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Water Decoloring Agent
Created with Pixso. BWD-01 Water Decoloring Agent for Functional Fabric Dyeing Wastewater in Taiwan

BWD-01 Water Decoloring Agent for Functional Fabric Dyeing Wastewater in Taiwan

Brand Name: Bluwat
Model Number: BWD-01
MOQ: 1000KG
Price: Negotiable
Delivery Time: 5-8 working days
Payment Terms: L/C, D/A, D/P, T/T
Detail Information
Place of Origin:
China
Certification:
ZDHC, Halal
Product Name:
BWD-01 Water Decoloring Agent
Product Type:
Dicyandiamide Resin Decolorizing Agent
Chemical Type:
Quaternary Ammonium Cationic Polymer
Appearance:
Colorless To Yellowish Transparent Liquid
Solid Content:
≥50%
Specific Gravity:
1.1-1.3
PH Value (30% Solution):
3-6
Viscosity:
30–300 Cps
Solubility:
Completely Soluble In Water
Storage Temperature:
0–35°C
Packaging Details:
30kg Plastic Drum, 250kg Plastic Drum, 1250kg IBC Drum
Supply Ability:
50000 Tons/Month
Product Description
Bluwat BWD-01 Water Decoloring Agent

Textile Wastewater Treatment in Taiwan

A targeted cationic decoloring solution for disperse, acid and reactive dyes from polyester, nylon and blended performance textiles, designed to support stable discharge and advanced water-reuse treatment.

50% minSolid content
pH 7.5-8.0Recommended starting range
30 / 250 / 1250 kgStandard packaging options
01

Product Overview

Textile wet processing in Taiwan does not create one uniform wastewater. Fiber type, dye class, shade depth, washing recipe and finishing chemistry can change the color and charge demand from one production batch to the next.

BWD-01 supplies strong cationic charge to destabilize negatively charged soluble dyes and fine color-bearing particles. It is especially relevant to disperse, acid and reactive dyes across performance textiles.

The objective is not merely to make the sample look clearer, but to produce flocs that can be separated reliably by sedimentation or dissolved-air flotation.
02

Textile Wastewater Problem in Taiwan

Multi-step finishing and mixed fiber platforms produce residual color together with surfactants and specialty additives.

Conventional inorganic coagulation may remove suspended solids but leave a visible soluble-color fraction. Operators may then increase coagulant dosage, creating more sludge without proportional color improvement.

Why the Problem Occurs

Functional fabrics often pass through several wet-finishing and washing stages.
Specialty surfactants can stabilize fine color-bearing particles.
Polyester, nylon and blended products introduce different dye chemistries to one ETP.
03

BWD-01 Treatment Solution

Screen BWD-01 by fiber platform and use treated-water tests to confirm that decolorization supports the plant's downstream reuse or discharge process.

The selected program should be based on actual wastewater rather than a universal dose. A controlled jar test identifies the point where charge neutralization, floc formation, separation speed and sludge production are balanced.

PAC can be tested before or after BWD-01, but the two products must be prepared and dosed separately.
04

Technical Specifications

Property BWD-01 Specification
Chemical Name Quaternary ammonium cationic polymer
Appearance Colorless to yellowish translucent liquid
Solid Content 50% min
Specific Gravity at 20 C 1.1-1.3
pH Value, 30% Solution 3-6
Viscosity at 25 C 30-300 cps
Solubility Soluble with water at any rate
Storage Temperature 0-35 C
Standard Package 30 kg or 250 kg plastic drum; 1250 kg IBC

Technical note: Values are based on the Bluwat BWD-01 TDS. Confirm the supplied batch with its Certificate of Analysis and consult the SDS for handling and shelf-life details.

05

Recommended Application Scenarios

Polyester Sportswear and Outdoor Fabrics

Suitable for disperse-dye wastewater and performance-finishing streams from polyester production.

Nylon and Mixed Functional Finishing

Can support treatment of acid-dye wastewater and mixed streams containing specialty surfactants or additives.

