Levagard DMPP is used at industrial sites and in manufacturing.
Levagard DMPP has an industrial use resulting in manufacture of another substance (use of intermediates).
Levagard DMPP is used for the manufacture of chemicals.
CAS Number: 18755-43-6
EC Number: 424-640-9
Product Type: Flame Retardants / Smoke Suppressants
Chemical Composition: Dimethyl Propane Phosphonate (DMPP)
SYNONYMS:
Dimethylpropanephosphonate, DMPP, LEVAGARD DMPP, Propylphosphonic acid dimethylester, Dimethylpropanephosphonate, DMPP, Levagard DMPP, Propylphosphonic acid dimethyl ester, Dimethyl propylphosphonate, DTXSID0066406, Phosphonic acid, P-propyl-, dimethyl ester, EINECS 242-555-3, dimethyl n-propylphosphonate, Dimethyl-n-propylphosphonate, EC 242-555-3, Propylphosphonic acid, dimethyl ester, 242-555-3, DTXCID4035916, ywdfolfvovcbiu-uhfffaoysa-n, 18755-43-6, 1-dimethoxyphosphorylpropane, Phosphonic acid, propyl-, dimethyl ester, propanephosphonic acid dimethyl ester, dimethylpropanphosphonate, 62C4FYU7CE, SCHEMBL134383, Phosphonic acid,p-propyl-,dimethyl ester, NS00008531, dimethyl propylphosphonate, phosphonic acid, propyl-, dimethyl ester, dimethyl propylphosphonate phosphonic acid, propyl-, dimethyl ester, 4-Dimethylpyrazole phosphate, 3,4-Dimethyl-1H-pyrazole Phosphate, DMPP, P-Popylphosphonic Acid Dimethyl Ester, Dimethyl Propanephosphonate, Lavagard DMPP,
Levagard DMPP is registered under the REACH Regulation and is manufactured in and / or imported to the European Economic Area, for intermediate use only.
Levagard DMPP is a globally advanced high-efficiency, safe, non-toxic nitrification inhibitor, and environmentally friendly, cost-effective nitrification inhibitor.
The effective period of ammonium nitrogen can be extended from 25 days to more than 50 days.
The utilization rate can be increased from 30% to more than 40%.
Levagard DMPP (Dimethylpropanephosphonate) is a liquid organophosphorus flame retardant.
Levagard DMPP is characterized by its high phosphorus content and low viscosity.
These properties make Levagard DMPP particularly suitable for applications requiring efficient flame retardancy.
Levagard DMPP achieves this without compromising the material's integrity or processing characteristics.
As a halogen-free alternative, Levagard DMPP addresses environmental and health concerns associated with traditional halogenated flame retardants.
Levagard DMPP is a halogen-free flame retardant.
Levagard DMPP exhibits very high phosphorus content and low-viscosity.
Levagard DMPP is designed for roofing insulation, construction material, polymer auxiliaries and compounds.
Levagard DMPP is used for PIR or PUR rigid foams and thermosets. Levagard DMPP has a shelf life of 9 months.
Levagard DMPP is a phosphorus-based flame retardant developed, primarily used to enhance fire resistance in various polymer applications
Levagard DMPP is a halogen-free flame retardant with a very high phosphorus content and low viscosity.
The flame retardant effect is excellent.
Levagard DMPP is a halogen-free flame retardant with an extremely high phosphorus content.
Levagard DMPP is also compatible for use with inorganic materials such as aluminium trihydroxide.
Levagard DMPP provides customers requiring a liquid flame retardant with an excellent alternative to DMMP.
Levagard DMPP and Levagard TEP-Z are highly effective halogen-free phosphorous compounds that lend themselves to applications in the construction industry like insulating foams
Levagard DMPP is a halogen free flame retardant with a very high phosphorus content and low viscosity.
The flame retardant effect is excellent.
Levagard DMPP is a halogen-free, phosphorus-based flame retardant developed.
USES and APPLICATIONS of LEVAGARD DMPP:
Levagard DMPP is used at industrial sites and in manufacturing.
Levagard DMPP has an industrial use resulting in manufacture of another substance (use of intermediates).
Levagard DMPP is used for the manufacture of chemicals.
