Application of Ultrafine Nanobubble Technology in Waste Gas Treatment
Superoxide ion nanobubble catalytic oxidation technology uses a large number of active particles in the nanobubble to promote the reaction with pollution source molecules, using both free radicals and active free oxygen in the nanobubble to produce a mixture including negative ions, hydroxyl groups, atoms, and free radicals. Although the electron temperature is very high during the process, the temperature of heavy particles is very low, and the entire system presents a normal temperature state. Superoxide ion nanobubble technology is used to degrade pollutants by utilizing these high-energy electrons, free radicals, and other active particles to interact with pollutants in the exhaust gas, causing the decomposition of pollutant molecules in a very short time and subsequent various reactions to achieve the goal of degrading pollutants. Due to its efficient decomposition of pollutant molecules and low energy consumption for treatment, it opens up a new idea for the treatment of industrial waste gas.
After being stimulated by the physics of the environment (compression and expansion generated by the flow process of water, vortex flow, etc.), superoxide micro/nano bubbles will generate an ultra-high pressure of about 10 atmospheres and a limit reaction field of 4400 ℃ between molecules due to instantaneous (about 10-9 power seconds) adiabatic compression. The micro electricity of superoxide and active hydrogen oxygen, which are unique to the ionization phenomenon, can generate a large number of hydroxyl ions from water molecules in the air. The hydroxyl ions and the resulting hydroxyl radicals have a strong decomposition ability, resulting in a large number of smaller diameter microbubbles generated by the crushing effect, and exhibit characteristics such as ultrasound, electrification, retention, self pressurization, diffusion, and strong oxidation, Decomposition and elimination of organic compounds (VOCs) (chemical reactions), destruction and separation of the components of pollutants and suspension of the water surface, promote the conversion of some organic compounds (VOCs) into carbon dioxide and water, and the other part is mineralized to form granular sediment into water, with its characteristics of non combustion, non dissolution, and no toxicity. The removal rate of non methane total hydrocarbons, formaldehyde, benzene series, hydrogen sulfide, odor, and other organic substances (VOCs) is high.
·Super oxygen micro nano bubble process technology is advanced, without secondary pollution, low resource consumption, low greenhouse effect, stable and reliable operation of facilities, extremely low failure rate, simple maintenance, and low operating costs.
·Integrated design of machinery, electricity, water, and gas, integrated with electronic control devices, instrumentation, and compact structure, making it easy to combine with existing system facilities to improve the treatment effect of waste gas;
·Can handle a variety of organic waste gases. [Ethyl acetate, cycloacetone, NMP, DMAC, ammonia, trimethylamine, hydrogen sulfide, hydrogen methylsulfide, methyl mercaptan, methyl sulfide, dimethyl disulfide, carbon disulfide, and styrene, sulfide H2S, VOC, and molecular chain structures of benzene, toluene, and xylene]
·Corrosion resistant, all overflow components are made of SUS304 stainless steel/316L stainless steel/PTEF material;
·Adopting industrial grade design, it can operate stably and reliably for 24 hours continuously;
·Intelligent control, CPU integrated control, online real-time monitoring of key process parameters such as flow, temperature, pressure, etc.