https://www.avient.com/sites/default/files/resources/Changzhou_ISO14001.pdf
Unified social credit code: 91320412MA1NMF5W4P
is in conformity with Environmental Management System Standard:
GB/T24001-2016 / ISO14001:2015
The certificate is valid to the following product(s)/service:
Textile (Yarn), Glass Products (Yarn) Coating
Processing and Related Management Activities
Registration Address/ Physical Address: R&D Workshop 5, No. 8, Lanxiang Road,
West Taihu Science and Technology Industrial Park, Changzhou City, Jiangsu
Province, P.
https://www.avient.com/sites/default/files/2024-12/ISO 14001_English_Changzhou.pdf
Unified social credit code: 91320412MA1NMF5W4P
is in conformity with Environmental Management System Standard:
GB/T 24001-2016 / ISO 14001:2015
The certificate is valid to the following product(s)/service:
Coating Processing of Textile (Yarn) and Glass
Products (Yarn) and Related Management Activities
Registration Address/ Physical Address: R&D Workshop 5, No. 8, Lanxiang Road,
West Taihu Science and Technology Industrial Park, Changzhou City, Jiangsu
Province, P.
https://www.avient.com/sites/default/files/2024-12/ISO 9001_English_Changzhou.pdf
Unified social credit code: 91320412MA1NMF5W4P
is in conformity with Quality Management System Standard:
GB/T 19001-2016 / ISO 9001:2015
The certificate is valid to the following product(s)/service:
Coating Processing of Textile (Yarn) and Glass
Products (Yarn)
Registration Address/ Physical Address: R&D Workshop 5, No. 8, Lanxiang Road,
West Taihu Science and Technology Industrial Park, Changzhou City, Jiangsu
Province, P.
https://www.avient.com/sites/default/files/2024-09/Avient_RY 2023 CDP Verification Opinion Declaration.pdf
VERIFICATION OPINION DECLARATION
GREENHOUSE GAS EMISSIONS
To: The Stakeholders of Avient Corporation
Apex Companies, LLC (Apex) was engaged to conduct an independent verification of the greenhouse gas (GHG)
emissions reported by Avient Corporation (Avient) for the period stated below.
Energy:
o Diesel Fuel Consumption: 2,868,323 kWh
o Natural Gas Fuel Consumption: 178,696,287 kWh
o Renewable Energy Consumed - Self Generated (solar): 681,059 kWh
o Renewable Energy Consumed - Self Generated (Wind): 2,385,048 kWh
o Grid Electricity Consumed: 409,650,679 kWh
o Renewable Energy Credits (REC) Purchased: 112,413,420 kWh
o Renewable Electricity Consumed – Offsite: 138,415,253 kWh
Page 2
Period covered by GHG emissions verification:
• January 1, 2023 to December 31, 2023
Global Warming Potential (GWP) and emission factor data sets:
• IPCC GWP: AR6
• USEPA Emission Factor Hub, released 2024
• USEPA eGRID, released 2024
• Final Rule (40 CFR 98) - Industrial Sector 2013
• DEFRA, released 2023
• IEA, released 2023
• European Residual Mix, released 2022 v2.0
GHG Reporting Protocols against which verification was conducted:
• World Resources Institute (WRI)/World Business Council for Sustainable Development (WBCSD)
Greenhouse Gas Protocol, Corporate Accounting and Reporting Standard, Revised Edition (Scope 1 and 2)
and the GHG Protocol Scope 2 Guidance, an amendment to the GHG Protocol Corporate Standard
• WRI/WBCSD Corporate Value Chain (Scope 3) Accounting and Reporting Standard
Verification Protocols used to conduct the verification:
• ISO 14064-3 Second Edition 2019-04: Greenhouse gases - Part 3: Specification with guidance for the
verification and validation of greenhouse gas statements
• Apex’s standard procedures and guidelines for external Assurance of Sustainability Reports and
International Standard on Assurance Engagements (ISAE) 3000 Revised, Assurance Engagements Other
than Audits or Reviews of Historical Financial Information (effective for assurance reports dated on or after
Dec. 15, 2015), issued by the International Auditing and Assurance Standards Board.
