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  • Algae to crude oil

    Algae to crude oil: Million-year natural process takes minutes in the lab

    By Francis X Govers III
    December 24, 2013

    51 Comments
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    Biocrude produced using the new process
    Image Gallery (5 images)

    Engineers at the US Department of Energy’s Pacific Northwest National Laboratory (PNNL) have created a continuous process that produces useful crude oil minutes after harvested algae is introduced. This new process does not require drying out the algae, which grows in water, saving time and energy that would be otherwise wasted. The final product can be refined into aviation fuel, diesel, or gasoline.The process mimics some of the conditions that originally turned prehistoric plant material into fossil fuel deep within the earth – high pressures and temperatures.
    Algae, an aquatic plant, has long been considered as a biofuel source, but the steps needed to turn a wet, green plant into clear, burnable fuel have been both expensive and time-consuming. The algae had to be processed in a series of steps, one of which involved drying it out and removing all the water, which might be 80 percent of the biomass. Then solvents were used to extract energy-rich hydrocarbons from the dried material.
    The PNNL team created a continuous process that starts with the wet algae and subjects the entire mass – water, algae, and all – to high temperatures and pressures, in this case, 350ºC (662ºF) and 3,000 psi.
    "It's a bit like using a pressure cooker, only the pressures and temperatures we use are much higher," said Laboratory Fellow Douglas Elliott, the leader of the research team. "In a sense, we are duplicating the process in the earth that converted algae into oil over the course of millions of years. We're just doing it much, much faster."

    Steps in the process for making fuel from algae – the algae slurry, crude oil, and refined diesel fuel

    The products of the process include crude oil, which can be further refined into aviation fuel, gasoline, or diesel fuel (in tests, the process achieved between 50 and 70 percent conversion of the algae’s carbon into fuel); clean water, which can be used to grow more algae; fuel gas, which can be burned to make electricity or cleaned to make natural gas; and nutrients like nitrogen, phosphorus, and potassium – needed for growing algae.
    Genifuel Corporation has licensed the process, and has been working with the team at the lab since 2008. The company intends to team with some industrial partners to create a pilot plant using this process to make biofuel in industrial quantities.
    The process was detailed in a recent paper published in the journal Algal Research. More information on the technology is available in the video below.
    Source: PNNL



    About the Author Francis Govers is the designer of over 20 land, sea, air and space vehicles and teaches robotics and the design of self-driving cars. He spent 10 years at NASA, helped design the International Space Station, participated in the DARPA Grand Challenge, and managed the only Zeppelin operating in the US. As a commercial pilot, writer, artist, musician, engineer, race car nut and designer, Francis has a serious addiction to building things that frequently gets him into trouble. All articles by Francis X Govers III

  • #2
    sounds good.
    • Don't let negative things break you, instead let it be your strength, your reason for growth. Life is for living and I won't spend my life feeling cheated and downtrodden.

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    • #3
      The problem is to move from lab tests to commercialization at reasonable costs. One of the challenges with alternative energy is the unwillingness to share information or increase investments without looking for absolute control - thereby going back to the same monopolistic distribution systems.
      These are the kinds of research our learned institutions should be doing - engaging what we have, utilizing solar (not only for panels) but moving towards biotechnology for growing algae etc....the list is long.

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      • #4
        you are right on all front. Yes the problem is getting it to market quantity at good cost. I kinda like this one though. We need more (even small) invention and more small businesses that can provide goods and service with a difference.

        Certainly we should do more of this, but the problem is we look too much to others and also the little that we do, is the scientific research council and UWI etc. working with small business, to try and take advantage???
        • Don't let negative things break you, instead let it be your strength, your reason for growth. Life is for living and I won't spend my life feeling cheated and downtrodden.

        Comment


        • #5
          Not much...several years ago, I was approached by an arm of UWI (commercial) that was trying to get a marine park going - somewhere in St. Thomas - that would look into some of these kinds of research and to partner with pvt sector interests for commercialization ...unfortunately, they never received the expected funding (Dutch I think) and it all fell through...pity really...as this is the way forward - certainly for seafood production, renewable energy, biotechnology etc.

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          • #6
            a lot of little thing we can improve on or develop to add to current product or bring new ones.
            • Don't let negative things break you, instead let it be your strength, your reason for growth. Life is for living and I won't spend my life feeling cheated and downtrodden.

            Comment


            • #7
              Sugar cane to ethanol fuel has been widely deployed in Brazil. Brazil mandates that flex-fuel models from car makers & importers. What is needed is a comprehensive energy policy.
              Winning means you're willing to go longer, work harder, and give more than anyone else - Vince Lombardi

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