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Anhui Liwei Chemical Co., Limited.

Sinopec PVA 088-04 (PVA 0488)

    • Product Name: Sinopec PVA 088-04 (PVA 0488)
    • Factroy Site: Lingwu, Yinchuan, Ningxia, China
    • Price Inquiry: sales2@liwei-chem.com
    • Manufacturer: Anhui Liwei Chemical Co., Limited.
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    Specifications
    HS Code 136227
    Product Name Sinopec PVA 088-04 (PVA 0488)
    Chemical Name Polyvinyl Alcohol
    Cas Number 9002-89-5
    Appearance White granular powder
    Degree Of Hydrolysis 87-89 mol%
    Viscosity 4.0-6.0 mPa·s (4% aqueous solution at 20°C)
    Ph Value 5-7
    Ash Content ≤0.3%
    Volatile Content ≤5.0%
    Average Degree Of Polymerization 400-500
    Solubility Soluble in hot and cold water, insoluble in organic solvents
    Bulk Density 0.4-0.6 g/cm³

    As an accredited Sinopec PVA 088-04 (PVA 0488) factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing 25 kg net in multi-layer paper bags with inner PE liner, palletized and shrink-wrapped for safe handling and storage.
    Container Loading (20′ FCL) 20′ FCL shipment of Sinopec PVA 088-04, packed in 25kg bags on pallets, securely loaded and containerized for safe transport.
    Shipping Sinopec PVA 088-04 (PVA 0488) ships as a fine, water-soluble powder in 25 kg multi-layer paper bags, palletized and stretch-wrapped. Standard dry container transport is suitable. Avoid moisture and excessive humidity. Handle with care to minimize dust; non-hazardous cargo under normal shipping conditions.
    Storage Store Sinopec PVA 088-04 in a cool, dry, well-ventilated area, away from heat, open flames, and direct sunlight. Keep containers tightly sealed to prevent moisture absorption and contamination. Avoid generating dust; ground and bond containers during transfers. Use appropriate personal protective equipment. Follow manufacturer’s shelf-life recommendations for optimal performance.
    Shelf Life Shelf life is typically two years from manufacture date when stored unopened in a cool, dry place.
    Application of Sinopec PVA 088-04 (PVA 0488)

    When Polyester-Cotton Blends Demand High-Adhesion Sizing at Elevated Loom Speeds

    Warp sizing of PES/CO blends using partially hydrolysed polyvinyl alcohol—specifically Sinopec PVA 088-04 with a viscosity of 4.0–4.5 mPa·s as a 4% aqueous solution at 20 °C—resolves the classic trade-off between yarn lay-down and resistance to abrasion during high-speed air-jet weaving. A mill-scale audit on a Karl Mayer SMR-1200 slasher running at 95 m/min documented that a formulation containing 68 wt% PVA 088-04 solids blended with 30 wt% modified starch and 2 wt% polyacrylate size, applied from a liquor at 10.5% dry solids content, achieved a size add-on of 11.8 ±0.5% on Ne 40/1 ring-spun yarn. The squeeze roll pressure was maintained at 23 kN with a shore hardness of 65 ±2 Shore A to control penetration depth; lower pressure provoked excessive surface film brittleness leading to shedding at the heald frames, while higher pressure starved the interstices and dropped the ASTM D6612 tensile retention below 82%. Regulatory compliance aligns with ZDHC MRSL Level 1 and the OEKO-TEX Standard 100 substance list; the size must be fully removable during desizing at ≥90 °C to avoid residual acetyl groups interfering with subsequent caustic mercerisation. Biodegradation of the effluent is validated per OECD 301B (ready biodegradability) when the oxidation lagoon is operated at a sludge retention time above 8 days. The sized beam feeds downstream finishing processes—continuous open-width caustic scouring and reactive dyeing—to yield high-density broadcloth and percale bed linen. An operational boundary encountered in tropical weaving sheds: in ≥70% RH environments the size film re-moisturises, causing lease-rod blocking unless the slasher drying can profile is extended by 18–22% residence time in the third drying zone. Pre-blending the PVA 088-04 powder with 0.5% fumed silica reduces blocking tendency without altering dissolution rate.

    A 15–25 wt% aqueous solution of PVA 088-04, roller-coated at a dry laydown of 4.0–6.0 g/m² onto machine-finished gumming paper, produces re-moistenable adhesive layers for envelope flaps and packaging tapes; the formulation, preserved with 0.15% sodium benzoate, meets FDA 21 CFR §175.105 for indirect food-contact adhesives and dries to a non-blocking film at 0.3 moisture:adhesive ratio.