Page 3
Verification Opinion:
Based on the verification process and procedures conducted to a limited assurance level of the GHG emissions
statement shown above, Apex found no evidence that the GHG emissions statement:
• is not materially correct and is not a fair representation of the GHG emissions data and information; and
• has not been prepared in accordance with the WRI/WBCSD GHG Protocol Corporate Accounting and
Reporting Standard (Scope 1 and 2), and WRI/WBCSD Greenhouse Gas Protocol Corporate Value Chain
Accounting and Reporting Standard (Scope 3).
https://www.avient.com/knowledge-base/article/what-s-difference-fillers-reinforcements?ind[]=21508
They’re stronger, sleeker and more versatile than they’ve ever been because polymer science has evolved along with manufacturing technologies.
Stephan, and Avient Corporation, “EMI/RFI Shielding Formulations for Use in Advanced Electronic Systems” (2014).
Although carbon fibers are more expensive than glass fibers, new technologies are making carbon fibers more affordable1.
https://www.avient.com/sites/default/files/2023-01/ECCOH XL Cross-Linkable Solutions _8001_ Product Bulletin.pdf
This technology offers manufacturing efficiencies
versus other crosslinking methods:
• Reduction in logistics management: No
secondary steps after manufacturing; no
need for E-beam radiation for effective
crosslinking
• Rapid ambient curing: Typically in less than
15 days depending on the climatic condition,
wall thickness and catalyst level
• No additional capital investment: The
material can be processed on a conventional
extrusion line
• Easy handling: ECCOH XL 8001 is used with
2.5–5% of catalyst masterbatch
• No pre-drying: No need to pre-dry the
material if it is stored correctly
PRODUCT BULLETIN
KEY CHARACTERISTICS
Avient’s ECCOH line of highly flame retardant,
non-halogenated materials limits the emission
of corrosive gases when burning.
These include EN50363-5/BS7211–
EI5 Insulation General Performance for Low
Voltage Cable for Building and Construction,
and IEC60092-360–HF 90 Insulation for
Shipboard Cable.
1.844.4AVIENT
www.avient.com
Copyright © 2023, Avient Corporation.
https://www.avient.com/sites/default/files/2023-10/Wire _ Cable Tri-fold Selection Guide_0.pdf
PRODUCT SELECTION GUIDE
WIRE & CABLE
SOLUTIONS
Specialty Engineered
Materials
High performance insulation, jacketing,
and cross-web formulations for the
wire and cable industry
Syncure™ XLPE Cross-linkable
Polyethylene Formulations
• Ambient curing
• Resistant to heat, oil, creep,
& abrasion
• Low temperature properties
• Low capital investment
• DBDPE-free grades available
• UL/CSA bulletins
Maxxam™ FR Flame Retardant
Polyolefin Formulations
• FEP alternative
• Fire performance
• UL 444 & plenum yellow
card compliance
• Low dielectric
• High extrusion speeds
• Thin wall extrudability
Maxxam™ SY Foamable Flame
Retardant Formulations
• Low dielectric
• Uniform cell structure
• Crush & heat resistance
• Ease of chemical foaming
ECCOH™ Low Smoke and Fume
Non-Halogen Formulations
• Improved fire safety
• Low smoke, fume, non-halogen
(LSFOH) formulations
ECCOH™ XL Cross-Linkable Solutions
• Non-halogen, low smoke, toxicity,
& corrosiveness
• Excellent mechanical & electrical
properties
• Easily processed
• Operating temperature of 90°C
• Moisture cure technology
Synprene™ Flame Retardant
Thermoplastic Elastomers
• Low temperature
brittleness (LTB) resistance
• Easily colored
FireCon™ CPE Insulation Jacketing
Formulations
• Resistance to harsh environments
• Sunlight resistance
ECCOH™ XL 8148 Non-halogen, low smoke, toxicity, & corrosiveness EN50618
Syncure™ S100FH Horizontal flame UL 44
Syncure™ S100FH-XUV Horizontal flame, UV resistant UL 44
