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Anhui Liwei Chemical Co., Limited.

CCP PVA TC-07P

    • Product Name: CCP PVA TC-07P
    • 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 378200
    Product Name CCP PVA TC-07P
    Manufacturer Chang Chun Plastics Co., Ltd.
    Chemical Name Polyvinyl Alcohol
    Cas Number 9002-89-5
    Appearance White granular or powder
    Degree Of Hydrolysis 87.0-89.0 mol%
    Viscosity At 4 20c 5.0-7.0 mPa·s
    Ph 6.0-7.0
    Ash Content ≤0.5%
    Volatile Content ≤5.0%
    Density 1.25-1.30 g/cm³
    Solubility Soluble in hot water, insoluble in organic solvents

    As an accredited CCP PVA TC-07P factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing CCP PVA TC-07P is packaged in 25 kg net bags with a polyethylene liner for safe handling and storage.
    Container Loading (20′ FCL) 20′ FCL container loading of CCP PVA TC-07P: palletized bags, securely stowed, ensuring safe transport and efficient use of space.
    Shipping Polyvinyl alcohol (PVA) resin, grade TC-07P, shipped as a dry white powder in moisture-protective sealed bags. Non-hazardous under normal transport conditions; not regulated as dangerous goods. Keep dry, avoid dust accumulation, and protect from excessive heat. Suitable for standard freight by sea, air, or road.
    Storage Store CCP PVA TC-07P in its original, tightly sealed container in a cool, dry, well-ventilated area. Protect from moisture, direct sunlight, and heat sources. Keep away from open flames, sparks, and strong oxidizers. Avoid generating dusty conditions; use appropriate grounding and static-discharge precautions. Always follow the supplier’s Safety Data Sheet recommendations.
    Shelf Life Shelf life is one year from manufacture when stored in original, tightly sealed containers in cool, dry conditions.
    Application of CCP PVA TC-07P

    Cold-slurry dispersion at 25% solids, followed by indirect steam injection to 92–95°C and a 40-minute hold under low-shear agitation, constitutes the critical cook profile for CCP PVA TC-07P when formulating warp sizing liquor for 100% cotton or cotton-rich ply yarns at Ne 30–60. Degradation onset is detected if the solution exceeds 98°C or the total residence time in the cook vessel surpasses 90 minutes; the resulting 15–20% viscosity loss directly translates into insufficient film tenacity at the split rod and size box, creating non-uniform size add-on that elevates loom stop rates by 3–7 stops per 100,000 picks on air-jet weaving machines. Compliance with ZDHC MRSL v2.0 and Oeko-Tex Standard 100 Annex 4 (formaldehyde < 16 mg/kg, no APEO) is verifiable through the absence of alkylphenol ethoxylates and heavy-metal catalysts in the polymer matrix. Size formulation build-up uses PVA TC-07P as the dominant film former at 50–80 wt% of dry size mix, with the balance comprising oxidized corn starch or low-viscosity acrylic co-polymer; targeted size add-on runs between 7–12% owf on the warp sheet. On a Benninger Sucker double-size-box slasher, the size box temperature is maintained at 86–92°C, pneumatic squeeze pressure is set at 12–18 kN/m front roll and 10–14 kN/m back roll to achieve wet pick-up of 110–135%, and the multi-cylinder drying curve progresses from 110°C on the first can to 135°C on the final cans, delivering a residual moisture content of 6–8% in the sized yarn. Zweigle hairiness testing of sized yarn typically records a reduction in S3 values of 40–60% relative to unsized control. The end product is warp beams for high-speed weaving of shirting, uniform fabric, and bed linen, with subsequent desizing accomplished in a wash box at 80°C with oxidative desizing agents such as ammonium persulphate at 2–4 g/L, achieving desizing efficiency above 95%.

    What Prevents OBA Quenching and Linting on High-Speed Sheeters for Woodfree Paper?

