Pine Oil

    • Product Name: Pine Oil
    • Alias: POIL
    • Einecs: 232-763-1
    • Mininmum Order: 1 g
    • Factroy Site: Yudu County, Ganzhou, Jiangxi, China
    • Price Inquiry: admin@ascent-chem.com
    • Manufacturer: Ascent Petrochem Holdings Co., Limited
    • CONTACT NOW
    Specifications

    HS Code

    659786

    Name Pine Oil
    Appearance Clear to yellowish liquid
    Odor Strong, pine-like scent
    Boiling Point Celsius 195-207
    Solubility In Water Insoluble
    Density G Per Ml 0.94-0.98
    Flash Point Celsius 65
    Chemical Formula C10H18O
    Main Component Alpha-terpineol
    Refractive Index 1.474-1.482
    Melting Point Celsius -24
    Molecular Weight G Per Mol 154.25
    Ph Neutral
    Origin Derived from pine tree needles, twigs, and cones
    Uses Disinfectant, cleaning agent, fragrance

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

    Packing & Storage
    Packing Pine Oil is packaged in a 5-liter HDPE drum with a secure screw cap, labeled with hazard symbols and usage instructions.
    Shipping Pine oil should be shipped in tightly sealed, chemically resistant containers to prevent leakage and evaporation. Store and transport in a cool, well-ventilated area away from heat, sparks, or open flame. Comply with local, national, and international regulations, labeling the container as flammable and including necessary hazard information.
    Storage Pine oil should be stored in tightly sealed containers in a cool, dry, and well-ventilated area, away from direct sunlight, heat sources, and incompatible substances such as strong oxidizers. It should be kept away from open flames and sources of ignition, as it is combustible. Appropriate labeling and secondary containment are recommended to prevent leaks and accidental exposure.
    Application of Pine Oil

    Applications of Pine Oil in Industrial Manufacturing

    Pine oil, obtained through the high-temperature distillation of selected pine tree species, serves multiple essential functions across major process industries. Our vertically integrated production ensures stable supply and consistent quality, enabling reliable downstream integration. Explore key industrial applications below, each presenting distinct regulatory, formulation, and process considerations.

    1. Household and Institutional Cleaner Manufacturing

    Leading disinfectant and cleaning product manufacturers incorporate pine oil for its solvent properties and distinct aroma in hard surface cleaners, degreasers, and sanitizing fluids. The oil's active antimicrobial action targets gram-positive bacteria and select fungus strains, supporting claims of germicidal effectiveness. Formulators adjust inclusion rates to balance cleaning performance with regulatory thresholds on essential oil usage, and downstream processes often require micro-batch blending under controlled environments to ensure product homogeneity. End products typically undergo in-process microbial efficacy tests and scent compliance before packaging.

    Industry compliance standards

    • U.S. EPA 40 CFR Part 158 (disinfectant regulatory requirements)
    • EU Biocidal Products Regulation (BPR, Regulation (EU) 528/2012)
    • U.S. FDA 21 CFR 182.20 (Generally Recognized as Safe for surface contact; not for leave-on skin)
    • ISO 9001:2015 (quality management for chemical blending)

    Typical usage ratio

    • 2–10% by total formulation mass; higher rates reserved for institutional degreasers
    • Ratios depend on surfactant load and required deodorizing levels
    • MIC protocols may reduce dosage if synergistic with quaternary ammonium compounds
    • Always validated by kill-time and residual scent requirements

    Downstream process integration

    • Added during main liquid batch blending
    • Emulsified with surfactants under gentle agitation at 35–45°C
    • Integrated post-CIP to avoid cross-contamination
    • Quality control sampling for turbidity and phase stability prior to bottling

    Final product types

    • Multi-surface disinfectant sprays
    • Floor and tile cleaning concentrates
    • Public washroom cleaners
    • Institutional liquid degreasers

    2. Industrial Metalworking Fluid Formulation

    The fluid and lubricant sector relies on pine-derived oil fractions to enhance lubricity, reduce foaming, and support rust inhibition in water-miscible metalworking fluids. Its natural emulsifying capacity stabilizes dispersions of oil in water systems, facilitating cooler-running cutting operations and reduced residue on metal parts. Downstream formulators set inclusion levels based on desired anti-fungal activity and compatibility with ferrous metallurgy, with ongoing monitoring performed through sump sampling and bioresistance assays. Finished fluids ship in drums after pH and phase tests.

