2012•Journal of Nanjing University of TechnologyRequires access

Process of polyethylene glycol ultrafiltration and modeling analysis

XU Nanping

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Abstract

The polyethylene glycol(PEG) removal experiments with different molecular weights were carried out by molecular weight cut off(MWCO) 2 500 GH Ultrafiltration(UF) membrane to investigate the effects on removal of different molecular weights PEG,such as operating pressure and concentration.Results showed that the rejection of PEG increased as molecular weight and concentration increased under the same conditions with the rejection of PEG4 000 of 96.7%,but the rejection did not monotonically increased with pressure increasing.When PEG molecular weight was over 2 000,the rejection decreased with the pressure in creased.Pore model was modeled to characterize the effective pore diameter and thickness of the membrane.The separation of PEG ultrafiltration was explained and the internal factors of UF mechanism were analyzed.

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What this paper is about

The polyethylene glycol(PEG) removal experiments with different molecular weights were carried out by molecular weight cut off(MWCO) 2 500 GH Ultrafiltration(UF) membrane to investigate the effects on removal of different molecular weights PEG,such as operating pressure and concentration.Results showed that the rejection of PEG increased as molecular weight and concentration increased under the same conditions with the rejection of PEG4 000 of 96.7%,but the rejection did not monotonically increased with pressure increasing.When PEG molecular weight was over 2 000,the rejection decreased with the pressure in creased.Pore model was modeled to characterize the effective pore diameter and thickness of the membrane.The separation of PEG ultrafiltration was explained and the internal factors of UF mechanism were analyzed.

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Available abstract

The polyethylene glycol(PEG) removal experiments with different molecular weights were carried out by molecular weight cut off(MWCO) 2 500 GH Ultrafiltration(UF) membrane to investigate the effects on removal of different molecular weights PEG,such as operating pressure and concentration.Results showed that the rejection of PEG increased as molecular weight and concentration increased under the same conditions with the rejection of PEG4 000 of 96.7%,but the rejection did not monotonically increased with pressure increasing.When PEG molecular weight was over 2 000,the rejection decreased with the pressure in creased.Pore model was modeled to characterize the effective pore diameter and thickness of the membrane.The separation of PEG ultrafiltration was explained and the internal factors of UF mechanism were analyzed.

Key concepts: Ultrafiltration (renal), Polyethylene glycol, PEG ratio, Molecular mass, Membrane, Chromatography, Materials science, Chemical engineering

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