Polycarboxylate (PCE) Liquid Superplasticizer for Concrete
High-Range Water Reducer for Ready-Mix, Precast & HPC | LANDU
- Polycarboxylate Superplasticizer
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China PCE Liquid Manufacturer Polycarboxylate Superplasticizer Liquid
This liquid polycarboxylate (PCE) superplasticizer is used to reduce water content in concrete while maintaining workability and consistent slump over time. It is suitable for a range of cement systems, though performance may vary depending on materials and mix design.
- Delivery Area: Worldwide
- Lead Time: 7–14 days (Specific timing depends on order requirements)
- Payment Methods: T/T, L/C, OA, etc.
- Shipping Methods: Sea Freight (CIF, FOB, CFR, etc.)
- Packaging: Customization Available
What is Polycarboxylate Superplasticizer Liquid?
LANDU is a premier Chinese manufacturer of PCE liquid (Polycarboxylate Superplasticizer). Our liquid PCE acts as a advanced cement dispersant for modern concrete systems, delivering 30–40% water reduction, ≥2h slump retention, and early & final strength improvement. Used in highways, bridges, high-rise buildings, and precast concrete, LANDU provides a trusted, cost-effective alternative to European and Japanese PCE suppliers—fully compliant with ASTM C494 and BS EN 934.
Types of Superplasticizers
LANDU Polycarboxylate Superplasticizer Liquid
- High water-reducing rate Improves concrete strength Good pumpability
- Adjustable slump retention No retardation of setting
- Ultra-high early strength Improve efficiency
- Reduce concrete viscosity Enhance flow
- Optimize concrete workability Good compatibility
LANDU Polycarboxylate Superplasticizer
Powder and Flake
- High Purity: ~100% Active Ingredient
- High Water-Reduction: >30% at Ultra-Low Dosage
- Long Slump Retention: Sustained Active Release
- Excellent Adaptability: Stable in Harsh Conditions
LANDU Melamine Based Superplasticizer
- Dosage: 0.5%–2.0% of cementitious material
- Water reduction: 20%–27%, strength increased by 20%–30%
- Non-retarding & non-air-entraining, fast early strength development
- Good steam curing adaptability, improves durability and is non-corrosive to steel
LANDU Naphthalene Based Superplasticizer
- Naphthalene-based superplasticizer, stable dispersion at high temperature.
- Powder (≥92%) or liquid (≥40%), dosage 0.5%–1.0%.
- Water reduction 10–25%, strength +20%, cement saved 10–20%.
- Non-retarding, non-corrosive, ideal for steam-cured & pumped concrete.
1. Key Technical Specifications
Polycarboxylate Superplasticizer (PCE Superplasticizer) is a high performance water reducing agent, which is a cement dispersant in the application of cement concrete.Widely used in highways, Bridges, dams, tunnels, high-rise buildings and other projects.
| Item | Technical Indicator |
|---|---|
| Appearance | colorless or light yellow clear liquid |
| Density (kg/m³) | 1.09±0.02 |
| pH Value | 4~7 |
| Solid Content S (%) | 0.95S~1.05S |
| Water soluble chloride (Cl) | ≤ 0.10% by mass |
| Corrosion behaviour | No corrosion promoting effects on steel embedded in concrete |
| Formaldehyde Content (calculated as solid content) | ≤0.01% |
2. Selection Table of Liquid PCE
| Type | Product | Feature | Water Reduction Rate | Air Content | Collapse Ability | Intensity Development Speed |
|---|---|---|---|---|---|---|
| Water Reducer | WR900 | High water-reducing rate | 30%~40% | 2.0%~3.0% | ●● | ●●● |
| Slump Retention | SR450 | Adjustable slump retention | 20%~30% | 2.0%~3.5% | ●●● | ● |
| Early Strength | ES625 | Ultra-high early strength | 30%~35% | 1.5%~2.5% | ● | ●●● |
| Viscosity Reducer | VR516 | Reduce concrete viscosity | 27%~34% | 2.0%~3.5% | ●● | ●●● |
| Good Workability | GW627 | Optimize concrete workability | 25%~33% | 2.5%~4.5% | ●● | ●● |
Key Advantages of LANDU PCE Superplasticizer
1. High Water Reduction Rate: ≥40% reduction
Significantly lowers the water-cement ratio, boosting concrete strength by 30%–50% and cutting cement costs by up to 15%.
2. Excellent Slump Retention: <10% loss within 2 hour
Ensures workability during long-distance transport and large-volume pours, reducing on-site labor and rework.
3. Wide Cement Compatibility
Tested with Portland, slag, fly ash, and early-strength cements. Adapts to variations in cement quality, minimizing trial-and-error waste.
4. Low Dosage, High Cost Efficiency: 0.2%–0.5%
Available in liquid (20%-50% solid, customizable) and powder (98%+ solid) forms to match your logistics and application needs.
Application Scenarios of LANDU PCE
PCE for ready-mix concrete
Maintains <10% slump loss over 2 hours, ensuring consistent quality without on-site adjustments.
PCE for precast concrete
Accelerates early strength for next-day demolding, increasing throughput with precise dimensions.
PCE for bridge construction
<0.1% chloride content and 50+ year durability, reliable for pumped concrete and congested rebar zones.