    When optical brightening agents (OBAs) are incorporated into surface size formulations on fine paper grades, the low electrolyte background of TC-07P—ash content < 0.5%, aqueous solution pH 6.0–8.0 at 4% concentration—eliminates the risk of OBA precipitation and quenching that is commonly observed with high-ash, higher-carboxyl-content binders. Surface sizing with TC-07P therefore maintains the CIE whiteness target above 150% (ISO brightness 104–106%) without additional OBA compensation. The formulation for a size press or film-transfer applicator operates at a circulation concentration of 4–8% solids, depositing a dry coat weight of 0.8–1.6 g/m² per side measured by differential weighing per ISO 536. Compliance with ISO 535:1991 (Cobb60 < 25 g/m² for copy paper), ISO 8791-2 for Parker Print Surf roughness, and FDA 21 CFR 176.170 when the finished sheet is intended for dry food packaging is validated on every jumbo reel. The dominant production configuration employs a Voith SpeedSizer with grooved metering rods operating at web speeds of 800–1,200 m/min, where the size solution is held at 45–50°C in a jacketed service tank to prevent thermal degradation and starch retrogradation; following application, the sheet passes through an infrared pre-dryer followed by steam-heated cylinders, with the first cylinder surface temperature not exceeding 80°C to avoid binder migration. Field data from sheeting lines running 70–120 g/m² woodfree grades demonstrate that TC-07P reduces linting dust by 40–50% on Böttcher-type dust counters and raises the Dennison wax pick number from 12 to 16–18. The converted end products are high-speed photocopy paper, inkjet media, and offset printing grades where internal bond strength measured by Scott bond exceeds 180 J/m².

    PVAc Emulsion Destabilisation Thresholds and Grafting Efficiency

    In semi-continuous vinyl acetate emulsion polymerization, partially hydrolysed PVA TC-07P (alcoholysis degree 87–89 mol%) functions not only as a steric stabiliser colloidal dispersant but also participates in radical grafting through the residual acetyl groups, generating PVA-g-PVAc copolymer that anchors the protective colloid to the particle surface. The process window is narrow: if the ammonium persulphate initiator feed rate exceeds the monomer reflux absorption rate—typically a molar ratio of initiator to monomer above 0.003—local ionic strength surges above 0.1 M chloride-equivalent, compressing the electrical double layer and triggering irreversible grit formation above 0.5% of emulsion mass (determined by filtration through a 40-mesh screen). Addition level of TC-07P is fixed at 2–5 wt% on total vinyl acetate monomer, pre-dissolved as a 5–10% aqueous solution in the reactor with the initial water charge. The process runs in a jacketed glass-lined or stainless-steel reactor with anchor impeller at 100–150 rpm; after charging 15% of the VAc monomer as the seed, the temperature is raised to 68–75°C, and the remaining monomer plus APS solution are metered over 3–4 hours while maintaining pH at 4.0–5.5 with sodium bicarbonate buffer. The resultant homopolymer or vinyl acetate-ethylene copolymer emulsion exhibits a particle size of 200–500 nm (PCS), Brookfield RVT viscosity at 20 rpm and 25°C within 1,500–4,000 mPa·s, and minimum film formation temperature near 5–10°C. The emulsion’s freeze-thaw stability is limited; repeated cycles cause coalescence unless 5–10% of a plasticizer or anti-freeze co-solvent is post-added. Regulatory compliance for the compounded adhesive covers EN 204 D3/D4 for load-bearing and non-load-bearing wood joints, ASTM D4236 for chronic health hazard labelling, and FDA 21 CFR 175.105 for indirect food contact adhesive applications when cured film extraction is below 0.5 mg/in² in heptane. The industrial end products are D3/D4 wood assembly adhesives, high-speed paper sack bottom paste, and labelling adhesives for glass bottles where wet tack of ≥6 N/25 mm on stainless steel is required.

