delivering performance and utility that our customers desire.”

Range-extended Electric Vehicle Technology
The Range-extended Electric Vehicle combines the electric-drive components of the Electric Vehicle with a small gasoline engine and integrated electric generator to produce additional energy to power the electric-drive system when needed. This provides the positive attributes of an Electric Vehicle with the driving range equivalent to today’s gasoline-powered vehicles – with no compromises in performance.

Range-extended Electric Vehicles offer environmental responsibility without giving up driving range, comfort or utility.

Dodge EV
The Dodge EV development Electric Vehicle is a two-passenger, rear-wheel-drive sports car that marries high performance with zero tailpipe emissions.

“The Dodge EV sets a new standard for what can be expected in electric-drive vehicles,” said Lou Rhodes, Vice President – Advance Vehicle Engineering, and President – ENVI. “The electric-vehicle technology enables a fun-to-drive performance sports car and helps redefine the vision of an environmentally responsible vehicle for the Dodge brand.”

The electric-drive system consists of three primary components: a 200 kW (268 horsepower) electric motor, an advanced lithium-ion battery and an integrated power controller.

The 200 kW electric-drive motor generates 650 N•m (480 lb.-ft.) of torque. The instant high torque of the electric-drive motor delivers outstanding performance, accelerating the Dodge EV to 60 mph in less than five seconds, with quarter-mile times of 13 seconds. The Dodge EV has a top speed of more than 120 mph.

Working with the latest advanced lithium-ion battery technology, the Dodge EV has a continuous driving range of 150 to 200 miles – more than triple the average daily commute of most consumers. Recharging the vehicle is a simple one-step process: plugging into a standard 110-volt household outlet for eight hours. The recharge time can be cut in half to four hours by using a typical 220-volt household appliance power outlet.

The Dodge EV offers driving enthusiasts a performance sports car that can be driven to work every day – without consuming gasoline or producing tailpipe emissions.

Jeep EV
The Jeep EV development vehicle is a Range-extended Electric Vehicle that provides a glimpse into the future of a “Go Anywhere, Do Anything” vehicle with renowned Jeep Wrangler capability.

The Jeep EV combines Wrangler’s unmatched off-road capability with the ultimate “Tread Lightly” mindset by providing nature ambassadors with the ability to roam the planet and take care of it at the same time.

The Jeep EV Range-extended Electric Vehicle uses an electric motor, an advanced lithium-ion battery system, and a small gasoline engine with an integrated electric generator to produce additional energy to power the electric-drive system when needed. The 200 kW (268 horsepower) electric motor generates 400 N•m (295 lb.-ft.) of torque. With approximately eight gallons of gasoline, the Jeep EV has a range of 400 miles, including 40 miles of zero fuel-consumption, zero-emissions, all-electric operation.

“We are also exploring four-wheel-drive, in-wheel electric motors to demonstrate the full reach of ENVI’s advanced electric-drive technologies,” said Rhodes.

The instant high torque of the electric-drive motor and the ability to precisely control each wheel independently results in off-road capability ideally suited for the Jeep brand, without compromising on-road driving capability.

Chrysler EV
The Chrysler EV development vehicle is a Range-extended Electric Vehicle that demonstrates another possible application of ENVI electric-drive technology in the segment-leading Chrysler Town & Country minivan.

“With the Chrysler EV, we are able to blend seven-passenger capability and the luxury of the Chrysler Town & Country minivan with electric-drive technology, demonstrating family practicality with zero compromise,” said Rhodes. “ENVI’s electric-drive development vehicles showcase our accelerated application of electric-drive systems into a wide range of vehicles in Chrysler’s future product portfolio.”

The Chrysler EV combines the electric-drive components of an Electric Vehicle with an integrated small-displacement engine and generator to produce additional electricity to power the electric-drive system when needed. This provides all of the positive attributes of an Electric Vehicle and extends the driving range to be equivalent to today’s gasoline-powered vehicles – without compromises.

