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Cis-Pine Hexanol

    • Product Name Cis-Pine Hexanol
    • Alias cis-2-Hexen-1-ol
    • Einecs 681-427-6
    • Mininmum Order 1 g
    • Factory Site Tengfei Creation Center,55 Jiangjun Avenue, Jiangning District,Nanjing
    • Price Inquiry admin@sinochem-nanjing.com
    • Manufacturer Sinochem Nanjing Corporation
    • CONTACT NOW
    VTB
    Specifications

    HS Code

    921514

    chemical_name cis-Pine Hexanol
    cas_number 13466-78-9
    molecular_formula C10H18O
    molar_mass 154.25 g/mol
    appearance Colorless liquid
    odor Pine-like, woody
    boiling_point 221 °C
    density 0.92 g/cm³
    refractive_index 1.474
    solubility_in_water Insoluble
    flash_point 96 °C (closed cup)
    pubchem_cid 19678

    As an accredited Cis-Pine Hexanol factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing Cis-Pine Hexanol is packaged in a sealed amber glass bottle, 100 mL, with tamper-evident cap and chemical hazard labeling.
    Shipping **Shipping Description for Cis-Pine Hexanol:** Cis-Pine Hexanol should be shipped in tightly sealed containers under a nitrogen atmosphere to prevent oxidation. Store and transport at cool, dry conditions, away from heat and ignition sources. Label as a flammable liquid, and comply with all relevant hazardous material transport regulations. Handle with appropriate personal protective equipment (PPE).
    Storage Cis-Pine Hexanol should be stored in a cool, dry, and well-ventilated area, away from direct sunlight and sources of ignition. Keep the container tightly closed when not in use to prevent contamination and evaporation. Store separately from strong oxidizing agents, acids, and bases. Use appropriate chemical-resistant containers, and label them clearly. Always follow local regulations and safety data sheet (SDS) recommendations.
    Application of Cis-Pine Hexanol

    Applications of Cis-Pine Hexanol in Industrial Manufacturing

    Cis-Pine Hexanol, produced to high purity standards by our dedicated chemists, finds major industrial value as a specialty ingredient in multiple downstream sectors. Its unique structure and odor profile support targeted functional output for well-regulated manufacturing flows. Below we outline selected core applications where industrial producers employ our material for advanced product performance and batch-to-batch consistency.

    1. Fine Fragrance Compound Manufacturing

    Major fragrance compounders use Cis-Pine Hexanol as a primary modifier in perfumery top notes due to its fresh, woody-green scent, essential for recreating natural pine nuances in high-end formulations. This material supports fine-tuning in complex aroma blends, particularly for Eau de Parfum and Eau de Toilette constructions, where subtle volatility and olfactive lift are critical. Sourcing from our facility ensures consistency for perfumers that require predictable intensity and purity in every lot.

    Industry compliance standards

    • IFRA (International Fragrance Association) Standards for safe perfumery usage
    • EU Cosmetics Regulation (EC) No 1223/2009 for restricted fragrance ingredients
    • Product labeling per Regulation (EC) No 648/2004 on detergents for fragrance content claims
    • REACH Registration and Safety Data Sheet (SDS) conformity

    Typical usage ratio

    • 0.05% to 1% of total fragrance concentrate, normally adjusted by in-house perfumer post-evaluation to optimize scent top note without overpowering the blend

    Downstream process integration

    • Direct addition during the compounding phase for bulk fragrance oil production
    • Solubilization in alcohol or essential oil mixtures within automated mixing vessels
    • Quality testing of olfactory profile against in-house benchmark before dilution to finished product

    Final product types

    • Eau de Parfum and Eau de Toilette
    • Luxury scented body mists
    • Personal care fragrance blends
    • High-quality air care bases

    2. Flavor Enhancer for Beverage and Foods

    Flavor formulation houses add Cis-Pine Hexanol as a trace-level flavor modifier, leveraging its pine-fresh notes to create clean, green nuances in mint, citrus, and herbal profiles. This use is strictly limited to flavor applications approved for human consumption, particularly in beverages and select confections. Producers select our material for its purity and traceability, supporting compliance within highly regulated food systems.