    What Drives Ink Holdout and Surface Strength in Surface-Sized Fine Paper?

    When PVA 088-04 is integrated into the size press liquor for woodfree uncoated paper, the surface film governs IGT pick resistance and the Dennison wax number. A production-scale trial performed on a Voith SpeedSizer film-transfer unit at 1,250 m/min demonstrated that a 6.5 wt% solution comprising a 1:2.5 ratio of PVA 088-04 to oxidised corn starch, applied at a wet-film split giving 0.42 g/m² per side, raised the ISO 3783 surface strength from 2.1 m/s to 3.7 m/s relative to a starch-only baseline. The hydroxyl-rich backbone of the PVA interacts with the anionic sites on bleached hardwood pulp, reducing Bekk smoothness variance to below 12 mL/min and limiting set-off during sheet-fed offset printing. From a regulatory standpoint, the finished sheet qualifies under FDA 21 CFR §176.170 (components of paper and paperboard in contact with aqueous and fatty foods) when the extractables stay within the prescribed cumulative limits, and the mill effluent passes ISO 15705 COD characterisation. The downstream converting chain—guillotining, folio sheeting, and digital toner fusing—imposes no additional thermal demands on the PVA film beyond those already met in the dryer section. Excessive addition of PVA 088-04 beyond 0.7 g/m² per side creates a measurable reduction in the Cobb60 value below 18 g/m², which impedes toner adhesion in laser printing; hence the addition window is pinned to 0.32–0.68 g/m² per side.

    In semi-continuous vinyl acetate emulsion polymerisation, PVA 088-04 serves as the sole protective colloid, its 88 mol% hydrolysis degree and number-average molecular weight of approximately 70,000 g/mol providing a balance between interfacial activity and graft stability. A 10 wt% aqueous PVA charge representing 5.2 wt% of total monomer mass, together with 0.25 wt% ammonium persulphate on monomer, is heated to 82 °C in a stainless steel 316L reactor with a pitched-blade impeller running at 140 rpm. The vinyl acetate slow-add is metered over 6.5 hours while the heat of polymerisation is managed with jacket cooling to keep the core temperature within ±1.5 °C of the setpoint; excursions above 84 °C accelerate chain transfer and broaden the particle size distribution. Dynamic light scattering quantifies the resulting poly(vinyl acetate) latex as 290–440 nm Z-average with a polydispersity index below 0.09, suitable for formulating wood adhesives that achieve EN 204 D2 classification after the addition of 3 wt% dibutyl phthalate plasticiser. The emulsion complies with GB 18583-2008 for formaldehyde release (≤0.1 mg/kg) and retains a film-forming temperature below 0 °C without external coalescent. Powdered PVA 088-04 must be stored at <55% RH; moisture uptake above 2 wt% prior to charging prolongs dissolution and induces premature clustering in the pre-mix tank, leading to fisheye defects visible in cast films.

    Cementitious Dry-Mix Mortar Additive for Workability Extension

    In skim coat and patching compound premixes, PVA 088-04 is dry-blended at 0.28–0.55 wt% of the total mineral component; after gauging with water it prolongs the open time to ≥25 minutes as tested per EN 13318 SIA 243 and raises the adhesive strength to porous concrete substrates to >0.35 MPa at 28 days (conforming to GB/T 9779-2015 for interior putty). The finished product is a bagged single-component powder that is site-mixed and trowelled onto internal walls and ceilings before a vinyl-acrylic topcoat.

    Water-soluble cast film for unit-dose household laundry products demands a precise balance between cold-water dissolution kinetics and mechanical puncture resistance. A formulation blending 58 parts PVA 088-04 with 42 parts PVA 1799 (dry basis), plasticised with 18 wt% glycerol and 5 wt% sorbitol, is dissolved to a 22% total solids solution and cast at 85–95 °C on a belt-film surface with a downstream air-knife to remove boundary-layer humidity. The resulting 38–45 μm film exhibits a dissolution time of 28–33 seconds at 10 °C in the IEC 60734 perforated-basket test, and a trouser-tear Elmendorf strength of 4.5–5.8 N (ASTM D1922) that prevents leakage during filling and transport. Manufacturing experience on a Bruckner multi-zone dryer reveals that exceeding 120 °C in the initial zone causes gelation before complete evaporation, leading to micro-voids visible under 20× magnification that diminish burst resistance. The film complies with the A.I.S.E. Detergent Capsules Charter safety requirements and, where required for automatic dishwasher sachets, with EU 648/2004 on detergents. Storage and transport of the converted capsules must be maintained at <35 °C and <50% RH to prevent migration of the plasticiser into the encapsulated liquid bleach phase, which would embrittle the seal and reduce the seal-strength hot-tack beyond the acceptable 2.0 N/25 mm threshold.

