Showing posts with label hybrid. Show all posts
Showing posts with label hybrid. Show all posts

Video - Green Vehicles at the 2014 Detroit Auto Show



Although green vehicles were in scarce supply at the 2014 Detroit Auto Show compared to previous years, here are visuals for some of the greenest cars on display at this year's show. This includes offerings from:

  • Volkswagen
  • Accura
  • GAC Group
  • Tesla
  • Toyota
  • Fiat
  • Infinity
  • GM
  • Nissan


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Toyota's Resource Efficiency: Best Practice in Integrating Industrial Sustainability and Eliminating Waste



Resource efficiency is the rage in 2014 and Toyota is one of the world’s most resource efficient companies. Simply put Toyota abhors waste and here is a summary of Toyota's secrets to achieve radical resource efficiency.  Steve Hope, General Manager Environmental Affairs and Corporate Citizenship, Toyota Motor Europe, explains how Toyota has dramatically improved its resource efficiency, reducing its energy, water and waste per vehicle by 70%, 75% and 60% respectively from 1993 to 2007. This video effectively summarizes the systems, processes, culture, enablers, tools and habits that have helped Toyota to reach the top of their industry.

To help viewers understand Toyota's approach to resource efficiency, Hope employed two Japanese terms, Kaizen and Yokoten. Kaizen is a Japanese word that can be roughly translated as improvements or change for the better. It is important to note that these improvements are not necessarily continuous. To make good improvements at least three elements must be addressed and they knowledge, standardized process and controlled risk. The other Japanese term essential to Toyota's resource efficiency success is Yokoten, or in this context sharing.

This Presentation took place at the Annual Conference for the EPSRC Centre for Innovative Manufacturing in Industrial Sustainability on September 10-11, 2013 at Magdalene College, Cambridge. The theme of the conference was 'Integrating Industrial Sustainability'.

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Video - Nissan BladeGlider Zero Emission Electric Concept Car



While green cars were MIA at the recent Detroit Auto Show, the Nissan BladeGlider was one of several zero emission vehicles unveiled at the 43rd Tokyo Motor Show in November. The BladeGlider is a futuristic Delta Wing electric car concept designed by Ben Bowlby. His wedge shape may look showy but it has real practical aerodynamic benefits including an awesome drag coefficient. This 3 seat concept is only 3.3 feet across the front. The BladeGlider is an ultra light weight vehicle that is stable and corners as well as anything in its class. The power and drive trains is where this car truly shows its green credentials.

 The battery technology is essentially that of the Nissan Leaf, albeit positioned toward the rear of the car. The drive train itself employs in-wheel motors.

Although many concept cars never make it into production, Nissan calls the BladeGlider, "an exploratory prototype of an upcoming production vehicle".

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Electric and Hybrid Cars MIA at the 2014 Detroit Auto Show

Greener cars appear to be missing at this year's Detroit Auto Show. One of the most high profile vehicles at the show was the the 620-horsepower 2015 Chevrolet Corvette Z06. Other notable vehicles on display were two 2015 products from Ford, the F-150 pickup truck and the iconic Mustang. Even Kia has opted to focus on performance over efficiency by debuting a concept sports car called the GT4 Stinger. Electric, hybrid and fuel cell vehicles were altogether absent in Detroit this year.

In 2010 almost all the major automakers were aggressively promoting a growing number of electric and hybrid cars. The Ford Fusion hybrid won the 2010 North American Car award at the North American International Auto Show in Detroit. Toyota introduced the FT-CH concept car, a subcompact hybrid. BMW showed the ActiveE concept, Honda debuted the CR-Z a two-seat hybrid. Audi unveiled its e-tron, an electric sports car that can accelerate to 60 mph in less than five seconds. Subaru shared its Hybrid Tourer concept, Tesla released its Model S sedan, Volkswagen put its hybrid-powered NCC on display and Volvo announced its test fleet of 50 electric C30s. However, at the 2014 Detroit auto show there are no global debuts of new plug-in electric cars, hybrids or even new diesel vehicles, but there are lots of luxury models, high-performance cars and sports cars.

