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- W2015155890 abstract "Diffusiophoresis, which is the movement of aerosol particles induced by diffusing gases, was studied under conditions of turbulent flow. A novel theory for diffusiophoretic particle removal is presented which depends solely on the non-steady-state forms of the continuity equations for the particles and gas mixture. It is therefore independent of equipment geometry and patterns of mass transfer or gas flow. Collection efficiencies are predicted for particles moving with the Schmitt and Waldmann velocity (or small particle velocity) as well as the local mean mass and local mean molar velocities of the gas mixture. It is shown that, in the latter two cases, the particle collection efficiency equals the fractional mass and molar removal of gas, respectively. Experimental studies were performed by passing a binary gas mixture containing aerosol particles up through a wetted wall column (0.0254 m I.D. and 0.77 m in length), countercurrent to a flow of water. One component was inert, while the other was partially absorbed. The resulting particle removal was determined by measuring the inlet and outlet aerosol number concentrations in the gas. The soluble gases tested were ammonia and trimethylamine, while the insoluble gases were helium, methane, nitrogen, argon and freon 12 (dichlorodifluoromethane). Uniform latex particles of 0.50, 0.79, 1.011, 2.02 and 5.7 μm in dia. were used. The experimental results were in satisfactory agreement with theoretical predictions." @default.
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- W2015155890 title "Diffusiophoretic particle collection under turbulent conditions" @default.
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- W2015155890 doi "https://doi.org/10.1016/0021-8502(78)90073-3" @default.
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