| HS Kodu | 346854 |
| Viskozite 4 Sulu çözüm 20 C | 50 ± 5 mPa · s |
| Hidroliz Derecesi | % 88 ± 2 mol |
| Polimerizasyon Derecesi | 2400 ± 100 |
| Ph | 5-7 |
| Uçucu İçerik | ≤%5 |
| Kül Içeriği | ≤%0,5 |
| Dış Görünüş | Beyaz granül toz |
| Parçacık Boyutu | 20-80 örgü |
| Yoğunluk | 1.27-1.31 g /cm³ |
| Yığın Yoğunluğu | 0.45-0.60 g /cm³ |
| Erime Noktası | 220-230 ° C |
| Su çözünürlüğü | 80 ° C'nin üzerindeki sıcak suda çözünür |
Akrediteli bir Sinopec PVA 088-50 (PVA 2488) fabrikası olarak, sıkı kalite protokolleri uyguluyoruz - her seri tutarlı etkinlik ve güvenlik standartlarını sağlamak için titiz testlerden geçiyor.
| Paketleme | İç PE astarı ile 25 kg net çok katmanlı kraft kağıt torbalarında paketlenmiş, güvenli taşıma için paletli ve shrink-wrapped. |
| Konteyner Yükleme (20' FCL) | Sinopec PVA 088-50 (PVA 2488), paletlerde 25 kg torbalarda paketlenmiş, 20' FCL'ye yüklenmiş, güvenli transit için güvenli. |
| Nakliye | Sinopec PVA 088-50 (PVA 2488) 25 kg çok katmanlı kağıt /plastik torbalarda, paletli ve stretch sarılmış beyaz granül toz olarak gönderilir. Taşıma için tehlikeli değildir. Yükleme, transit ve boşaltma sırasında nemden, nemden ve yağmurdan koruyun. Soğuk, kuru, iyi havalandırılmış bir alanda saklayın. |
| Depolama | Sinopec PVA 088-50'yi (PVA 2488) doğrudan güneş ışığı, ısı ve ateşme kaynaklarından uzak, serin, kuru ve iyi havalandırılmış bir alanda saklayın. Nem emilmesini ve kaplamayı önlemek için konteynerleri sıkıca kapatın. Toz birikiminden ve güçlü oksidatörlerle temas etmekten kaçının. Orta sıcaklıkları koruyun ve uygun PPE ile kullanın. Tüm yerel depolama düzenlemelerine uyun. |
| Raf ömrü | Raf ömrü, nem ve ısıdan uzak, sızdırılmış, soğuk ve kuru saklandığında 2 yıldır. |
Bütçenize uygun rekabetçi Sinopec PVA 088-50 (PVA 2488) 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 088-50, distributed internationally under the product alias PVA 2488, is a partially hydrolysed polyvinyl alcohol resin manufactured via continuous alcoholysis of polyvinyl acetate. The designation 088-50 denotes a controlled viscosity grade within the broader 24-series nomenclature, where 24 corresponds to a nominal degree of polymerisation of 2400 and 88 indicates a hydrolysis level in the range 86.0–89.0 mol%. The 50 suffix specifies the Brookfield viscosity of a 4 % aqueous solution at 20 °C as 45–55 mPa·s (tested per GB/T 12010.2-2010). This positions the grade as a medium-to-high molecular weight species with residual acetate groups sufficient to depress crystallinity yet retain substantial interchain hydrogen bonding, yielding a polymer that balances cold-water dispersibility with exceptional mechanical film strength.
The intrinsic amorphous fraction created by 12–14 mol% residual acetate renders 088-50 more hygroscopic than fully hydrolysed counterparts. Pre-drying is mandatory when the equilibrium moisture content exceeds 5.0 wt% (determined by halogen moisture analyser at 105 °C), as free water acts as a plasticiser during thermal processing, shifting the onset of melt flow to temperatures as low as 180 °C—a depression capable of triggering premature thermal oxidation if compounded above 200 °C. Storage in vapour-tight packaging with desiccant is standard; opened material exposed to relative humidity above 60 % for more than 48 hours should be re-dried to ≤1.0 wt% moisture in a circulating-air oven at 60–70 °C for 3–4 hours to recover nominal melt rheology. In twin-screw extrusion with L/D 40 and co-rotating intermeshing screws, undried powder can induce feed throat bridging and vapour backflow, an operational failure mode documented across multiple production campaigns.