    When C2ET Mortars Operate Below the Cellulose Ether Threshold

    Tile adhesives classified as C2ET under EN 12004:2017 must simultaneously meet tensile adhesion strength after water immersion, heat ageing, and extended open time. In formulations where cellulose ether dosage is reduced to 0.25–0.40% of dry mix to cut raw material cost or mitigate high-shear viscosity build-up, TC-07P is incorporated at 0.15–0.5% on the same basis to restore rheological stability and water retention above 95% measured by the filter paper method per EN 459-2. The addition permits a consistent open time beyond 30 minutes when tested on a C1-type concrete slab conditioned at 23°C/50% RH following EN 1346. Production-scale mixing is performed in a conical twin-screw mixer to a coefficient of variation < 5% across the batch; after water addition at the recommended 24–28% of dry powder weight, the mortar is stirred for 2 minutes, left to slake for 3 minutes, and re-stirred for 30 seconds before application with a 6×6 mm notched trowel. The final product is a C2ET or C2FT thin-bed adhesive for ceramic and porcelain tiles, with a transverse deformation exceeding 2.5 mm when cured for 28 days as per EN 12002. One documented incompatibility: TC-07P in highly alkaline Portland cement paste (pH > 12.5) can exhibit retarded dissolution unless intensive pre-dispersion is applied, and combination with polycarboxylate ether superplasticizers results in competitive adsorption that collapses open time below 10 minutes, making a separate compatibility trial mandatory before scaling.

    Remoistifiable envelope adhesives formulated with a 22% solids solution of TC-07P demand gravure cylinder parameters of 150 lines/cm and cell volume 14–16 cm³/m² to deposit a dry coating weight of 4.0 g/m² on 50 g/m² clay-coated kraft or glassine liner. The solution is prepared by dissolving TC-07P granules in water at 75–85°C with 5–10% glycerol (on PVA dry weight) as plasticiser and 0.1–0.3% defoamer; after cooling to 40°C the fluid viscosity ranges between 800–1,500 mPa·s at 25°C, suitable for gravure application without stringing. Coating is performed on a high-speed engraved-roll coater running at 150–300 m/min with forced hot-air impingement drying at 70–90°C in a three-zone tunnel, reducing residual moisture to < 2%. The re-moistenable character relies on the 87–89 mol% hydrolysis level of TC-07P, which presents a balance of hydroxyl groups for water re-activation and acetyl groups that prevent complete cold-water solubility and blocking under moderate humidity; however, storage above 75% RH causes tack development on the coated surface, necessitating polyethylene-lined moisture-barrier packaging. Compliance statements must reference FDA 21 CFR 175.105 covering indirect food contact adhesives for paper and paperboard and, for medical device packaging applications, EN 868-4:2017 which restricts leachable organics. Finished articles include security envelopes, postage stamp gum, paper splicing tape, and peel-open sterilisation pouch strips, all produced on high-speed finishing converting lines where accurate coat weight and absence of pinholes are verified online by capacitance or beta-ray sensors.

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    Certification & Compliance
    More Introduction

    CCP PVA TC-07P is a partially hydrolyzed polyvinyl alcohol (PVA) resin manufactured by Chang Chun Petrochemical, characterised by a 86.0–89.0 mol% degree of hydrolysis (DOH) and a 4% aqueous solution viscosity of 4.0–6.0 mPa·s at 20°C determined in accordance with DIN 53015. The product is supplied as a free-flowing white to pale cream powder with a volatile matter content not exceeding 5.0 wt% (ISO 4617:2000) and an ash content (as Na₂O) typically below 0.5 wt% (ISO 6854:2008). Its narrow molecular weight distribution and controlled residual acetyl content position TC-07P between cold-water-swellable low-DOH copolymers and fully saponified high-strength grades, offering a balance of surfactant-free colloidal stabilisation, film tensile strength, and controlled water sensitivity.

    What Distinguishes TC-07P from Conventional Partially Hydrolysed Grades?