The Chrysler EV uses a 190 kW (255 horsepower) motor, producing 350 N•m (258 lb.-ft.) of torque, providing 0 to 60 mph acceleration in approximately nine seconds. The Chrysler EV Range-extended Electric Vehicle can drive 40 miles on all-electric power, and boasts a range of 400 miles on approximately eight gallons of gasoline. This makes the Chrysler EV the perfect fuel-efficient family vehicle.

The knowledge and experience gained from the Chrysler EV will be applied to other front-wheel-drive applications in Chrysler’s portfolio.

Chrysler LLC Electric-vehicle Consumer Web Site
Chrysler LLC has launched a Web site – www.Chryslergoeselectric.com – to allow consumers to view the latest updates on Electric Vehicles and Range-extended Electric Vehicles from the Company. Content will include videos, photography and news, and visitors can sign up for updates. In addition, the site features a blog where consumers can interact directly with the Company.

Department of Energy Cooperative Agreement
Chrysler and General Electric are jointly pursuing a project with the United States Department of Energy to explore advanced energy-storage technology.

“Chrysler’s partnership with General Electric combines the electric-drive technology demonstrated in the Chrysler Electric Vehicles, with GE’s research and development of advanced energy storage systems,” said Klegon. “Our collective goal working with the DOE is to develop a new, integrated energy-storage system to make electric vehicle battery packs smaller and significantly less expensive than current designs.”

Chrysler and GE will develop and evaluate dual-battery solutions based on GE’s unique technology.

“One of the challenges with electric vehicles is finding a battery with the correct balance between power – for example, during vehicle acceleration – and energy for long driving range,” said Klegon. “We believe that combining two unique battery chemistries – one biased toward power and the other toward energy – into a single battery pack is very promising for a future Chrysler Electric Vehicle.”



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Hyundai i10

Not Ready for the U.S.
Hyundai i10: Not Ready for the U.S.

I’m not sure if news of the Hyundai i10 not coming to the U.S. will be met with any outrage by potential buyers.  Without significant re-engineering the i10 does not meet certain standards, mostly regarding safety, to be sold in the U.S.  But as lackluster as it may appear to look at, the i10 has gained quite a lot of positive comments since its release.

i10 poses for pictures
i10 poses for pictures

Hyundai has so much confidence in the Indian-made i10, that they predict sales to double in the coming year.  Despite the fact that it is extremely small (slightly less than 8 ft long) in comparison to its main competition it is considered roomy and is configured with 5 doors and 5 seats.  (I said that with a straight face) The i10 is or will be sold with several different powerplants including a three-cylinder turbocharged diesel engine that produces 75 horsepower.  A manual version of the 1.1-litre gas engine averages 60 mpg.

Hyundai i10 Interior
Hyundai i10 Interior

The higher-end (again with a straight face) Hyundai i10 with the “style” package of options includes air conditioning, sunroof, power mirrors, fog lights and alloy wheels.  All Hyundai i10’s have power steering, remote control, four airbags and a CD player.  Although it claims seating for five, like anything of this size and in this class, the i10 is suited for quick trips to the store or driving in a city and not  for long road trips.  The thrifty engine and small dimensions would definitely be too much for any great lengths of time on a highway.

Unfortunately, or fortunately if you hate it, even with upgrades to emissions and safety, because the dollar is so weak right now, the super-affordable i10 is cheap but not cheap enough to sell here in the U.S.  The British version would cost $11000 if it were sold here right now.  Perhaps that’s a good thing.  The i10 is not especially exceptional in style or performance, which you would have to be to sell here.  Plus small cars that are already available, like the U.S.-made Aveo aren’t exactly flying out of showrooms.  Until there is a consistent market demanding super-compacts automakers will not bother trying to introduce these types of new cars here.



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…Get yourself some Chocolate Diesel.