The addition of 088-50 to aqueous adhesive formulations at 2.5–5.0 % solids on a dry-weight basis modifies rheological stability through its high chain entanglement density. At pH 4.5–6.0, the absence of free carboxyl groups prevents interaction with multivalent metal ions, a notable advantage over carboxymethyl cellulose or polyacrylic acid thickeners in borate-crosslinked dextrin adhesives. Shear rates above 1000 s⁻¹ applied via a rotor–stator dispersion unit reveal a shear-thinning exponent of 0.72 ± 0.05, measured with a DIN coaxial cylinder geometry conforming to ISO 3219:1993. This pseudoplasticity facilitates transfer via roller coaters without stringing, while rapid viscosity recovery after exiting the nip (<0.5 s) ensures adequate hold-out on porous paperboard substrates.
In the free-radical emulsion polymerisation of vinyl acetate or vinyl acetate-ethylene copolymers, the substitution of a fully hydrolysed grade (e.g., 1799, 99 mol% hydrolysis) with PVA 088-50 alters both colloidal stability and final latex rheology. The grafted PVA shell thickness, as inferred from dynamic light scattering after surfactant stripping, increases by 12–18 %, imparting superior mechanical stability under 50 000 cycles of shear in an ASTM D1076-14 mechanical stability test using a high-speed disk impeller operating at 14 500 rpm. However, the lower hydrolysis degree reduces grafting efficiency, and unreacted acetate sequences migrate to the serum phase, raising the clean-up water COD by approximately 800–1 200 mg O₂/L relative to a 98.5 mol% hydrolysed colloid. Process adjustments compensate: maintaining a 0.5–1.0 wt% excess of initiator during the hold period and extending the temperature ramp from 60 °C to 80 °C over 90 minutes binds residual PVA to the particle surface, restoring grafting ratios to ≥ 52 %. These parameters have been validated on 25 m³ semi-batch reactors with anchor-type agitation.
Differences from the commonly applied low-viscosity grade PVA 1788 (viscosity 20–26 mPa·s, DP 1700, 88 mol% hydrolysis) become pronounced during cast film formation. Film specimens prepared from 10 wt% aqueous solution and dried at 40 °C /30 % RH exhibit tensile strength of 52–58 MPa and elongation at break of 240–280 % per ASTM D882-18, whereas 1788 films develop only 34–38 MPa strength at comparable elongation. The additional chain length in 088-50, corresponding to a weight-average molecular weight in the range 1.3–1.4 × 10⁵ g/mol (GPC analysis with PEG/PEO calibration, 0.1 M NaNO₃ mobile phase), enables stress-carrying crystal domains that resist peel forces in humid environments—critical in water-remoistenable adhesive coatings where bond integrity must survive condensation cycles at 40 °C /90 % RH for 72 hours without delamination.
| Property | Test Standard | Value |
|---|---|---|
| Appearance | Visual (GB/T 12010.2) | White to off-white granular powder |
| Volatile matter (max.) | GB/T 12010.2-2010 | 5.0 % |
| Ash content (max.) | GB/T 12010.2-2010 | 0.5 % (as Na₂O) |
| pH of 4 % aqueous solution | GB/T 12010.2-2010 | 5.0–7.0 |
| Degree of hydrolysis | GB/T 12010.3-2010 | 86.0–89.0 mol% |
| Viscosity (4 %, 20 °C) | GB/T 12010.2-2010 | 45–55 mPa·s |
| Particle size (retained on 40 mesh) | GB/T 12010.2-2010 | ≤ 1.0 % |
Powder dissolution for industrial batch preparation requires a cold-water slurry pre-dispersion step below 25 °C to prevent gel-particle formation. Once a uniform suspension is achieved, heating under constant low-speed agitation (60–80 rpm, anchor impeller) at a rate of 1.5 °C/min to 90–95 °C and holding for 45–60 min yields a crystal-clear, fully solubilised solution. In high-shear sawtooth impeller systems operating at tip speeds of 15–20 m/s, direct addition into water pre-heated to 80 °C is feasible if the addition rate is controlled below 0.2 kg/min per 100 L and the vessel is equipped with a jacketed bottom for rapid heat dissipation; failure to manage localised hot spots above 98 °C will generate micron-scale gels that clog downstream filter presses and compromise optical clarity in adhesive films. The dissolution window narrows further when co-formulated with borate esters: the critical gelling pH rises from 8.5 to 10.2 in the presence of 0.3 wt% sodium tetraborate, requiring careful pH buffering with diluted acetic acid to avoid irreversible crosslinking in storage tanks.
