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The effect of solution concentration and thermal polarization on membrane distillation performance has been explored quantitatively.
They show that the membrane distillation performance is highly dependent on the design of membrane module, the specific separation being performed and the operating conditions (besides membrane characteristics).
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These results are the best performing ones for ceramic membranes in direct contact membrane distillation operation.
The effect of the corrugation size and shape on the direct contact membrane distillation (DCMD) performance has been studied.
Various effects of spinning parameters including bore flowrate, dope flowrate and take-up speed were investigated on the membrane macro- and micro-structure, mechanical properties and direct contact membrane distillation (DCMD) performance.
While many models exist in the literature for description of lab-scale direct contact membrane distillation (DCMD) performance, only a handful of modelling attempts at full-scale have been described.
Combined effects of polymer and additive (polyethylene glycol, PEG) concentrations in the casting solutions, solvent evaporation time and coagulation bath temperature on the structural characteristics of the prepared membranes as well as on their direct contact membrane distillation (DCMD) performance have been investigated using statistical approach.
The effects of the membrane morphology on the obtained MD membrane characteristics and on air gap membrane distillation (AGMD) desalination performance were studied in order to figure out the most promising structure for MD.
Nevertheless, the value of performance simulation to membrane distillation design and operation is well illustrated.
Dual-layer composite membrane is a new design for direct contact membrane distillation (DCMD) with membrane performance potentially superior to that of single layer porous membranes.
Ultrasonic irradiation had no significant influence on the mechanical strength, pore size and hydrophobicity of the PTFE membrane in a 240 h continuous USDCMD experiment, and the novel membrane distillation process exhibited satisfying performance stability, which indicated that ultrasonic irradiation can be applied to membrane distillation for mass transfer enhancement.
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