    Industry compliance standards

    • ASTM D2881 (Water-Based Metalworking Fluids)
    • REACH (EC 1907/2006; SVHC monitoring)
    • OSHA 29 CFR 1910.1200 (HazCom)
    • German TRGS 611 (Coolant regulation)

    Typical usage ratio

    • 0.5–2.5% of concentrate formulation
    • Elevated doses in spray-mist and high-risk fungal environments
    • Adjustments based on sump microbial counts
    • Not suitable for high-tolerance or aerospace machining

    Downstream process integration

    • Direct addition to master blend prior to dilution
    • Emulsification in high-shear homogenizer at 20–40°C
    • Mix tank filtration to 100 μm for debris removal
    • Bulk packaging after phase and microbial QC approval

    Final product types

    • Water-based cutting fluids
    • Metal cleaning and degreasing emulsions
    • Corrosion-inhibiting coolants
    • Industrial rust preventive sprays

    3. Textile Scouring and Finishing Operations

    Pine oil acts as a wetting and emulsifying agent in the scouring, bleaching, and finishing of cellulose-based and synthetic textiles. Leading textile finishers select this raw material for its ability to solubilize oils, waxes, and sizing residues embedded in fabric, thus increasing water absorbency and improving dye uptake. Compliance with wastewater and occupational exposure regulations is essential, and the selection of batch versus continuous feed processes impacts dosage patterns. Technicians conduct routine endpoint analysis of fabric whiteness, hand-feel, and scent presence post-treatment.

    Industry compliance standards

    • OEKO-TEX® Standard 100 (chemical safety for textile processing)
    • ZDHC MRSL (Zero Discharge of Hazardous Chemicals)
    • REACH Annex XVII (Restricted substances)
    • ISO 14001:2015 (Environmental management for textile operations)

    Typical usage ratio

    • 0.2–1.5% w/w based on fabric mass
    • Adjustable for continuous vs. batch scouring
    • Lower rates for cotton, higher for polyester blends
    • Process-specific dilution when combined with anionic surfactants

    Downstream process integration

    • Dosage into scouring bath or saturator vessel
    • Combined with soda ash and surfactant mix
    • Cycled through high-temperature washers at 80–95°C
    • Fabric undergoes post-soaping rinse to manage residual odor

    Final product types

    • Bleached textile yarns
    • Processed woven and knitted fabrics
    • High-absorbency towel and medical textiles
    • Ready-for-dyeing fabric stock

    4. Pulp and Paper Pitch Control and Defoaming

    Manufacturers in the pulp and paper sector use pine oil in process water systems for pitch control, foaming suppression, and sticky removal. It helps emulsify and disperse hydrophobic wood resins (pitch) during Kraft and sulfite pulping, preventing agglomeration and reducing downtime linked to machine deposits. Downstream integration takes place at both the digester and white water circuit, and dosage depends on wood species, process water chemistry, and final grade requirements. Operators validate efficiency through deposit monitoring and foam height measurement throughout the wet end.

    Industry compliance standards

    • ISO 5263-1 (pulp disintegration method with chemical additives)
    • Nordic Swan Ecolabel (chemical input standards for paper)
    • REACH (SVHC substances)
    • U.S. FDA 21 CFR 176.210 (Defoaming agents in paper and paperboard)

    Typical usage ratio

    • 50–300 g/ton dry pulp, adjusted for wood pitch content
    • Higher end when processing pine/spruce wood
    • Monitored by pitch deposit frequency in process lines
    • Combined with other nonionic defoamers for enhanced efficiency

    Downstream process integration

    • Dosed directly to white water circuit or headbox inlet
    • Continuous injection via metering pumps
    • Pulp mixture passes through pitch reserve tank for uptake
    • Routine mill lab analysis ensures pitch reduction targets

    Final product types

    • Printing and writing paper grades
    • Kraft packaging boards
    • Hygiene and tissue papers
    • Specialty label and release papers

    5. Leather Degreasing in Tanning Plants

    Leather processing plants use pine oil as an effective degreasing aid during the wet processing and liming of hides. It facilitates the removal of natural animal fats and residual proteins, enhancing grain cleanliness and dye uniformity. Operators carefully regulate concentration based on hide thickness and fat content, with precise staging in paddle drums critical for process efficiency. Post-degreasing, hides enter washing and pickling baths to remove residues, routinely analyzed for residual odor and physical softness in QC labs.

