可降解包装用什么PP:先分清可降解与可回收

应用领域 发布时间: 2026-09-12 1098 阅读

What kind of PP is used for degradable packaging composite layers? Let's clarify one thing first: the main resins for degradable packaging are PLA, PBAT, PBS, PHA, and thermoplastic starch, not PP. This article will first distinguish between the three concepts of degradable, recyclable, and bio-based, then explain the real role of PP in the two areas of compatibilizers and single-material recyclability, and specify which types of orders should go to degradable material manufacturers.

- Comparison of differences: The main line of this article distinguishes three concepts ‘PP real two positions’, each of AE0/AE1/AE2/A48 follows its own line, without overlapping

Give me a biodegradable PP.

This sentence can be heard almost every week. The first half wants it to 'rot in the soil,' while the second half wants the PP to have stiffness, heat resistance, and be cheap—these two things, when applied to the same film, contradict each other.

Let's put the key takeaway of this article at the very beginning: the main resins for degradable packaging are PLA, PBAT, PBS, PHA, and thermoplastic starch (TPS), not PP. The molecular backbone of PP consists of C—C single bonds, with no hydrolysis-sensitive sites, and it does not have biodegradability—it can only undergo photo-oxidative aging and fragmentation (breaking into microplastics). That's not 'degradation,' it's 'fragmentation.' Mistaking fragmentation for degradation is the most common misconception in the entire industry, and it's the point that this article wants to address first.

So this article doesn’t insist that PP can enter biodegradable packaging—what PP is used in biodegradable packaging? The answer isn’t in the main PP resin, but in the two lines of compatibilizers and single-material recyclability. On this track, only two positions truly hold up—towards compatibilizers and towards single-material recyclable (Mono-PP). First, let’s clarify the three concepts that are often mixed together, then we’ll talk about these two areas.

1. The six conditions of degradable packaging: the two dimensions of medium and lifespan determine whether it should degrade or be recycled

Conclusion first: In six dimensions, the ones that should be decided first are 'medium' and 'lifespan' — the medium determines whether it can come into contact with a degrading environment, and the lifespan determines whether it goes through 'use and discard then degrade' or 'long-term reuse then recycle.' If this dimension is not decided, everything else is pointless.

DimensionActual working conditions of biodegradable packagingRequirements for the materials
TemperatureTypical composting conditions: 58°C level; home composting fluctuates at room temperature; hot filling/cooked items reach 100°C; cold chain −18°CDegradable resins generally have lower heat resistance than PP; PP series heat-resistant grades can be used for thermal sealing and structural layers.
LoadShopping bags and express delivery bags can carry from a few kilograms to more than ten kilograms; composite films rely on layer structure and heat sealing to bear weight.Stretch and sealing strength, set thresholds according to bag type
MediumCompost (high moisture, microorganisms), soil, seawater; contents: oils, acids and bases, water contentWhether it can enter a degradable environment is a watershed.
LifespanDisposable degradable items are designed to 'degrade a few weeks to a few months after disposal'; reusable items are designed to 'be recycled after several years of use'.Degradable parts should disintegrate quickly, while recyclable parts should age slowly.
AppearanceTransparency, crispness, printabilityPLA has high transparency, similar to PET; PBAT feels similar to PE
ComplianceComply with degradation certification (GB/T 19277.1-2025 controlled composting, GB/T 38082-2019 shopping bags, EN 13432, ASTM D6400) or recycling labels (polyolefin recycling stream)Certification is a ticket to entry, not an extra credit.

Note: The magnitudes of temperature, load, and appearance come from publicly available industry data (Grade B) and are used to illustrate the magnitudes; specific thresholds must be written into the acceptance criteria and measured according to the corresponding standards. The names, years, and applicable scopes of the degradation certification standards have been verified one by one (see the memo at the end).

The two series that are easiest to confuse are 'medium can biodegrade' and 'long enough lifespan.' The mission of a PLA/PBAT bag is 'use it up and compost it,' it doesn't need to last three years; the mission of a PP turnover box is 'use it for three years and then enter the recycling stream,' it doesn't need to rot in the soil. One is designed to disappear, the other is designed not to disappear — these two lines fundamentally go in opposite directions.

2. First, separate the three concepts that are often mixed up: degradable, recyclable, and bio-based are not the same thing.