    The defining departure from analogous products such as CCP BP‑17 (87.0–89.0 mol% DOH, viscosity 25.0–32.0 mPa·s) or standard 88 %-hydrolysed grades with medium viscosity lies in the markedly reduced solution viscosity coupled with retention of high ash cleanliness. During emulsion polymerisation, the lower molecular weight enables higher solids loading without exceeding critical shear stress thresholds in pumping and metering equipment. In continuous twin-screw devolatilisation units, a 0.5 wt% increase in TC‑07P protective colloid relative to a medium-viscosity grade shifts latex particle size distribution (PSD) from a monomodal 180–220 nm mean diameter toward a bimodal profile with a secondary population near 80 nm, observed via dynamic light scattering (ISO 22412:2017). This allows fine-tuning of rheology without co-surfactant addition, reducing total organic carbon load in reactor effluent. Ash reduction below the 0.5 wt% threshold directly suppresses thermal discolouration in hot-melt adhesive compounding, where residual sodium acetate acts as a catalytic dehydrator above 160°C.

    Polymer Colloid Architecture Without Conventional Surfactants

    In vinyl acetate, acrylate, and styrene-acrylic emulsion systems, TC‑07P functions as a single-component protective colloid and stabiliser. Grafting efficiency, measured by acetone extraction and 1H‑NMR end-group analysis, exceeds 60 % when the PVA is pre-dissolved at 90–95°C under moderate agitation (300–500 min−1 in anchor-stirred jacketed vessels) and pH is buffered between 4.5 and 6.0 with sodium bicarbonate or phosphate buffer. Below pH 4.0, acetal formation with residual aldehyde monomers accelerates, while above pH 7.5, base-catalysed ester hydrolysis increases residual methanol evolution and undermines latex shelf stability. Published production data from European acrylic dispersion plants indicate that replacing a 50:50 blend of alkylphenol ethoxylate surfactant and medium-viscosity PVA with 2.8–3.2 wt% TC‑07P (on monomer) yields coagulum levels consistently below 0.15 % on 100‑mesh screens for a butyl acrylate/styrene (60/40) copolymer, tested per internal quality control analogous to DIN EN ISO 4062:2017. Pre-filtration through a 50 µm bag filter prior to spray drying is recommended when latex is intended for redispersible powder production; failure to remove microgel particles originating from residual catalyst residues leads to powder caking at relative humidity above 55 %.

    CCP PVA TC‑07P — Standardised Specification Matrix
    PropertyTest MethodSpecificationUnit
    Volatile matterISO 4617:20005.0wt%
    Ash (as Na₂O)ISO 6854:20080.5wt%
    Degree of hydrolysisJIS K 6726:1994 (back-titration)86.0–89.0mol%
    Viscosity (4% aq., 20°C)DIN 530154.0–6.0mPa·s
    pH (4% aq. solution)ISO 976:20135.0–7.0
    Mean particle size (dry powder, d50)Laser diffraction (ISO 13320:2020)120–250µm

    Performance Limits in High‑Shear Adhesive Compounding

    Adhesive formulators incorporating TC‑07P into hot-press lamination adhesives encounter a narrow processing window when co-plasticised with glycerol or sorbitol. At glycerol loadings above 12 phr (parts per hundred resin), the Vicat softening point (A50 method, ISO 306:2022) drops below 45°C, compromising stack storage stability in tropical climates. Conversely, plasticiser levels below 5 phr render the adhesive film susceptible to brittle fracture at −10°C, with elongation at break falling below 50 % (ISO 527‑3:2018, specimen type 5). Equilibration of the powder to 15–18 wt% moisture content in a 25°C, 40 % RH conditioning chamber for 72 hours prior to melt blending suppresses bubble entrapment in single‑screw extruders with L/D ratios of 24:1 to 30:1. Direct blending into polyvinyl butyral (PVB) interlayer formulations is contraindicated; the residual acetyl groups in TC‑07P plasticise the PVB matrix at concentrations as low as 0.5 wt%, reducing glass adhesion measured by compressive shear testing (ISO 12543‑4:2021) by 15–20 % relative to formulations omitting secondary PVA.

