Tray columns generate entrainment through froth, gas jets, and bubble breakup. High vapor rate, reflux, tray flooding, or tray damage can sharply increase overhead demister liquid load and affect product purity.
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Pingxiang Daier Separation TechSep 20, 20264 min read
How Tray Column Entrainment Changes the Duty of an Overhead Mist Eliminator
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Sep 20, 20264 min read
Why Wet Stacks Can Produce Droplet Rainout Even When the Plume Looks Normal
Wet-stack droplet rainout can result from demister carryover, stack-wall condensation, liquid-film stripping, duct condensate, or wash-cycle events. A normal-looking plume does not prove zero liquid fallout, and downstream liquid chemistry can help identify the source.
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Sep 20, 20265 min read
When Is CFD Useful for Mist Eliminator Design and Troubleshooting?
CFD can help evaluate demister maldistribution caused by inlet jets, side outlets, irregular vessel geometry, and internal obstructions. Single-phase models are especially useful for local gas velocity, while true droplet and wet-performance prediction requires more complex validated multiphase modeling.
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Sep 20, 20265 min read
How to Estimate Mist Carryover by Liquid Mass Balance When Direct Sampling Is Difficult
Liquid mass balance can estimate or cross-check mist carryover when direct droplet sampling is difficult. Makeup, blowdown, evaporation, inventory change, drainage, condensation, deposits, and measurement uncertainty must all be included.
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Sep 20, 20265 min read
How Upstream Turbulence Can Break Droplets Into a Harder Mist Eliminator Duty
High-velocity jets, restrictions, elbows, turbulent expansions, and wet surfaces can break large droplets or strip liquid films into finer mist before the gas reaches the demister. This can make separation harder without increasing total liquid mass.