Ammonium polyphosphate
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Ammonium Polyphosphate Used for Fiber, Wood and Plastic Materials CAS No 68333-79-9
Liquid Fertilizer Ammonium Polyphosphate APP CAS 68333-79-9 (NH4PO3)
Factory Hot Selling Flame Retardant Ammonium Polyphosphate (APP)
Ammonium Polyphosphate Fire Retardant Powder & Liquid CAS 68333-79-9
Wholesale High Quality Ammonium Polyphosphate APP CAS 68333-79-9
APP 11-37 /APP 18-58 Ammonium Polyphosphate Solution and Powder
APP, Ammonium Polyphosphate, HS Code: 2835399000, (NH4PO3) N, Silane-Treated Ammonium Polyphosphate
CAS 68333-79-9 (NH4PO3) N, N≥1000 APP Ammonium Polyphosphate Flame Retardant
High Purity Ammonium Polyphosphate APP Intumescent Coating Fire Retardant
Sowu Supply Ammonium Polyphosphate APP Fertilizer Ammonium Polyphosphate
Premium Phase II Ammonium Polyphosphate for Fire Resistance Applications
Silane Coated Ammonium Polyphosphate for Flameproof Fabric Manufacturing
Fine Particle Size Ammonium Polyphosphate APP-II / APP 201
Premium Phase II Ammonium Polyphosphate Fertilizer (31% P, 14% N)
Premium Water-Based Paint Additive: Ammonium Polyphosphate for Fire Resistance
Halogen-Free Ammonium Polyphosphate Dovafr Ap 310_II Intumescent Coating
Plastic Additive Flame Retardant Ammonium Polyphosphate (APP)
Halogen-Free Ammonium Polyphosphate Dovafr Ap 310_II for Marine and Train Applications
Dovamat Flame Retardant Ammonium Polyphosphate (APP) with Water Soluble
Factory Price Ammonium Polyphosphate Halogen-Free Flame Retardant for Water Based Coating
Ammonium Polyphosphate for Polypropylene, Polyethylene Flame Retardant
Ammonium Polyphosphate Polyurethane Foam Adhesives Construction Materials
68333-79-9 269-789-9 Industrial Grade Fine Flow Powder Price Ammonium Polyphosphate
68333-79-9 269-789-9 Industrial Feed Grade Flow Powder Price Ammonium Polyphosphate
Sourcing guidance for Ammonium Polyphosphate
What are the key technical specifications to consider when sourcing Ammonium Polyphosphate?
Buyers must distinguish between Phase I (low degree of polymerization) and Phase II (high degree of polymerization, n>1000). Phase II is preferred for its lower water solubility and higher thermal stability, making it ideal for intumescent coatings. Key metrics include Phosphorus content (typically 31-32%), Nitrogen content (14-15%), and pH value (5.5-7.5). Additionally, check the particle size (D50); finer powders (e.g., <15μm) provide better dispersion in polymer matrices.
Which compliance standards and certifications are mandatory for international trade of APP?
As a chemical product, APP must comply with REACH (Registration, Evaluation, Authorisation and Restriction of Chemicals) for the EU market. It should be accompanied by a comprehensive Material Safety Data Sheet (MSDS) or Safety Data Sheet (SDS). For flame retardant applications, ensure the product helps end-materials meet standards like UL 94 (V-0 rating), DIN 4102, or EN 13501. Verify if the supplier holds ISO 9001 for quality management and ISO 14001 for environmental management.
What are the primary usage scenarios and functional advantages of APP?
APP is primarily used as a non-halogenated flame retardant. Its main scenarios include intumescent fireproof coatings, polyurethane foams, unsaturated polyesters, and textile back-coatings. The functional advantage lies in its intumescent mechanism: it expands upon heating to form a protective char layer, which insulates the substrate from oxygen and heat, significantly reducing smoke toxicity compared to halogenated alternatives.
How can buyers evaluate the economic feasibility and cost-efficiency of APP procurement?
Analyze the Total Cost of Ownership (TCO) by factoring in the active phosphorus content; higher purity often allows for lower loading levels in the final formulation, reducing overall material costs. Compare bulk pricing tiers (e.g., 5-ton vs. 20-ton FCL) as logistics for chemicals can be expensive. For long-term stability, prioritize suppliers on Made-in-China.com who offer surface-treated (silane or melamine coated) APP, which, despite a higher unit price, offers superior moisture resistance and longer shelf life.
Cross-Border Purchasing Considerations for Ammonium Polyphosphate
What are the common risks in cross-border chemical sourcing and how to mitigate them?
The primary risks include moisture absorption during sea transit and inconsistent polymerization degrees between batches. To mitigate this, insist on vacuum-sealed moisture-proof packaging (PE inner bag + woven outer bag). Request a Pre-Shipment Inspection (PSI) and a Certificate of Analysis (COA) for every batch. Use Secure Payment services on platforms like Made-in-China.com to ensure funds are only released upon verification of shipping documents.
What strategies should be used when negotiating with APP suppliers?
Focus negotiations on technical support and customization rather than just price. Ask if the supplier can adjust the particle size distribution or surface treatment to fit your specific resin system. For large-scale buyers, negotiate long-term supply contracts to hedge against price volatility in raw materials like phosphoric acid. Always request a small sample (1-2kg) for lab testing before committing to a full container.
What are the logistics and shipping requirements for APP?
While APP is generally classified as non-hazardous for transport (check specific local regulations), it must be kept cool and dry. Ensure the shipping container is inspected for leaks or holes to prevent water ingress. For international shipping, clarify the Incoterms (FOB or CIF); given the weight of chemical powders, ocean freight is the most cost-effective method. Ensure the supplier provides a Non-Hazardous Chemical Declaration to avoid customs delays.





