Andy Pag is taking part in the world’s first carbon negative expedition using biodiesel fuel made with waste chocolate There seems to be a number of people and firms and companies out there looking for the next alternative fuel. We have had numerous suggestions from corn to methane to sugar cane to algae to electricity derived from the sun. But the latest news of a new entrant into the alternative fuel hunt is the sweetest of them all. A company called Ecotec out of the UK is taking the waste from a Chocolate Factory and turning it into 100% bio-diesel. And to prove the effectiveness of their delicious alternative fuel (no, the fuel is not edible but the idea is pretty sweet) they plan to drive their chocolate fueled car from the UK to Timbuktu. At a cost of 15 pence a litre (approx. $1.16 US per gallon) that is a far more affordable trip than if it were fueled by regular diesel. (more…)



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From Pond Goo to Alternative Fuel: Algae the Diesel of Tomorrow?

The news of algae as a potential source for bio-fuels broke in 2006 and then again earlier this year. As the cost prohibitive and resource draining processes of coal-to-liquid fuel and corn-to-ethanol have reached long discussions on the national bureaucratic scene, algae-to-fuel has received its push toward market efficacy in the private sector. A lot of time has been spent on this site discussing alternative fuels, hybrids and other forums of fuel efficiency and restrained pollutants. It doesn’t seem likely that the topic will end here, either. 

algae to bio fuel

Two small corporations are spearheading the push for this fuel source: Solix out of Ft. Collins, Colorado and GreenFuel Technologies Corporation out of Cambridge, Massachusetts. Both companies have developed prototype algae farms in cooperation with other industries. Solix has joined forces with the sustainability conscious New Belgium Brewery Company of Ft. Collins and GreenFuel is collaborating with NRG Energy Inc and their Big Cajun coal burning power plant in New Roads, Louisiana. The algae farms will be redirecting the off-gassing CO2 from their respective industry associate into their contained algae farms. Overnight the algae will feed and grow where it can be harvested almost daily for its oils.
algae to bio fuelThe genius of the Algae farm approach is that it captures the CO2 emissions that are already being produced by most industrial complexes. The algae feed on the CO2, thus preventing the excesses gases from harming the environment. Since the Industrial workings are already in place (thank you, Industrial Revolution) and since the redirection of the CO2 emissions from those facilaties does not require any expensive retrofitting on site, it would seem logical (for both the environmentally conscience and the big business conservative) that algae farms might be the simple solution to a very complex and vexing problem. Now they just have to prove that this cottage industry is a viable and affordable decision. algae farming fuel

When the U.S. Department of Energy’s Aquatic Species Program completed its 18 years of research in 1996 it was deemed that the conversion of of algae to fuel was cost-inhibitive and could not compete against the low fuel prices of the 1990’s. Concerns about the environmental impact of the fossil fuels we were consuming then were still not in the mainstream subconscious, but as always would probably still play second fiddle to cheap yet polluting fossil fuels. Plus they were still relying on outdoor open ponds for their source of the algae for conversion. By partnering with Carbon producing industries and while the wave of concern over the sustainability of life of this planet is high, Algae as an alternative energy source may be sneaking to the fore front just in time (just without the fanfare and bureaucratic backing of Coal-to-liquid fuels). The other benefits of the conversion of Algae to fuel are also appealing.

In a fraction of the space required to grow other crops, such as corn, sugarcane, palm and soy, algae can be harvested day after day in one small area. Plus in the conversion process the byproducts that result can be used for other bio-friendly purposes. The proteins leftover from the processing of algae into fuel can be turned into feed for grazing animals; unlike the results of using corn and soy for ethanol which depletes those food sources for man and animal alike. This does not mean that research and development should be stopped on all ethanol refinaries that plan to use those crops. But such bio-refinaries could be facing some staunch competition from an energy producer that can recycle its own emissions and the carbon emissions of others to further feed its energy supply.

In the next post in this two part series I will examine algae farms and why other industrial recycling should be just as much a part of the Organizations of Industries as their final products are.

Source[PopularMechanics]
Source[Solix]
Source[NewBelgiumBrewery]
Source[NRG Energy Inc and GreenFuels Technology Corp]



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