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Hollow fibre membrane modules have been extensively used as gas-liquid contactor devices to provide high surface area in a small volume. In conventional hollow fibre modules, fibres are normally bundled axially in the direction of flow. Increasing turbulence and mixing of fluids and fibres in the shell-side flow, which can be obtained using sealed end module, can create better mass transfer in the contactors. In this thesis, the performance of sealed end dense polymethylpentene (PMP) and microporous hydrophobic polypropylene (PP) hollow fibre membrane contactors were examined to remove dissolve oxygen from water via vacuum degassing process.…mehr

Produktbeschreibung
Hollow fibre membrane modules have been extensively used as gas-liquid contactor devices to provide high surface area in a small volume. In conventional hollow fibre modules, fibres are normally bundled axially in the direction of flow. Increasing turbulence and mixing of fluids and fibres in the shell-side flow, which can be obtained using sealed end module, can create better mass transfer in the contactors. In this thesis, the performance of sealed end dense polymethylpentene (PMP) and microporous hydrophobic polypropylene (PP) hollow fibre membrane contactors were examined to remove dissolve oxygen from water via vacuum degassing process.
Autorenporträt
Sutrasno Kartohardjono was born in Jakarta Indonesia, on January 6, 1963. He completed his PhD Degree at the School of Chemical Engineering and Industrial Chemistry University of New South Wales Australia. Now he is working as a lecturer at the Chemical Engineering Department University of Indonesia.