| HS Code | 599582 |
As an accredited LyondellBasell HDPE 50-2753 factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | LyondellBasell HDPE 50-2753 is typically supplied in 25 kg bags, palletized, stretch-wrapped, and shipped on standard industrial pallets. |
| Container Loading (20′ FCL) | Standard dry 20-foot FCL loading of LyondellBasell HDPE 50-2753, securely packed in 25 kg bags on pallets for overseas export. |
| Shipping | LyondellBasell HDPE 50-2753 is a non-hazardous high-density polyethylene resin, typically shipped as pellets in 25-kg bags, bulk bags, or bulk trucks/railcars. Transport in dry, clean containers; avoid moisture, heat, and UV. Not classified as dangerous goods; follow local regulations and prevent spillage. |
| Storage | Store LyondellBasell HDPE 50-2753 in a cool, dry, well-ventilated area away from direct sunlight, heat, sparks, flames, and strong oxidizers. Keep containers tightly closed and labeled, protect from moisture, dust, and UV exposure, and avoid static buildup. Maintain good housekeeping to prevent slipping on spilled pellets. Follow manufacturer’s SDS and local regulations. Inspect containers regularly. |
| Shelf Life | Shelf life is 2 years when stored in original packaging under cool, dry conditions, away from direct sunlight and heat. |
In 5–30 L monolayer extrusion blow-moulded industrial chemical containers, 50-2753 is formulated as the primary matrix resin at 97–99 wt%, with carbon black masterbatch at 1.0–2.0 wt%, UV stabilizer masterbatch at 0.5–1.0 wt%, and a shear-managed fluoropolymer processing aid at 0.02–0.10 wt%. The grade is selected for its bimodal molecular weight distribution, a published density of 0.950 g/cm³ under ISO 1183-1:2019, a melt-flow rate of 1.0–1.3 g/10 min at 190 °C/5.0 kg under ISO 1133-1:2022, and a 100 % Igepal environmental stress crack resistance value typically above 600 h under ASTM D1693-21 F50. Processing on a single-screw extruder with a barrier screw at 24:1–30:1 L/D uses a melt temperature of 180–200 °C, die-head temperature of 170–190 °C, and an accumulator shot capacity of 1.5–3.0 kg for 10–30 L jerricans. Mould coolant is held at 8–15 °C and blow pressure at 0.5–0.7 MPa; cycle times range from 90 s for 5 L to 180 s for 30 L. Compliance is achieved through UN 3H1 certification under the UN Model Regulations Chapter 6.1 and 49 CFR 178.509, with hydrostatic, drop, and stack testing; ISO 16101:2020 is used for aggressive chemical compatibility screening. Terminal articles are UN-approved 5 L, 10 L, 20 L, and 30 L plastic jerricans for solvent, acid, alkali, and petrochemical additive transport. The defining production-scale failure mode is parison sag above 200 °C, producing lower pinch-weld wall thickness and 10–15 % loss in stack-load strength when the melt deviates by more than ±5 °C from the validated setpoint.
Across 0.5–5 L household detergent and hard-surface cleaner bottle lines, the formulation ratio is shifted to 94–97 wt% 50-2753, 2–5 wt% colour masterbatch, 0.2–0.5 wt% antistatic concentrate, and 0.05–0.15 wt% lubricant/processing aid to maintain filling-line friction within high-speed capping and labelling tolerances. Continuous shuttle extrusion blow-moulding equipment with one or two parison heads runs at a melt temperature of 170–195 °C, mould temperature of 5–10 °C, and blow pressure of 0.4–0.6 MPa; a 1 L cycle time is commonly 12–18 s. The high ESCR of 50-2753 under ASTM D1693-21 is operationally relevant because detergent surfactants, hypochlorite bleach, and nonylphenol ethoxylates attack monomodal HDPE at handle pinch-off and mould seam welds after only weeks of warehouse storage. Regulatory compliance is governed by the EU Packaging and Packaging Waste Regulation (EU) 2025/40, REACH Regulation 1907/2006 Annex XVII restricted substances, and downstream recyclability documentation under ISO 14021:2016. Batch-to-batch colour masterbatch variation in melt viscosity is controlled by monitoring screen-pack differential pressure; a rise above 0.2 MPa indicates gel accumulation and requires die-gap adjustment of 0.2–0.4 mm to maintain top-load and drop-impact margins. Terminal product types include 0.5 L, 0.75 L, 1 L, 1.5 L, 2 L, and 5 L monolayer bottles with handle pinch-weld thickness greater than 1.8 mm for laundry detergent, fabric softener, hypochlorite bleach, and all-purpose cleaner formulations.