Conclusion first: the mistake that this article aims to correct is using these three words as synonyms. They refer to three different things — 'whether it can be eaten by microorganisms,' 'whether it can be recycled,' and 'whether the raw material comes from plants and animals or petroleum.' PP only touches a corner of the latter two, not the first one.

ConceptWhat is being saidTypical materialsCan the PP fit in?
Degradable (biodegradable)Under conditions such as compost/soil/seawater, it is metabolized and mineralized by microorganisms, eventually turning into CO₂, water, and biomassPLA, PBAT, PBS, PHA, thermoplastic starch (TPS)Does not stand. The main chain of PP has C—C single bonds with no hydrolyzable sites, and it does not have biodegradability.
Recyclable (circular)After use, sort, clean, and remelt into pellets, returning to the polyolefin streamPP, PE, and single-material multilayer structures (Mono-PP)Holds up. PP has better heat resistance than PE, suitable for hot filling; single-material structure solves sorting issues.
Bio-based (raw material source)Monomers come from renewable biomass, which does not equal 'biodegradable'Bio-based PE, bio-based PP, PLA (partially bio-based)Partially related. Bio-based PP is still a non-degradable polyolefin, going through the recycling channel, not the degradation channel.

Text version conclusion: 'Bio-based' refers to origin, 'biodegradable' refers to the end, and 'recyclable' refers to the path—three things are orthogonal. A 'bio-based PP' bag originates from plants, ends up not biodegradable, and its path is recycling. Reading 'bio-based' as 'biodegradable' is the second common misunderstanding.

This section is the part of this article that does not overlap with the AE0/AE1/AE2/A48 series: those four articles respectively discuss the working conditions and modifications of films, heat sealing, air columns, and agricultural films, while this article only focuses on the 'concept differentiation of PP real two positions' and does not cover any production line.

3. Comparison of Degradable Resin System Parameters: PLA/PBAT is the main focus, PP is not part of the main resin

Conclusion first: Three types of degradable resins (PLA, PBAT, PBS/PHA) combined with TPS form the main body of degradable packaging; PP is not on the list of main resins, and only appears in 'interface' and 'single-material structure.' The table below is for providing the client with scale criteria, all marked as Grade B.

ResinSource / TypeKey performance level (B level)Position in the packaging
PLABio-based thermoplastic polyesterHigh transparency, crisp, gloss similar to PET; high brittleness, low elongation at break, heat distortion temperature about 55°COne of the main resins, often requires toughening and heat resistance modification
PBATPetroleum-based aliphatic-aromatic copolyesterElongation at break >600%, tear-resistant, hand feel similar to PE bagOne of the main resins, provides toughness
PBS / PBSAAliphatic polyesterHeat resistance is slightly better than PLAHeat-resistant degradable parts, tableware
PHA / PHBVMicrobial synthesis of polyestersSeawater is also degradable, but the cost is highSpecial degradation scenario
TPS (Thermoplastic Starch)Starch Glycerol plasticizationReduce costs, increase speed, usually add 10%~30%Filling reduces costs
PPPolyolefinStiffness, heat resistance, low cost; non-degradableNot in the main resin; only in the compatibilizer and recyclable monomer structure

According to publicly available technical information (Class B), in mainstream formulations, PLA and PBAT are blended at a mass ratio of 3:7 to 5:5, with compatibilizers added to assist dispersion. The tensile strength of the composite material can reach 20–30 MPa (close to the level of low-density polyethylene bags). To reduce costs and speed up production, an additional 10%–30% TPS or a small amount of calcium carbonate is often added. The degradation mechanism is a multi-stage coupled process: hydrolytic chain scission → microbial ingestion and metabolic mineralization; it is not as simple as 'being eaten'—the chains break down first to lower molecular weight, then microbes can process it.

Dare to deny a common practice: thinking that 'just adding a little starch to PP will make it biodegradable.' TPS is plasticized starch, which is itself biodegradable; but the main chain of PP does not hydrolyze, so the PP portion will only break down into microplastics and remain in the environment, and overall it does not meet the threshold for controlled composting. According to GB/T 19277.1-2025, what is measured is the final biodegradation rate of the whole material, not whether biodegradable components have been added or not.

4. ★ Selection Criteria Table: For PP in biodegradable packaging, only two things are tested, the rest are handed over to biodegradable materials.