Syncure™ S100FH-UV Horizontal flame, FV-1 flame, UV resistant UL 44, UL 4703
Syncure™ S100FV VW-1 flame UL 44
Syncure™ S100FV-UV VW1, UV resistant UL 44
Syncure™ S112NA Non-flame retardant CSA 22.2
Syncure™ S120NA Non-flame retardant NSF 61
Syncure™ S200FH Horizontal flame, DBDPE-free UL 44
Syncure™ S200FV VW-1, DBDPE-free UL 44
INSULATION FOR POWER CABLE SYSTEMS
Low Voltage Power Cables
• Resistance to heat, oil, creep, & abrasion
• Low capital investment
INSULATION & CROSS-WEBS FOR DATA CABLE SYSTEMS
Category Cables
• FEP alternative
• Low dielectric constant
• High extrusion speeds & thin wall capability
• Flexibility
Maxxam™ FR 0521-48 R1 Low smoke & fume, non-halogen UL 444
Maxxam™ FR 0587-21 R3 Halogenated to plenum performance UL 444
Optical Fiber Cables
• Resistance to harsh environments, chemicals, & sunlight
• Low temperature brittleness (LTB) resistance
• Low smoke & toxicity
ECCOH™ 6649 UV Low DD Low smoke & fume, non-halogen Meets customer-specific
flame requirements
Coaxial Cables
• Flexibility
• Low dielectric constant
• Uniform cell structure
• Crush & heat resistance
Maxxam™ SY 89-22-7 Foamable Meets customer-specific
flame requirements
JACKETING FOR POWER & DATA CABLE SYSTEMS
Low & Medium Voltage Jacketing
• Resistance to harsh environments, chemicals, & UV degradation
• Low temperature brittleness (LTB) resistance
• Low smoke & toxicity
• Flexibility
• High extrusion speeds
• Easily colored
FEATURES SUBMARKETS & USES
FireCon™ CPE 30-33 RoHS Black Flame retardant, flexible Building & construction, industrial,
FireCon™ CPE 37-36 RoHS Black Flame retardant, flexible Building & construction, industrial,
FireCon™ CPE 30-20 RoHS Natural Flame retardant, flexible Building & construction, industrial,
ECCOH™ 5549 UV Low smoke & fume, non-halogen,
flame retardant Building & construction, industrial
ECCOH™ 6649 UV Low DD Low smoke & fume, non-halogen,
flame retardant Optical fiber, ducts
ECCOH™ 5981 UV Low smoke & fume, non-halogen,
flame retardant Industrial, Teck 90 wire
Synprene™ RT5180 Flame retardant, LTB resistance Building & construction, industrial
Synprene™ RT5180UV Flame retardant, LTB resistance Building & construction, industrial
Synprene™ RT3870M Flame retardant, LTB resistance Building & construction, industrial
1.844.4AVIENT
www.avient.com
Copyright © 2023, Avient Corporation.
https://www.avient.com/sites/default/files/2021-09/colormatrix-flexcart-liquid-metering-system-flyer.pdf
VALUE BENEFITS OF USING FLEXCART™ AND
PLANETPAK™ COMPONENTS
FlexCart & PlanetPak components offer
a market leading metering technology:
• Robust and dependable system control
• Reliable yield (typically 99% using PlanetPak)
and sustainable packaging
• Data networking and remote Internet
support capabilities
• Simplified changeover with interchangeable
cassettes of color and additives
ATTRIBUTE FLEXCART
Footprint (LxW cm) 86 x 71
Controller options 3000/Flex G
5000/6000
Typical max.
throughput (kg/hr)
1000+
Max. metering rate (cc/s) 10
Continuous use Yes
Transfer pumps PC/Peri
Metering pumps PC/Peri
Interchangeable cassette Yes
Note: PC = Progressing Cavity Pump
Peri = Peristatic Pump
PLANETPAK™ CONTAINERS
The FlexCart system is designed to work with the standardized
PlanetPak container range of packaging, typically achieving
99% reliable yield while also achieving a sustainable packaging
format that is fully recyclable.
www.avient.com
Copyright © 2020, Avient Corporation.
https://www.avient.com/sites/default/files/2022-09/PREPERM for 5G Application Bulletin %281%29.pdf
PREPERM materials are used in a
wide range of industries
Whether you operate in the field of automotive or
industrial radars, satellite communications or health
technology, we have a solution for you.