Substitution of a monomodal HDPE with 50-2753 in 1–20 L UN-rated agrochemical containers changes parison swell, melt strength, and environmental stress crack resistance simultaneously because the bimodal molecular weight distribution increases tie molecule density without an equivalent reduction in shear thinning. Formulation addition ratio is 98–99.5 wt% 50-2753, 1.0–2.0 wt% UV-stabilized masterbatch, and 0.1–0.2 wt% antioxidant concentrate. Accumulator blow-moulding is configured with die gap 1.8–2.5 mm, parison weight 0.25–1.2 kg, melt temperature 185–205 °C, and mould cooling 8–12 °C; the higher melt temperature is used only where off-line fluorination is specified as a secondary barrier. Regulatory certification for Packing Group II/III agrochemical products is under UN 3H1 with routine hydraulic pressure testing per 49 CFR 178.509, while chemical compatibility is screened with ISO 16101:2020 and ASTM D4919-22. Terminal packs are 1 L, 5 L, 10 L, and 20 L bottles for emulsifiable concentrates, suspension concentrates, adjuvants, and water-dispersible granule refill packs. Published data for monolayer 50-2753 against high aromatic-content solvent systems are limited; products containing more than 30 % aromatic hydrocarbon carriers typically require fluorination or a coextruded polyamide barrier because monolayer HDPE permeation can exceed permissible regulatory loss rates for these formulations.
Automotive lubricant and diesel exhaust fluid (DEF) container walls require low-temperature ductility and avoidance of trace metal contamination. Formulation uses 97–99 wt% 50-2753, 1.0–2.0 wt% carbon black or grey UV masterbatch, and 0.05–0.15 wt% acid-neutralizing stabilizer. Processing on accumulator blow-moulders with multi-cavity stackable container tooling uses melt temperature 180–200 °C, die temperature 175–195 °C, blow pressure 0.55–0.75 MPa, and mould temperature 5–12 °C; cycle time for a 20 L stackable container is 45–70 s. The notched Charpy impact strength at −30 °C of 5 kJ/m² under ISO 179-1:2010 supports drop resistance after refrigerated transport and cold-chain storage. Compliance for DEF containers is anchored to ISO 22241-3:2019 for handling and storage of AUS 32, with trace metal contamination limits specified in the standard; lubricant containers shipped as dangerous goods additionally require marking and stack-load testing under 49 CFR 178.509. Terminal products are 5 L, 10 L, and 20 L containers for diesel exhaust fluid, engine lubricants, gear oils, and antifreeze/coolant. Published data for 20 L stackable DEF container top-load creep in this specific grade are limited; pilot validation under 40 °C warehouse load for 14 d is required before line qualification.
When potable water contact is required, the formulation for 10–25 L water canisters shifts to 98–100 wt% 50-2753, 0.5–1.5 wt% blue masterbatch, and 0.05–0.2 wt% antioxidant concentrate; no post-consumer recyclate is introduced. Extrusion blow-moulding uses a melt temperature of 175–195 °C, parison weight 0.4–1.8 kg, blow pressure 0.5–0.8 MPa, and mould coolant at 10–20 °C; the lower melt temperature reduces oxidative degradation and organoleptic carryover. The pinch seam must be post-trimmed and measured above 2.0 mm wall thickness at the base weld to avoid leakage after repeated drop cycles. Compliance is defined by FDA 21 CFR 177.1520, EU Regulation 10/2011 Annex I overall migration below 10 mg/dm², and, where certified, NSF/ANSI/CAN 61; processing under ISO 22000 HACCP conditions is typically imposed by brand specifications for drinking-water containers. Terminal products are 10 L, 15 L, 20 L, and 25 L still-water containers and camping canisters. Published data for the specific 50-2753 organoleptic profile after long-duration potable water storage are limited; sensory testing under EN 1622:2006 for odour and flavour is required at application validation.
Closed-loop regrind streams in 20–30 L non-food industrial container production use virgin 50-2753 at 70–80 wt%, dry high-integrity post-consumer HDPE regrind at 20–30 wt%, stabilizer masterbatch at 0.5 wt%, and processing aid at 0.05 wt%. Reclaimed material is shredded, ferrous/non-ferrous separated, and melt filtered through 100–150 mesh screens before gravimetric dosing. The extruder is a grooved-feed single-screw at 25:1 L/D, with melt temperature 175–195 °C and die temperature 170–185 °C; reduced melt strength from regrind requires lowering the parison drop rate by 5–10 % compared with virgin-only operation to control wall thickness distribution. Compliance is set by EU Packaging and Packaging Waste Regulation (EU) 2025/40 recycled content targets and ISO 14021:2016 for recycled content claims; food-contact use is excluded because trace contaminants in the PCR stream cannot be demonstrated under EU Regulation 10/2011. Terminal articles are non-food 20 L and 30 L industrial cleaner containers, de-icing fluid packs, and closed-loop transport jugs for non-regulated liquids. Published comparative data for 50-2753 with high-integrity PCR are limited; the operational limit is 30 wt% regrind because higher levels require line validation to quantify ESCR and tensile-strength shifts under ASTM D1693-21 and ISO 527-2.
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