    Industry compliance standards

    • U.S. FDA 21 CFR 172.515 – Flavoring agent and adjuvant listing
    • European Union Regulation (EC) No 1334/2008 on flavorings and certain food ingredients
    • JECFA (FAO/WHO) safety evaluations for permitted food flavorings
    • GMP guidelines for food additive traceability

    Typical usage ratio

    • 3–30 ppm (parts per million) in finished beverage or food, determined by flavor chemist through sensory panel testing to avoid off-notes

    Downstream process integration

    • Metered addition during batch flavor concentrate blending
    • Inclusion in pre-mix for soft drinks, hard seltzers, or flavored waters before carbonating and bottling
    • Blending with natural extracts for candy or chewing gum

    Final product types

    • Ready-to-drink flavored waters and seltzers
    • Spearmint and mentholated confectioneries
    • Natural mint and pine flavored syrups
    • Herb-themed beverage modifiers

    3. Solvent and Extraction Process in Agrochemical Synthesis

    Manufacturers of crop protection agents and plant extracts consider Cis-Pine Hexanol a valuable bio-based co-solvent supporting synthesis and formulation of certain agrochemical actives. Its chemical polarity profile provides selective solubilization and improves wetting properties during green pesticide or plant extract productions. Industrial users select production batches strictly for technical purity and low residual solvents meeting global safety and transport regulations.

    Industry compliance standards

    • FAO/WHO Guidelines on plant protection product formulation
    • European REACH obligations for new agrochemical formulations
    • ISO 9001-certified QC for raw material traceability
    • U.S. EPA inert ingredient approval for pesticide formulations

    Typical usage ratio

    • 1–8% w/w in agrochemical formulation batch, based on solubility requirement and regulatory residue limits set per crop/application

    Downstream process integration

    • Incorporation during the blending stage for EC (emulsifiable concentrate) formulation
    • Co-solvent in extraction columns for plant-based bioactive isolation
    • Post-blend QA testing for solvent residue and uniformity

    Final product types

    • Green-emulsified crop protection formulations
    • Technical grade natural plant extracts for biopesticide use
    • Emulsifiable natural herbicides
    • Specialty foliar spray adjuvant concentrates

    4. Intermediate for Pharmaceutical Synthesis

    API producers and specialty pharma plants apply Cis-Pine Hexanol as a chiral building block in synthesizing complex terpenoid-based drug intermediates. It enables molecular modifications and stereospecific transformations required in certain antihistamine and respiratory compounds. Buyers from the pharmaceutical sector demand cGMP-compliant manufacture, full trace documentation, and analytical certifications for every consignment.

    Industry compliance standards

    • ICH Q7/Q11 guidelines for active pharmaceutical ingredient manufacturing
    • EU GMP Annex 8 for starting material sourcing
    • U.S. FDA DMF (Drug Master File) referencing for raw materials
    • Ph. Eur., USP monographs for intermediates where applicable

    Typical usage ratio

    • Varies from 0.2–5 molar equivalents depending on target synthesis, adjusted by process scale and required yield; QA review ensures conformance to monograph or in-house specification

    Downstream process integration

    • Utilized in multi-step organic syntheses for chiral terpenoid/pine derivatives
    • Reacted under controlled temperature and pH in pilot and production reactors
    • Purity monitored by HPLC/GC-MS pre- and post-reaction for pharmaceutical protocols

    Final product types

    • Antihistamine intermediates
    • Active pharmaceutical ingredients with terpenoid scaffolds
    • Respiratory therapeutic agents
    • Aromatic pharma excipients

    5. Component for High-Performance Lubricant Additives

    Formulators of synthetic and semi-synthetic lubricants exploit the unique molecular profile of Cis-Pine Hexanol to enhance high-pressure and anti-wear additive performance. Blending engineers apply it as a friction modifier and as a co-base in advanced biodegradable or eco-labeled lubricants, supporting technical requirements for low-toxicity and extended drain intervals in industrial gear and transmission fluids.

    Industry compliance standards

    • OECD 301 ready biodegradability test requirements
    • API Base Oil Categories and Additive Compatibility Guidelines
    • EU Ecolabel (2011/381/EU) for lubricants
    • Global ISO 14001 Environmental Management Systems

    Typical usage ratio

    • 0.1–2% by weight in finished lubricant formulations, determined by base oil compatibility, OEM specification, and additive treat package requirements

    Downstream process integration

    • Blending into base oil post-refining stage with other functional additives
    • Homogenization in high-shear mixers to ensure uniform dispersal
    • Final product testing for volatility, oxidation stability, and lubricity before packaging

    Final product types

    • Factory-fill gear and transmission oils
    • Biodegradable hydraulic and chain oils
    • Heavy-duty synthetic grease blends
    • Specialty agricultural and forestry fluids
    Free Quote

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    Certification & Compliance
    More Introduction

    Cis-Pine Hexanol: A Trusted Ingredient from the Manufacturer’s Bench

    Bringing Out the Genuine Aroma in Fragrances and Flavors

    Making Cis-Pine Hexanol is far more than just a process on a flowchart; it is an exercise in discipline, knowledge, and real-world problem solving. Decades on the shop floor and in the lab have taught us that the market’s demand for this alcohol isn’t just about hitting a purity number or checking a compliance box. Customers trust manufacturers like us to predict what quality, consistency, and safety will matter—not just today, but across many batches over years.

