Sunday, October 03, 2021

Researchers suggest a way to achieve net-zero emission plastics

plastic ocean
Credit: Pixabay/CC0 Public Domain

A team of researchers with members affiliated with institutions in Germany, Switzerland and the U.S. has created a model that they claim could be used to achieve net-zero-emission plastics by 2050. In their paper published in the journal Science, the group outlines their model and requirements for implementation.

A host of studies has shown that the production and  has become a significant environmental problem as it breaks down into microplastics, it makes its way into virtually every water source on the planet, resulting in  for organisms. Production of plastic is also a significant contributor to  due to the gasses emitted during manufacture. In this new effort, the researchers analyzed the data produced by over 400 research efforts aimed at solving the plastics problem and developed a model that they say could lead to a net-zero-emission-plastic world by 2050.

The model implements a cycle built around combining recycling of plastics with chemical reduction of the carbon dioxide they emit when they are burned or collected from biomass. They suggest a recycling rate as low as 70% would be sufficient to reach net-zero emissions, which would result in  of 34 to 53%. They also suggest that the operational costs involved would be on a par with other carbon-capture processes. They further suggest that the cost savings associated with implementing their model globally would amount to approximately $288 billion annually. They point out that production of plastics now accounts for approximately 6 percent of  and note that current forecasts suggest that the number could grow to 20% over the next 30 years if things continue as they are now. They conclude that the technology exists to solve the plastics problem—all that is needed to solve it is the will to do so.

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More information: Raoul Meys et al, Achieving net-zero greenhouse gas emission plastics by a circular carbon economy, Science (2021). DOI: 10.1126/science.abg9853
Journal information: Science 
Provided by Science X Network

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