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Who has used a fiber bed phase separator? Could you explain the principle?
By taking advantage of the difference in surface tension between the two liquid droplets, the coalescence of these droplets is promoted, causing the denser liquid to settle and thus enabling separation. For details, see the relevant materials.
That’s all I know, and I hope those who have used it can provide some valuable advice! :) Separation principle: Due to the differences in surface tension of the droplets, phase separation units with coalescing properties cause the small droplets to merge together. Even in cases where the droplets have a diameter of only 1 μm and the medium has high viscosity, these small droplets combine to form larger droplets, thereby increasing buoyancy and reducing the separation time, thus enabling high-precision separation. Technical features: High separation precision; continuous separation; stationary equipment with no energy consumption; low operating costs and small footprint; simple maintenance due to modular design; capable of automated control; designed for a service life of over 10 years; fiber bed coagulation separation. Separation is possible as long as the two media are immiscible and their density difference is greater than 2%. The separation accuracy can reach the ppm and micron levels. Depending on the corrosion conditions of the medium, the available materials mainly include PTFE, stainless steel, and glass. Plate-type phase separator: By modifying the structure of traditional inclined-plate gravity separators and designing plate arrays at different angles based on the properties of various media, as well as optimizing the structural parameters of these inclined-plate separators, the AFP-type phase separator we have developed improves the equipment’s efficiency and achieves satisfactory separation results. Simple design, maintenance-free operation, and low operating costs are the features of this system. The AFP-type phase separator removes components such as mineral oil and organic matter from water, wastewater, waste acids, and alkalis. If the liquid contains solids, their particles can separate and settle to the bottom of the tank within the gaps in the separation slope, with no change in the separation efficiency. Combined with an appropriate discharge system, the phase separator is also an effective solid separator. As long as the two media are immiscible and the density difference is greater than 2%, effective separation can be achieved. Depending on the corrosion conditions of the medium, the available materials mainly include PTFE, PVDF, PP, stainless steel, and rubber.
What was introduced upstairs seems to be our company’s
Shanghai Anci Machinery Equipment Co., Ltd. has this technology and equipment!
Read more about the book on separation or separation processes in chemical engineering principles and you’ll understand
Do you know of any other organizations that have similar technology? Our organization plans to adopt this technology, and we are currently conducting preliminary research.