2008 program
AlwaysOn GoingGreen 2008
2007 archives
AlwaysOn GoingGreen 2007
Programs by EcoWorld
Send an
Electronic
Postcard
by Ramesh on 11/21/08
I would like to install
solar lighting in my house.
Can anyone help me in th...
by derickjeff on 11/20/08
Coal-to-Liquids -- that is,
the conversion of coal to
liquid transport fuels...
by Ed Ring on 11/19/08
A recent email received
posed seven questions
regarding 'A Centrist Agen...
by meAgain on 11/19/08
I am # 29 on the e-list. I
wish I was on the h-list too
but will be satisfied wi...
by Hari Aparajith on 11/19/08
To add to my comment above,
the process will emit 2.2
tons of CO2 for every ton...
by fred on 11/18/08
Al Fin, Obviously you didn't
read the article
closely...the solar facili...
by Solar Sailor... on 11/18/08
[...] More: Solar
Sailor-Winged Ships [...]
EcoWorld Commentary
Ed Ring,
Editor-in-Chief
Daniela Muhawi,
Editor-at-Large
Contributing Editors
(comments are welcome)

Maps & Information




Today is Friday November 21, 2008
Editor's Commentary

Biofuel vs. Photovoltaics

Posted on: June 15th, 2006 by Ed Ring

In an earlier post “Power the World with Photovoltaics,” we demonstrate that the entire energy requirements of the human race could be fulfilled by a photovoltaic array 143,872 square miles in size. Insofar as this is only about one-quarter of one percent of the earth’s surface, or 668 square feet per person, there is no shortage of available space for photovoltaics.

With biofuel, however, there is a question as to whether or not there is enough land available to grow biofuel and also preserve farms and wilderness. For example, some of the best biofuel crops - biodiesel from jatropha and bioethanol from sugar cane - are able to produce about 6,000 barrels of fuel per square mile per year. This equates to about 55 million Btu’s of energy per square mile per year.

This means that using the best biofuel crops we’ve got today, to produce enough fuel to fulfill entire energy requirements of the human race (400 quadrillion Btu’s per year) we would need to devote 10.8 million square miles to growing biofuel. Considering there is only about 5.5 million square miles of arable farmland on the entire planet, this is not possible.

Biofuel is an important source of fuel, and in some parts of the world growing biofuel makes compelling economic sense, but today at least, biofuel doesn’t show nearly the potential of photovoltaics to efficiently turn sunshine into energy to power human civilization.

There is an interesting analysis “Widescale Biodiesel Production from Algae,” authored by Michael Briggs at the University of New Hampshire. He cites studies that indicate biofuel may soon be economically derived from algae. But he makes a huge assumption - stating that algae farms could yield “5,000 gallons per acre-year.” This equates to a yield over 10 times that of the best biofuel crops we’ve got.

Comparing various forms of solar energy boils down to how efficiently they convert sunlight into usable power. Since raw sunlight provides 100 watts per square foot, a photovoltaic array that produces 10 watts per square foot has an efficency of 10%. Some photovoltaic arrays can do much better than that, with efficiencies reported as high as 20% on high-quality production panels.

You can make the same calculaton with today’s best biofuel crops - diesel fuel extracted from jatropha and ethanol distilled from sugar cane both produce about 55 million Btu’s per square mile per year. Since raw sunshine provides about 41 trillion Btu’s per square mile per year, their efficiency is a paltry .13%.

If the promise of biodiesel extracted from algae is realized, you will see a ten-fold improvement in biofuel efficiency, to 1.3% (based on 5,000 gallons per acre-year). At that level of efficiency - less than one-tenth that of today’s photovoltaics, but cheaper to implement - it might be feasible for biofuel to become a realistic alternative to petroleum.

This entry was posted on Thursday, June 15th, 2006 at 3:03 pm and is filed under Biofuel, CleanTech, Electricity, Energy, Photovoltaic, Solar. You can follow any responses to this entry through the RSS 2.0 feed. You can leave a response, or trackback from your own site.

7 Responses to “Biofuel vs. Photovoltaics”

  1. e Says:

    Great point. I believe that biodiesel is a good supplement today but not a long term solution. Implementation is very easy compared to solar cells as well. I guess if we converted solar energy to a more portable form (e.g. fuel cells) then cars could make better use. As far as I remember batteries still lack the capacity to go 1000’s of miles on a charge, until stations were common, or posses the ability to recharge in under 5 minutes (maybe zinc-air). Maybe by time we figure this part out, we will have figured out new algae hybrids, and crop production techniques to increase biodiesel efficiency another 20 times. Until then, solar could be a real good channel of fuel.