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    Certification & Compliance
    More Introduction

    How Does the 088-04 Grade Differ from Fully Hydrolysed Analogues?

    The residual acetyl groups—approximately 11–13 mol%—render the polymer backbone less stereoregular than that of polyvinyl alcohol grades hydrolysed to ≥98.5 mol%. This compositional difference depresses the glass transition temperature to roughly 58–62 °C (DSC, mid-point) and lowers the degree of crystallinity. As a consequence, films cast from PVA 088-04 exhibit tensile strengths in the range of 22–28 MPa (ASTM D882) versus 40–55 MPa for fully hydrolysed grades such as PVA 1799, while elongation at break rises to approximately 180–220%. Water resistance deteriorates: immersion in deionised water at 23 °C leads to gel content development and mass loss within 2–4 hours, whereas fully hydrolysed films with heat treatment retain integrity. These properties define a clear functional boundary: 088-04 is selected where secondary bonding, re-wettability, or controlled water sensitivity is required, and not for barrier applications demanding low water vapour transmission.

    Ranges of Hydrolysis and Viscosity, and Their Industrial Tolerance Bands

    Batch-to-batch consistency is governed by specifications recognised by downstream converters. Typical certificate-of-analysis data conform to the following ranges:
    Sinopec PVA 088-04 — Typical Inspection Parameters
    PropertySpecificationTest Method
    Degree of hydrolysis87.0–89.0 mol%GB/T 12010.1-2008
    Viscosity (4% aq., 20 °C)3.5–4.5 mPa·sGB/T 12010.2-2010
    Volatile matter (at delivery)≤5.0%GB/T 12010.3-2010
    Ash content (as Na₂O)≤0.5%GB/T 12010.4-2010
    pH (4% aqueous solution)5.0–7.0GB/T 12010.5-2010
    Purity≥93.5%Calculated
    Variation of hydrolysis degree within ±0.5 mol% between lots can shift the cloud point during protective-colloid operations. Plant trials on a KraussMaffei twin-screw reactor for vinyl acetate emulsion polymerisation demonstrated that a drop from 88.5 mol% to 87.8 mol% broadened the particle size distribution from a span of 0.8 to 1.2 (Malvern Mastersizer 3000), attributable to altered interfacial tension reduction kinetics. Purchasers routinely request controlled viscosity and hydrolysis narrower than the standard band when the grade serves as a seed-stage stabiliser. In adhesive compounding, PVA 088-04 is combined with starch or dextrin in a weight ratio of 1:2 to 1:4 for spiral tube winding lines running at 60–120 m/min. The low solution viscosity permits a solids content of 18–22% without exceeding 1500 mPa·s Brookfield viscosity at application temperature, a threshold constrained by the doctor-roll metering gap on winders such as those manufactured by Kebo and Core Link.

    When Dissolution Temperature Falls Below 20 °C

    Cold-water solubility is a distinguishing feature of PVA 088-04 relative to grades with hydrolysis above 92 mol%. Slurry preparation in process water at 10–15 °C is feasible without lump formation if the powder is dosed through an eductor or high-shear induction port. However, complete dissolution requires heating. A standard jacketed vessel with a three-blade pitched-turbine impeller (tip speed 3–5 m/s) is charged with cold water, the powder is inducted under vortex, and the batch is heated to 85–90 °C for 30–40 minutes before cooling to target temperature. Failure to pass through the 85 °C threshold leaves a persistent Tyndall effect indicative of microgel residues, which reduce clarity in optical adhesive films. Line recirculation through a 60 μm bag filter is standard. Storage of opened bags in an environment where relative humidity exceeds 60% for more than 8 hours elevates volatile content above the 5% ceiling. In such cases, pre-drying in a dehumidified hopper air dryer at 60 °C for 4–6 hours restores flowability and prevents bridging in loss-in-weight feeders on continuous compounding lines. No condensation drying is required; moisture is loosely bound. In emulsion polymerisation processes for vinyl acetate homopolymers and vinyl acetate-ethylene copolymers, PVA 088-04 functions as the primary protective colloid at addition levels of 4–6 parts per hundred monomer (phm). The grade is charged to the initial aqueous phase at 40–45 °C and agitated until a seed latex forms, after which the continuous monomer feed commences. Compared with PVA 1788 (viscosity 20–26 mPa·s, DP approximately 1700), the 088-04 yields a final emulsion with a Brookfield viscosity of 800–2500 mPa·s at 55% solids, whereas the 1788-based dispersion may exceed 6000 mPa·s. This lower viscosity reduces pump load on toothed-gear transfer pumps and permits higher throughput on falling-rod film applicators. The associated trade-off is a lower limiting film strength before heat activation, which can be compensated by co-stabilisation with hydroxyethyl cellulose or a secondary, higher-viscosity PVA.

