Products

Oleamide Ethanolamine

    • Product Name: Oleamide Ethanolamine
    • Alias: 9-Octadecenamide, N-(2-hydroxyethyl)-
    • Einecs: 308-029-4
    • Mininmum Order: 1 g
    • Factroy Site: Yudu County, Ganzhou, Jiangxi, China
    • Price Inquiry: admin@ascent-chem.com
    • Manufacturer: Ascent Petrochem Holdings Co., Limited
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    Specifications
    HS Code 732118
    Cas Number 9036-39-5
    Molecular Formula C20H41NO2
    Molecular Weight 327.54 g/mol
    Appearance White to off-white waxy solid
    Odor Characteristic fatty odor
    Solubility In Water Insoluble
    Boiling Point Decomposes before boiling
    Density Approximately 0.98 g/cm³ at 25°C
    Applications Surfactant, emulsifier, lubricant

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

    Packing & Storage
    Packing Oleamide Ethanolamine is packaged in a 25 kg fiber drum with an inner polyethylene bag for moisture protection and secure transportation.
    Shipping Oleamide Ethanolamine is shipped in tightly sealed, chemical-resistant containers to prevent moisture and contamination. Containers are labeled according to regulatory standards and handled with care. Shipments are secured against movement and protected from extreme temperatures, with documentation provided for safe handling during transit and storage. Compliance with local and international transport regulations is maintained.
    Storage Oleamide Ethanolamine should be stored in a tightly sealed container, protected from light, moisture, and air. Store at room temperature (15–25°C) in a cool, dry, well-ventilated area, away from incompatible substances such as strong oxidizers or acids. Label the container appropriately and follow all relevant safety guidelines for storage of organic chemicals.
    Application of Oleamide Ethanolamine
    Purity 98%: Oleamide Ethanolamine with 98% purity is used in polymer compounding, where it ensures consistent slip performance and reduces processing defects. Viscosity Grade 200 cP: Oleamide Ethanolamine of 200 cP viscosity grade is used in lubricant additives, where it enhances surface wetting and decreases friction coefficients. Melting Point 73°C: Oleamide Ethanolamine with a melting point of 73°C is used in plastics manufacturing, where it provides uniform dispersion and controlled fusion behavior. Molecular Weight 326 g/mol: Oleamide Ethanolamine at 326 g/mol molecular weight is used in coatings formulations, where it improves film flexibility and adhesion strength. Particle Size <50 µm: Oleamide Ethanolamine with particle size below 50 µm is used in masterbatch production, where it delivers superior blend uniformity and material flow. Stability Temperature 180°C: Oleamide Ethanolamine with stability up to 180°C is used in high-temperature extrusion processes, where it maintains chemical integrity and prevents degradation. Water Content <0.2%: Oleamide Ethanolamine with water content under 0.2% is used in ink formulations, where it guarantees optimal pigment dispersion and print consistency. Acid Value <5 mg KOH/g: Oleamide Ethanolamine with acid value less than 5 mg KOH/g is used in adhesives, where it enhances shelf stability and curative efficiency. Storage Stability 12 Months: Oleamide Ethanolamine with 12 months storage stability is used in bulk chemicals supply, where it reduces inventory losses and maintains reactivity. Color Index ≤2 (Gardner): Oleamide Ethanolamine with Gardner color index of 2 or less is used in transparent film applications, where it preserves optical clarity and aesthetic appeal.
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    More Introduction

    Oleamide Ethanolamine: A Closer Look from the Production Floor

    Understanding Oleamide Ethanolamine

    In the chemical manufacturing environment, daily production leaves little room for mystery on what goes into a product and why it matters. Oleamide Ethanolamine does not fit into a category of commodities that come from the drawing board of a laboratory. The story begins with raw materials—oleic acid-derived amides and refined monoethanolamine. On our production lines, workers measure, react, and purify every batch to tight consistency. The process uses closed reactors and monitored temperature profiles to reach the right balance, avoiding excessive byproduct residue. No two workers will describe the scent of an in-progress reaction the same, but there’s a moment when operators can tell that the batch is right for final polishing.

    Across industries, requests for Oleamide Ethanolamine usually start with a particular goal in mind. This chemical is specifically known for its lubricity and antistatic properties, which turn heads in plastics and rubber manufacturing. Often the call will come from a processor struggling with melt flow or static issues. Oleamide Ethanolamine offers an alternative to classic slip agents—improving surface feel, reducing static charge, and extending equipment life without introducing unwanted migration. By connecting the fatty amide backbone with the hydrophilic ethanolamine, a higher degree of affinity to polar polymers emerges, ensuring the additive does not leach or bloom under common processing conditions.

    The Details Behind Our Model and Specifications

    We have settled on a working specification that exceeds minimum commercial grades. Typical product comes off our line pale amber and viscous, treated for consistent amine value and checked for byproducts that can compromise downstream properties. Moisture content stays low. Every lot runs through IR, HPLC, and GC analysis on-site to eliminate surprises after delivery. Over the years, feedback from film extruders and compounders has shown us that too much residual amine can throw off viscosity measurements or increase yellowing under heat, so we have adjusted both our quench and filtration methods to keep these in check.

