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Fiberglass Liquid/Liquid Coalescer


The HLLGF40SV series of Fiberglass Liquid/Liquid Coalescers utilize economical fiberglass material, effectively reducing the free water content in the organic phase to less than 15ppmv, while also decreasing the free organic content in the aqueous phase to less than 20ppmw. Furthermore, they are capable of reducing the sodium ion content in the product to less than 0.5ppmw. It is generally recommended to install a pre-filter upstream of the Fiberglass Liquid/Liquid Coalescers to remove particulate contaminants from the feed solution, protecting the long-term stable operation of the coalescers. The removal rating of the pre-filter is recommended to be 10μm or below.

Polyester Liquid/Liquid Coalescer


The HLLPE40SV series Polyester Liquid/Liquid Coalescer utilizes economical polyester material, effectively reducing the free water content in the organic phase to less than 15 ppmv and the free organic content in the aqueous phase to less than 20 ppmw. Typically, it is recommended to install a pre-filter upstream of the Polyester Liquid/Liquid Coalescer to eliminate particles from the fluid. This serves to protect the coalescer, ensuring its prolonged and stable operation. The particle filtration efficiency of the pre-filter is advised to be 10μm or finer. Such a design guarantees efficient and reliable liquid/liquid separation, meeting the stringent demands of the oil, gas, and chemical industries.

Polyester End Cap Liquid/Liquid Coalescer


The HLLPB40SPBV series Polyester End Cap Liquid/Liquid Coalescer utilizes economical polyester material, effectively reducing the free water content in the organic phase to less than 15 ppmv and the free organic content in the aqueous phase to less than 20 ppmw. Typically, it is recommended to install a pre-filter upstream of the Polyester End Cap Liquid/Liquid Coalescer to eliminate particles from the fluid. This serves to protect the coalescer, ensuring its prolonged and stable operation. The particle filtration efficiency of the pre-filter is advised to be 10μm or finer. Such a design guarantees efficient and reliable liquid/liquid separation, meeting the stringent demands of the oil, gas, and chemical industries.

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