奶瓶、婴幼儿餐具用食品级PP:无BPA的实质与耐反复灭菌

应用领域 发布时间: 2026-09-16 4748 阅读

Why can food-grade PP baby bottles claim to be BPA-free? The key is not in the 'labeled Free,' but in the fact that PP and PC are two completely different polymers. This article explains the essence of being BPA-free and focuses on analyzing the material lifespan of baby bottles and tableware after hundreds of repeated steam sterilizations — re-measuring the migration level after multiple cycles is something that most peers basically don't do, but is what should really be done.

If your PP baby bottles are boiled repeatedly, will harmful substances leach out?

This is the question I get asked most often, and most of the people asking it are parents who are naturally wary of 'plastic packaging for food.' Behind this question, there are actually two completely different propositions: one is 'does this material itself contain things it shouldn't,' and the other is 'after being repeatedly subjected to high temperatures hundreds of times, is it still the same safe material it was originally?'

Confusing these two sentences is the root of most misconceptions about baby bottle materials on the market. This article will explain these two matters separately.

1. The key to choosing baby bottle materials is not whether it can be used, but whether it can still be used after being sterilized hundreds of times.

The choice of materials for baby bottles and infant tableware has never focused on 'whether it can hold milk,' but rather on 'whether it can withstand daily steaming, daily boiling, and hundreds of cycles within its claimed lifespan.'

A very common scenario is like this: a new baby bottle is crystal clear, odorless, and won't crack if dropped, which makes parents very satisfied; after using it for two or three months, the bottle starts to fog, turns slightly yellow, the threaded mouth cracks if dropped, and up close there is still a somewhat indescribable smell.

Parents' first reaction is 'I bought a counterfeit,' but many times the materials are not fake; repeated high-temperature sterilization gradually removes parts of the material that are supposed to remain stable for a long time.

So the main point of this article is just one sentence: When choosing materials for infant items, don't first ask 'Can it be used?', first ask 'Can it still be used after being sterilized at high temperatures hundreds of times?'. All the criteria below revolve around this sentence.

2. Six-dimensional working conditions: Baby bottles and tableware must withstand high temperatures, drops, milk, and repeated use simultaneously

Split the working conditions of the milk bottle utensils into six dimensions, the first four of which must have specific numbers, otherwise the plan cannot be determined.

DimensionActual working conditions (provide numbers)Requirements for the materials
TemperatureRepeated 100℃ steam / boiling (3–10 minutes each time); refrigeration −20℃ (according to GB 38995-2020 applicable temperature −20℃~120℃)Long-term repeated thermal cycling does not cause degradation or brittleness; does not crack at low temperatures
LoadMandatory drop (GB 38995 drop test must pass); tightening torque of the locking ringImpact resistance, thread strength, assembly sealing
MediumMilk (containing fat), cleaning agents, disinfectants (long-term use of disinfectants will accelerate aging, see GB 38995 usage guidelines)Oil-resistant, hydrolysis-resistant, low exudation
LifespanThe number of cycles is determined according to the product's claimed lifespan (daily disinfection × months of use, commonly ranging from dozens to hundreds of times)Performance retention after cycling
AppearanceTransparency / cloudiness (parents need it to check the milk amount), yellowing, loss of clarity due to atomizationThe transparency material has stable haze and does not become foggy
ComplianceStricter regulations for infant and young children's food contact: GB 4806.7-2023 GB 9685-2016 GB 38995-2020Migration, specific migration all over

Text Version Conclusion: In the working conditions of baby bottle utensils, the most easily overlooked aspect is 'lifespan' — it is not a static temperature, but cumulative damage of '100℃ × N times.' Many solutions pass the full set tests at room temperature, but fail once cycling is applied, essentially because they do not treat the number of cycles as a strict standard. In addition, 'long-term soaking in disinfectant' in the medium is explicitly stated in GB 38995 to accelerate aging, so it cannot be considered only based on boiling in water when selecting materials.

3. First, correct the biggest misconception: PP and PC are two completely different polymers

Regarding 'BPA-free,' let's first clarify the most easily confused point: PP (polypropylene) itself is not a Bisphenol A (BPA) material.