Getting More from Less

At first glance it may appear that this year car makers are focusing on performance and speed rather than energy and the environment. However, it may be more accurate to say car makers are getting more with less. BMW's 2015 M3 sedan has switched out its 4.0-liter V8 in favor of a twin-turbocharged 3.0-liter six-cylinder engine. This new powertrain configuration for the M3 means we see a 25 percent reduction in gas consumption and emissions. Even the muscle cars come with greener options, the new Mustang comes with the choice of a 420-horsepower 5.0-liter V8 or an economical 2.3-liter four-cylinder EcoBoost engine.

What is notable is that American, German and Korean auto manufacturers are getting more power from smaller engine blocks. This translates to better efficiency. The Mustang's EcoBoost engine referenced above may be relatively small and efficient, but it still generates an impressive 305 horsepower. Another example is the 2014 Volkswagen Golf, with a 290-horsepower turbocharged 2.0-liter four-cylinder engine, it is the most powerful Golf ever launched. However it has an EPA highway mileage rating of 31 miles per gallon which is better fuel economy than the the 2013 edition. Another example is the Kia's GT4 Stinger that gets 315-horsepower from a turbocharged 2.0-liter four-cylinder engine.

The Lighter the Better

Making vehicles lighter is the real efficiency story and the subdued theme of this year's show. Lighter weight vehicles provide faster acceleration, while boosting fuel economy and lowing emissions. From extensive use of aluminum to stripping down vehicles to reduce weight, thin is in.

Like other vehicles, GM's 2014 Chevrolet Camaro Z28, has been subject to "lightweighting" efforts that include a smaller battery and thinner rear glass, as well as eliminating the trunk carpet and the tire-inflator kit. BMW's 2015 M3 sedan uses more aluminum and carbon fiber-reinforced plastic in place of heavier steel.

What Does this Mean

On the one hand the vehicles in Detroit can be interpreted as a signal that the economy is improving leading to a return to excess. On the other they can be understood as the coalescence of greener automotive technologies which afford better performance and comparatively lower environmental impacts.

Ironically, the corporate average fuel economy (CAFE) rules now in place through 2025, may be part of the reason. This rule means that every American vehicle must have good fuel efficiency ratings. This may be forcing automakers to look at finding efficiency improvements within vehicles already in their lineups rather than innovating new highly efficient vehicles.

The vehicles displayed at auto shows tend to go in waves, so this year can only be considered the low ebb of green cars. However, it in no way signals an end to the vehicle efficiency trend. It only means that rather than highlight overt efficiency, with exceptions like the Corvette, it is quietly being sewn into the DNA of most cars.

© 2014, Richard Matthews. All rights reserved.

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General Motors: Government Bailout to Environmental Sustainability

On Monday December 9, the US government sold its remaining stake in General Motors Co. (GM). While the automaker is doing well financially, it is also making progress in terms of sustainability.

By most accounts the government bailout of the U.S. auto industry was a success. This view is convincingly communicated in a new study by the Center for Automotive Research (CAR) called ”The Effect on the U.S. Economy of the Successful Restructuring of General Motors.”

The U.S. government was repaid the $39.5 billion it lent to GM as part of the 2008-2009 auto bailout, which forced GM and its Chevrolet division into a government-backed bankruptcy. According to the CAR study, in addition to saving 2.6 million jobs in 2009, the bailout preserved $284.4 billion in personal income between 2009 and 2010. In less than five years GM and other American automakers have become profitable and they have added more than 372,000 new jobs. However, the bailout was not only an economic success, it bought GM time to improve its environmentally destructive trajectory.

One of these improvements involves a new labeling system that Chevrolet is now posting on its vehicles. The label summarize fuel-efficiency technologies and environmental progress. This first-of-its-kind EcologicTM Label lets consumers see some of the environmental features of the vehicle relating to manufacturing, driving and recycling. The claims on these labels are independently audited by Two Tomorrows, a third-party sustainability agency.

GM is now moving forward with the production of vehicles that have better fuel efficiency and lower emissions. GM has also adopted manufacturing processes that have a smaller footprint.

Fuel efficiency of US auto fleet


GM is at the forefront of the dawn of a more responsible American auto industry.  According to the EPA, from 2007 to 2012, U.S. fuel economy values have increased by 16 percent. Between 2011 and 2012 there was a 1.4 mile per gallon (mpg) increase in fuel efficiency for the 2012 lineup of American cars and trucks. In 2012 the average fuel economy among American automakers increased to 23.8 mpg. This is among the largest annual improvements since EPA began reporting on fuel economy. The average fuel economy of new vehicles sold in August 2013 reached an all-time high of 24.9 miles per gallon. That’s up almost five miles per gallon since researchers began tracking the number in October, 2007.

