The difference between environmental protection and flame retardant technology trends and flame retardant
Flame Retardants Present, Organic And Inorganic, Halogen And Non-Halogen. Is A Brominated Organic Nitrogen Lines And Red Phosphorus Flame Retardants And Compounds For A Number Of Representatives Of The Inorganic Mainly Antimony Trioxide, Magnesium Hydroxide, Aluminum Hydroxide, Silicon And Other Flame Retardant System.
The Difference Between Environmental Protection And Flame Retardant Technology Trends And Flame Retardant
In General, Organic Flame Retardant Has A Good Affinity In Plastics, Brominated Flame Retardants Absolute Dominance In The Organic Flame Retardant System, Although On Environmental Issues, "Criticized" Many-Fold But It Has Been Difficult To Have Substituted Other Flame Retardant System.
In The Non-Halogen Flame Retardants Red Phosphorus Is A Better Flame Retardant, Has Added Less, Flame High Efficiency, Low Smoke, Low Toxicity, Widely Used And So On. Red Phosphorus And Aluminum Hydroxide, Expandable Graphite And Other Inorganic Flame Retardant Compound Used To Prepare A Composite Phosphorus / Magnesium, Phosphorus / Aluminum, Phosphorus / Graphite And Other Non-Halogen Flame Retardants, Can Significantly Reduce The Use Of Flame Retardant Amount, Thereby Improved Processability And Mechanical Properties Of Plastic Products. But Ordinary Red Phosphorus Easily Oxidized In Air, Moisture, Easily Lead To Dust Explosions, Transportation Difficulties, And Poor Compatibility With The Polymer Material Defect, The Application Range Is Limited. To Compensate For This Deficiency, In Order To Expand The Scope Of Application Of Red Phosphorus, We Have Adopted Advanced Foreign Microcapsule Coating Process, Making Microencapsulated Red Phosphorus. Microencapsulation Red Phosphorus In Addition To Overcome The Inherent Disadvantages Of Red Phosphorus Outside, And With High Efficiency, Low Smoke, No Toxic Gases In The Process, And Its Dispersion, Physical, Mechanical Properties, Thermal Stability And Flame Retardant Properties Were Improved And Improvement.
Between The Fire And Environmental Protection To Find A Balance Point, It Is An Important Node In The Future Development Of Flame Retardant Products. Flame Retardants Importance In Modern Society Can Not Be Ignored, But With A Series Of Environmental Policies In Europe, Its Development And Application Limited To Varying Degrees. How To Protect Personnel And Property From The Threat Of Fire, It Also Makes The Flame Of The Potential Hazards To Humans And The Environment Exists To Minimize Domestic Flame Retardant Manufacturing Enterprises, Research Institutes And Downstream Electrical And Electronics, Building Materials, Transportation And Furniture And Other Industries Focus Of Common Concern.
Flame Retardants Are One Of The Fastest Growing Varieties Of Plastics Additives. Data Shows That The Current Worldwide Demand For Flame Retardants Has More Than 1.2 Million Tons / Year, Including Halogen-Based Flame Retardants, Phosphorus Flame Retardants, Inorganic Flame Retardants Such As Hundreds Of Varieties. Due To The Well-Known Environmental And Toxicological Aspects, The EU Started A Decade Ago, The Potential Impact Of Mass Production Of Chemicals On The Environment And Human Health Assessment. Flame Retardants Is No Exception, There Are Brominated Flame Retardants And Phosphorus Flame Retardants Have Begun Assessment. Which The PentaBDE, OctaBDE And DecaBDE Assessment Has Been Completed. EU On August 15, 2004 Beginning Disabled PentaBDE And OctaBDE; Risk Assessment Findings Conducted For DecaBDE Is 'No Obvious Risk' To Human Health Or The Environment, Do Not Take The Risk Reduction Measures.
For Tetrabromobisphenol A, HBCD Dioxane, Butylated Triphenyl Phosphate Ester (BPDP-71B), Triphenyl Phosphate, Triethyl Phosphate, Triphenyl Phosphite, Tris (2-Chloro Ethyl) Ester (TCEP), Tris (2-Chloropropyl) Phosphate (TCPP), Tris (2,3-Dichloro-Propyl) Phosphate (Flame Retardant TDCPP) And 2,2-Bis (Chloromethyl Yl) Cyclopropane (V-6), Including Other Flame Retardants, Is Now In The EU Risk Assessment Process. Simultaneously With Certain Flame Retardant Synergist Such As Antimony Trioxide (Sb2O3) Is Also In The EU Risk Assessment Process. According To Experts, Tetrabromobisphenol A Is Mainly Used In Printed Circuit Boards, The Use Of Tetrabromobisphenol A Complete Response To The Epoxy Resin Constituting The Base Material Of The Printed Circuit Board. Currently, Some EU Human Health Risk Assessment Has Been Concluded That The Risk Of Tetrabromobisphenol A No Obvious, In Any Case Do Not Have To Take Risk Reduction Measures; Environmental Part Of The Risk Assessment Is Still Expected To Be Completed In 2006. EU Risk Assessment Process, Have Examined More Than 300 Studies On Tetrabromobisphenol A, And More In-Depth Studies Are In Progress.