BPA is a monomer or residue source of polycarbonate (PC) and certain epoxy resins. PP and PC are chemically two completely different polymers—PP is polymerized from propylene, and its main chain does not contain any bisphenol A structural units at all. Therefore, the claim that "food-grade PP is BPA-free" is chemically valid, and it is not just made up by adding a slogan.

Why is this important? Because consumers (and even many purchasers) are used to lumping all 'plastics' together. Seeing 'PP baby bottle BPA-free' makes them think it applies to all plastics, and seeing 'PC contains BPA' makes them think it also applies to PP. PP and PC are two different material lines, and the controversy over BPA only concerns PC and epoxy resin.

According to the national standard (Class A): GB 4806.7-2023 stipulates that the specific migration limit (SML) of bisphenol A for PC and BPA-type epoxy resins is 0.05 mg/kg.

GB 9685-2016 clearly stipulates that bisphenol A must not be used in the production of materials and products intended for infant food contact. In other words, the reason infant bottles have generally shifted from PC to PP, PPSU, glass, and silicone is precisely because the regulatory red line for BPA is set at 'exclusively for infants' — and PP naturally does not fall on this red line.

Text version conclusion: When talking about "BPA-free", it must be said correctly. PP being BPA-free is determined by the material itself, not by marketing phrases; what really needs to be monitored are the additives and processing residues mentioned in the following section, not the base material itself.

4. Dare to say something offensive: labeled 'BPA Free' does not equal safe

This is the sentence from this article that should be most remembered: 'Labeled BPA Free' does not equal safe; what should really be looked at are the total migration and specific migration test reports, not a component label.

The reason is straightforward. The food-grade PP substrate itself does not contain BPA, but a baby bottle, from the pellets to the finished product, goes through a series of additive systems including substrate, antioxidants, slip agents, mold release agents, and color masterbatch, and also undergoes injection molding. The risk does not lie in the PP main chain, but in two areas:

- The additives themselves: Some lubricants, antioxidants, and color masters may bring their own migrants if models that do not meet food contact requirements are chosen;

- Processing residues: Excessively high injection molding temperatures or excessive release agents can introduce off-flavors and small molecule leaching (this has been verified on interior parts — passing particle tests does not equate to the part passing, the same applies to baby bottles).

So, to determine whether a PP baby bottle is safe, you only need to look at three things: total migration (GB 4806.7-2023, limit ≤10 mg/dm² or ≤60 mg/kg), potassium permanganate consumption (≤10 mg/kg, representing the total amount of small migratable organic molecules), and specific migration (such as heavy metals expressed as Pb ≤1 mg/kg, primary aromatic amines must not be detected, detection limit 0.01 mg/kg). A third-party test report with a standard number carries far more weight than the 'BPA Free' label printed on the packaging.

Text Version Conclusion: 'BPA-free' is a threshold, not the end point. Infant products are extremely sensitive to odors and leaching; simply saying the material is BPA-free is misleading. Only by presenting test reports on total migration and specific migration can true compliance be demonstrated.

5. How to choose the material route: the division of labor between homopolymer PP, random copolymer PP and PPSU, silicone, and glass

Baby bottles and tableware commonly follow these few routes, only making a parallel division of labor, without giving a 'which is better' conclusion—because different scenarios have different optimal solutions.

It should be noted that the homopolymer/random copolymer PPs mentioned here are base grades. Baby bottle grade materials usually require additional clean and stabilization treatment in the direction of modified PP on the basis of food grade, rather than directly using general-purpose materials for injection molding.

RouteTransparencyHeat-resistant / SterilizationDrop-resistantFood Contact ComplianceTypical scenario
Homopolymer PPSemi-transparent~OpaqueWithstands 100℃ steam/boiling; duration must be controlled for long-term repeated usegeneralFood grade, originally BPA-freeEconomical bottle body and tableware
Atactic Copolymer PPGood transparency (the haze of transparent grade can reach ≤15%, according to the medical transparent copolymer caliber)Same as above, better low-temperature toughnessgeneralFood gradeTransparent baby bottles, transparent tableware
PPSUAmber translucentResistant to 180°C repeated boiling and steamingDrop-resistantFood gradeHouseholds with all-age and high-frequency disinfection
SiliconeTransparent ~ Semi-transparentSteam-resistant, not microwave or dry-heat resistantVery durable (can withstand drops)Food gradePacifier, soft bottle body
GlassFully transparentHigh temperature resistantFragileFood gradeNewborn at home

Text version conclusion: If transparency demand is strong, go with random copolymer PP or PPSU; for impact resistance and frequent disinfection, prioritize PPSU/silicone; for newborns needing to monitor milk intake, glass is the first choice. The advantages of PP are that it is light, cheap, and naturally BPA-free; its drawback is that repeated long-term high temperatures can cause aging and yellowing, and transparency will decrease — using PP in scenarios of 'frequent repeated boiling while maintaining long-term clarity' is a wrong choice, which has nothing to do with material quality, but rather with scene suitability.

