Development of flame retardant agent
Development of flame retardant agent
The experts reviewed the development of flame retardant in the world over the past several decades, pointing out that the number of new flame retardants has been increasing with the development of flame retardants.
In the late 20th century, due to the product of the decomposition of bromine flame retardants dioxin toxic, brought to the attention of the world environmental protection organization, thus make the bromine flame retardants slowdown, people are struggling to find phosphorus-containing flame retardants, such as a suitable substitute, to speed up the process of no halogenated flame retardants, but this work has certain difficulty.
At the beginning of the 80 s and 1970 s is one of the world, especially Europe and the United States the golden age of development of flame retardants, because in this period, the United States enacted some flame retardant laws and regulations, so as to provide a huge impetus for flame retardant market, coupled with phosphorus-containing (mainly bromine flame retardants) with high efficiency, less dosage, high performance, price advantages, make its development is quite rapid, the highest annual growth rate reached 20%.
In 80 s and 90 s, the bromine flame retardants suffer dioxins problem and pressure from the world environmental protection organization, its production and usage has great influence, make its growth rate slowed. However, because of bromine flame retardants still has a pivotal position in the field of flame retardant and its historical background, plus there is no substitute of bromine series flame retardant developmental delay, so every year to maintain annual growth rate of 2% ~ 3%.
The development of flame retardant from 2000 to 2010. In the first decade of the 21st century, the global flame retardant industry maintained a moderate development, with the overall annual growth rate remaining at 3% to 4%. The halogenation of flame retardants will be a long and difficult process.
In these ten years, the main trend in the development of flame retardants is: no halogenated flame retardants will be the pursuit of goals, it will need a longer process, it is unable to find a suitable substitute bromine flame retardants, coupled with bromine flame retardants in the important position in the field of flame retardant, in the next 10 years will maintain a certain growth rate.
Some aliphatic or alicyclic bromine flame retardants with bromine - LinXie dowa bromine nitrogen synergy, can meet some special requirements (such as high temperature resistance, uv resistance, etc.), will pay more attention to and the moderate development.
Isopropylphenyl Phosphate(IPPP65)
Cas Number: 68937-41-7
Customs Code HS: 29199000
Tax Rebate: Current Isopropylphenyl Phosphate, Flame Retardant IPPP65 Tax Rebate Of 9%.
Net Weight 200KG / Galvanized Iron Drum (A Small Cabinet To Play With 16 Tons), 1000KG / IB Barrel (A Small Cabinet 18 Tons) Or 23 Tons ISOTANK.
Isopropylphenyl Phosphate(IPPP65) Uses:
Isopropylphenyl Phosphate, Flame Retardant IPPP65 Halogen-Free Phosphate Flame Retardant Plasticizer, Will Not Twice Pollute The Environment; In The Phosphate Ester Species Is A Viscosity, Phosphorus Content Is More Moderate A Model. This Product Is Colorless And Transparent, Good Compatibility, The Use Of Both Flame Retardant And Plasticizer, In The Flame Retardant And Plasticizer To Play A Balance Between The Role, But Also To Make The Processing Of The Same Material And Its Physical Properties.
Phospho-nitrogen inflating flame retardant will be developed and applied. This kind of flame retardant can give the flame retardant material better performance, environmental protection and price.
Over the next 10 years, it is estimated that expansion type flame retardant is not widely used, and the key is not synthetic new one-component expansion type flame retardant, but the use of the existing expansion component distribution and modification, is to develop better, adaptability, strong expansion type flame retardant.
Halogen-free flame retardants wide development prospects, along with the people environmental protection consciousness, strengthening the research and development of this type of flame retardants will be ongoing, nitrogen-based flame retardant, silicon flame retardant and halogen free, low toxic, no corrosion and stable to heat and uv, the price is low, the dosage of their growing.
With the in-depth study of mechanism of flame retardant system, a new flame retardant are gradually understanding theory and technology, chemical modification, such as flame retardant, high efficiency block carbonized layer of flame retardant, flame retardant join branches and synergistic flame retardant system, has greatly enriched the content of the flame retardant field and versatility of flame retardants. In the coming period, the bromine and phosphor flame retardants will remain dominant.
