Impinging zone reactor and its mathematical model for ozonation of waste water
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Lee, S.Y.
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Air Products and Chemicals, Inc., Corp. Science and Technology Center, 7201 Hamilton Boulevard, Allentown, PA 18195-1501, United StatesAir Products and Chemicals, Inc., Corp. Science and Technology Center, 7201 Hamilton Boulevard, Allentown, PA 18195-1501, United States
Lee, S.Y.
[1
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Ruutel, P.
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Air Products Plc, European Technology Group, Crockford Lane, Basingstoke, Hampshire, RG248FE, United KingdomAir Products and Chemicals, Inc., Corp. Science and Technology Center, 7201 Hamilton Boulevard, Allentown, PA 18195-1501, United States
Ruutel, P.
[2
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Barratt, P.A.
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Air Products Plc, European Technology Group, Crockford Lane, Basingstoke, Hampshire, RG248FE, United KingdomAir Products and Chemicals, Inc., Corp. Science and Technology Center, 7201 Hamilton Boulevard, Allentown, PA 18195-1501, United States
Barratt, P.A.
[2
]
Tsui, Y.P.
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Air Products and Chemicals, Inc., Corp. Science and Technology Center, 7201 Hamilton Boulevard, Allentown, PA 18195-1501, United StatesAir Products and Chemicals, Inc., Corp. Science and Technology Center, 7201 Hamilton Boulevard, Allentown, PA 18195-1501, United States
Tsui, Y.P.
[1
]
机构:
[1] Air Products and Chemicals, Inc., Corp. Science and Technology Center, 7201 Hamilton Boulevard, Allentown, PA 18195-1501, United States
[2] Air Products Plc, European Technology Group, Crockford Lane, Basingstoke, Hampshire, RG248FE, United Kingdom
The impinging zone reactor combines the high shear associated with gas-liquid co-injection and the impingement of two jet streams to brings about high density mixing in a power efficient manner. The reactor has been field tested and proven to be effective and economical for ozonation of wastewater to reduce COD (Chemical Oxygen Demand) and color. A reactor mathematical model has been developed based on fundamental principles where ozone self-decomposition in water and mass transfer enhancement due to fast reactions are explicitly considered. The model is especially useful for reactor scale-up design and optimization.