Posted on 10/10/2014 12:47:46 PM PDT by Red Badger
Startup Alphabet Energy has its first product: what it says is the worlds largest thermoelectric generator.
Power plants waste huge amounts of energy as heatabout 40 to 80 percent of the total in the fuel they burn. A new device could reduce that waste, cutting fuel consumption and carbon emissions by as much as 3 percent and saving companies millions of dollars. (Three percent might not seem like much, but for context, air travel accounts for 2 percent of worldwide carbon dioxide emissions.)
The generator makes use of a novel, highly efficient thermoelectric material discovered recently at the University of Michigan (see Thermoelectric Material to Hit Market Later this Year). Thermoelectric materials, which convert heat into electricity, have been around for decades, but they have always been too expensive to use outside extreme situationsin spacecraft, for example.
Matt Scullin, the CEO of Alphabet Energy, the startup that developed the new device, says connecting it to the exhaust pipe of a 1,000-kilowatt generator will yield enough electricity to save 52,500 liters of diesel fuel a year, for a reduction of about 2.5 percent. For smaller engines, the savings would be slightly higher, Scullin says.
The first customers will probably be oil, gas, and mining companies that use large generators to produce power in remote areas. The generator could save those companies millions in fuel, Scullin says. There arent many levers these companies can pull to reduce costs that much, he adds.
Ali Shakouri, a professor of electrical and computer engineering at Purdue University, says the cost savings sound plausible given the material being used, although he hasnt had a chance to evaluate the technology.
Alphabet Energys system is modular, meaning it could be scaled up to make use of larger amounts of waste heat. The company is also developing another thermoelectric material, based on silicon nanowires, that could convert a higher percentage of the energy in waste heat to electricity.
Even improved thermoelectric materials, however, are unlikely to reduce fuel consumption by more than 5 or 10 percent. Other options for making use of waste heat include heating (and even cooling) nearby buildings in cities.
Not efficient enough, even the new ones aren’t efficient enough to do what you want.
Google powerchips plc. It’s probably vapor ware but uses an entirely different technology with the potential to be nearly an order of magnitude more efficient.
Every now and then they announce an advancement towards production but I’ve watching them for years and it’s still more theory than product.
for Don
you cannot believe the incredible amounts of “waste” heat generated in the production of oil and gas in the oil field.
All production from wells make some degree of heat which is never utilized. Most of it comes from the water which is almost always associated with oil production.
Many schemes have been tried to take advantage of this.
guess my take is that if one has enough waste heat in one single place, there might be some benefit.
I would not hold my breath, though.
I have worked geothermal energy sources and there are tremendous amounts of heat that prove difficult to economically produce, albeit, some are successful
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