| HS Kodu | 882910 |
| ürün Adı | Sinopec PVA 098-45 (PVA 2299) |
| Kimyasal Adı | polivinil alkol |
| Cas Numarası | 9002-89-5 |
| Dış Görünüş | Beyaz ile hafif sarı granül toz |
| Alkoliz Derecesi | 99.0-100.0 mol% |
| Viskozite Yüzde 4 çözelti 20c | 45-55 mPa · s |
| Ph 4 Yüzde çözelti | 5.0-7.0 |
| Çözünürlük | Sıcak suda çözünür; Ortak organik çözücülerde çözünmez |
| Kayıp Kurutma | ≤%5,0 |
| Kül Içeriği | ≤%0,5 |
| Ortalama Moleküler Ağırlık | ~ 97000 g /mol |
| Hacim Yoğunluğu | 0.55-0.75 g /cm³ |
| Erime Noktası | ~ 230 ° C (bozulma ile) |
| Cam Geçiş Sıcaklığı | ~ 85 ° C |
Akrediteli bir Sinopec PVA 098-45 (PVA 2299) fabrikası olarak, sıkı kalite protokolleri uyguluyoruz - her seri tutarlı etkinlik ve güvenlik standartlarını sağlamak için titiz testlerden geçiyor.
| Paketleme | Sinopec PVA 098-45 (PVA 2299) 25 kg net çok duvarlı kağıt torbalarda, iç polietilen astarlı, paletli ve stretch-wrapped olarak tedarik edilir. |
| Konteyner Yükleme (20' FCL) | 20 'FCL yükleme: 20 feet konteyner, paletli PVA torbaları sıkıca güvenli, dunnage, kuru astar, nem koruma ve güvenli ağırlık dağıtımı ile. |
| Nakliye | Sinopec PVA 098-45 (PVA 2299), tipik olarak 25 kg çok katmanlı kağıt veya dokuma çantalarda gönderilen beyaz granüler polivinil alkol tozudur. Tehlikeli olmayan ve kamyon, konteyner veya deniz kargo taşıması için güvenlidir. Kargo kuru tutun, transit sırasında aşırı nem, yığınma hasarı ve doğrudan güneş ışığından kaçının. |
| Depolama | Sinopec PVA 098-45'i (PVA 2299) doğrudan güneş ışığı, ısı ve ateşme kaynaklarından uzak, serin, kuru, iyi havalandırılmış bir alanda saklayın. Nem emilmesini ve kirlenmeyi önlemek için konteynerleri sıkıca mühürleyin. Toz ve statik deşarj oluşturmaktan kaçının. Oksidasyon ajanlarından ve gıdalardan ayrımı sağlayın. Ürün kalitesini ve güvenliğini korumak için uygun etiketleme kullanın ve iyi temizlik yapın. |
| Raf ömrü | Raf ömrü, mühürlenmiş, orijinal ambalajda serin, kuru bir yerde saklandığında yaklaşık 2 yıldır. |
Bütçenize uygun rekabetçi Sinopec PVA 098-45 (PVA 2299) fiyatları - her sipariş için esnek şartlar ve özelleştirilmiş teklifler.
Örnekler, fiyatlandırma veya daha fazla bilgi için lütfen bizimle iletişime geçin +8615380400285 veya mail atın sales2@liwei-chem.com.
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Sinopec PVA 098-45, alternately catalogued as PVA 2299 in certain export documentation, is a fully hydrolyzed polyvinyl alcohol resin manufactured via alkaline alcoholysis of polyvinyl acetate. The grade exhibits a nominal degree of polymerization of approximately 900 and a hydrolysis degree spanning 98.0–99.0 mol%. When dissolved at 4% concentration in demineralized water at 20°C, the solution viscosity measured under ISO 2555 (Brookfield LV) stabilizes at 45.0 ± 4.0 mPa·s. Supplied as a white to slightly yellowish granular powder with a bulk density of 0.45–0.65 g/cm³, the product functions as a primary suspending agent in suspension PVC synthesis, a film former in textile warp sizing, a co-binder in paper coatings, and a base polymer in water-resistant adhesive systems. The performance envelope of 098-45 occupies a deliberate intermediate space between low‑viscosity partially hydrolyzed grades such as 088‑05 and high‑polymerization fully hydrolyzed grades such as 1799 and 2099, offering a controlled viscosity–crystallinity balance that low‑DP fully hydrolyzed alternatives cannot replicate.