    Rheological Profiles in Aqueous Systems and Compatibility Constraints

    Steady-shear rheometry on a 10% aqueous solution of PVA 088-04 at 25 °C reveals near-Newtonian behaviour up to shear rates of 100 s⁻¹, with a power-law index n = 0.95–0.98. At 20% solids, the solution transitions to shear-thinning with n ≈ 0.82 and a low-shear viscosity of 2200–2800 mPa·s. Temperature sensitivity follows an Arrhenius relationship with an activation energy of flow of approximately 18–22 kJ/mol, making viscosity highly responsive to modest temperature changes near 20 °C: a drop from 25 °C to 15 °C can double the dynamic viscosity, a factor considered when designing chilled-roller adhesive applicators. Several additive incompatibilities must be managed. The presence of borate ions—from borax, boric acid, or crosslinkers used in starch adhesives—induces instantaneous gelation via didiol complexation with the 1,3-diol sequences of the partially hydrolysed PVA. In paper-sizing formulations that move from batch to continuous jet cooking, the 088-04 must be isolated from borax decahydrate until the size press reservoir, or used in recipes substituting borax with ammonium zirconium carbonate at 0.2–0.5% dry basis. Interaction with multivalent metal salts, particularly Al³⁺ from aluminium sulfate retention aids, can generate turbid dispersions; the recommended addition sequence is PVA first, then pH adjustment with acetic acid to 4.5–5.0, then alum. Regulatory conformance for food-contact paper and paperboard follows the inventory listings of PVA under FDA 21 CFR 176.170 (Components of paper and paperboard in contact with aqueous and fatty foods) and FDA 21 CFR 175.105 (Adhesives). The substance is registered under REACH (EC number 618-340-9), and residual methanol is maintained below 1.0% per the GB/T 12010.6-2010 gas chromatographic method, supporting compliance with the German BfR Recommendation XXXVI for paper and board. Controlled comparative data for this specific grade against alternative protective colloids in textured-cementitious admixture applications are limited; published studies typically employ PVA with hydrolysis degrees of 86–90 mol% and broader viscosity distributions. The available Sinopec certificate-of-analysis databases indicate that the 088-04 designation targets an upper viscosity boundary (4.5 mPa·s) that ensures it is not interchangeable with the 05-series (5.0–6.0 mPa·s) in systems where rheology-driven particle nucleation prevails.
    Comparative Properties of Sinopec PVA Grades
    GradeHydrolysis (mol%)Viscosity (mPa·s, 4% aq., 20 °C)Approx. DPPrimary Application Domain
    088-04 (0488)87.0–89.03.5–4.5400–500Emulsion stabilisers, low-viscosity adhesives, paper sizing
    178886.0–89.020.0–26.01650–1750Textile sizing, high-strength adhesives, emulsifier for VAE copolymers
    179998.5–100.022.0–30.01700–1800Filament winding binder, polyvinyl butyral intermediate, barrier films
    248886.0–89.044.0–52.02400–2500High-viscosity paper coatings, remoistenable adhesives, temporary protective films
    When a converting plant transitions between 088-04 and 2488 in a continuous slot-die adhesive coating head, a purge cycle of no less than 3 pot volumes of heated water at 70 °C is mandatory to eliminate viscosity-driven streak defects. The Newtonian-to-shear-thinning crossover during run-out is a known source of visual non-uniformity on PET label stock. On a Nordson AltaBlue melt-on-demand system configured for aqueous PVA, the lower molecular weight of 088-04 permits a 15–20% higher line speed versus 1788 before onset of ribbing instability, as recorded on trials at 300 mm coating width with a shim thickness of 0.25 mm. This operational window is specific to the solids content window of 18–22% and would close if the hydrolysis degree drifted below 87.0 mol%, at which point foam stabilisation in the return trough escalates.