Chemie Ingenieur Technik · 2019 · 20 citations · 36 references
Feed PressureChemical EngineeringFluid PropertiesEngineeringPermeate‐sided Pressure DropEnvironmental EngineeringPorous MembraneOsmosisWater PurificationMembrane CharacterizationWater TreatmentMembrane BiologyHigh‐pressure Reverse OsmosisMembrane IntrusionMembrane PermeationMembrane ProcessMembrane Technology
Abstract By replacing thermal concentration processes, high‐pressure reverse osmosis has the potential to contribute to cost and energy savings regarding concepts for industrial water reuse. To provide a better understanding of the spiral‐wound element behavior during high‐pressure operation, this study focusses on the investigation of their performance by scrutinizing the crucial effect of the permeate‐sided pressure drop induced by membrane‐spacer interactions. The experiments show a considerable influence of membrane intrusion on the element performance with a strong dependence on the feed pressure.
36
Mass transfer and pressure loss in spiral wound modules
G. Schöck, Adrià Moreno Miquel · Desalination · 1987 · 659 citations
A Criterion for Non-Darcy Flow in Porous Media
Zhengwen Zeng, Reid B. Grigg · Transport in Porous Media · 2006 · 631 citations
Spiral wound modules and spacers
J. Schwinge, Peter Neal, Dianne E. Wiley et al. · Journal of Membrane Science · 2004 · 342 citations