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Plate tower design tray efficiencies

Plate towers can be utilized in high removal efficiency applications, even at medium H2S concentrations. The preferred design for Stretford applications uses weeping trays, thus avoiding the chance of downcomer plugging. For I0W-CO2 gases, each tray is reported to be equivalent to 0.6 transfer units. [Pg.787]

Mass-transfer theory indicates that for trays of a given design the factors most hkely to inflnence E in absorption and stripping towers are the physical properties of the flnids and the dimensionless ratio Systems in which the mass transfer is gas-film-controlled may be expected to have plate efficiencies as high as 50 to 100 percent, whereas plate efficiencies as low as 1 percent have been reported for the absorption of gases of low sohibility (large m) into solvents of relatively high viscosity. [Pg.1358]

A common type of distillation contacting device used in refinery applications is the sieve tray. In the early 50 s and for many years before, the bubble cap tray was the mainstay of the distillation field. A sieve tray consists of a flat plate with regularly spaced holes, normally 1/2 to 1 inch in diameter. Liquid flows horizontally across the tray and into a channel, called a downcomer, which leads to the tray below. The sieve tray exhibits good capacity, excellent efficiency, low pressure drop, and good flexibility i.e., it will operate quite efficiently at tower loadings which are 1/2 to 1/3 of design values. [Pg.85]


See other pages where Plate tower design tray efficiencies is mentioned: [Pg.1352]    [Pg.1175]    [Pg.6]    [Pg.249]    [Pg.1356]    [Pg.803]    [Pg.109]    [Pg.58]    [Pg.218]    [Pg.79]    [Pg.498]    [Pg.203]    [Pg.58]    [Pg.36]    [Pg.218]    [Pg.508]    [Pg.1589]    [Pg.1585]    [Pg.1362]    [Pg.482]   


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