Di
el
ec
tr
ic
co
ta
Di
el
ec
tr
ic
co
Frequency [GHz]
Frequency [GHz]
Pallet number (1250 kg/pallet)
PREPERM™ PPE950
PREPERM™ PPE800
PREPERM™ PPE440
PREPERM™ PPE320
PREPERM™ PPE260
-- Dielectric constant target
-- +/- 2%
3,76
3,78
3,80
3,82
3,84
3,86
3,88
3,90
3,92
3,94
0 1 2 3 4 5 6 7 8
D
ie
le
ct
ri
c
P a llet number (1250 k g/pa llet )
Die le ctric cons ta nt ta rge t +/- 2 %
t
PR E PE RM® PPE 95 0 PR E PE RM® PPE 80 0
PR E PE RM® PPE 44 0 PR E PE RM® PPE 32 0
PR E PE RM® PPE 26 0
t
PR E PE RM® PPE 95 0 PR E PE RM® PPE 80 0
PR E PE RM® PPE 44 0 PR E PE RM® PPE 32 0
PR E PE RM® PPE 26 0
t
PR E PE RM® PPE 95 0 PR E PE RM® PPE 80 0
PR E PE RM® PPE 44 0 PR E PE RM® PPE 32 0
PR E PE RM® PPE 26 0
Copyright © 2022, Avient Corporation.
https://www.avient.com/sites/default/files/2020-08/colormatrix-reprize-brochure-8.5x11.pdf
FEATURE BENEFIT
• Liquid technology
• More accurate dose
control
• Less variation in melt flow
and product IV
• Can be coupled to an
on-line rheometer
• Shorter transition times
• Does not require
pre-drying
• Less dust
• Higher IV in melt phase
• Improved uniformity
when replacing virgin
PET in PCR sheet
• Eliminate/reduce solid
phase polymerization
(rPET)
• Increased use of post
consumer flake or
re-grind (Sheet)
• Reduced brittleness, less
breakages and scrap
• More consistent melt flow
• Reduced cost
• Higher productivity
• Cleaner working
environment
PROCESS HIGHLIGHTS
• Higher productivity
• Cleaner working environment
• New product designs and applications
• Improved shelf appeal
PET SHEET
• Increases final IV
• Less variation in product IV
• More consistent melt flow
• Increased use of flake or regrind
• Shorter transition times
• Reduced scrap
• Reduced dust
• Improved impact strength
• Improved low temperature
performance
• Improved aesthetics
Information and photographs supplied
by Sunwell Global Ltd
• Higher productivity
• Improved sustainability
• Lighter weight, higher strength
• Properties comparable to
PS packaging
• Recyclable
PET MONO/MULTI
LAYERED SHEET
XPET FOAM SHEET
ROUND DIE
• Improved melt flow consistency
• Improved IV consistency
• Increased recycle content
• Reduced rejects and scrap
• Increased product strength
• Improved low temperature
performance
• Increase final IV
• Increased use of regrind
• Impossible to start up
without it
• Faster product changeover
• Easier to cut
• Increased strength
• Lighter weight
• Good sealing
ColorMatrix™ rePrize is a PET compatible formulated liquid dispersion, designed to
increase the polymer chain length via reactive extrusion.
This results in an increase
in both the polymer intrinsic and melt viscosity. rePrize is suited to applications in:
• PET monolayer sheet
• PET multilayered sheet
• PET foamed sheet
rePrize can be used to optimise sheet manufacturing processes and product quality,
whilst allowing for increased levels of recycle, contributing towards improved
sustainability and reduced costs
PRODUCT DESCRIPTION
GLOBAL REGULATORY APPROVALS
PRODUCT FDA EU GB MERCOSUR
rePrize • • • •
1.844.4AVIENT
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Copyright © 2020, Avient Corporation.