    Industry compliance standards

    • REACH (chemical registration for substances in leather)
    • GMP EU 2023/2006 (Good manufacturing practice for process aids)
    • ISO 14046 (Water footprint management for tanneries)
    • Leather Working Group (LWG) environmental audit protocols

    Typical usage ratio

    • 0.5–2.0% relative to wet weight of hides
    • Increased dosage for thick bovine hides; less for goatskin
    • Concentration adapted based on pre-liming fat analysis
    • Adjusted for effectiveness with synthetic surfactant blends

    Downstream process integration

    • Direct addition to rotating paddle drums during degreasing cycle
    • Works synergistically with nonionic surfactants and alkali
    • Followed by water-intensive afterwashing and neutralization
    • Periodic drum discharge testing for residual fat content

    Final product types

    • Full-grain and corrected-grain finished leathers
    • Nappa and upholstery leathers
    • Footwear and fashion upper stock
    • Industrial leather products

    6. Oil-Based Paint and Varnish Additive

    Paint, resin, and wood coating manufacturers utilize pine oil as a naturally derived solvent and plasticizer for alkyd-based systems and select specialty varnishes. This raw material improves initial flow, aids pigment dispersion, and imparts a longer open time during application, beneficial for brush and roller coating lines. Regulatory compliance centers on VOC content, and downstream blending requires staged addition to avoid solvent-shock in resin phases. Finished product batches face routine gloss, viscosity, and odor evaluations to confirm specifications.

    Industry compliance standards

    • EU Directive 2004/42/EC (VOC requirements for paints and varnishes)
    • ASTM D4306 (Solvent specification for coatings)
    • ISO 9001:2015 (production quality control)
    • REACH (registration for industrial solvent use)

    Typical usage ratio

    • 3–10% by weight of total solvent phase
    • Concentration subject to final gloss, drying time, and odor requirements
    • Lower rates for clear varnishes to avoid yellowing
    • Stabilizer blend adjustments required for colored systems

    Downstream process integration

    • Added during pigment dispersion under slow-to-medium agitation
    • Emulsified into alkyd resin base pre-milling
    • Batch homogenization monitored for viscosity change
    • QC sampling for solvent compatibility and scent control

    Final product types

    • Alkyd solvent-based paints
    • Interior and exterior wood varnishes
    • Decorative enamels
    • Special effects and antique-finish coatings

    Free Quote

    Competitive Pine Oil prices that fit your budget—flexible terms and customized quotes for every order.

    For samples, pricing, or more information, please contact us at +8615365186327 or mail to admin@ascent-chem.com.

    We will respond to you as soon as possible.

    Tel: +8615365186327

    Email: admin@ascent-chem.com

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    Certification & Compliance
    More Introduction

    Pine Oil: Product Insights from a Chemical Manufacturer

    Understanding Our Pine Oil

    Driven by years in the chemical production business, we have watched pine oil stay a mainstay across sectors from household cleaning to specialty manufacturing. Our current model of pine oil, derived by steam distillation of authentic pine stumps and needles, offers a purity that our clients count on. We process pine oil to achieve a clear, fresh product with a recognizable, crisp woody aroma. Every batch we release meets the strict lab quality tests we set ourselves, not only to maintain consistency but to ensure safety and reliability in our customer’s hands.

    Most of the pine oil produced in our facilities falls in the 30-80% alpha-terpineol range. This matters because it underlines its solvency power, fragrance strength, and natural disinfectant properties. Clients who have visited our plant can see for themselves the steps behind true batch isolation and careful fractionation. These steps make a big difference; pine oils with lower alpha-terpineol concentrations often smell flat and can fall short when used in demanding applications. Achieving the higher specification means patience and precise process control, which we have refined over decades.

    Why Purity and Consistency Count

    Over the years, we've noticed that buyers often underestimate the differences between pine oil grades. Lower quality products, usually from non-manufacturer sources, tend to introduce off-notes or impurities that can affect both scent and performance. We use specialized equipment to screen out these unwanted fractions and water-soluble materials. End users in cleaning and disinfectant production, for instance, will immediately notice a cleaner, longer-lasting fragrance and more thorough emulsification when they work with our pine oil as opposed to lower quality blends.

    We have always made it a point to keep an open channel with technical managers at customer facilities. Their feedback helped shape our filtration and drying processes over the years. Sometimes, even a small amount of solvent residue or a slight deviation in distillation temperature can cause big changes in finished product color and scent. This sort of problem seldom comes up with our pine oil, thanks to a persistent effort on refining our process, batch documentation, and in-house lab analytics. Mistakes left unchecked can result in entire lines of floor cleaner or air freshener running off-spec. We do not ship pine oil with confusing or erratic results. It's a promise grounded in the manufacturing floor, where chemists and process engineers invest significant effort in preventive quality.

    Main Uses Based on Real Experience

    In our factory’s history, pine oil's main application has been as a raw material for home and industrial cleaners. Its solvency allows it to break down greasy residues, and dozens of cleaning products still rely on its surfactant compatibility. Control of the alpha-terpineol content doesn't just help ensure a powerful cleaning agent; it also supports stable emulsions. This becomes critical when formulating multipurpose cleaning fluids or gelled products that must stay uniform on the shelf.

