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- W2019757218 abstract "Abstract A precision-bore cell, resembling in function a thistle tube, is described and then used to obtain low-pressure permeability data for two Eastman 39.8% acetylated cellulose acetate membranes: UF-10 and RO-97. Water transport through the former is described by Poiseuille's law, with a calculated effective pore radius of 7.6 nm. The RO-97 is composite, with a thicker porous layer like that of the UF-10 membrane, and with a thinner dense layer. By using flow data through both membranes, it was estimated that the dense layer is 73 nm thick, that 92% of the pressure drop is across this dense layer, and that flow through this layer is by molecular diffusion. The diffusion coefficient of water through the dense layer varies from 4.34 × 10−7 cm2/sec (at 25°C) to 5.73 × 10−7 cm2/sec (at 40°C)." @default.
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- W2019757218 date "1974-10-01" @default.
- W2019757218 modified "2023-09-27" @default.
- W2019757218 title "Characterization of cellulose acetate membranes by low-pressure transport" @default.
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- W2019757218 doi "https://doi.org/10.1016/0021-9797(74)90294-x" @default.
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