6. Selection Criteria Table: Which lines should the baby bottle and tableware card follow

Below are the selection criteria for baby bottles and tableware, with all five columns complete: indicators, threshold values, verification methods·standard numbers, common failures, and conventional solutions.

IndicatorThreshold valueVerification Method · Standard NumberCommon FailuresCommon solution
Total Migration≤10 mg/dm² (or ≤60 mg/kg)GB 4806.7-2023 / GB 31604.1Exceeding standard → abnormal odor, small molecule precipitationLow-precipitation substrate Clean auxiliary system
Potassium permanganate consumption≤10 mg/kgGB 4806.7-2023Migration of low-molecular-weight organic compoundsLow ash content, narrow distribution resin
Heavy metals (calculated as Pb)≤1 mg/kgGB 4806.7-2023 / GB 31604.9Color masterbatch / Filler incorporationFood-grade color masterbatch, compliant fillers
Aromatic primary amineNot detectable (detection limit 0.01 mg/kg)GB 4806.7-2023 AddedAzo Dyes / Amine AuxiliariesNo azo colorant masterbatch needed
Bisphenol AExclusively for infants and young children; must not be used / must not be detectedGB 9685-2016, GB 4806.7 (SML 0.05 for PC)PP itself does not contain it; it is introduced by additives.Choose non-BPA system additives
Fog density / TransparencyHaze of transparent grade ≤15% levelGB/T 2410 HazeAging loss of transparency, atomizationRandom Copolymer Anti-aging System
fallDrop test according to GB 38995GB 38995-2020Cracked from dropping, broken threadsImpact-resistant copolymer Reasonable wall thickness
Boiling Water Resistant / Thermal ShockFully immerse for 10–12 min without deformation or crackingGB 38995-2020Deformation, crackingControl the cooking duration

Text version conclusion: The row that should be checked repeatedly in this table is "Bisphenol A" — it is not checking for PP, but checking whether your entire additive system is clean. Additionally, aromatic primary amines are a newly added "must not be detected" item in GB 4806.7-2023, often originating from azo dyes. If a baby bottle is going to be colored, the choice of color masterbatch must first pass this check.

7. The three degradation pathways of repeated sterilization are seldom thoroughly explained by peers.

Baby bottles and utensils need to be repeatedly sterilized with steam or boiled. After hundreds of cycles, the material doesn’t 'suddenly break'; it gradually degrades along three paths. Explaining these three paths clearly is more useful than shouting 'high temperature resistant' a hundred times.

Degeneration pathmechanismPerformanceRespond to
① The additive is repeatedly extracted and lostEach time hot water/steam dissolves the antioxidants and lubricantsReduced anti-aging ability, gradually becoming brittle and prone to crackingIncrease the initial stabilizer content and choose an extraction-resistant system
② Crystallization and Size ChangesRepeated thermal cycling changes crystallinitySlight changes in size, changes in transparency, shrinkageNucleating agent to adjust crystallization and control mold temperature
③ Surface microcracks / AtomizationThermal and medium synergy, surface generates stressLoss of transparency, fogging, stainingSurface treatment, control cooking duration

Text Version Conclusion: The most hidden of the three points is the first one. Additives are repeatedly boiled out, and the material still looks like the same PP, but its anti-aging ability has declined; you just can't tell because it hasn't reached the point of cracking. This is also why many baby bottles 'turn yellow and become brittle over time' — it's not sudden, but the cumulative result of the additives being depleted. The industry's common practice of 'boil for 3–5 minutes, don't overcook' is fundamentally aimed at controlling this pathway.

Dare to deny a common practice: many plans only conduct one high-temperature test and then claim 'heat-resistant and can be sterilized.' Doing it once and doing hundreds of cycles are completely different matters. Claiming 'can be repeatedly disinfected' without cycle verification is equivalent to no verification at all.