    The disinfectant power of pine oil, rooted in the high alpha-terpineol fraction, remains a trusted tool for public health professionals. From hospital maintenance staff to municipal cleaning teams, our bulk shipments go directly into the production of surface sanitizers and deodorizing sprays. In these environments, even small variations in performance matter. As the manufacturer, we stand behind the data that supports consistent antimicrobial and antifungal properties, supported by published laboratory results.

    Historically, in textile processing, pine oil found purpose as a wool-scouring agent and a de-gumming facilitator for natural fibers. It works well in de-emulsifying systems, helping to separate grease from fiber with both effectiveness and minimal leftover residues. Our technical team has long worked with textile engineers to optimize dosage, tank-mixing, and rinsing protocols. The result is a wool product that keeps its integrity and a mill process with less unplanned downtime.

    Diversified Applications: Real Stories from the Field

    Pine oil breaks away from being just a cleaner ingredient. Over the years, our clients in the mining industry have put it to work as a frothing agent in flotation processes. Flotation depends on the reliable formation of fine bubbles, which depends on consistency in pine oil fractionation. Any plant manager working with ore separation knows that even a slight drift in frother quality can ruin tons of feed and waste valuable labor. After multiple on-site trials, mining engineers reported improved recovery rates once they sourced our pine oil and worked with our technical advisors to fine-tune dosage rates.

    Our partners in the fragrance and air care industries trust pine oil when formulating fresh notes for cleaning sprays, diffusers, and automotive products. Crafting these scents means tracking every nuance in the pine oil’s makeup. If the oil is contaminated or fractionally off-standard, fragrance chemists may see “muddy” notes or short-lived volatile blends. Over more than 10 years, we have been refining not just the raw pine oil but also the supply chain management supporting these sensitive applications, keeping oxidation and spoilage risk to a bare minimum.

    It shouldn’t get overlooked that agricultural suppliers order straight pine oil for use in adjuvant blends and natural pesticides. The same chemical attributes that break up household dirt also disrupt pest cuticles and egg membranes. As a result, our agricultural clients have been able to reduce synthetic surfactant dependence, and shift toward more sustainable field treatment protocols that fit emerging environmental regulation.

    A Comparative Look: Pine Oil and Other Common Chemicals

    Customers sometimes ask what sets pine oil apart from other solvents and cleaning fragrances. Unlike synthetic solvents, pine oil provides natural wetting and emulsification ability along with the familiar fresh scent. Many low-cost alternatives, such as glycol ethers or basic alcohol blends, lack that olfactory signature. In practice, not only do they fail to clean as gently on painted or delicate surfaces, but they also dissipate quickly or leave vapor residues regarded as harsher by both users and facility managers.

    Terpene blends, often marketed as “pine-scented” or “all-purpose”, mimic some of pine oil’s attributes but lack the layered fragrance depth and microbial action that comes from a well-controlled distillation process. Over the years, when formulations only substitute in generic terpene blends, our industrial clients often report a drop in cleaning strength, a duller scent, and more complaints from facility maintenance teams used to older pine oil-based products. On our factory’s blending lines, it became clear that only genuine pine oil-fraction, with naturally occurring alpha-terpineol, reliably delivers that classic heritage scent and dependable cleaning performance.

    Some cleaning chemistries source balsam turpentine oil or rosemary oil in place of pine. While these oils serve valuable purposes in flavoring or perfumery, they do not replicate the grease-lifting properties of high-grade pine oil, nor do they always emulsify as evenly in water-based cleaners. Performance has to be measured not just by analytical specification but by how well the oil plays in real industrial processes, where shifts in temperature, pH, or mixing speed can dramatically influence results. Through countless pilot batches and real-world trials, the reliability of genuine pine oil stands unmatched in head-to-head cleaning and stability tests.

    How We Maintain Reliable Supply and Standards

    Seasonal variability in our raw pine feedstock once caused headaches for production. Each year, aging forests, new harvest sites, or climactic quirks would throw off the resin content and oil yield. To keep our output stable, our factory set up multiple collection partnerships, investing in long-term contracts with sustainable forestry operations. We test incoming materials not just for yield but for key fraction ratios, water activity, and contaminant profile. This close connection to raw resin sources lets us select input batches that match our process requirements before distillation ever begins.

    On the production line, distillation remains the backbone of pine oil quality. We use fractionation columns built for close control, monitored by both digital measurement and experienced plant chemists. Every distilled batch goes through gas chromatography, bench odor testing, and cloud-point measurement. In the past, we learned the hard way that skipping one of these steps can yield unwanted compounds or masked odors, both of which end up causing trouble downstream.