  2. William Says:

    Good news. Charging times under 5 minutes have been demonstrated already. It’s just a question of economy of scale. http://neasia.nikkeibp.com/topstory/000881

  3. Dana Shields Says:

    Why is it that in articles such as these, aquatic species for biofuels are utterly ignored. It doesn’t take much to figure out that square footage calculations for land-based crops transform into cubic feet in water.

    To my knowledge, there’s nothing that could compete with algae or plankton if we learn the simple task of harvesting it. (and for heaven’s sake, you’d assume that a 200 years after the cotton gin was invented, someone could solve a problem this simple.)

    But this aspect of the equation is always blushed over as if it weren’t even a possibility, and we blithely move on without even asking the simplest questions.

    Shame on us.

  4. Dana Shields Says:

    oops. There it is. At the bottom…sometimes the answer isn’t on the surface!

  5. Duane Navarre Says:

    Algae Solution:

    http://www.unh.edu/p2/biodiesel/article_alge.html

    They just need a way to seal the track ponds to stop
    massive evaporation, and then use a solar powered
    crawler to process the algae, and return it in place.

    Scaling this across any areas in the country that are
    largely unused and have high sun profile.

    12% of the sonora desert could in theory replace all
    foreign and domestic fossil oil needs.

    It would overnight make the middle east worthless.

    If the oil companies would get onboard with this now
    they could run the operation and still make their billions
    AND not have to buy it from the middle east at all.

    Also VW has a 99 mpg diesel Lupo right now, imagine it
    as a plug in hybrid for in city slow rush hour traffic.

    onsiterepair@yahoo.com

  6. Tom Catino Says:

    They have already figured out how to convert massive amounts of CO2 into massive amounts of algae/acre & algae into massive amounts of biofuel…all inside a CO2 Bioreactor

    http://www.gs-cleantech.com/product_desc.php?mode=3

  7. stephen miller Says:

    Check out the Living Algae Machine by engineer Alphonz Veszolay which we are setting up at Ecoversity in Santa Fe- a promising path for small scale production of oil, biodiesel, and protein cake. (http://ecoversity.org)

Leave a Comment

*
To prove you're a person (not a spam script), type the security word shown in the picture. Click on the picture to hear an audio file of the word.
Click to hear an audio file of the anti-spam word

AUTO SHIPPING
New Hybrid Cars
Toyota Prius
Cheap Gas Prices
Latest Hybrid Cars
GreenBuzz Newsletter

Archives

November 2008 (5)
October 2008 (11)
September 2008 (11)
August 2008 (6)
July 2008 (10)
June 2008 (7)
May 2008 (12)
April 2008 (10)
March 2008 (23)
February 2008 (11)
January 2008 (12)
December 2007 (17)
2008 (118)
2007 (127)
2006 (102)

Links

Affordable Housing Design
Alternative Energy Blog
Alternative Energy Stocks
Alternative Energy Today
AlwaysOn - High Tech & Green Tech
American Dream Coalition
American Institute of Architects
AutoblogGreen
Big Biofuels Blog
BIOconversion Blog
Biofuel Review
BlueVoice.org
Camino Energy
Cato Institute
Clean Edge
Cleantech Blog
Climate Science
CNET Greentech
Congress for the New Urbanism
earth2tech
Edmunds Green Car Advisor
Electric Power Research Institute
Environmental Republican
ESRI Conservation Program
EV World
Evangelical Ecologist
Green Business
Green Car Congress
Green Car Guide
GreenBiz
Greencar.com
Greenpeace Blog
Gristmill
Hybrid Car Blog
ICIS Biofuels Blog
International Atomic Energy Agency
International Energy Agency
International Solar Energy Society
Living Lands & Waters
Money Morning
Mongabay.com
National Biodiesel Board
National Hydropower Association
National Renewable Energy Lab
New Urban News
Oilgae.com
Pension Tsunami
Rainforest Action Network
RealClimate.org
Renewable Energy Stocks
Rocky Mountain Institute
SeaWatch.org
SeaWeb.org
Sierra Club Compass Blog
Society for Ecological Restoration
Solar Energy Industries Association
SolarBuzz.com
The Antiplanner
The Energy Blog
The Green Car Website
The Reason Foundation
The Wildlands Project
Treehugger
Trees Water People
U.S. Green Building Council
UN Food & Agricultural Organization
Urban Land Institute
Urban Planning Blog
US Dept. of Energy
US Environmental Protection Agency
WildAid
World Coal Institute
World Nuclear Association
World Resources Institute
World Wildlife Fund