Conclusion first: The first item on this table should be "Does it really need to be biodegradable"—it is the watershed that determines all the subsequent criteria. The answer for PP in this column is consistently "No," so PP's criteria only apply to the last two items (compatibilizer, recyclability of the single material).

IndicatorThreshold Value (Typical)Verification Method · Standard NumberCommon FailuresCommon solution
Is biodegradability really necessary?Degradation under compost/soil/seawater conditions must reach the controlled composting threshold (high biodegradation rate, disintegration standard met)GB/T 19277.1-2025 (Controlled Composting·CO₂ Emission Method); EN 13432:2000 (Industrial Composting: Biodegradation ≥90%/6 months, Disintegration ≥90%/12 weeks); ASTM D6400-23Mistaking 'cracking' for 'degradation', the publicity backfiredFollow the PLA/PBAT/PBS/PHA system, do not use PP as the main resin
Compatibilizer system (mainstream PLA/PBAT)PLA-g-MAH, PBAT-g-MAH, or Joncryl ADR type epoxy chain extenders; ADR 4380 connects hydroxyl/carboxyl groups with epoxy groupsMeasure tensile strength and elongation at break after blending; nucleating agent TMC-306 ADR synergistically enhances crystallization and mechanical propertiesPhase separation, layering, strength lossUse a compatibilizer specific to the degradation system, not PP-based
PP base compatibilizer applicable boundariesPP-g-MAH / POE-g-MAH: Polyolefin-nylon alloy 2%~5%; glass fiber/mineral filled (silane coupling) 0.3%~1.5%; engineering plastic alloy (SMA type) 1%~3% (Grade B)Interface observation after blending Mechanical retestingForcibly stuffed into the PLA/PBAT system, incompatiblePP base compatibilizer is only used for PP/PA, glass fiber reinforced PP, and mineral-filled PP, and is not used for degrading the main system.
Single-material recyclable (Mono-PP)All-PP single-material multi-layer structure; EVOH barrier layer <5% of total weight can be retained in the polyolefin recycling stream (Grade B)Recycle flow compatibility assessment; structure designed according to individual materialsMixed with non-recyclable layers, it cannot enter the polyolefin streamUse Mono-PP, clearly indicate 'recyclable ≠ biodegradable'
Heat Resistance and Heat SealingPP has better heat resistance than PE, suitable for hot filling and cooking; the heat-sealing layer is determined according to the starting temperature.Gradient heat sealing curve; referring to the approach of GB/T 10004-2008Mistakenly treated a degradable film as a steam-cooking resistant filmPP layer for heat-resistant structure, with a separate degradation layer
Degradation Certification / Test ReportMust be issued by a third party according to the current systemGB/T 38082-2019 (biodegradable plastic shopping bags); EN 13432:2000, ASTM D6400-23Claiming 'biodegradable' without a reportLooking for a biodegradable material factory / testing agency, not making promises on the PP side

Text version conclusion: The first column of this table is the veto item of 'whether or not to use PP.' If degradation is really required, PP is out, and the main resin will be PLA/PBAT; as long as it is for 'environmental claims' and requires PP performance and cost, use Mono-PP single material recyclable — and clearly inform that this is not equivalent to degradable.

5. Common Failures and Root Causes: Four Phenomena, Three Originate from 'Concepts Not Clearly Differentiated'

Conclusion first: Among these four types of failures, the root cause of three of them is 'treating three concepts as one,' not poor material.

Failure 1: Claiming 'degradable PP bags' fails inspection. The root cause is that the main resin uses PP (or PP starch), and according to GB/T 19277.1-2025, the overall material's biodegradability does not meet the standard. This path for PP is unfeasible, forcing it would be a false claim.

Failure 2: Mono-PP bags were rejected by the recycling bin. The root cause is that the composite layer contains aluminum foil, PET, or an excessive amount of EVOH (>5% of the total weight), which destroys the properties of the polyolefin monomaterial. The strict prerequisite for a material to be recyclable as a monomaterial is 'all-PP structure, with barrier layers not exceeding 5%'; if it exceeds this, it cannot enter the polyolefin recycling stream.

Failure 3: PLA/PBAT film becomes brittle and has heat seal leakage. The root cause is that PLA has a heat distortion temperature of about 55℃ and is very brittle, and PBAT was not added for toughening along with a suitable compatibilizer. This is a process issue of the main degraded system itself, not a problem with PP.