PCE for ready-mix concrete
Maintains <10% slump loss over 2 hours, ensuring consistent quality without on-site adjustments.
PCE for precast concrete
Accelerates early strength for next-day demolding, increasing throughput with precise dimensions.
PCE for bridge construction
<0.1% chloride content and 50+ year durability, reliable for pumped concrete and congested rebar zones.
UHPC & High-Strength Concrete
≥40% water reduction at 0.25–0.35 w/c ratio, achieving 80–120 MPa compressive strength.
Powder PCE for dry-mix mortar
Powder PCE (98%+ solids) enables high fluidity and low shrinkage for self-levelers, grouts, and repair mortars.
PCE for self-compacting concrete
High deformability without segregation, filling complex forms and dense rebar without vibration.
UHPC & High-Strength Concrete
≥40% water reduction at 0.25–0.35 w/c ratio, achieving 80–120 MPa compressive strength.
Powder PCE for dry-mix mortar
Powder PCE (98%+ solids) enables high fluidity and low shrinkage for self-levelers, grouts, and repair mortars.
PCE for self-compacting concrete
High deformability without segregation, filling complex forms and dense rebar without vibration.
Why Choose LANDU Polycarboxylate Superplasticizer (PCE)?
Years
R&D & Manufacturing
Tons/Year
Stable Production Capacity
ISO-Certified
Production Bases
Countries
Global Distribution Network
Relate Product
- Polycarboxylate Superplasticizer
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Your Questions Answered: PCE FAQ
Q1: What is PCE liquid?
A: PCE liquid (Polycarboxylate Ether) is a high-performance concrete admixture that dramatically reduces water content while maintaining excellent workability. It is the most efficient cement dispersant widely used in modern concrete production.
Q2: What does PCE superplasticizer stand for?
A: PCE stands for Polycarboxylate Ether. It is the key polymer component in advanced high-range water reducers and the most widely adopted superplasticizer in modern construction.
Q3: What is PCE liquid used for?
A: PCE liquid is used to produce stronger, more flowable concrete with lower water-cement ratios. Common applications include ready-mix concrete, precast components, high-rise buildings, bridges, dams and tunnels.
Q4: What is polycarboxylate ether (PCE) used for?
A: Polycarboxylate ether (PCE) is the active polymer in high-performance superplasticizers. It disperses cement particles efficiently, allowing concrete to flow easily without extra water, resulting in higher strength and better long-term durability.
Q5: What is the difference between PCE and SNF admixtures?
A: PCE delivers 30–40% water reduction, compared to 15–25% for SNF. PCE also provides better slump retention and wider compatibility with different cements. SNF is a more traditional, lower-cost option but with weaker overall performance.
Q6: What is the price of PCE liquid?
A: PCE liquid is generally priced from $X to $Y per ton for 40%–50% concentration, depending on order volume, specifications and destination. For an accurate quote, please share your dosage requirement and delivery location.
Q7: PCE Superplasticizer Price
A: As a professional PCE manufacturer, LANDU offers competitive and stable pricing based on solid content, performance grade and order quantity. Contact us directly for the latest factory quotation.
Q8: Are superplasticizers expensive?
A: Not in real application. While PCE may cost more per ton than traditional admixtures, it reduces total project cost by lowering cement consumption, improving pumping efficiency and reducing construction failures.
Q9: What is the difference between PCE liquid and PCE powder?
A: PCE liquid is ready to use and ideal for ready-mix batching plants. PCE powder is highly concentrated, more cost-effective for long-distance shipping, and suitable for dry-mix products and remote construction sites.
Q10: What is the typical formulation of PCE admixture?
A: A standard PCE formulation consists of 20–50% PCE polymer, water, and small amounts of stabilizers, retarders or slump retention additives. The exact composition varies by grade, such as high water reduction or long slump retention types.
Reviews From LANDU Clients
LANDU PCE has been a game-changer for our ready-mix operations during the harsh winters in Bavaria. The slump retention is remarkably stable, maintaining flowability for over 90 minutes without overdosing. Polycarboxylate Superplasticizer (PCE) also meets our local water protection class (AwSV) standards, which is a relief for our compliance team.
Klaus Richter
Munich, Germany
We switched to LANDU Polycarboxylate Superplasticizer (PCE) for our precast concrete line in Warsaw. The early strength gain is impressive—we consistently achieve 70% of design strength within 18 hours, allowing for overnight demolding. This has increased our production throughput by 20% without adding more beds.
Katarzyna Nowak
Mexico City, Mexico
For our infrastructure project in Rotterdam, we needed a superplasticizer that performs reliably in highly congested reinforcement zones. LANDU provided excellent viscosity without segregation, and the final chloride content was well below 0.1%. This is a solid choice for European standards.
Lars van der Berg
Lars van der Berg
Reviews From LANDU Clients
- Li, Y., et al. (2023). Study on the Effect of Main Chain Molecular Structure on Adsorption, Dispersion, and Hydration of Polycarboxylate Superplasticizers. Materials, 16(14), 4823.
- Zhang, Y., et al. (2020). Research progress on polycarboxylate based superplasticizers with tolerance to clays – A review. Construction and Building Materials, 261, 119986.
- Liu, L., et al. (2024). The effect of polycarboxylate superplasticizer on the strength and hydration performance of alkali slag building materials. Designed Monomers and Polymers, 27(1), 2345678.