The integration of energy-saving regenerative combustion and adsorption system for disposing industrial volatile organic compounds
This project provides the energy-saving solutions of the volatile organic compounds treatment equipment for the semiconductor, optoelectronics, chemical industry and other traditional industries. The integration of energy-saving regenerative combustion and adsorption system has been developed to fully recover the waste heat, so the combustion efficiency of incinerating volatile organic compounds is improved and energy consumption is reduced. The key components of the system are activated alumina adsorption balls and thermal energy storage alumina ceramic, which are made from activated alumina and aluminum oxide derived from aluminum smelting industrial waste. The aluminum smelting dross can be recycled and reused and the waste landfill and carbon dioxide emissions are declined. Afterward the high cost of imported materials for producing ceramics and can be minimized.
核能安全、輻射防護、緊急應變、以及核後端相關技術研發
Name:Li, Heng-Yi
Phone:03-4711400#7428
Address:No. 1000, Wenhua Rd., Longtan Dist., Taoyuan City 325, Taiwan (R.O.C.)
Integrating Digital Grayscale, Defocus Method and Newly Developed Pho topolymer to Stereolithography 3D Printing Process to Rapidly Manufact ure Microlens Array with High Optical Performance
1.Heat pump combined with desiccant for dehumidification & 2.Smart defrost control method & 3.Design of AIoT EMCS communication system & 4.System and Method for a Non-Intrusive Refrigerant Leakage Detection and Adaptive Method for Threshold Thereof
Application of innovative electrolyzed catalytic and nanobubble system for the remediation of petroleum-hydrocarbon contaminated soils and groundwater
The system integration of energy-saving green adsorption key components and treatment facility for volatile organic compounds
Technology maturity:Prototype
Exhibiting purpose:Display of scientific results、Product promotion
Trading preferences:Technical license/cooperation、Negotiate by self
Coming soon!