Failure four (daring to deny a common practice): Thinking that adding PP-g-MAH can make PLA/PBAT compatible with PP. The bridging targets of PP-g-MAH are PP and PA, glass fiber, minerals——its polarity does not match PLA/PBAT. For the interface of the PLA/PBAT system, mainstream practice uses PLA-g-MAH, PBAT-g-MAH, and Joncryl ADR-type epoxy chain extenders. Forcing a PP-based compatibilizer into a degradable system is a waste.

6. Verification sequence: first determine 'whether it goes down,' then determine 'where the PP stands.'

Conclusion first: the verification sequence is in three stages - 'concept finalization → main resin verification → PP position verification'; if the order is reversed, the most expensive failure occurs at the certification step.

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① Define concept profile Ask clearly: Does it need true degradability? Single-material recycling? Bio-based claim?

↓ For real degradation → go directly with degradable material, PP does not produce the main resin

② Main Resin Degradation Verification GB/T 19277.1-2025 Controlled Composting; EN 13432 / ASTM D6400 Corresponding Certification

↓ Biodegradability or disintegration does not meet the standard → Return to resin ratio and compatibilizer

③ If using Mono-PP, confirm the entire PP structure; check that EVOH barrier layer is less than 5% of total weight

↓ Mixed with the non-recyclable layer → Revert to composite structure design

④ Compatibilizer Position Check PP-based compatibilizer is only tested for PP/PA, glass fiber reinforced PP, and mineral-filled PP

↓ Want to enter PLA/PBAT → Return it, switch to PLA-g-MAH/PBAT-g-MAH/ADR

⑤ PP layer heat resistance and heat sealing Gradient heat sealing Heat resistance retesting (e.g., involving hot filling/steaming)

↓ However → Return to PP layer gear

⑥ Certification and Testing Report Obtain reports from degradable material manufacturers/testing institutions; the PP side does not make degradation promises

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The one most often skipped is ①: choosing the material before defining the concept, only to realize after selection that 'biodegradable' and 'using PP' cannot both be used. Skipping ② and going straight to ⑥ results in a single failure, causing the entire batch certification to be invalid.

7. Reverse honesty: These types of demands should be directly directed to degraded material factories; we can't handle them.

Conclusion first: This section talks about 'when not to contact us.' Writing it clearly is more useful than just processing an order.

The situation that occurredWhy can't the PP end connect?Who should I find
Requires true biodegradability (compost or soil conditions)The C—C single bonds in the main chain of PP do not hydrolyze, and the intact material cannot pass the controlled composting threshold.PLA/PBAT/PBS/PHA system, taking the biodegradable material route
Require complete film production (formulation—film blowing—slitting—bag making)Blown film die, rapid cooling, and winding are part of the film factory system, separate from the two sets of equipment for the pelletizing line.Film Factory / Bag-Making Factory
Request for degradation certification or degradation rate test reportThe certification target is the entire degradable product, and the responsible parties are the degradable material manufacturer and the testing agency.Degradable Material Factory / Testing Institution
Just want 'environmentally friendly wording' while also requiring PP performance and costIt can only follow the Mono-PP single material recyclable route, and this does not mean it is biodegradable.Follow the Mono-PP recyclable route and clearly communicate the boundaries

We do not handle the degradation of the main resin, nor do we pretend that we can. By explaining this upfront, the customer is actually more willing to hand over the part that we can handle.

There are two areas of involvement: ① Compatibilizer direction — PP-g-MAH / POE-g-MAH for PP/PA alloys, glass fiber reinforced PP, and mineral-filled PP to bridge interfaces (dosage according to the above table: 2%~5% / 0.3%~1.5% / 1%~3%); ② Single-material recyclable (Mono-PP) direction — all-PP single-material multilayer structure, relying on PP's heat resistance and stiffness for heat sealing, structural and hot-fill layers, with less than 5% of total weight EVOH for barrier purposes.

A piece of advice: When receiving inquiries about biodegradable packaging, first ask 'biodegradable or recyclable.' If the answer is 'biodegradable,' refer them to the biodegradable material factory; if the answer is 'recyclable PP performance,' that's when it comes to our part.