Both projected and actual US fuel economy figures from the EPA show that there has been a reversal of the long-term trend towards worsening fuel efficiency. There was a rapid increase in average fuel consumption from 1975 through 1981 and a slower increase with an efficiency peak in 1987. This was followed by a gradual decrease in fuel efficiency until 2004 when the average fuel economy numbers for American cars was just 19.3 mpg. Since then there has been a steady increase in fuel economy ratings.

GM is leading domestic automakers in making large gains in fuel efficiency. GM now has 20 models that get 30 mpg hwy or better, including the car with the best highway mileage of any gas engine in America, the 42 mpg-hwy Chevrolet Cruze Eco.

GM has improved its fuel economy ratings between 2009 and 2012. According to EPA figures, in 2009 GM vehicles averaged only 19.9 mpg as of 2012 the average mpg for GM vehicles rose to 21.4 mpg. Part of the reason GM is generating better efficiency numbers is due to the fact that they are manufacturing less big vehicles and more smaller fuel efficient cars including hybrids and fully electric vehicles.

The overarching context for these improvements is the Obama administration’s fuel efficiency standards which will require that automakers double their economy ratings by 2025. The Corporate Average Fuel Economy or CAFE standards will raise industry-wide fuel economy to 54.5 mpg by 2025, (it should be noted that CAFE standards are not the same as mpg ratings). As of 2012, GM got a CAFE fuel economy rating of 32.9 MPG for domestic passenger cars and 23.5 for light trucks.

 

Vehicular carbon emissions


According to the EPA, 2012 cars and trucks continued to decrease their carbon pollution. The research shows that vehicle emissions as measured by what is known as the Eco Driving Index has also improved.

EPA data indicates that in 2009 the average CO2 vehicle emissions were 8 percent lower than in 2004 which had a rating of 461 grams per mile (g/mi). In 2012, EPA figures show that American auto makers reduced their CO2 emissions to 374 (g/mi). From 2007 to 2012, EPA estimates that CO2 emissions have decreased by 13 percent.

In 2009 GM had an average carbon emissions rating of 447 (g/mi). In 2012 GM saw its CO2 emissions decline to 418 (g/mi). GM is also a global biofuel leader including ethanol which in comparison to gas, emits 21 percent less CO2.

 

Waste and recycling at GM


GM is also decreasing its waste through its landfill-free program. As reported by GM, the company boasts an industry-leading total of 105 facilities that recycle, reuse or convert to energy all waste from daily operations. GM is recycling and reusing 90 percent of its manufacturing waste worldwide and in the process the company generates about $1 billion in revenue annually. GM has reduced its total waste 25 kilograms, or 55 pounds, per vehicle since 2010.

 

Hybrid and electric vehicles


GM sees electrically driven vehicles as the best long-term solution for energy-efficient transportation. GM is the leader in domestically produced hybrid and electric vehicle components. GM produces their own batteries in the largest and most technologically advanced battery development facility in the U.S. They are the first major U.S. automaker to design and manufacture electric motors for their hybrid and electric vehicles.

GM is also a leader in extended range electric with vehicles like the Chevrolet Volt and Opel Ampera. The Chevrolet Volt has an estimated 94 MPGe electric, and when using the gas engine it generates ratings of 35 mpg city, and 40 mpg hwy. The range for the Volt is 35 miles of electric driving. Once the electric charge is depleted, a gas-powered engine generator provides an additional 340 miles of range.
GM’s hybrid Silverado pickup has an EPA estimated 20 mpg city and 23 mpg hwy. The Buick LaCrosse and Regal have what is known as eAssist technology which get an EPA estimated 25 mpg 25 city and 36 hwy. The 2013 Chevrolet Malibu Eco also uses eAssist and gets an EPA estimated 25 mpg 25 city and 37 hwy.

The new eAssist technology is an electrification solution that enhances fuel efficiency up to 25 percent when paired with existing engines. The electric motor recaptures energy and shuts off fuel during braking. To further increase efficiency, it stops and restarts the engine in stop-and-go city driving. An onboard lithium-ion battery provides an electric boost in certain conditions to improve efficiency.