Six HBCD Is Mainly Used In Construction Of Textile Material Polystyrene Insulation Board Backside Coating. Currently, Human Health And Environmental Risk Assessment Part Of The EU Are Still In Progress. Endocrine Disorders Chemical Substances EU-Funded Study Found That Six HBCD And Tetrabromobisphenol A Did Not Cause Concern. Flame Retardants On The Endocrine Effects Of Integrated Risk Assessment Project Conclusions Also Show General Health And Toxicity Parameters (Behavior, Survival, Growth Rate And Associated Liver And Gonads Quality, Etc.) Six HBCD And Tetrabromobisphenol A Are Not Affected . Ongoing EU Risk Assessment There Are Also Four Chlorine Phosphorous Flame Retardants (TCEP, TCPP, TDCP And V-6) Is Mainly Used For Polyurethane Foam. The EU Risk Assessment For TCEP Has Been Completed, To Be Announced; Risk TCPP, TDCP And V-6 For The Assessment Of Human Health And The Environment Section Is Still Ongoing. While Also Conduct More Testing And Data Collection. Some Of The Risk Assessment Is Expected To Be Completed In 2006, While Other Assessments Will Be Completed In 2007. Sb2O3 Halogenated Flame Retardants Mainly Used As A Synergist Or Elastomer. Currently, Human Health And The Environment Part Of The EU Risk Assessment Is Still In Progress. The New Part Of The Discussions On Human Health In June This Year, The Environmental Component Is Expected To Be Completed Before The End Of The Year.
Any Kind Of Chemicals On Humans And The Environment Are The Pros And Cons, How Avoiding Disadvantages, The Key Is How To Manage And Properly Used For Flame Retardant Applications Even More So. We Should Be Based On Risk Assessment Findings, In Line With A Scientific Attitude, Let The Flame Retardant To Play Its Due Role In The Protection Of Human Life And Property Security. From Next Year The Ministry Of Public Purposes - Public Spaces Flame Retardant Standard Products. By The Ministry Of Public Security To Develop A "Public Place Burning Flame Retardant Products And Components Performance Requirements And Identify The" Standard Will Be Formally Implemented Early Next Year, In Which The Flame Retardant Plastic Products Put Forward Higher Requirements. The Standard Is The Ministry Of Public Security In Order To Effectively Control Public Places Causing Casualties And Property Damage In Case Of Fire And Developed By The National Standardization Technical Committee Sub-Committee On Fire Fireproof Material Centralized Management. The Standards Clearly In Public Places With The Definition And Classification Of Flame Retardant Products And Components, Combustion Performance Requirements And Identification, Etc., The Provisions Of The Building Products Used In Public Places, Flooring Materials, Wire And Cable, Sockets, Switches, Lighting, Household Appliances, Such As Shell Plastics And Chairs, Sofas, Combustion Performance Insulation Layer And The Foam Used In The Mattress, Put Forward The Corresponding Flame Retardant Standard Grade Requirements.
Retardant Materials Industry Is An Important Petroleum And Chemical Industries, High-End Flame-Retardant Materials Industry Belong To The State To Encourage The Development Of New Materials Industries. Our Fire-Retardant Materials Industry Is Developing Rapidly, China Has Become The World'S Production And Consumption Of Flame-Retardant Materials Industry, 2013 Annual Production Reached 750,000 Tons Retardants, Antimony Oxide, Phosphorus-Containing Flame Retardants, Brominated Flame Retardants, Magnesia, Alumina And Flame-Retardant Polymer Materials Production Are Among The Highest In The World. Especially The Development Of High-Fire-Retardant Materials Industry, And Promote The Industry To Speed Up Structural Adjustment, Foster New Economic Growth Point.
Retardant Materials By Definition Is Organized Around A Burning Flammable Items, Which Have Been Applied In Important Areas, And Chemical. Our Fire-Retardant Materials Industry Is Developing Rapidly. Especially The Development Of High-Fire-Retardant Materials Industry, And Promote The Industry To Speed Up Structural Adjustment, Foster New Economic Growth Point.
In Recent Years, With The Enhancement Of Environmental Awareness, Environment-Friendly Halogen-Free Flame Retardant Has Become The Trend Of Technological Development. Green Retardant Materials Is Increasingly Becoming An Important Non-Tariff Barriers In International Trade, Technical Barriers, The EU Issued A Directive WEEE And ROHS Etc., Requires All EU Market Of Electrical And Electronic Equipment Must Meet The Requirements Of The EU Environmental Standards. In Order To Protect Our People'S Life And Property Safety, In Document No. 65 Issued In 2011 On The Wall Insulation Materials Made More Stringent Requirements. China Is A Big Country Material, A Polymer Material Occupies A Very Important Position In The Industry, So The Development Of Polymer Materials Green Flame Retardant Technology Is A Very Critical Issue.
Our Fire-Retardant Materials Industry Is Developing Rapidly, Especially In Developing High-End Flame-Retardant Materials Industry, And Promote The Industry To Speed Up Structural Adjustment, Foster New Economic Growth Point. Retardant Materials Industry Toward Green Direction, Can Promote The Progress Of China'S Environmental Protection Work, While For The Production Of Fuel Materials Business Group Brings The Power Of Independent Innovation.
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