Compared with fully hydrolysed PVA 1799, the 088-50 grade exhibits a lower gelatinisation temperature in the presence of borax, making it unsuitable for starch-adhesion formulations where a rapid set is desired above 60 °C; however, its extended open time of 120–180 seconds on 200 g/m² kraft paper at 23 °C /50 % RH provides the window needed for high-speed tube winding operations. In textile warp sizing, the film flexibility eliminates the need for a separate plasticiser in polyester-cotton blends, reducing binder add-on by 1.2–1.8 % on dry fabric weight while maintaining the weaving efficiency above 92 % on air-jet looms running at 700 rpm, a benchmark derived from shuttleless weaving trials in accordance with ISO 13936-2:2004 seam slippage requirements. The film’s cold-water solubility—complete dissolution occurs within 8–12 seconds at 30 °C after desizing—eliminates energy-intensive hot-wash steps, directly lowering steam consumption per metre of finished fabric by an estimated 0.04 kg.
| Grade | Nominal DP | Hydrolysis (mol%) | Viscosity (4%, 20 °C, mPa·s) | Typical Application |
|---|---|---|---|---|
| PVA 088-20 (2488 low vis) | 2400 | 86–89 | 20–30 | Emulsion stabiliser, low-viscosity adhesive |
| PVA 088-50 (2488) | 2400 | 86–89 | 45–55 | Water-remoistenable adhesives, textile sizing |
| PVA 088-80 (2488 high vis) | 2400 | 86–89 | 70–80 | Greaseproof paper coating, high-strength adhesives |
| PVA 1788 | 1700 | 86–89 | 20–26 | General-purpose adhesive, paper sizing |
Synergistic filler loading studies with kaolin clay (2 µm median particle size, aspect ratio 12) in paper coatings show that a 3:1 PVA-to-clay ratio by dry weight increases the dry-specular gloss of coated board to 58 GU at 60° (ISO 2813:2014), outperforming a 3:1 1788 formulation by 6 GU, attributable to the higher molecular weight’s improved film leveling and binder migration control during infrared drying at 120 °C. Simultaneously, the Cobb60 water absorptiveness value (ISO 535:2014) remains below 28 g/m², a threshold essential for food-contact packaging. The grade complies with the compositional limits of FDA 21 CFR 176.170 (components of paper and paperboard in contact with aqueous and fatty foods) and EU Regulation 10/2011 amendment 2020/1245, with specific migration limits for vinyl acetate monomer confirmed below 12 mg/kg simulant under the worst-case foreseen conditions of use.
Published data for aqueous gel-spinning of 088-50 with boron nitride fillers is limited, but thermal gravimetric analysis at 10 °C/min under nitrogen records a decomposition onset at 265 °C, with a mass loss inflection at 320 °C corresponding to main-chain scission. This narrow thermal processing window precludes its use as a primary binder in ceramic injection moulding where debinding ramps exceed 280 °C; in such applications, 088-50 serves only as a secondary pore former in blends with polyvinyl butyral. Conversely, its gelation with glutaraldehyde at pH 3.5 and a molar aldehyde-to-OH ratio of 0.1 proceeds within 25 minutes at ambient temperature, forming a network with an equilibrium swelling ratio in water of 4.2 g/g, a behaviour that has been exploited in immobilised enzyme supports where leachable PVA must be minimised.