    Pine oil's shelf life and stability are shaped by our attention to storage and packaging. We moved from basic drums to coated containers with vapor-tight seals after a thorough review with long-distance buyers, who pointed out subtle changes in odor and volatility from poorly sealed shipments. Temperature, time, and exposure to light all impact pine oil's fragrance and physical properties, so we keep our finished inventory in shaded, temperature-controlled warehouses. Staff rotate batches using a time-stamped inventory system, lowering the chance of oxidized or off-spec oil ever reaching a customer.

    Supporting Customer Innovation with Realistic Solutions

    Clients approach us not just for drum loads but for real problem-solving support. One long-time cleaning manufacturer sought a more stable pine oil-based disinfectant for regions with fluctuating water quality. We tested blend ratios and stabilizers right at our lab benches, then sent pilot runs to their plant for cross-testing. The result led to lower separation rates, fewer customer complaints, and a longer shelf life, all without sacrificing scent.

    Industrial users have worked directly with our technical team to adapt pine oil formulations for emerging machine cleaning cycles, such as ultrasonic tank cleaners or low-residue rinse chambers. The unique solubilizing action of high-grade pine oil supports these cleaning technologies, and our field engineers often visit partner plants, tuning dosage and providing hands-on staff training.

    Smaller clients, including artisan soap and candle manufacturers, have used our pure pine oil to both scent and modify the performance of their products. We maintain a transparent supply chain and issue detailed batch certificates with each order, easing the regulatory headaches smaller operations often face. We know how tough traceability and compliance can get even for modest-sized companies, so we build our documentation and after-sales protocols with their practical needs in mind, not just ticking off paperwork requirements.

    Pine Oil and Safety: What We Know and Practice

    The chemistry of pine oil deserves respect. Like all powerful natural oils, safe handling protocols remain non-negotiable on our shop floor. Workers receive regular training, and we outfit our filling and packaging areas with spill containment and vapor extraction. Through experience, we’ve learned to update these routines seasonally, to adapt to changing humidity and temperature profiles. Customers benefit when upstream diligence keeps contaminated or improperly blended oil out of circulation.

    We stay current with regulatory standards and toxicological research. Consistent communication with chemical safety boards and compliance experts helps us update MSDS guidance and product labeling as scientific understanding and regional requirements evolve. This experience translates into fewer incidents and fewer supply interruptions, which makes life easier for procurement teams down the line.

    Sustainability Through Experience

    Our work with forestry partners and resin harvesters brings a unique perspective on pine oil’s renewability. Unlike many petroleum-derived solvents, pine oil comes from managed forest cycles, supporting both rural economies and long-term land management plans. We regularly walk the supply grounds to verify harvest practices, check that no overcutting or habitat damage occurs, and ensure waste is minimized at each collection site. Feedback from communities and harvest crews drives continuous improvements, improving both material quality and the broader environmental impact of our operation.

    Manufacturing waste handling received a complete overhaul after several internal audits. Resin distillation creates organic byproducts, and our team looked at new ways to recover, purify, and repurpose these residues. A portion now enters soil amendment production or finds use as fuel in approved cogeneration plants. These efficiency gains let us provide customers with a lower-impact, greener product.

    Building on Tradition, Focusing on Reliability

    Generations of factory workers have put their expertise into producing pine oil that works in mission-critical, everyday settings. Clean environments, clear air, and reliable formulations start with what gets made in our plant—no shortcuts. Regular feedback sessions with clients and lab staff let us keep innovating while holding onto what matters most: consistency and trust. As the pace of industrial cleaning and specialty manufacturing speeds up, we remind ourselves that no cutting-edge substitute can quite match the track record of true, expertly-produced pine oil.

    Going beyond product, our emphasis remains on hands-on relationships. From scent testing with fragrance formulating labs to field training at food processing plants, we take learning from every corner. Our team stands ready to share insight built on actual batchwork, problem-solving, and years of customer feedback.

    A Final Word from the Manufacturer

    Looking at the pine oil sector from inside the plant walls, success has always stemmed from steady process control, raw material knowledge, and tight alignment to real customer needs. We work to deliver not just a barrel of oil, but a promise: that every shipment reflects the highest standard of safety, authenticity, and performance our team can achieve. By openly addressing challenges, sharing our story, and listening to those we supply, we keep advancing the integrity and reliability that our clients have come to expect. The enduring value of pine oil begins in the forest, comes to life in the distillation column, and reaches completion in the practical results delivered every day by the countless businesses and professionals who depend on it.

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