 

Hydrogen fuel cell vehicles


GM engineers are at the forefront of hydrogen fuel cell technology which have no CO2 emissions. They have been working on FCVs for more than 16 years and they are the country’s leading innovators in this technology of the future. Fuel cells have 2.3 times the efficiency of conventional powertrains and take around three minutes to refuel.

To date GM fuel cell vehicles (FCV) have driven more than 3 million miles as part of their test fleet of 100 Chevrolet Equinox SUVs undergoing real-world testing by families and commercial users.
GM is expanding a research project with the U.S. Army to accelerate the development of hydrogen fuel cells. GM is working on hydrogen fuel cell powered vehicles with the military’s Tank Automotive Research, Development and Engineering Center (TARDEC).

In 2013, GM teamed up with Honda to bring affordable hydrogen-powered vehicles onto the market by the end of the decade. GM hopes to have as many as one million affordable FCVs by 2020.

 

Technological innovation


In 2012, GM invested more than $7.3 billion in the research and development of “next-generation” technologies. During 2011 and 2012 GM received more clean energy patents than any other organization, according to the Clean Energy Patent Growth Index of US patents.

The company continues to improve fuel economy and decrease mobile emissions through advanced engine and transmission technology, next-generation batteries and electric motors, and power electronics. They are also working on vehicles with better aerodynamics as well as reduced weight and mass which makes them up to 15 percent lighter than comparable vehicles on the road today.

In 2012 General Motors was among several recipients that received $54 million in Energy Department grants aimed at improving the energy efficiency of advanced manufacturing technologies. GM received $2.7 million to develop an integrated die-casting process for a thin-walled magnesium application used to manufacture car doors. The manufacturing process is expected to cut energy use by 50 percent. The reduced weight in the doors also will improve fuel economy and reduce carbon emissions.

GM’s lineup of gasoline-powered vehicles are increasingly efficient due technological innovations including direct fuel injection, active fuel management, variable valve timing and turbocharging. They are also focusing on tire construction to make their vehicles more efficient.

In 2013 GM began using a new refrigerant that has a global warming potential (GWP) that is a tiny fraction of previous refrigerants. Developed in 2010 GM was the first company to introduce a climate-friendly refrigerant to replace the super greenhouse gas used in auto air conditioning. The new refrigerant, called an HFO, has a global warming potential of just 4 compared to over 1,400 for HFC-134a. The new refrigerant remains in the atmosphere for just 11 days, according to Honeywell, its producer. Honeywell calculates that the low GWP and the short lifetime of its HFO represents a 99.7 percent improvement over HFC-134a.

GM is also a biofuel leader and according to their own reports, they are developing technologies that turn agricultural and municipal solid waste into ethanol.

 

Renewable energy


In 2012 General Motors installed an 8.15 MW solar array on the rooftop of one of its Opel plants in Germany. The array at Rüsselsheim is one of the largest solar installations in Europe with an area equivalent to 32 soccer fields. It generates about 7.3 million kWh per year of energy. This represents a CO2 reduction of about 3,150 tons a year, equal to the amount of carbon isolated annually. The latest installation, together with GM’s other solar arrays in Kaiserslautern, Germany, and Zaragoza, Spain, will allow the company to produce 19.1 million kWh of electricity a year which reduces CO2 emissions by 8,200 tons annually.

According to their 2013 Sustainability Report, by 2015 GM will have a solar output of 60 MW by 2015 and the company plans to have a renewable energy output of 125 MW by 2020.

GM also has a few LEED-certified buildings including an engine plant in southern Brazil, equipped with numerous sustainability features including solar energy and water recycling systems. Another innovative program harvests energy from test benches its Powertrain Engineering Center in Turin, Italy. The amount of energy harvested is equal to 300,000 kWh of energy.

 

Manufacturing facilities: energy and carbon


GM’s manufacturing technologies decrease the use of energy, resources and materials. As reviewed in their 2013 Sustainability Report, GM is committed to reducing energy and carbon intensity in their global manufacturing operations. The EPA has recognized GM with its Energy Star partner of the year for Sustained Excellence award and the company has a total of 54 facilities that meet the Energy Star Challenge for industry.

According to Green Car Congress, in 2012, the company realized energy-efficiency improvements of 2 percent over 2011, and similar decrements in carbon emissions intensity. GM also reduced the amount of energy required to build each vehicle by 7 percent since 2010. In 2012, GM’s energy intensity per vehicle manufactured was 2.30 MWh per vehicle, down from 2.47 MWh/vehicle in 2010. The 2020 target is 1.97 MWh/vehicle.

