Using nanoparticles made with captured CO2 not only keeps those emissions from entering the atmosphere, but reduces the need to consume expensive, carbon-intensive traditional materials such as plastics and concrete. Conventional methanol is a liquid petrochemical used to make resins, pharmaceuticals, perfumes and a variety of other products. This startup, staffed by researchers at George Washington University, developed a process for converting carbon dioxide into carbon fibers, or nanotubes, using molten electrolysis. The concentrated carbon is then combined with hydrogen and oxygen to synthesize a naturally occurring, PHA-based biopolymer material that is then purified and processed into a pellet, which can then be melted and formed into shapes. A research team from the University of Texas at Austin have developed a new type of soil that can extract water straight from the air. Formaldehyde. These building blocks contain between one and four carbon atoms. Collecting CO2 from the world’s smokestacks is hard enough. World Economic Forum articles may be republished in accordance with the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International Public License, and in accordance with our Terms of Use. A weekly update of what’s on the Global Agenda, Explore the latest strategic trends, research and analysis, Anna Middleton, Mavis Machirori, Jenniffer Mabuka-Maroa, and Tiffany Boughtwood, Intergovernmental Panel on Climate Change, chart a course away from catastrophic climate change by the end of the century, Bill Gates is backing a plan to turn CO2 into fuel, Why this Danish city is rebuilding itself out of recycled rubble, Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International Public License, Centre for the Fourth Industrial Revolution, Schwab Foundation for Social Entrepreneurship. This team from Suzhou, China, is led by Wayne Song, an expert in wood-plastic composite, a material made from sawdust and plastic fiber. This research team from Bangalore, India, is developing an artificial photosynthesis process to convert CO2 into methanol, a key feedstock and fuel. Newlight in 2016 entered into a supply, collaboration, and technology license agreement with IKEA to allow the furniture giant to produce thermoplastic using Newlight’s technology. Below are five of these new game-changing technologies. The process, which uses CO2 and electricity, produces carbon nanofibers, which can be used as carbon composites — a strong, lighter-weight alternative to metal — to make a wide variety of products, including wind turbine blades, race cars, airplanes and bicycles. Better furniture. The process costs less than traditional carbon nanofiber manufacturing, such as chemical vapor deposition or polymer pulling, the company said. This startup, staffed by researchers at George Washington University, developed a process for converting carbon dioxide into carbon fibers, or nanotubes, using molten electrolysis. These materials are increasingly making their way into green construction and environmentally friendly products to replace petrochemicals. Since 2016, the material manufacturer has been using CO 2 to produce polyols as a component for soft polyurethane foam. CO Handheld; CO Sensors; CO Wall Mount; Ammonia. Two of the products that the researchers created, 2,3-furandiol (C4) and methylglyoxal (C3), can serve as precursors for pharmaceuticals, plastics and adhesives. Finding an alternative to plastics is one of the key ways of facilitating a move away from global... Cleaner concrete. O2 Handheld; O2 Wall Mount; O2 Sensors; O2 Data Loggers; Carbon Monoxide. This team from Suzhou, China, is led by Wayne Song, an expert in wood-plastic composite, a material made from sawdust and plastic fiber. Transitioning from fossil fuels to renewable energy is good climate policy, but it won’t be enough to keep global temperatures from rising by more than 2 degrees Celsius and bringing catastrophic climate change. Conventional methanol is a liquid petrochemical used to make resins, pharmaceuticals, perfumes and a variety of other products. Bulk chemicals already produced routinely from CO 2 include urea to make nitrogen fertilizers, salicylic acid as a pharmaceutical ingredient, and polycarbonate-based plastics, Rayner said. Most scientific models that the IPCC used to chart a course away from catastrophic climate change by the end of the century could not limit global CO2 concentrations below the key threshold of 450 parts per million by 2100 without including the use of negative emissions, often referred to as carbon capture and storage. Scientists around the world are competing to develop the best process for converting waste CO2 into methanol. © 2019 GreenBiz Group Inc. GREENBIZ® and GREENBIZ.COM® are registered trademarks of, 5 surprising products companies are making from carbon dioxide, Governments and businesses seek resilience in a changing climate, Salesforce, Microsoft, Apple push Virginia utility to use more renewables, less gas, Puerto Rico sets the stage for microgrids, Why Target and Amazon like onsite solar power, How businesses are benefiting from Hawaiian Electric's virtual power plant, Intergovernmental Panel on Climate Change, chart a course away from catastrophic climate change by the end of the century. These materials are increasingly making their way into green construction and environmentally friendly products to replace petrochemicals. C2CNT's approach is to capture CO2 directly from the flue stream of a power plant, cement kiln or other industrial facility, then convert it into pure carbon nanotubes. This startup, staffed by researchers at George Washington University, developed a process for converting carbon dioxide into carbon fibers, or nanotubes, using molten electrolysis. Products: Nanoparticles for plastics, concrete and coatings. "Most of the scientific models the IPCC used to chart a course away from catastrophic climate change require carbon capture.". Covestro already successfully uses carbon dioxide as a raw material. Among the 116 action plans the IPCC considered to keep Earth below the 2-degree threshold, all but 15 include carbon capture and storage. Using nanoparticles made with captured CO2 not only keeps those emissions from entering the atmosphere, but reduces the need to consume expensive, carbon-intensive traditional materials such as plastics and concrete. There is no killer app for storing the carbon underground, and using it to pump more oil out of the ground also is not a viable option. 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