How This Algae-Powered Computer Has Been Running for Over a Year

The device you’re reading this article on right now likely uses a lithium-ion battery. While that technology is great for doing things like reading well-written science articles, it comes at a high price, is in limited supply, and has a disastrous impact on our environment.

 

 

 

That’s why scientists are on the search for a renewable and eco-friendly way to power our devices—and one of those attempts just happens to involve algae. (Yes, the green stuff that grows in the water.)

 

Researchers at The University of Cambridge have created a computer powered completely by the aquatic plant—and even ran it for more than a year. In a new study published Thursday in the journal Energy & Environmental Science, the team used a common species of blue algae known as Synechocytis that gains electricity from the sun via photosynthesis. The small electric current that this process creates was then channeled into an electrode, which powered a microprocessor

 

Over the course of a year, the algae-powered computer (roughly the size of an AA battery) sat in a semi-outdoor environment with plenty of sunlight. There, it repeated a simple mathematical operation over and over in order for the researchers to prove the concept. Interestingly, the device even ran at night since the algae is able to process food when it’s dark.

 

 

 

Due to the device’s minute size and ability to generate a small amount of electricity, the researchers believe that it has a wide range of applications such as being a viable power supply for preppers and campers. They also believe it could come in handy in the future as the world grapples with a lithium-ion battery shortage that has hamstrung the tech industry, leading to widespread supply-chain issues with products like electric cars, cell phones, and laptops.

 

“I imagine a future where this technology could be a source of power for small electronic devices located off-grid perhaps also in remote locations,” Paolo Bombelli, a post-doctoral researcher of biochemistry at the University of Cambridge and lead author of the paper, told The Daily Beast via email. He later added, “In my futuristic view, I could foresee [having] algae-driven charging stations for mobile phones located in remote locations instead of charging cars in our cities.”

 

The system, comparable in size to an AA battery, contains a type of non-toxic algae called Synechocystis that naturally harvests energy from the sun through photosynthesis. The tiny electrical current this generates then interacts with an aluminium electrode and is used to power a microprocessor.

 

The system is made of common, inexpensive and largely recyclable materials. This means it could easily be replicated hundreds of thousands of times to power large numbers of small devices as part of the Internet of Things. The researchers say it is likely to be most useful in off-grid situations or remote locations, where small amounts of power can be very beneficial.

 

“The growing Internet of Things needs an increasing amount of power, and we think this will have to come from systems that can generate energy, rather than simply store it like batteries,” said Professor Christopher Howe in the University of Cambridge’s Department of Biochemistry, joint senior author of the paper.

 

He added: “Our photosynthetic device doesn’t run down the way a battery does because it’s continually using light as the energy source.”

 

In the experiment, the device was used to power an Arm Cortex M0+, which is a microprocessor used widely in Internet of Things devices. It operated in a domestic environment and semi-outdoor conditions under natural light and associated temperature fluctuations, and after six months of continuous power production the results were submitted for publication.

 

 

The study is published today in the journal Energy & Environmental Science.

“We were impressed by how consistently the system worked over a long period of time – we thought it might stop after a few weeks but it just kept going,” said Dr Paolo Bombelli in the University of Cambridge’s Department of Biochemistry, first author of the paper.

 

The algae does not need feeding, because it creates its own food as it photosynthesises. And despite the fact that photosynthesis requires light, the device can even continue producing power during periods of darkness. The researchers think this is because the algae processes some of its food when there’s no light, and this continues to generate an electrical current.

 

The Internet of Things is a vast and growing network of electronic devices - each using only a small amount of power - that collect and share real-time data via the internet. Using low-cost computer chips and wireless networks, many billions of devices are part of this network - from smartwatches to temperature sensors in power stations. This figure is expected to grow to one trillion devices by 2035, requiring a vast number of portable energy sources.

 

The researchers say that powering trillions of Internet of Things devices using lithium-ion batteries would be impractical: it would need three times more lithium than is produced across the world annually. And traditional photovoltaic devices are made using hazardous materials that have adverse environmental effects.

 

The work was a collaboration between the University of Cambridge and Arm, a company leading the design of microprocessors. Arm Research developed the ultra-efficient Arm Cortex M0+ testchip, built the board, and set up the data-collection cloud interface presented in the experiments.

 

The system, comparable in size to an AA battery, contains a type of non-toxic algae called Synechocystis that naturally harvests energy from the sun through photosynthesis. The tiny electrical current this generates then interacts with an aluminium electrode and is used to power a microprocessor.

 

 

 

The system is made of common, inexpensive and largely recyclable materials. This means it could easily be replicated hundreds of thousands of times to power large numbers of small devices as part of the Internet of Things. The researchers say it is likely to be most useful in off-grid situations or remote locations, where small amounts of power can be very beneficial.

 

 

 

“The growing Internet of Things needs an increasing amount of power, and we think this will have to come from systems that can generate energy, rather than simply store it like batteries,” said Professor Christopher Howe in the University of Cambridge’s Department of Biochemistry, joint senior author of the paper.

 

 

 

He added: “Our photosynthetic device doesn’t run down the way a battery does because it’s continually using light as the energy source.”

 

 

 

In the experiment, the device was used to power an Arm Cortex M0+, which is a microprocessor used widely in Internet of Things devices. It operated in a domestic environment and semi-outdoor conditions under natural light and associated temperature fluctuations, and after six months of continuous power production the results were submitted for publication.

 

 

 

The study is published today in the journal Energy & Environmental Science.

 

 

 

“We were impressed by how consistently the system worked over a long period of time – we thought it might stop after a few weeks but it just kept going,” said Dr Paolo Bombelli in the University of Cambridge’s Department of Biochemistry, first author of the paper.

The algae does not need feeding, because it creates its own food as it photosynthesises. And despite the fact that photosynthesis requires light, the device can even continue producing power during periods of darkness. The researchers think this is because the algae processes some of its food when there’s no light, and this continues to generate an electrical current.

 

 

 

The Internet of Things is a vast and growing network of electronic devices - each using only a small amount of power - that collect and share real-time data via the internet. Using low-cost computer chips and wireless networks, many billions of devices are part of this network - from smartwatches to temperature sensors in power stations. This figure is expected to grow to one trillion devices by 2035, requiring a vast number of portable energy sources.

 

 

 

The researchers say that powering trillions of Internet of Things devices using lithium-ion batteries would be impractical: it would need three times more lithium than is produced across the world annually. And traditional photovoltaic devices are made using hazardous materials that have adverse environmental effects.

 

 

 

The work was a collaboration between the University of Cambridge and Arm, a company leading the design of microprocessors. Arm Research developed the ultra-efficient Arm Cortex M0+ testchip, built the board, and set up the data-collection cloud interface presented in the experiments.

Enjoyed this article? Stay informed by joining our newsletter!

Comments

You must be logged in to post a comment.

About Author