GM’s carbon intensity per vehicle in 2012 was 0.88 metric tons CO2e, which is down from 0.92 in 2010. The latest data shows that average total energy usage for GM’s international operations is 1.14 MWh per vehicle, less than half the industry average of 2.37 MWh per vehicle.

GM’s energy management and renewable energy programs have helped reduce carbon intensity of manufacturing by 5.3 percent since 2010 and they are targeting a 20 percent reduction by 2020. The 2020 target is 0.75 tonnes/vehicle.

 

The future


According to GM’s 2012 Sustainability Report, by 2017 the company expects to double models with a rating of 40 mpg (highway) or better, further reduce the energy used in production as well as diminish the environmental impacts from its buildings and vehicle operations.

By 2017, GM has pledged to have 500,000 vehicles on the road in the US with some form of electrification and to reduce the average CO2 tailpipe emissions of its US fleet by 15 percent. GM subsidiary Opel estimates will reduce the average carbon tailpipe emissions by 27 percent by 2020.

GM will also continue to reduce vehicle mass and aggressively invest in advanced materials, such as high-strength steel, carbon fiber and aluminum as well as an industry-first lightweight aluminum welding technology. Other ongoing efficiency oriented innovation includes downsizing, turbocharging, direct injection, variable valve timing and cylinder deactivation.

According to GM’s 2012 Sustainability Report, “The rollout of these technologies in new GM US models between 2011 and 2016 is expected to improve the fuel economy of our fleet by more than 18 percent.”

Five years ago GM was on the brink of closing its doors forever, now they are making more fuel efficient vehicles with less emissions. They have also reduced the impacts of their manufacturing processes, minimized waste and decreased their use of energy and other materials. As suggested by GM’s commitments for the future, this is only the beginning of a sustainability journey that will help lead America into the new automotive reality.

Source: Global Warming is Real

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Increasing Vehicle Efficiency with New Lightweight Materials

New lightweight materials will help the automotive industry to be more efficient. Vehicular propulsion is all about the power to weight ratio. Lighter weight vehicles require less energy and are therefore more efficient.  According to a report from Lux Research new lightweight technologies are able to provide the same degree of structural robusticity as heavier traditional materials.  This is a trend that Lux Research anticipates  will revolutionize the transportation sector.

These emerging lightweight structural materials save fuel, which is an important strategic consideration for car makers both to minimize energy requirements and to save on fuel costs.  Energy use is expected to rise 53 percent from 2008 levels to 765 quadrillion BTUs in 2035.

According to the report, advanced materials like magnesium and high-strength steel will have a greater impact on efficiency energy use than carbon fiber and even much heralded nanomaterials.

General Motors is one example of many car companies that are investing in lighter weight material development. In 2012 the company was among several recipients that received $54 million in Energy Department grants aimed at improving the energy efficiency of advanced manufacturing technologies.

GM received $2.7 million to develop an integrated die-casting process for a thin-walled magnesium application used to manufacture car doors. The process is expected to cut energy use by 50 percent. The reduced weight in the doors also will improve fuel economy and reduce carbon emissions.

© 2013, Richard Matthews. All rights reserved.

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Fisker May be Saved by Hong Kong Tycoon's Investor Group

Hong Kong tycoon Richard Li, who is already invested in Fisker, has put together an investment group that has bought the ailing electric car company's $168 million loan from the US Department of Energy.  By buying the loan Li will be free to restructure the company without being fettered by DoE obligations.

Fisker, which was started in 2007, secured over a billion dollars in investment. However, in July 2012 the company suspended building the plug-in hybrid Karma, its extended range luxury electric sedan, when battery producer A123 Systems Inc. went into bankruptcy protection. The company also suspended development of its less expensive ($55,000) Atlantic.

Li and his investor group appears to have beat out other offers to buy the DoE loan from the German Fritz Nol group, Chinese auto parts supplier Wanxiang and former General Motors executive Bob Lutz.

Although the exact value of the deal has not been released, bidders reportedly had to post around $30 million. Another DoE stipulation required bidders to present a manufacturing plan for the US.