8. Material Change Risk List: Co-extrusion and lamination involve changing layers, not molds

Conclusion first: The risk of changing materials in biodegradable packaging is concentrated in the 'co-extrusion layer' and the 'compatibilizer system,' which are separate from the shrinkage rate and gate of injection-molded parts.

Items to moveWhat needs to be confirmedWhat will happen if I don't do it?
Co-extruded layer structureWhich layer is the degradable main resin, which layer is the PP structural layer, and the proportion of the barrier layerMixed layers cause the recycling stream to be unrecognizable or the degradation rate to be below standard
Compatibilizer systemThe degradation system uses PLA-g-MAH/PBAT-g-MAH/ADR; the PP system uses PP-g-MAHPhase separation, layering, strength loss
Extrusion temperature windowThe PLA processing window is relatively narrow, the PP layer has a higher temperature resistance, and the melt temperatures of each layer do not overlap.Degradation layer thermal degradation, crystallization point, membrane rupture
Cooling and Quenching RollRoll temperature and line speed determine crystallization and surfaceIncreased haze, narrowed heat-sealing window
Proportion of EVOH barrier layerSingle material recovery requirement <5% of total weightExcess cannot enter the polyolefin recycling stream
Heat-sealing layer positioningThe PP structural layer is heat sealed, and the starting temperature is independently setCannot be sealed when installed or sealed through
Verification orderConcept finalization → Main resin degradation verification → Mono-PP check → Compatibilizer placement → Heat-resistant heat sealing → Certification reportThe risk is fully concentrated to explode at the certification stage

Text Version Conclusion: The aspects that need to be adjusted when changing materials are the co-extrusion layer, compatibilizer system, temperature window, and EVOH proportion. What should be discussed first is still the verification sequence. Skipping conceptual positioning and directly selecting materials means using the cost of certifying an entire batch to discover a boundary that could have been clarified from the start.

9. One-page report comparison table: biodegradable packaging options can be directly pasted into the PPT

Conclusion first: There is only one criterion for judgment — whether the technician can use this table to decide 'degrade or recycle' in a single meeting.

SceneRecommended RouteKey indicatorsVerification StandardConditions that need to be confirmed first
Truly Biodegradable Bags (Compost/Soil)PLA/PBAT Blending Special Compatibilizer TPS Cost ReductionBiodegradability, disintegration rate, tensile strength 20~30 MPaGB/T 19277.1-2025; EN 13432:2000; ASTM D6400-23Degradation environment (industrial/home/soil), certification level
Biodegradable shopping bagSame as above, determine strength according to bag typeStretching, sealing, dropping dartsGB/T 38082-2019Whether food contact, load-bearing
Single-material recyclable packaging (Mono-PP)All PP multi-layer structure EVOH <5%Recycled, flow-compatible, heat-resistant, heat-sealablePolyolefin Recycling Stream AssessmentBarrier target value, whether 'biodegradable' is claimed (No)
PP structural composite layer (heat-resistant/stiffness)The PP layer is used for heat sealing and structure, while the degradable layer is set separately.Heat resistance, stiffness, heat seal initiation temperatureGradient heat sealing Retest for heat resistanceHot filling/sterilization temperature
PP/PA or glass fiber reinforced PP compatiblePP-g-MAH / POE-g-MAH 2%~5% or 0.3%~1.5%Interface, MechanicsMechanical retesting after blendingWhether to mix with the degradation system (No)

Text version conclusion: Don't lump "degradation, recycling, bio-based" into one 'eco-friendly' term—each of the three should have its own threshold and its own standard. The most useful part is the last column, as it determines whether what is reported can be delivered.

10. In this direction, which segment are we connected to?

The most common misunderstanding in this area is mistaking 'photochemical oxidation cleavage' for 'biodegradation,' and treating recyclable Mono-PP as degradable. Public technical materials explain degradation quite directly: biodegradation relies on hydrolysis-sensitive sites on the main chain being metabolized and mineralized by microorganisms, while the C—C main chain of PP lacks this site, only undergoing photo-oxidative aging and cleavage into microplastics, which does not meet the controlled composting thresholds. The criteria are written in the standards: controlled composting measures CO₂ release according to GB/T 19277.1-2025, industrial composting requires ≥90% biodegradation (within 6 months) and ≥90% disintegration (within 12 weeks) according to EN 13432:2000, shopping bags follow GB/T 38082-2019, and North American labeling follows ASTM D6400-23.