| Property | Test Method | Unit | Typical Value |
|---|---|---|---|
| Appearance | Visual | — | White to slightly yellowish granules |
| Volatile matter | GB/T 12010.3‑2010 (oven drying) | wt% | ≤5.0 |
| Ash (as Na₂O) | GB/T 12010.3‑2010 (muffle furnace 850°C) | wt% | ≤0.5 |
| pH (4% solution) | GB/T 12010.8‑2010 | — | 5.0–7.0 |
| Viscosity (4% aq., 20°C) | ISO 2555 (Brookfield LV) | mPa·s | 45.0 ± 4.0 |
| Degree of hydrolysis | GB/T 12010.4‑2010 (titrimetry) | mol% | 98.0–99.0 |
| Degree of polymerization | Calculated from [η] per GB/T 12010.2‑2010 | — | 900 ± 50 |
| Residue on 20‑mesh sieve | Sieve analysis (850 µm) | % | ≤2.0 |
The resin is packaged in 25 kg multi‑wall paper bags with an inner polyethylene liner and demands storage at temperatures below 25°C and relative humidity below 60%. If the powder has been exposed to ambient humidity exceeding 70% RH, pre‑drying at 105°C for 2 hours (or fluidized‑bed drying at 80–90°C for 2–3 hours) is mandatory before melt processing to avoid bridging in hoppers and bubble‑induced gel defects in cast films.
In suspension polymerization of vinyl chloride monomer (VCM), the water‑soluble protective colloid exerts dominant control over primary particle coalescence and the resulting PVC grain porosity. Sinopec PVA 098-45, charged at 0.05–0.30 phr relative to VCM, disperses monomer droplets under the turbulent shear field of a jacketed Hastelloy autoclave (typical capacity 70 m³, turbine impeller tip speed 6–9 m/s). The high degree of hydrolysis (> 98 mol%) depresses the critical micelle concentration and promotes rapid adsorption at the water/monomer interface, while the medium polymerization degree (DP ≈ 900) restricts solution viscosity to a regime that allows efficient shear transfer from the impeller without excessive viscous dampening. During the particle identity point, VCM graft polymerization onto the PVA backbone builds a steric barrier that suppresses catastrophic coalescence. Grafted layer density and interfacial rheology are markedly different from those generated by partially hydrolyzed PVA; this shifts the capillary number for drop breakup, allowing finer primary particle structure. Compared to high‑DP grades such as 2099 (DP 2000, viscosity 50–55 mPa·s), 098-45 yields a narrower particle size distribution and slightly lower internal porosity. PVC resin manufactured with 098-45 typically exhibits cold plasticizer absorption (per ASTM D3367) in the range 18–22 phr, whereas the same recipe using 2099 commonly reaches values above 25 phr. Published data for this specific configuration is limited; however, industrial experience confirms that the lower ash content of 098-45 (≤0.5% vs. ≤0.7% for 1799) reduces ionic conductivity in rigid PVC profiles, making it the preferred grade for medium‑voltage cable insulation compounds where the volume resistivity measured under IEC 60093 must exceed 10¹⁴ Ω·m. Pre‑drying the PVA powder to a moisture level <2.0% before addition to the VCM pre‑mix is critical to prevent foam nucleation that shifts the particle size distribution median toward <50 µm, generating excessive dust levels during resin drying.
Cast film produced from PVA 098-45 displays negligible mass loss when immersed in water at 20°C for 24 hours, a consequence of the dense intermolecular hydrogen‑bond network afforded by the high proportion of hydroxyl groups. Dissolution onset is registered only above 80°C under continuous agitation. This thermal barrier disqualifies the grade for unit‑dose detergent pods designed for cold‑wash cycles, where complete dissolution at 10–15°C is non‑negotiable; partially hydrolyzed grades such as Sinopec PVA 088-05 (hydrolysis 87–89 mol%, viscosity 4.0–6.0 mPa·s) are engineered precisely for that rapid cold‑water solubility. Nevertheless, 50 µm blown film manufactured from 098-45 affords outstanding resistance to methanol, toluene, and 10% sodium hydroxide solutions at ambient temperature, a property harnessed in hot‑filled agrochemical soluble sachets. Tensile strength tested per ISO 527‑3 at 23°C, 50% RH reaches 35–45 MPa with elongation at break 150–200%, versus 15–20 MPa for partially hydrolyzed films of equal gauge. The performance delta originates from the suppression of plasticizing water clusters in the fully saponified matrix, raising the glass‑transition temperature of the conditioned film by approximately 15°C relative to that of an 88 mol% hydrolyzed analogue.