To date around 2,000 Fisker Karma's have been built. The sticker price for the Karma is reported to be $96,000. The car can travel 32 miles on battery and its gasoline powered engine gets 20 miles per gallon. The combined mileage of the Karma exceeds 52 miles per gallon city and highway. With a zero to 60 time of 6.3 seconds, the Karma is one of the fastest electric cars on the market.

The Fisker saga shows just how hard it is to bring an electric car to market. The company experienced some early setbacks including a couple of fires in its early production vehicles. In 2012, Consumer Reports magazine gave the Karma a failing grade, citing numerous dashboard glitches and a battery that failed while the car was being tested. Then the DoE decided to renege on its promise to provide an additional $336 million in loans. In March, the company's co-founder, Henrik Fisker, resigned.

Fisker may have been overly ambitious in its efforts to bring the Karma to market. It remains to be seen if the Li group can resurrect the company.

© 2013, Richard Matthews. All rights reserved.

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The Top 10 Best Selling Hybrid Cars in the US (2013)

There are a number of hybrid vehicles that have flooded the marketplace in the last few years. The number of available hybrid brands in the US market has more than doubled since 2007. There were a total of 434,498 hybrid electric vehicles sold in the US in 2012. The EIA estimates that in 2010 there were about 9 million alternative fuel vehicles in the United States. According to Annual Energy Outlook 2013, in 2010 there were 1,890,265 Hybrid Gas/Diesel-Electric vehicles in the US. As reported in June, 2012 there were 2,180,000 hybrid cars in the US.

Toyota has consistently offered the most fuel efficient hybrid vehicles. As of 2009 Toyota had captured almost three quarters of the US hybrid market. Although Toyota now has considerably more competition, they remain the dominant force in US hybrid sales in the 2013 model year with two best selling hybrid cars and five cars in the top 10.

Here is hybridCars' 2013 list of the ten best selling hybrid cars in the US along with their fuel efficiency numbers and price tags:

1. 2013 Toyota Prius Liftback

50 MPG
$24,200 Now

2. 2013 Toyota Camry Hybrid

41 MPG
$26,140

3. 2013 Ford Fusion Hybrid

47 MPG
$27,200

4. 2013 Toyota Prius C

50 MPG
$19,080

5. 2013 Ford C-MAX Hybrid

47 MPG
$25,200

6. 2013 Toyota Prius V

42 MPG
$26,650

7. 2013 Hyundai Sonata Hybrid

38 MPG
$30,550

8. 2013 Toyota Avalon Hybrid

40 MPG
$35,555 Now

9. 2013 Chevrolet Malibu Eco

29 MPG
Hybrid $25,200

10. 2013 Kia Optima Hybrid

36 MPG
$25,700

© 2013, Richard Matthews. All rights reserved.

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Two Leading Japanese Electric Cars: Honda Fit EV and Mitsubishi i-MiEV

Japan has been the world leader in well priced fuel efficient small cars for decades and this leadership continues as we enter the era of electric vehicles. The Honda Fit EV and the Mitsubishi i-MiEV are two of the best Japanese small cars and two of the most fuel efficient vehicles in the world.

The 2013 Honda Fit EV (Electric vehicle), has received a combined adjusted Environmental Protection Agency (EPA) mile-per-gallon-equivalency rating of 118 MPG (equivalent), and an unprecedented low consumption rating of just 29 kilowatt hours (kWh) per 100 miles. The EPA estimates that annual fuel costs will be only $500.

The range and efficiency of the Fit EV are attributable to the car’s lightweight design, aerodynamic exterior and smart power-train, which includes a 92 kW electric motor.

The Mitsubishi i-MiEV has received a combined adjusted Environmental Protection Agency (EPA) mile-per-gallon-equivalency rating of 112 mpg (equivalent).

When manufacturing and recycling processes in addition to fuel economy and tailpipe emissions are factored into the equation the Mitsubishi i-MiEV was considered to be the most environmentally friendly mass produced electric car in the world according to the American Council for an Energy-Efficient Economy crunched the numbers.

© 2013, Richard Matthews. All rights reserved.

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Exploring the Demand for Hybrid Vehicles in the US

Hybrid vehicles are gaining in popularity in the US. The three primary reasons appear to be that consumers want to save money on gas, minimize their environmental impacts and reduce America's dependence on foreign oil.

An analysis from Frost & Sullivan reveals that revenues in the US market totaled $373.2 million in 2005 and reached $851.9 million in 2012.

