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研究與發展

製程尾氣排放系統PM2.5處理技術(粉塵終結器) 2022/07/21

 

簡介 Introductions

既有之粉塵洗滌技術無法有效處理廢氣中的極小顆粒(<PM5),其中 3 微米的粉塵捕捉率僅達 14.6%,此技術透過新開發之管柱窄頸式文氏管風道,整合水噴霧及雙層旋風導流集塵技術,增加迴旋渦氣流以加速微粒集塵,提升3 微米粉塵捕捉率達 95% 以上,節省尾氣處理耗能。

The existing dust scrubbing technology can’t effectively handle very small particles (<PM5) in the exhaust gas, of which the PM3 dust capture rate only reaches 14.6%. This technology is based on the newly developed Plunger Venturi Nozzle, which integrates water spray and double-layer cyclone flow collection technology to increase the cyclonic airflow and accelerate the particle collection. It can enhance the PM3 dust capture rate up to 95% or more and save the energy consumption of exhaust gas treatment.

特色與創新 Characters and Innovations

  • 窄頸式文氏風道微粒去除裝置。
  • 雙層旋風水灑系統加速微粒集塵。
  • 不使用水霧條件可達 PM3 顆粒 91% 去除力。
  • 搭配水霧能捕捉最大 95% 以上的 PM3 微粒。
  • 無耗材、可乾濕兩用,減少水資源需求。
  • Plunger Venturi Nozzle particle removal device.
  • Double cyclone water sprinkler system accelerates particle dust collection.
  • Up to 91% PM3 particle removal without water mist.
  • Up to 95% or more of PM3 particles removal with water mist.
  • No consumables, can be used both wet and dry, reducing the need for water resources.
氣體運動微粒捕捉機制研究
氣體運動微粒捕捉機制研究

應用與效益 Applications and Benefits

  • 應用相關製程之廢氣 / 微粒汙染處理,如 : 半導體、燃煤/氣電廠等高汙染排放場域,降低其環境粉塵排放量,以達低汙染物及節電環保。
  • It can be applied to the process of exhaust gas pollution treatment, such as: semiconductor, coal/gas power plants and other high pollution emission fields, to reduce their environmental dust emissions, in order to achieve low pollutants and power saving environmental protection.