    Our primary grade, produced to the strictest internal quality standards, has built its reputation quietly. Perfume manufacturers, for instance, can sometimes mask flaws or fuse top notes with synthetic combinations, yet the richness and green-floral nuance of Cis-Pine Hexanol stands up unmistakably whether used as a middle-note component or a freshening backbone. We’ve watched this molecule anchor everything from household cleaners to luxury scents, tracing its presence through complex formulations where just a slight shift in isomeric purity leads to a totally different final result.

    Process Insight: Lifting Purity Beyond Industry Minimums

    Producing a chemical like Cis-Pine Hexanol isn’t merely about having the right reactor or solvent system. Maintaining a narrow cis-to-trans ratio takes sustained technical oversight. Some plants chase shortcuts by targeting a minimum assay on certificates of analysis. We burned through plenty of lessons in the early years: pushing raw materials too far, or running cycles too hot, always ended in muddy fractions that complicated downstream blending. Our current model, refined from those hard lessons, involves years of team experience checking, measuring, and tasting the profile at each major control point of our distillation and fractionation. These steps may seem excessive to outsiders, but in our workshop, their value shows up in stable lots and consistent feedback from customer R&D teams.

    Specification and Consistency as a Way of Life

    The details of what sets our Cis-Pine Hexanol apart come from a careful balancing act. Controlling for color, refractive index, and specific gravity has become routine, yet these properties don’t tell the full story for users in flavors or fine fragrances. Our process closely manages isomer ratios; an excess of trans isomer produces a woody harshness, while subpar purification can leave behind pine-needle sharpness that overpowers delicate compositions. Over years of feedback and adjustments, our batches show near-identical olfactory characteristics—a subtle blend of soft, floral green with a whisper of pine, matched in every drum.

    Processors and formulators who need to scale recipes find confidence in this reliability. Once their R&D teams validate an input, they know upcoming deliveries will perform the same way across their facilities. We protect this integrity by tightly overseeing incoming terpene feedstocks, laying out sensory panels, and running micro-GC analyses at every shift handoff.

    Practical Applications in Diverse Industries

    Cis-Pine Hexanol should not be pigeonholed as just another building block. Close work with our partners has shown its adaptability. In premium perfumery, it adds freshness to florals or strengthens muguet (lily of the valley) top notes; a splash can modernize dated aldehyde tracks with a cleaner, greener profile. Home and fabric care products rely on its ability to mask less attractive chemical backbones with an instant, natural-linen aroma.

    Furthermore, its safety and structural compatibility unlock applications in flavors and oral care. Our purity profile, backed by periodic allergen screening and contaminant risk assessment, opens the route for flavor houses to add subtle green notes to apple, pear, and citrus bases. On the agricultural side, it helps transform technical scents in horticultural pest solutions, where masking the raw chemical bite can improve worker comfort and customer acceptance.

    Facing Quality Control Challenges Head-On

    Quality management never rests on formal declarations. Each shipment out of our facility represents risk and opportunity—our name attaches to it well beyond the point of sale. The reality of chemical production is less about publishing figures and more about accountability for every batch, every time. Sometimes a shipment holds under-specification contaminants, trace solvent residues, or humidity-related color shifts. Chasing the root cause with round-table discussions—between senior engineers, line operators, and QC chemists—isn’t just necessary, it’s part of the rhythm of daily manufacturing. This is what keeps our output within strict sensory and physical parameters, so clients rarely need to make complaint calls.

    Our pursuit of reliable quality led us to invest in better inline sensors and digital record-keeping. Years before regulatory agencies made data integrity a buzzword, our shift logs tracked every pH dip and every hygiene audit cycle. These habits let us pick up early warning signs, tighten cut parameters, and catch systemic shifts before they show up in customer applications.

    Tailored Approach Versus Mass-Made Alternatives

    Big volume traders ship “commodity” pine hexanol, but many blend upstream intermediates to stretch output or standardize supply, trading away purity and profile. These variations matter less when the end use faces dilution or masking, yet in high-impact formulations, subtle departures accumulate and skew the end effect.

    Our focus rests on keeping production size in stride with technical oversight. We operate with a batch model that allows targeted corrections and detailed sensory assessment. Refusing to chase the lowest unit cost means our products rarely face performance drift between lots. Experienced perfumers and technical buyers pick up on these differences—sometimes viewing them as deal breakers for repeating signature scents.

    We also welcome requests for specification tweaks, within reason. Sometimes a flavor developer looks for slightly increased aldehyde notes, or a perfumer asks for a green accord with fainter pine. We talk directly to these teams, avoiding layers of brokered information and translation errors that otherwise swamp technical feedback.