The research on the mechanism of complex and synergistic action between new flame retardants will be increasingly active, and new physical and chemical analytical methods will be applied to the research field of flame retardant science and technology. It can be predicted that with the development of flame retardant science and related disciplines, flame retardant science and technology will be improved.
Flame retardant textiles in our country present situation and development prospect of our country has successfully developed a variety of flame retardant materials, blazed a new way for the flame retardant of textiles technology in China, but in terms of the type, quantity and flame retardant properties, and the gap with developed countries. With the development of economy and the improvement of the national legal system, the promotion and application of flame retardant textiles will surely attract the attention of the whole society. The flame retardant textile has a wide market demand in our country and the development potential is huge.
Copyright: Zhang Jia Gang YaRui Chemical co.,Ltd
http://www.yaruichem.com
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Isopropylphenyl Phosphate(IPPP50)
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Tris(2-chloroisopropyl)Phosphate(TCPP)
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Triphenyl Phosphite (TPPI)
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Triphenyl Phosphate (TPP)
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Triethyl Phosphate (TEP)
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4-Chlorobenzoic acid (PBCA)
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Dimethyl thiotoluene diamine(DMTDA)
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Diethyl toluene diamine(DETDA)
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9-anthracene
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Trimethyl Phosphate (TMP)
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Isopropylphenyl Phosphate(IPPP65)
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Antioxidant Stabilizers|Defoamers|Penetrants
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Isopropylphenyl Phosphate(IPPP35)
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Tris(2-butoxyethyl)phosphate(TBEP)
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Trixylyl Phosphate(TXP)
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4,4'-Methylenebis(N-sec-butylaniline)-MDBA
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Diphenyl Isooctyl Phosphate-DPOP-S141
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Diphenyl Isodecyl Phosphate-DPDP-S148
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Cresyl Diphenyl Phosphate(CDP)
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Tris(1,3-Dichloro-2-Propyl)Phosphate
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Curing Agents|Chain Extenders|Crosslinking Agents
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2,2-Bis(Hydroxymethyl)Propionic Acid|DMPA
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Poly(1,4-Butanediol) Bis(4-Aminobenzoate)|P-1000
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3-Hydroxyethyloxyethyl-1-Hydroxyethylbenzenediene
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1,3-Bis(2-Hydroxyethoxy)Benzene|HER-Solid
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Chain Extender HQEE-Liquid
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Hydroquinone Bis(2-Hydroxyethyl)Ether|HQEE-Solid
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4,4'-Methylene-bis (3-chloro-2,6-diethylaniline)
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Alicyclic Amine Curing Agent Chain Extender HTDA
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Triallyl Isocyanurate|Crosslinker TAIC
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2,2-Bis(Hydroxymethyl)Butyric Acid|DMBA
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4,4'-Methylenebis(2-Ethylbenzenamine)|MOEA
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4,4'-Methylenebis(2,6-diethylaniline)|MDEA
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4,4'-Methylenebis(2-ethyl-6-methylaniline)|MMEA
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4,4'-Diaminodicyclohexyl Methane|PACM,HMDA
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Cycloaliphatic Curing Agent Chain Extender MACM
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3-Chloro-3'-Ethyl-4,4'-Diaminodiphenylmethane
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Flame Retardants|Plasticizers
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Isopropylphenyl Phosphate(IPPP95)
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Trihexyl Phosphate(THP)
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Triisobutyl Phosphate (TIBP)
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1-Phenyl-3-Methyl-5-Pyrazolone(PMP)
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Tris(2-chloroethyl)phosphate(TCEP)
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- News List
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It ACTS as an auxiliary antiox -
The properties of phenolic ant -
Amine antioxidants -
Thermoplastic anti-oxygen agen -
Plastic auxiliary antioxidant -
Molecular structure of antioxi -
High polymer antioxidants -
General-purpose plastic antiox -
Phosphoric acid ester auxiliar -
Antioxidant compound products -
Polypropylene complex antioxid -
Compatibility of antioxidants -
Industrial plastic composite a -
An antioxidant for polymers -
PVC resin antioxidant