Color Reduction Before Water Reuse

Can be evaluated as pretreatment before membrane, biological or advanced polishing processes.

06

How BWD-01 Works

1 Charge Neutralization

Cationic groups interact with negatively charged disperse, acid and reactive dyes across performance textiles and colored colloids.

2 Destabilization

Reduced electrostatic repulsion allows dissolved or finely dispersed color bodies to associate.

3 Floc Formation

Destabilized contaminants form visible aggregates; PAC may strengthen or densify the flocs where testing supports it.

4 Solid-Liquid Separation

The resulting flocs are removed by sedimentation or air flotation, producing clearer treated water.

07

How to Choose and Test BWD-01

Link jar-test records to fiber type and finish package.
Check foaming or surfactant effects during rapid mixing.
Test the selected program against downstream membrane or biological requirements.
Use untreated and current-treatment controls in every jar-test series. Record raw-water pH, true or apparent color, CODcr, turbidity, temperature and production source. Photographs are useful, but analytical results and sludge behavior are required for a defensible selection.
08

Recommended Application Procedure

Collect representative wastewaterTake the sample after appropriate screening and equalization.
Prepare BWD-01 working solutionsDilute the product with 10 to 40 times clean water.
Screen wastewater pHUse pH 7.5-8.0 as the TDS starting range, then test nearby values if necessary.
Dose BWD-01Add it to the wastewater and mix thoroughly for several minutes.
Test PAC sequenceWhere color and CODcr remain high, test PAC before and after BWD-01 in separate beakers. Do not premix the chemicals.
Evaluate separationAllow flocs to settle or evaluate them by dissolved-air flotation, matching the full-scale process.
Compare final performanceReview color, CODcr, turbidity, floc strength, separation time, sludge volume and total treatment cost before scale-up.
09

Expected Treatment Results

The BWD-01 TDS reports typical performance ranges in suitable applications. These are reference values rather than guaranteed results.

50%-99% Typical decolorization reference range
50%-80% Typical CODcr reduction reference range

Actual performance depends on dye class, concentration, auxiliaries, pH, mixing, chemical sequence and separation equipment.

Compared with a high-dose inorganic-only program, BWD-01 may provide faster flocculation and settling and may reduce the inorganic contribution to sludge. Where sludge reduction is a project objective, compare dry solids, dewatering behavior and disposal cost.

10

Bluwat Manufacturing Advantages

Manufacturer since 2000 with 25+ years of production and export experience
Three production bases supporting stable supply and batch control
Products exported to 80+ countries
Used by 5,000+ industrial customers
ISO 9001  management systems
ZDHC-conformant BWD product support
Routine quality control supported by batch COA
Free samples and jar-test support
30 kg, 250 kg drum and 1250 kg IBC packaging

For Asian textile markets, Bluwat supports drum and IBC shipments, production planning for regular consumption, and remote jar-test review using customer wastewater data and treatment photographs.

11

Frequently Asked Questions

Can one BWD-01 program cover polyester and nylon functional fabrics?

A common system is possible, but separate starting ranges are recommended. Disperse and acid dyes behave differently, and finishing chemicals may change the optimum.

Will BWD-01 remove waterproofing or finishing chemicals?

Its main role is decolorization and flocculation. Removal of specific finishing chemicals depends on their chemistry and requires separate analytical verification.

What is the recommended BWD-01 dilution and wastewater pH?

The TDS recommends dilution with 10 to 40 times water and identifies wastewater pH 7.5-8.0 as a useful starting range. Final dilution, pH and dose must be confirmed using the actual effluent.

Can BWD-01 be mixed directly with polyaluminum chloride?

No. BWD-01 and PAC should be prepared and dosed separately. PAC may be added before or after BWD-01 depending on the flocculation test and treatment process, but the concentrates should not be premixed.

How should the final BWD-01 dosage be selected?

Use a jar test with representative wastewater. Compare color, CODcr, turbidity, floc size, separation time and sludge volume. The best operating dose is the lowest stable dose that meets the plant's complete treatment objective.