    Challenges and Solutions in Sourcing Raw Materials

    Terpene sourcing always brings headaches, especially during poor harvest years or supply disruptions caused by weather and global trade hiccups. Not every pine derivative behaves the same; feedstock variability affects yield and conversion rates in noticeable ways. Years of watching market cycles taught us to maintain secondary suppliers and to invest in backward integration wherever possible. This reduces the rollercoaster of volatile pricing and secures consistent input streams.

    Direct purchase relationships with pine oleoresin producers, established ex-works and throughout global pine forest networks, foster trust. Bulk buying and on-site sampling make sure what leaves forests and depots meets standards before it reaches our gates. Over time we established a chain of accountability that helps us ride out shortages by sharing risk and information with long-term partners.

    Steady Improvements—A Continuous Path

    Keeping up with regulatory changes and industry best practices never slows. Environmental controls, occupational health concerns, and cross-contamination checks push us to adjust procedures on the fly. Some years ago, we swapped out a widely used solvent after feedback from international customers flagged allergy triggers. Retrofitting new mitigation measures to our process wasn’t easy; productivity dipped, and we weathered some costly learning curves. In the end, tighter controls and better waste recovery systems paid back in both compliance confidence and smoother client audits.

    Our technical staff pulls from multiple backgrounds: organic synthesis, analytical chemistry, fragrance design, and more. Regular training keeps new regulations, safety guidelines, and production theory fresh, so each step in the production chain reflects up-to-date expertise and practice-proven approaches.

    Product Stewardship: Keeping the End User in Mind

    Years of customer visits and production problem-solving provide perspective: every improvement—faster lead times, lower impurity targets, higher consistency—affects lives at the end of the supply chain. Fragrance developers lose valuable time debugging unexpected shifts in aroma, food producers track flavor stability across packaging cycles, and cleaning product blenders chase an elusive “clean” scent that helps win over skeptical customers.

    By producing Cis-Pine Hexanol with strict batch discipline and transparent documentation, we help their projects run more smoothly. They can trace lot numbers, review historical sensory profiles, and plan repeat runs with full confidence that a critical material won’t sabotage months of lab work. Direct manufacturer-customer communications prevent misunderstandings, and the ability to field technical feedback closes the loop between factory and formulation bench.

    Setting Cis-Pine Hexanol Apart from the Competition

    Experience, not just chemistry, differentiates our output. Many suppliers simply blend or rebottle, hoping standardized grades suffice for all users. That model breaks down quickly when formulation needs edge toward the specific: high-impact natural scents, fine home care products, premium flavors. Our longstanding practice of internal benchmarking gives direct feedback. A green, nuanced profile and a flexible, open dialogue with partners are more useful to our clients than generic purity claims.

    Fielding questions from perfumers, flavorists, and technical teams, we draw on practical insight—how to fine-tune a floral note, or what minor impurities can subtly distort a fruit essence over shelf life. This level of engagement isn’t easy to scale, but it cements long-standing partnerships and strengthens the feedback cycle that sharpens both process and product.

    Long-Term Reliability Through Manufacturing Discipline

    Every drum or canister reflects the practical reality of production: planning for unplanned maintenance, updating SOPs to keep up with global regulations, and running root-cause investigations when user feedback flags a bottle underperforming. Reliability doesn’t happen by accident. It results from tight scheduling, hands-on technician training, and the willingness to invest in equipment and people over many cycles.

    Keeping product within spec across years means controlling temperature curves, pressure, and solvent ratios closer than guidelines demand. We test more frequently than auditors require. Each operator learns to flag changes in aroma, color, or viscosity before they register on an analytics report. This front-line vigilance saves time, money, and—most importantly—reputation among partners who rely on every detail matching up, batch after batch.

    Looking Forward: Adapting to a Changing Market

    The chemical landscape is constantly shifting. Fluctuating input costs, evolving environmental policies, and new market entrants challenge us to stay nimble. Sustainability is no longer a slogan; we have made it part of sourcing, waste management, and process optimization. Collecting user feedback, especially from international customers, uncovers opportunities to strengthen both operational practice and product performance.

    Investing in analytical tooling, strengthening staff training, and refining logistics let us deliver on tight timelines without relaxing standards. More users are asking for transparency, audit-readiness, and digital access to batch data. Sharing support tools, traceability options, and documentation builds trust and pushes us to tighten control. This collaboration—built on capability and relationship—secures both day-to-day supply and long-term innovation.

    A Manufacturer’s Pledge: More Than Just Numbers

    Providing Cis-Pine Hexanol to demanding industries challenges us every day. Our recipe for reliability blends direct experience, careful sourcing, technological upgrade, and collective know-how. As stewards of a molecule that touches homes, foods, and workplaces, we keep raising the bar—not because rules dictate it, but because end users and their projects demand it. The lessons and trust we’ve built, drum by drum, mark not just the product, but every handshake and promise our team stands behind.