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After the microwave catalysis process is complete, the resulting product is principally composed of iron carbide and multi-walled carbon nanotubes. You can immediately see that the mixture has a deep black color, but then you will notice that the mixture also has unique magnetic properties. As you can see in these two video clips, the mixture of iron carbide and multi-walled carbon nanotubes can be manipulated using a small but powerful magnet. Iron carbide - sometimes referred to as cementite - can be used for the production of ethylene, methanol, sensors, coatings, and high tensile strength steel. Multi-walled carbon nanotubes also have unique properties such as high tensile strength, thermal stability, electrical conductivity and magnetization. These properties make them suitable for a wide range of applications, including conductive composite materials, electrode materials for batteries and capacitors, gas sensors, bio-sensors, and water purification reagents that selectively remove organic contaminants from water. CarbonMeta's next steps will involve the analysis and characterization of the iron carbide and multi-walled carbon nanotubes that are produced - another step closer to achieving commercial scale production of CarbonMeta's patented and proprietary process. In closing, thank you for watching. Please follow us on Twitter, subscribe to our Youtube channel, and Stay Tuned for more updates from CarbonMeta.