YORK - SCHEIBEL COLUMN

Product Description

The York Scheibel's column falls in the class of gravity – operated extractors with mechanical agitation. The presence of alternatively agitating and calming sections in York Scheibel's column yield higher extraction efficiency than the conventional packed column. Each stage consist of a woven wire mesh section and mixing section. The total set – up is housed in a well designed rigid structure. The structure also supports tanks, piping, Rota meter ,piping and other units.

Material Warranty Application / Usage Voltage Power
MS/SS 1 Years Laboratory Equipment 230V/440V -

FEATURES

  • Column : Borosilicate Glass Column
    Packing : Stainless Steel Woven Mesh
    Agitator : Variable Speed Agitator
    Flow Measurement : 2 No. Pre calibrated Rota meter
    Feed Tank : 2 No. of stainless steel feed tank
    Extract Receiver : 1 No. of stainless steel tank
    Raffinate Receiver : 1 No. of stainless steel tank

RANGE OF EXPERIMENTS

  • To determine overall mass transfer co-efficient based on continuous and dispersed phase.
    To determine individual Height of Transfer Unit based on continuous and dispersed phase.
    To determine Overall Number of Transfer Unit based on continuous and dispersed phase.

SPECIFICATION

  • CHEMICALS REQUIRED : Tolune , Acetic Acid , Distilled Water
    , NaOH , Phenolphthalein , Benzene
    WEIGHT : @ 65 Kg

SERVICES

  • Air Supply : : @ 6 CFM, at 4 Kg /cm2.

ADDITIONAL INFORMATION

  • The York Scheibel's column falls in the class of gravity – operated extractors with mechanical agitation. The presence of alternatively agitating and calming sections in York Scheibel's column yield higher extraction efficiency than the conventional packed column. Each stage consist of a woven wire mesh section and mixing section. The total set – up is housed in a well designed rigid structure. The structure also supports tanks, piping, Rota meter ,piping and other units.

RANGE OF EXPERIMENTS

  • To determine overall mass transfer co-efficient based on continuous and dispersed phase.
    To determine individual Height of Transfer Unit based on continuous and dispersed phase.
    To determine Overall Number of Transfer Unit based on continuous and dispersed phase.