Release to the environment of Levagard DMPP can occur from industrial use: as an intermediate step in further manufacturing of another substance (use of intermediates).
Release to the environment of Levagard DMPP can occur from industrial use: manufacturing of the substance.
Levagard DMPP is utilized in various applications due to its flame-retardant properties.
Polymer Auxiliaries: Levagard DMPP enhances flame resistance in polymer formulations.
Construction Materials: Levagard DMPP is used in insulation materials, roofing, and other building components to meet fire safety standards.
Polymer Compounds: Levagard DMPP is incorporated into thermoplastics and thermosets to improve fire resistance.
Roofing Insulation: Levagard DMPP provides flame retardancy in roofing applications.
Applications of Levagard DMPP: Polymer auxiliaries, Flame retardants for polymers, Construction material, Polymer compound, and Roofing insulation.
Levagard DMPP is used as flame retardant for PIR / PUR rigid foams and thermosets.
Its low viscosity makes Levagard DMPP highly suitable for use in rigid foam material, coatings and adhesives.
Its flowability also allows Levagard DMPP to replace plasticising mineral oils that add to the fireload of a product.
Levagard DMPP is employed in various applications due to its effective flame-retardant properties.
Rigid Polyurethane (PUR) and Polyisocyanurate (PIR) Foams: Levagard DMPP enhances fire resistance in insulation materials used in building and construction.
Thermosetting Plastics: Levagard DMPP improves flame retardancy in materials like epoxy resins, which are used in coatings, adhesives, and composite materials.
Construction Materials: Levagard DMPP is applied in roofing insulation and other building components to meet stringent fire safety standards.
Polymer Compounds: Levagard DMPP is incorporated into various polymer matrices to achieve desired flame-retardant performance.
Coatings and Adhesives: Levagard DMPP is utilized in formulations requiring enhanced fire resistance without affecting application properties.
Levagard DMPP is used as a flame retardant additive in insulation boards, panels, and spray foams for buildings to meet fire safety codes.
Levagard DMPP improves flame resistance in components used in electronics, automotive parts, and structural composites.
Levagard DMPP is applied in furniture, bedding, and automotive seating to enhance fire performance while maintaining comfort and flexibility.
Levagard DMPP is incorporated into hot melt adhesives and sealants to increase their fire resistance for industrial and construction use.
Levagard DMPP is used in flame-retardant surface coatings for wood, textiles, and metal structures.
Levagard DMPP is integrated into polycarbonate (PC), ABS, and other engineering plastics used in enclosures, casings, and housings.
Textile Back-Coatings: Levagard DMPP acts as a flame-retardant additive in back-coatings for carpets, upholstery, and technical textiles.
Wire and Cable Compounds: Levagard DMPP is used in flame-retardant cable jacketing materials to prevent fire propagation in electrical applications.
Roofing and Building Materials: Levagard DMPP is employed in foam panels and insulation products for commercial and residential roofing systems.
Automotive Interiors: Levagard DMPP enhances fire resistance of plastic and foam components in dashboards, door panels, and seating.
Levagard DMPP was developed specifically for use in polyurethane rigid foam.
When using a flame retardant, in this case Levagard DMPP, it is necessary to conduct ageing tests on the polymer material.
This is especially important when using a liquid additive, which is not a reagent and therefore prone to volatilization.
Thus, the mass loss depends significantly on the amount of Levagard DMPP.
As practice shows, the content of Levagard DMPP in the flame retardant system at a level of 5–10% is usually sufficient.
The mass loss level is estimated as very low.
Levagard DMPP is primarily utilized to enhance fire resistance in various polymer applications, especially in the construction and insulation industries.
CHARACTERISTICS OF LEVAGARD DMPP:
*Levagard DMPP will not have a toxic effect on plants.
*Levagard DMPP is completely decomposed in the soil, and the final decomposition products are phosphate, water, carbon dioxide, and nitrogen oxides.
*There is no residue in the harvested agricultural products.
*There is no risk to soil, microorganisms, water bodies, humans and animals.
*No leaching in the soil.
*No irritation to human skin or eyes.
*Low dosage, the same effect can be achieved when the dosage is only 1/15 of dicyandiamide.