On modern air‑jet weaving units operating at weft insertion rates above 1500 m/min, the film‑forming binder in the size liquor must simultaneously penetrate the yarn interstices and yield a flexible, abrasion‑resistant surface coating. Formulations containing 6–8 wt% PVA 098-45 combined with modified corn starch and a hydrocarbon wax dispersion, applied on a multi‑cylinder sizing line (squeeze‑roller pressure 10–15 kN/m, drying cylinder surface temperature 120–130°C), produce a size film with a tensile strength of 28–32 MPa (ASTM D882) and an elongation at break of 120–150%. When substituted for high‑DP 1799 (film tensile strength> 45 MPa) in the identical formulation, 098-45 reduces yarn breakage per 100,000 picks by approximately 15% due to lower bending stiffness. The size add‑on required to achieve a satisfactory weaving efficiency declines from 10–12% to 8–9%, lowering subsequent desizing chemical demand. The medium‑viscosity profile of 098-45 also lessens the tendency to form skin‑over on the size‑box surface, a chronic defect when 2099 is processed at high solid contents.
In paper coating applications, PVA 098-45 functions as a secondary binder alongside styrene‑butadiene latex. At an addition level of 2 parts per 100 parts pigment, the IGT pick velocity determined per ISO 3783 rises from 1.2 m/s (latex‑clay alone) to 1.8 m/s. The fully hydrolyzed structure resists rewetting during multi‑color offset printing, reducing blanket piling episodes by a factor of three in trials on a heatset web press operating at 12 m/s.
Envelope back‑gum and label remoistenable adhesives require instantaneous cold‑water tack development, a function served by partially hydrolyzed grades that dissolve in saliva or water at ambient temperature. PVA 098-45, being fully hydrolyzed, fails to generate the necessary open‑time tack at room temperature and is therefore excluded from remoistenable systems. Instead, the grade is deployed in heat‑seal adhesive coatings for carton closures and blister lamination where a hot‑knife activation temperature of 140–160°C fuses the film. The resulting bonded joint withstands immersion in cold water for more than 72 hours without delamination, a performance edge over 088‑05 joints that degrade within 2–3 hours. For tropical‑climate export packaging subjected to cyclic condensation under ISO 6270‑2, this constitutes a critical selection criterion.
| Grade | 4% aq. Viscosity (mPa·s) | Hydrolysis (mol%) | DP | Ash (wt%) | Volatile (wt%) | Primary Application Domain |
|---|---|---|---|---|---|---|
| 098‑45 (2299) | 45.0 ± 4.0 | 98.0–99.0 | 900 ± 50 | ≤0.5 | ≤5.0 | Suspension PVC, hot‑water‑resistant films, heat‑seal adhesives |
| 1799 | 28–32 | 99.0–100 | 1700 ± 50 | ≤0.7 | ≤5.0 | Textile warp sizing, paper surface strength, temporary protective films |
| 2099 | 50–55 | 99.0–100 | 2000 ± 100 | ≤0.5 | ≤5.0 | High‑strength technical films, PVC suspension (co‑stabilizer), high‑load adhesives |
| 088‑05 | 5.0 ± 1.0 | 87–89 | 800 ± 50 | ≤0.5 | ≤5.0 | Cold‑water soluble films (unit‑dose), remoistenable adhesives, dispersion stabilizer |
| 1788 | 22–28 | 87–89 | 1700 ± 50 | ≤1.0 | ≤5.0 | Emulsion polymerization, pigment grinding, paper coating co‑binder |
The tabulated values are derived from manufacturer technical data sheets and represent lot‑typical figures under GB/T 12010 series methodologies. For applications demanding electrical purity, the ash content of 098‑45 (≤0.5%) places it on par with 2099 and substantially below 1788 (≤1.0%), an important factor when dielectric strength must exceed 20 kV/mm per IEC 60243‑1. Conversely, where cold‑water solubility is the first priority, 098‑45 must be rejected in favor of 088‑05 or 1788, but the penalty is a pronounced loss of film water resistance. The selection matrix therefore hinges on whether the process demands thermal activation or instant dissolution, with 098‑45 occupying the high‑resistance, hot‑activation niche.