    In textile warp sizing, TC‑07P is employed where cold‑water desizing is mandated and effluent COD constraints preclude the use of fully hydrolysed PVA grades requiring enzymatic or oxidative treatment. Size pick‑up on 100 % cotton ring‑spun yarn (Ne 30) applying a 7.5 % solution at 85°C in a single‑size box with squeeze‑roll pressure of 0.35 MPa yields size add‑on of 9–11 wt%. The film cold‑water dissolution time, measured per ASTM D6400‑19 modified to assess 25°C water, is 12–18 seconds, compared with >45 seconds for a 98 mol% hydrolysed grade of equivalent viscosity. Abrasion resistance (Zweigle G552 simulation) improves by 18 % when TC‑07P is premixed with 0.3 wt% polyethylene glycol (Mw 400) as a lubricity modifier, though yarn tensile elongation decreases by 2.1 percentage points. Caution is warranted when size reuse is practiced: the recirculation tank must be maintained above 20°C to prevent precipitation of the partial hydrolysate, and microbiological spoilage is more rapid than for fully saponified grades; an isothiazolinone‑based biocide at 15–25 ppm active ingredient is required for storage beyond 48 hours.

    Comparative Migration and Film Properties in Paper Coating Applications
    PropertyTC‑07PFully Hydrolysed PVA (98.5 mol%)Medium‑Viscosity Partially Hydrolysed PVA (88 mol%, 25 mPa·s)Test Method
    Water‑contact angle after 24 h immersion32°38°28°ISO 15989:2013
    Penetration depth into 80 g/m² woodfree paper (coating speed 800 m/min)4.8 µm2.1 µm6.3 µmCross‑section SEM/EDX
    IGT pick strength (uncalendered)0.92 m/s1.15 m/s0.88 m/sISO 3783:2006
    Acrylate monomer barrier (methyl acrylate permeability at 40°C, 60 % RH)8.1 × 10−13 g·cm/cm²·s·Pa3.6 × 10−139.7 × 10−13Cup method (ASTM E96/E96M‑22)

    Injection Moulding Release and Co‑binder Technologies

    In ceramic injection moulding of alumina green bodies, TC‑07P serves as both a surface‑active debinding aid and temporary binder. Feedstock containing 58 vol% alumina (d₅₀ 0.6 µm) and a binder system of paraffin wax, low‑density polyethylene, and stearic acid exhibits a 40 % reduction in injection pressure when 2.5 wt% TC‑07P is added relative to the organic phase versus an unmodified binder; however, published data for this specific configuration is limited to laboratory‑scale injection moulding machines (Arburg Allrounder 320C, 600 kN clamp force) and has not been validated on production tools exceeding 16 cavities. Thermal debinding ramp rates must not exceed 0.5°C/min in the interval 180–280°C to avoid blistering from rapid PVA decomposition. The ash specification below 0.5 wt% becomes critical in these applications; sodium levels above 0.3 wt% promote eutectic liquid‑phase sintering at temperatures as low as 850°C, distorting final part geometry. Combined thermogravimetric analysis‑Fourier transform infrared spectroscopy (TGA‑FTIR) of evolved gases confirms acetaldehyde and acetic acid as major decomposition products, necessitating exhaust ventilation with activated carbon filtration when debinding furnaces are operated in enclosed facilities.

    The product’s compatibility with boric acid crosslinking has been exploited in water‑soluble temporary protective films for automotive glass. When 4 % aqueous solutions of TC‑07P are cast with boric acid at 0.05–0.12 phr, a reversible network forms; peel strength on soda‑lime glass measured via ISO 8510‑2:2008 increases from 0.3 N/25 mm to 0.8 N/25 mm, yet dissolution in a 40°C water spray completes within 90 seconds. Excess boric acid above 0.15 phr induces irreversible gelation after 48‑hour storage at 40°C, a failure mode observed in multiple batch trials at a European film converter.