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China Eugenol Manufacturer | Eugenol Supplier & Exporter CAS 97-53-0

As a China-based Eugenol supplier and manufacturer, I provide Eugenol ,Eugenol ,CAS 97-53-0, Eugenol Supplier ,Eugenol Manufacturer, Eugenol Factory, Eugenol Exporter, with consistent quality and reliable supply for flavors, fragrances, and pharma intermediates. My Eugenol is sourced from trusted producers, refined in my own facility, and offered in grades suitable for solvent extraction, scent compounding, and resin protection. I understand the importance of stable pricing, steady delivery, and regulatory compliance for B2B buyers. I offer flexible packaging options, from drums to bulk ISO tanks, with explicit QA documentation and batch certificates. As an Eugenol Factory and Exporter, I can tailor terms to your needs—FOB, CIF, or DDP—plus support for long-term supply contracts with China manufacturing standards. If you're seeking a dependable Eugenol Manufacturer and supplier in China, I am here to help your production line skip downtime and maximize fragrance yield. Let me know your required quantity, purity, and delivery schedule, and I’ll prepare a competitive quote.

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Global buyers seeking Eugenol (CAS 97-53-0) know that purity, grade, and traceability drive downstream performance. This core aromatic compound is used in flavors, fragrances, cosmetics, and pharmaceutical intermediates, so it must meet strict quality standards. A reliable supplier–manufacturer–exporter partner offers competitive pricing, a robust supply chain, and consistent batch quality with flexible packaging to fit production schedules. Whether you need technical, pharmaceutical, or food-grade Eugenol, the partner should align with your specifications and regulatory requirements. Effective global sourcing relies on transparent documentation, third-party certifications, and responsive technical support. Key criteria include purity targets (often 99%+ for higher grades), residual solvents, COA and GC–MS reports, GMP/ISO compliance, and ready samples for evaluation. A trustworthy supplier provides flexible packaging options (drums, bags, IBCs), clear storage guidance, and reliable shipping terms to minimize risk in cross-border shipments. Clear traceability and proactive communication turn a commodity into a strategic asset.

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Dimension Data Unit Notes
Chemical name Eugenol Commonly used name in perfumery and flavors
IUPAC name 4-allyl-2-methoxyphenol Preferred IUPAC designation
CAS number 97-53-0 Unique chemical identifier
Molecular formula C10H12O2 Empirical chemical composition
Molecular weight 164.20 g/mol Calculated from atomic masses
Boiling point 254 °C At standard pressure (1 atm)
Flash point ~93 °C Flammable liquid; requires proper ventilation and storage
Density 1.07 g/cm³ Approximate value at 25 °C
Solubility in water Sparingly soluble Soluble in ethanol, acetone, ethers; limited in water
Natural source Clove oil (Syzygium aromaticum) Major natural source; presence in other essential oils
Common uses Fragrance ingredient; flavoring agent; cosmetic and pharmaceutical intermediate Widely utilized in perfumery and flavor industries
Storage condition Cool, dry, well-ventilated place Avoid heat, open flames, and oxidizers
Regulatory note Commonly approved as a fragrance ingredient Usage must comply with regional cosmetic and flavor safety guidelines
Hazards Flammable liquid; potential skin/eye irritant Handle with PPE; use in well-ventilated areas
Data are representative properties and typical usage information. For exact regulatory and handling guidance, consult the material safety data sheet (MSDS/SDS) or supplier documentation. This table avoids listing company names, brands, contact details, prices, or inventory.

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Data Dimension: Temporal Variation in Eugenol Purity

This chart presents the monthly Eugenol purity values across a synthetic year to illustrate how a key quality attribute can vary with time in a chemical manufacturing setting. The data dimension is Temporal Variation in Eugenol Purity, expressed as a percentage. Values were generated to resemble a typical production environment, with minor batch-to-batch fluctuations and occasional process adjustments. The purity ranges from about 94.2% to around 98.0%, reflecting the influence of feedstock variability, distillation efficiency, and purification steps. The line shows a general upward trend from January through August, reaching a peak near late summer, followed by a slight decline and stabilization toward year-end. Such patterns can arise from improvements in reaction control, resin or column performance, and operator experience with the purification sequence. While the numbers here are synthetic, they demonstrate how a single time-series metric can highlight underlying process dynamics and potential risk points in the supply chain for a specialty chemical like Eugenol. For decision-makers, this metric is most informative when combined with related indicators such as yield, impurity fractions, energy consumption, and batch size. For instance, a rising purity accompanied by a stable or rising yield may indicate efficient purification, whereas purity dips that coincide with higher production volumes could signal bottlenecks or equipment drift. Visual cues such as sustained deviations from target purity can trigger maintenance checks, supplier qualification reviews, or adjustments in process parameters to prevent quality excursions. Longitudinal charts enable trend analysis, seasonality detection, and forecasting, supporting proactive quality assurance and inventory planning. The synthetic dataset demonstrates the value of simple time-series charts in communicating process health to engineers, quality managers, procurement teams, and executives. In future work, extending the data to multiple years and incorporating external drivers—raw material lot quality, ambient temperature, or energy prices—could provide deeper insight into causal relationships and help optimize the overall efficiency and reliability of Eugenol production and handling.

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