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Separation Technology of Solvent System

Solvent resistant nanofiltration membrane filtration technology contains a membrane module and the solvent containing at least one solute. The raw material passes through the membrane at pressures no higher than 60bar. As a result of the nanopore of the membrane, the solvent becomes a penetration object through the membrane, and then the concentrated solute is blocked by the membrane (= residue). One or multiple solutes enter the penetration object through the membrane, while the others remain in the residue. The intercepted molecular weight can be selected in the range of 150Da-900Da.

    Process advantages:

 

  •   Organic solvent resistant nanofiltration membrane can be operated at normal temperature or low temperature without affecting the activity of active substances;
  •   Organic solvent resistant nanofiltration membrane can filter and separate the active substances in organic solvents to reduce input and the process;
  •   Repeated filtrations of organic solvent resistant nanofiltration membrane can improve the yield of products;
  •   Multi-level parallel connection of organic solvent nanofiltration membrane multistage parallel can increase production scale;
  •   Multi-level series of organic solvent resistant nanofiltration membrane can be used to improve the purity of products;
  •   Reduce the difficulty of integration of system engineering and improve the reliability of operation separation.


    The tolerable solvents include:

  •   Acetonitrile
  •   Ethyl acetate
  •   Isopropyl alcohol
  •   Tetrahydrofuran (THF)
  •   Toluene
  •   N-methylpyrrolidone
  •   Acetone
  •   Methanol
  •   Ethanol
  •   Ethane
  •   Dimethylformamide
  •   Dichloromethane
  •   Alcohol


    Application area:

  •   Paint coating: waste liquid flow used for purification production line, recycle valuable solvents and coatings
  •   Medicine: purification of concentrated drugs and intermediates in solvent medium
  •   Recovery of antibiotics and peptides
  •   Reclaim dissolved chemical substances
  •   Solvent purification
  •   Recovery of polymer binder and separation of pigments
  •   Recovery of dissolved catalyst
  •   Recovery of hydrocarbon during cleaning

 



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