EPC Products Teaching and Research Laboratory Equipment Water Treatment W11-Aerobic Digester
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W11-Aerobic Digester

Model:W11

Use:The Armfield Aerobic Digester is a benchtop unit designed as a comprehensive study facility of this process.

Standard:

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    Description

    Waste water is drawn from a floor-standing feed tank (not supplied) by a DC motor-driven peristaltic pump. Rotational speed – and thus flow rate – is accurately set by a ten-turn potentiometer.

    The pump delivers the feed to the reactor vessel through a transparent lid. Air is supplied at a measured rate by a small compressor, and discharges into the base of the reactor via a spider-arm dispenser. This design prevents blockages and produces sufficient bubbling for stirring and reaction. The liquid level in the reactor is maintained at a constant value of five to ten litres, by an adjustable overflow device connected to the outer annular chamber of the vessel. Discharge is by gravity to a floor-standing product tank (not supplied).

    The reactor temperature is maintained by a three-term controller, which varies power to an immersion heater within the vessel. Any temperature between ambient and +35°C may be selected, the best conditions being a few degrees above the diurnal maximum in the user’s laboratory.

    Dissolved oxygen and pH probes and meters are included.

    The reactor lid contains a gas exit port, suitable for sampling the gases for subsequent analysis.



    Features & Benefits

    • Small Scales bench mounted design
    • Provides demonstration of continuous activated sludge process



    Demonstration Capabilities

    • Acclimation of a completely mixed biological reactor
    • Measurement of COD and MLSS changes as criteria of performance
    • Establishing the stoichiometry and kinetics of aerobic processes
    • Gas/liquid mass transfer
    • Residence time distributions
    • 100% scale-up to industrial requirements
    • Studying the effect on effluent quality of:

    Inflow substrate concentration (‘loading rate’)

    Liquid flow rate and reactor volume (‘detention time’)

    Air flow rate

    Temperature

    pH stability

    Nutrient deficiency


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