| Brand Name: | BLUWAT |
| Model Number: | Blufloc Emulsion |
| MOQ: | 1000kgs |
| Price: | negotiable |
| Delivery Time: | 5-10days |
Very-high-molecular-weight, high-anionic flocculant for strong fine-solids bridging in mining tailings, coal washing, sand washing, paper wastewater, and industrial clarification.
EA 6520 is positioned for applications where very long polymer chains and high anionic character can aggregate fine mineral particles or coagulated industrial solids.
Because very-high molecular weight also makes the polymer sensitive to preparation and shear, the grade should be inverted, diluted, distributed, and mixed according to its current TDS rather than treated as a simple liquid coagulant.
Blufloc EA 6520 is an oil-based anionic PAM emulsion with very-high molecular weight and high anionic degree.
It is designed for strong bridging in mining tailings, industrial clarification, coal washing, sand washing, and related solid-liquid separation duties.
A long polymer chain can provide exceptional bridging reach, but only when the emulsion is prepared consistently and the hydrated chain survives the dosing and floc-growth system.
Very fine mineral or coagulated particles may require long-chain bridging to form floc large enough for reliable separation.
Continuous thickeners must maintain settling, underflow density, and overflow clarity as solids loading changes.
Oil-based emulsion needs a compatible inversion and dilution system to release and hydrate the polymer effectively.
High-shear pumps, mixers, valves, or transfer points can reduce effective molecular weight and weaken the resulting floc.
EA 6520 adsorbs at multiple points and connects particles into larger floc. Its high anionic degree can support chain extension in suitable water chemistry, while its very-high molecular weight provides bridging reach. Actual performance depends on particle surfaces, dissolved ions, preparation quality, and mixing conditions.
Use clean dilution water and the grade-specific inversion sequence to release the polymer from the oil-based emulsion.
Disperse the prepared solution across the solids stream so long chains can contact multiple particle surfaces.
Reduce shear after initial distribution so the bridged particles can form larger, stronger, separable aggregates.
Use the profile below for initial screening. Confirm commercial specification limits and operating instructions against the current EA 6520 TDS and agreed order specification.
| Grade | Base | Molecular Weight | Charge | Suggested Screening Role |
|---|---|---|---|---|
| EA 6520 | Oil-based | Very High | High anionic | Mining, coal, sand, paper wastewater, and industrial clarification |
Blufloc product pages classify the cationic EC and EWC series as high molecular weight and the anionic EA and EWA grades as very high molecular weight. Exact active content, viscosity, specification limits, shelf life, and preparation instructions must be confirmed on the current grade-specific TDS and order specification.
Verify that the make-down, storage, pump, and dosing equipment are compatible with an oil-based PAM emulsion.
Use clean dilution water and follow the current EA 6520 TDS for inversion, dilution, concentration, and aging.
Do not feed neat emulsion directly to the process stream unless the grade-specific instructions explicitly permit it.
Provide rapid initial distribution, followed by lower mixing energy so floc can grow without excessive chain damage.
Compare dose, separation performance, throughput, sludge or underflow quality, and downstream cost during scale-up.
EA 6520 should be selected when representative tests show that high anionic degree and very-high molecular weight deliver superior settling, capture, drainage, or clarification. Compare it with water-based EWA 7520 when carrier preference or medium anionic charge may improve preparation, adsorption, or plant operation.
Neat-emulsion price per kilogram can be misleading when products differ in activity, preparation efficiency, dose, and separation performance.
Inspect inversion water quality, emulsion addition sequence, prepared-solution concentration and viscosity, aging time, and pump calibration. Confirm that the prepared solution is uniform before changing product dose.
Review high-shear mixers, pumps, valves, and transfer points. Excessive shear can reduce effective molecular weight, limit bridging reach, and weaken floc even when the nominal polymer dose is correct.
Keep packages sealed in a cool, dry, ventilated area. Protect the product from direct sunlight, freezing, construction or process dust, and excessive heat.
Follow the current EA 6520 TDS and SDS for shelf life, handling limits, and transport classification. Polymer spills make floors extremely slippery and should be contained and cleaned promptly.
For the EA 6520 grade profile and applications, Bluwat can screen adjacent PAM emulsion grades, review preparation and dosing conditions, and help define a plant-trial plan using agreed performance indicators.
Confirm the required EA 6520 specification and order documentation before production and shipment.
Shortlist products under realistic pH, temperature, solids loading, water chemistry, and shear.
Supply clear make-down, dilution, dosing, addition-point, and scale-up recommendations.
Review plant data and adjust charge level, dose, addition point, or mixing conditions when required.
EA 6520 is an oil-based anionic PAM emulsion with very-high molecular weight and high anionic degree. Confirm exact commercial limits on the current grade-specific TDS.
Typical screening duties include mining tailings, coal washing, sand washing, paper mill wastewater, industrial clarification, thickening, and other fine-solids separation.
Use the grade-specific preparation instructions. Correct emulsion inversion, dilution, distribution, and aging are normally essential for stable performance.
Compare treatment performance, active dose, preparation time, equipment, freight, storage, throughput, water and sludge quality, and total operating cost.
Screen EA 6520 with representative solids and water chemistry, the current grade-specific preparation sequence, and realistic plant shear. Confirm the final grade and dose using floc strength, settling or drainage, water clarity, preparation consistency, throughput, and total cost.