8. Verification sequence: First determine the sterilization method, then perform the cycle, and after the cycle, re-test the migration; a single failure will result in rejection.

This is the area with the biggest difference between the self-produced version and the trade version. The verification of baby bottles and tableware must follow the sequence below, with each level providing the criterion of 'just return to the previous level'.

levelStepBut just return it
OneFirst determine the sterilization method (steam / boiling / disinfection cabinet, specifying temperature and time)The method is uncertain, the rest will be done in white.
TwoRepeat the cyclic sterilization (number of times according to the product's claimed lifespan, for example, 100 times × 100℃ / 10 min)Testing without loops = not verified
ThreeRecheck appearance after cycling Transfer (one-vote veto)Excessive migration or severe brittleness → Return to the material system
FourPerform drop and assembly tests (GB 38995)Thread loose, cracked from dropping → Return to structure/material
FiveThen perform low temperature and refrigeration (-20℃)Cold storage cracking → Return to substrate file
SixFinal practical use verification (feeding scenario)Odor / Scaling → Return to the additive system

A sentence that peers can’t copy: the 'Level 3 repeated cycle re-testing of migration' is something that most articles on baby bottle material selection and suppliers basically don’t do, yet it’s the one thing that should be done—the repeated high temperature is precisely the condition that draws out additives and quietly increases migration. Testing only the migration of new material cannot reveal the migration after use. Skipping this step means all the previous compliance data only represents the 'moment it leaves the factory'.

Textual Conclusion: The core logic of the verification sequence is 'first block any veto items, then block performance items.' Migration and appearance are lifelines, and should be passed first; drop, assembly, and low temperature are qualification lines, to be passed later; actual usage is the final review. If the sequence is reversed, it often results in wasting time conducting detailed performance tests on a material that should have already been rejected.

9. Reverse Honesty: For these types of baby bottles, modified PP should not be the first choice

After explaining what can be done, it is necessary to talk about what cannot be done. In the following situations, modified PP should not be the first choice:

- Requires repeated sterilization above 120℃ for a long time: the heat resistance limit of PP is just that line, and modification can only mitigate it. Long-term repeated steaming above 120℃ (close to or exceeding its heat distortion range) will accelerate aging, yellowing, and brittleness. You should go for PPSU (resistant to 180℃) or glass.

- Requires extremely high transparency and long-term maintenance: Transparency is achieved by reducing crystallinity, and heat resistance, aging resistance, and transparency are inherently in tension. Repeated high temperatures over time will reduce the transparency of PP; for those demanding 'consistently clear,' consider PPSU or glass.

- The bottle is required to withstand high-intensity steam for long periods (industrial sterilization conditions, such as high-pressure steam above 121°C): this is the repeated sterilization condition for medical devices. Ordinary baby bottle grade PP is not designed for this and medical-grade high-temperature resistant materials or PPSU should be used, and verification should be conducted separately according to medical sterilization standards.

- The bottle body requires extreme shatter resistance and long-term outdoor use: PP itself has average shatter resistance, so for frequent drops, consider silicone coating or PPSU.

The pattern is very clear: whenever the three things 'long-term overheating, still transparent, and drop-resistant' are all strictly required at the same time, you shouldn't force PP. Forcing through such orders in the end will always result in having to return them and claim compensation.

10. Material Change Risk List: Examine issues from mold shrinkage to color difference before taking action

The customer has decided to use food-grade modified PP for baby bottles and tableware. The real concern is often not the performance, but 'do I need to change my current molds and processes?' Check this form before switching materials.

Items to moveWhat needs to be confirmedWhat will happen if I don't do it?
Mold shrinkage rateDifference in shrinkage between homopolymer / copolymer, is mold adjustment necessaryThe dimensions are out of tolerance, and the assembly does not fit.
Gate and VentTransparent materials are sensitive to exhaustStuffy air, silver threads, worsened haze
Material Temperature and Mold TemperatureTransparent material mold temperature sensitiveUneven transparency, warping
DryGenerally not needed, but pay attention to color masterbatch/recyclingBubbles, silver threads
Pressure Holding and DemoldingShrinkage causes deformation and whitening at the topDeformation, ejection strain
Color differenceConfirm the color swatch for food-grade masterbatch firstBatch color difference dispute
Verification orderSample → Short print → BatchDirect batch, all risk placed on the last step

Text version conclusion: Changing materials involves three aspects: molds, processes, and color differences, among which the order of validation should be discussed first. Transparent baby bottles are much more sensitive to mold temperature and venting than ordinary parts, and skipping short shots and going directly to batch production means that the cost of a single failure is the appearance defect of the entire batch.