Ningbo Kelong New Materials Co., Ltd. commonly supplies two types of modified PP particles in this direction: first, for the compatibilizer direction—PP-g-MAH / POE-g-MAH, which serve as interfacial bridges for PP/PA alloys, glass fiber-reinforced PP, and mineral-filled PP, with recommended additions based on public benchmarks: 2%~5% for polyolefin/nylon, 0.3%~1.5% for glass fiber/mineral-filled, and 1%~3% for engineering plastic alloys; second, for the single-material recyclable (Mono-PP) direction—whole PP single-material multilayer structures, using PP for heat resistance and rigidity to form heat-sealable, structural, and hot-fill layers, with barrier layers containing less than 5% of total weight EVOH, and clearly indicating that 'recyclable ≠ biodegradable.' The three areas of degradable main resin (PLA/PBAT/PBS/PHA), whole-film production, and degradation certification are beyond our scope.

Frequently Asked Questions

Question: Can PP be made into biodegradable packaging?

Answer: True biodegradation cannot be achieved. The C—C single bonds in the PP main chain do not hydrolyze, so according to GB/T 19277.1-2025, the overall material biodegradation rate does not meet the threshold. To achieve real degradation, one should use the PLA/PBAT system; if PP performance is desired along with an 'environmentally friendly' claim, Mono-PP single material can be used, which is recyclable, with the clear understanding that this is recycling, not degradation.

Question: Can PP-g-MAH make PLA/PBAT compatible with PP?

Answer: It does not match. The bridging target of PP-g-MAH is PP with PA, glass fiber, and minerals; the mainstream interface modifiers for the PLA/PBAT system are PLA-g-MAH, PBAT-g-MAH, and Joncryl ADR type epoxy chain extenders. Forcibly using PP-based compatibilizers does not solve the problem.

Q: Does Mono-PP equal biodegradable?

Answer: No. Mono-PP addresses recycling sorting — with an all-PP structure and EVOH <5% of total weight, it can enter the polyolefin recycling stream; it will not disappear in compost or soil. The two concepts are orthogonal.

Operating conditionKey criterionCologne regular supply direction
PP/PA alloy, glass fiber reinforced PP, mineral filled PP compatiblePP-g-MAH / POE-g-MAH Additional amount 2%~5% / 0.3%~1.5% / 1%~3%Direction of modified PP compatibilizer
Single-material recyclable (Mono-PP) packagingAll PP structure, EVOH <5% of total weight, heat resistance and heat sealingDirection of Modified PP Single-Material Multilayer Structure
Truly biodegradable packagingControlled composting threshold, disintegration meets standardsNot accepting, refers to degradation material plants / testing institutions

Just a reminder: When biodegradable packaging has problems, the most common mistake is to change the material first. Treating cracking as degradation, treating recycling as degradation, forcefully adding PP matrix compatibilizer into the degradation system—each of these has more than one reason. First define the conceptual framework, then choose the material; if the order is reversed, after several rounds of changes, you'll often still be in the same place.

Eleven, finally say three sentences

First, clarify three concepts before discussing the materials. Degradable pipes are about their end-of-life, recyclable pipes are about their path after use, and bio-based construction is about their origin—PP is only related to the last two, not the first.

Second, PP only plays two roles in biodegradable packaging. Compatibilizers (PP-g-MAH bridging PP/PA, glass fiber, minerals) and single-material recyclables (Mono-PP, EVOH <5%). The main degradable resins are PLA/PBAT.

Thirdly, 'cracking' is not 'degradation,' and 'recyclable' is not 'biodegradable.' The rework and mistakes that can be avoided by these two sentences are more than any price comparison.

About Us

After sending out the sample, we usually ask one more question: 'How do you plan to test it?'

Even good material can produce bad results if the testing method is incorrect. Drying of thin-walled parts, mold temperature and screw settings for glass fiber materials, retention time for flame-retardant materials—if any of these are not properly managed, the conclusion will be skewed.

Ningbo Cologne New Materials Co., Ltd. produces modified polypropylene (PP) granules, covering homopolymer, random copolymer, and block copolymer base materials, as well as modifications including filled, glass fiber reinforced, toughened, flame-retardant, low odor and low VOC, weather-resistant, and scratch-resistant without coating; it also deals in PP resins from major petrochemical plants, off-spec materials, and bulk materials.

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