A 2012 Harris Interactive poll indicated that interest in hybrids is growing across all demographics but particularly the younger (18-35) demographic. For this group 32 percent of those polled indicated interest in hybrids. Of those polled 23 percent said they are more interested in hybrid technology vehicles than in pure electric or pure gas vehicles, while 9 percent expressed interest in a fully electric vehicle.

If we dig deeper into this poll more men (26 percent) than women (20 percent) expressed interest in hybrids.

When asked why they were interested in hybrid vehicles, 55 percent of respondents said they wanted to save money through reduced fuel costs, 26 percent claimed their interest was due to environmental concerns. Another 18 percent indicated they wanted to reduce US dependency on foreign oil.

Surprisingly younger consumers tended to be more interested in saving money, while those over 66 said they were more concerned about the environment and reducing foreign oil dependency.

© 2013, Richard Matthews. All rights reserved.

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Meanest Vehicles for the Environment in 2013

Meanest Vehicles for the Environment in 2013

Make and ModelSpecificationsEmission Standard aMPG:
City
MPG:
Hwy
Green
Score
FORD F-350 FFV b6.2L 8, auto stk 4wdBin 8111617
FORD F-250 FFV c6.2L 8, auto stk 4wdBin 8111617
FORD E-350 WAGON d6.8L 10, autoBin 8101317
CHEVROLET G2500 EXPRESS (CARGO CONVERSION / GMC G2500 SAVANA (CARGO CONVERSION) (MDPV) e6.0L 8, autoBin 8101518
CHEVROLET SUBURBAN K2500 / GMC K2500 YUKON XL f6.0L 8, auto 4wdBin 5101519
BUGATT VEYRON8.0L 16, manual Awd [P]Bin 5 / LEV II81519
FORD E-150 WAGON FFV5.4L 8, autoBin 8121621
MERCEDES-BENZ G63 AMG5.5L 8, auto 4wd [P]ULEV II / Bin 5121421
BENTLEY MULSANNE6.8L 8, auto stk [P]Bin 5 / LEV II111821
MERCEDES-BENZ G5505.5L 8, auto 4wd [P]ULEV II / Bin 5121522
FORD F-150 RAPTOR6.2L 8, auto stkBin 4111622
FORD E-250 VAN FFV5.4L 8, autoBin 8121622
[P] denotes premium gasoline.
"auto stk" denotes manually adjustable automatic transmission.
a A listing with two emission standards (e.g., Tier 2 bin 5 / LEV II) denotes a single vehicle carrying both a federal and a California emission certification. Green Scores for such listings reflect the cleaner of the two certifications.
b The 2wd version of this vehicle scores a 19
c
The 2wd version of this vehicle scores a 19
d The E-250 Van earns a score of 18 .
e The passenger version of these vehicles score a 19
f The 2wd version of these vehicles score a 20

Source: Greenercars.org

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The Greenest Vehicles of 2013

The Greenest Vehicles of 2013

Make and ModelSpecificationsEmission Standard MPG:MPG:Green
TOYOTA PRIUS C1.5L 4, autoSULEV II / Bin 3534658
HONDA FIT bElectric (Li-ion battery)ZEV3.93.157
TOYOTA PRIUS1.8L 4, autoPZEV / Bin 3514855
TOYOTA PRIUS PLUG-IN HYBRID cElectric (Li-ion bat.) / 1.8L 4, auto CVTPZEV / Bin 33.9 / 513.0 / 4955
HONDA CIVIC HYBRID1.5L 4, autoPZEV / Bin 2444455
HONDA INSIGHT1.3L 4, autoBin 3414454
VOLKSWAGEN JETTA HYBRID1.4L 4, autoPZEV / Bin 3424853
MERCEDES-BENZ SMART FORTWO CONVERTIBLE / COUPE1.0L 3, manual [P]ULEV II / Bin 5343853
SCION IQ1.3L 4, autoULEV II / Bin 5363753
FORD FOCUS bElectric (Li-ion bat.)ZEV / Bin 13.32.952
TOYOTA PRIUS V1.8L 4, autoSULEV II / Bin 3444052
FORD FUSION HYBRID /
C-MAX HYBRID
2.0L 4, autoBin 3474751

[P] denotes premium gasoline.
"auto CVT" denotes continuously variable automatic transmission.
a A listing with two emission standards (e.g., Tier 2 bin 2/ PZEV) denotes a single vehicle carrying both a Federal and a California emission certification. Green Scores for such listings reflect the cleaner of the two certifications.
b Fuel economy for electric vehicles is provided in miles per kilowatt-hour.
c Fuel economy for plug-in hybrids is provided in miles per gallon for gasoline operation and in miles per kilowatt-hour for electric operation

Source: Greenercars.org

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Ford Motor Co.: Green or Greenwashing?