11. One-page report comparison table: for technicians to report upwards

SceneRecommended RouteKey indicatorsVerification StandardConditions that need to be confirmed first
Economical Spare Baby BottleFood-grade homopolymer / random copolymer PPHaze, Drop, Total MigrationGB 4806.7, GB 38995Daily disinfection frequency, whether it is boiled for a long time
Transparent baby bottleTransparent Random Copolymer PPTransparency, yellowing, migrationGB 4806.7Opacity threshold, whether to color
High-frequency disinfected householdPPSU or PPResistant to repeated steaming and cooking, sizeGB 38995 Boiling Water ResistantDisinfection method, number of cycles
Infant and toddler tableware (bowls and spoons)Food-grade PP, drop-resistantDrop resistance, oil migration resistanceGB 4806.7Does it contain silicone coating ?

Text version Conclusion: The value of this chart is in the last column—also called "PP baby bottles," which can be disinfected once daily for three months, compared to twice daily for half a year. The material selection system can be completely different. When reporting upward, first nail down the "cycle count" and "sterilization method" to make it easier to finalize the plan.

12. The most common problems with these types of items are often not the substrate material

The most common problem in the industry for these types of bottles is not the PP substrate being inresistible, but the additives being emptied after repeated sterilization, the migration amount quietly increases, or transparent parts becoming foggy and yellow.

According to the national standard (Class A), infant food contact is the strictest level of regulation: GB 9685-2016 clearly states that bisphenol A must not be used in food contact materials specifically for infants; GB 4806.7-2023 sets rigid limits for total migration, potassium permanganate consumption, heavy metals, and aromatic primary amines; GB 38995-2020 also specifically specifies the performance of bottle nipples for boiling water (fully immersed in 10–12 min), drops, and fitting components. The requirements for

materials are clear: total migration ≤10 mg/dm², potassium permanganate consumption ≤10 mg/kg, Pb ≤1 mg/kg, and aromatic primary amines must not be detected. The common approach is to use food-grade homopolymer or random copolymer PP as the substrate, select all additive systems according to food contact compliance, and include "post-cycle retesting migration" for verification—this is precisely the step most manufacturers skip.

In this direction, we commonly supply food-grade clean-modified PP: using homogeneous/random copolymer PP as the substrate, paired with low precipitation, low odor, anti-aging stabilization systems, mainly to solve the aforementioned issues of "instability after repeated sterilization, or unclean additive systems."

Operating ConditionKey CriteriaCologne Conventional Supply
Food-grade Baby Bottles / TablewareTotal Migration ≤10, Fog, DropFood-Grade Clean Modified PP (Base material, low precipitation, low odor, anti-aging direction)
Transparent partsTransparency, yellowingRandom copolymer transparency direction
Resistant to repeated sterilizationPost-cycle migration, anti-agingHigh-stability system modification PP

Just a reminder: When choosing baby bottle materials, first look at the sterilization method, then the number of cycles, and finally the transparency. If the order is reversed, it's often the same material that ages and gets tangled up in color.

About Us

I got a call a couple of days ago, and the first question was, "How much does your PP withstand ?"

can't answer this directly. Temperature resistance depends on long-term continuous use, not short-term peaks; It also depends on the load, medium, and whether there is filling enhancement. The same sentence can answer from 80°C to above 140°C.

Ningbo Kelong New Materials Co., Ltd. produces its own modified polypropylene (PP) pelletizing, covering three levels of substrates: homopolymer, random copolymer, and impact-resistant copolymer, as well as food-grade cleanliness, low odor, and anti-aging stability modification directions; Also engaged in PP resin, sub-brand materials, and bulk materials for major petrochemical plants

这台机器上的件,说下工况我帮你看看

报个件、说清温度和要过的认证,当天回你两三个能打的方案。电话微信同号,找到人就能聊。

打电话 18969817163发邮件询价
WA