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High-performance carbon capture, conversion for reuse, and carbon material manufacture

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High-performance carbon capture, conversion for reuse, and carbon material manufacture

Technology Introduction:
Our team has developed efficient CO₂ capture, conversion, and reuse technology by combining chemical absorption with microalgae-based capture. This allows us to turn atmospheric CO₂ into biochar for lithium-ion battery anodes. Producing 1 ton of anode material captures about 11.37 tons of CO₂ annually.
Industry Applicability:
High-gravity rotating bed technology captures CO₂ and produces bicarbonates for microalgae cultivation, which can be turned into biofertilizer for higher reuse. Energy-efficient dewatering cuts drying energy use and mold risk. Microalgae biochar can replace graphite in lithium-ion battery anodes. Multiple technology transfers have accelerated industrialization.

National Cheng Kung University

National Cheng Kung University (NCKU) envisions its campus as a place that nurtures imagination, grounded in solid academic research and high-quality learning. The university is committed to fostering urban development and global sustainability as part of its centennial mission. By breaking institutional barriers and strengthening interdisciplinary teaching and research, NCKU encourages students to recognize social issues, produce research that meets societal needs, and actively engage in solving global challenges—reflecting its responsibility as a leading university.

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  • Phone:04-2359-0121 #33210

  • Address:No.1, Daxue Rd., East Dist., Tainan City 701, Taiwan (R.O.C.)

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  • Pavilion:Future Tech Net Zero FF13

  • Affiliated Ministry:National Science and Technology Council

  • Application Field:Green Energy & Environment

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  • Technology maturity:Others

  • Exhibiting purpose:Display of scientific results

  • Trading preferences:Negotiate by self

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