Ford Motor. Co. has a long, albeit mixed history of developing greener vehicles. Their strategy appears to focus on offering more choice to consumers than their competitors. Ford started working on cleaner vehicles in the 1990's when they explored air-hybrid cars, but they abandoned the plan because they lacked the necessary technology to move forward with the project. Around 2005 while the company was selling large volumes of gas guzzling SUV's Ford was simultaneously making big promises about delivering greener cars. However they failed to live up to their promises.

Ford now offers a wide range of vehicles in a number of different classes. Their lineup includes everything from large horsepower combustion powered engines to fully electric engines and everything in between.

In 2008, while other American automakers were on life support Ford moved forward without a government bailout (although they did benefit from the government's Cash for Clunkers program more than the other US car makers).

For the last few years Ford has enjoyed considerable success. In 2010, Ford swept the North American Car and Truck Awards, marking only the third time in the 17-year history of the award that a single automaker has claimed both titles.

Ford has radically increased the number of fuel efficient vehicles it offers including a number of hybrid and electric vehicles.  They have dropped their over-sized SUVS such as the Excursion, (which only got around 12-14 mpg highway and 8-10 mpg city) and they have divested themselves of some of their less ecologically friendly brands such as Aston Martin and Land Rover.

Ford is working hard on research and development, effectively doubling their battery-testing capabilities as part of a $135 million investment aimed at speeding up the development the next generation of electrified vehicles. They have invested in a massive building called the Ford Advanced Electrification Center, where more than 1,000 engineers work on cleaner vehicle technology. Ford has invested an additional $220 million to transform Van Dyke Transmission into an operation capable of producing Ford’s new hybrid transmission.

According to the company’s 2011 corporate sustainability report, Ford has reduced the amount of energy needed to produce each vehicle that it manufactures by 10 percent from 2010 to 2011, and by 22 percent in the last six years. Ford has announced plans to further reduce energy usage by another 25 percent on a per-vehicle basis by 2016, based on 2011 levels.

Ford reduced the average amount of water used to make each vehicle by 8.5 percent between 2011 and 2012, putting the company more than halfway toward its goal of using an average of 4 cubic meters per vehicle globally by 2015. In addition to cutting its own consumption, Ford says it supported several water-related projects across the globe. Since 2000, Ford has reduced the amount of water it uses in everything from cooling towers to parts washing and paint operations by 10.6 billion gallons, or 62 percent. The company's Global Water Management Initiative puts in place ways to manage water conservation, quality and reuse of storm and process water.

In 2011 Ford had five electrified vehicles (Focus Electric, C-MAX Hybrid, C-MAX Energi plug-in hybrid, the Fusion Hybrid and the Fusion Energi plug-in hybrid). Ford offered eight vehicles rated 40 mpg or better in 2012, and as of 2013 they offer more vehicles with this minimum fuel rating than any other US manufacturer.

As of 2013 Ford has tripled its electrified vehicle production capacity and grown its electrified vehicle lineup to six models. Ford is ramping up production of its fuel efficient EcoBoost engines. the company expects to be producing 1.6 million such engines annually as of this year. Ford is also making hybrids more affordable saying it will reduce the cost of its current hybrid system by 30 percent from its previous generation system.

In fact according to Greenercars Ford has some of the greenest vehicles in the world including Focus Electric and the Ford Fusion Hybrid / C-Max Hybrid.

On the one hand Ford has more green vehicles than any other American manufacturer. however, greenercars also reports that Ford has six vehicles in the top 12 worst vehicles for the environment list (Ford F-350 FFV, Ford F-250 FFV, Ford E-350 Wagon, Ford F-150 Raptor, and Ford E-250 Van).

While offering such a wide range of vehicles, Ford is trying to be all things for all consumers. But by providing greener vehicles alongside gas guzzling behemoths Ford is vulnerable to being convicted of greenwashing in the court of public opinion.

© 2013, Richard Matthews. All rights reserved.

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