    Production teams maintain close relationships with trusted bulk suppliers. When new drums arrive for a run, the first test always goes to compatibility with the target specification. It feels different than buying a ready-made intermediate from a catalogue, where composition can vary. For our output, we track each batch, confident enough to stake process warranties on the typical acid value < 5 mg KOH/g and primary amine levels below a set threshold, meeting particle dispersion requirements in masterbatches and films.

    Real World Usage: Why Oleamide Ethanolamine is Chosen

    Clients ask for Oleamide Ethanolamine for reasons directly related to their daily problems. Our technical team often gets calls about finished goods that stick together in bags, films that cling to cooling rollers, or extruders losing throughput due to static charge. Here, a classic fatty acid amide like oleamide may not be enough. Standard oleamide migrates quickly, sometimes leading to blooming, which forms a visible deposit and can interfere with printability or surface quality. By integrating ethanolamine, the end product achieves a better relationship with polar plastics such as polyethylene terephthalate, nylon, and certain copolymers, resisting the urge to migrate.

    In cement and construction mixtures, formulators use this compound as a specialty antistatic or lubricity-modifying agent, taking advantage of its dual hydrophilic–lipophilic structure to manage flow and blend with cementitious particles. Our quality control chemists ensure that any residual contaminants—especially unreacted free amine or acid—remain below detection limits, something especially critical as the end user must not compromise compressive strength or moisture resistance.

    Comparing Oleamide Ethanolamine with Other Additives

    We have handled a range of alternative slip and antistatic agents. Average commodity slip agents like erucamide or simple fatty acid amides do a fair job in optical films and bags but often result in rapid blooming, which can mean performance loss over time. Oleamide Ethanolamine differentiates itself by offering a high melting point with improved retention within polar matrices. For manufacturers who run cycles at high temperature or prepare food-contact films, the migration profile of each additive determines product safety and quality. By offering a binding ethanolamine group, this molecule resists extractables even after extended use or exposure to light and heat.

    Some customers have switched from simple long-chain fatty acid amides to our product because they tired of rejection rates for visible haze, changes in gloss, or transfer of slip to the opposite surface. Qualitative feedback has always favored the use of Oleamide Ethanolamine where consistent antistatic performance matters, from packing films to conveyor manufacturing. There is also a measurable reduction in the tendency of finished parts to attract and hold dust particles in the supply chain—the ethanolamine functional group binds environmental moisture and prevents static buildup by offering a mild but persistent surface conductivity.

    Solving Problems with Ingredient Design

    Our own production team knows the pressure points. Keeping feedstock purity high means we spend more on refining base oleic acid and purifying ethanolamine. Some would cut corners, but we have seen firsthand how minor contaminants in these inputs creep into finished product, showing up as reduced shelf life or problems during thermal cycling. In coating applications, poor purity can result in unwanted color or odor in the final item, ruining an entire production run. We keep a close eye on each reaction stage, removing decomposition products before final filtration.

    The production floor sees repeated requests for customizations. Some specialty film clients require narrow melting point distribution for applications in microelectronics. Our engineers adjust reactor profiles—changing mixing rate and temperature ramp—to match these specs. Every change on the production line reflects a direct customer need, not textbook regulation, and has been verified by pilot runs to avoid surprises in commercial scale output.

    Down-to-Earth Manufacturing Insights

    Unlike mass-market resins pumped out by the megaton, Oleamide Ethanolamine relies on controlled and contained runs—everyday experience tells us that careless upscaling immediately introduces batch-to-batch variability. A steady eye on reaction kinetics prevents overreaction or degradation, observed by operators through careful sampling and not simply trusting readings on a display. Teams perform FTIR and acid-base titration not only as checks, but to troubleshoot downstream issues for our customers. If somebody calls with a viscosity problem in their extrusion line, there is already an operator in the plant who has seen similar results in pilot scale. This insight feeds back into process design.

    Over time, the production environment has identified a few non-negotiables for this product. Trace water must stay out of the reactor, as water upsets both conversion rate and the physical consistency of the end product. The smallest percentage of unreacted starting material will cause haziness in transparent films or introduce unpredictable friction coefficients in slip-modified surfaces. For this reason, we favor precise feeding, real-time monitoring of byproducts, and verified end point testing. Our batch records detail each deviation and its correction; we have learned that quality control after the fact can't fix a poor input or cutting corners.

    What Sets Our Approach Apart

    Our philosophy comes from hands-on experience. We don't just follow numbers on supplier data sheets. Our technical department collaborates with clients who perform their own incoming analysis, cross-referencing sample runs and final product grades. This feedback loop means that improvements to the product actually reflect in better running processing lines, not just abstract spec sheets. When customers report changes in performance, we trace back every drum, compare analytical profiles, and tweak reaction conditions to restore the benefits they expect.

    This feedback culture extends to developing new applications for Oleamide Ethanolamine. As emerging markets push for biopolymer alternatives, we're already testing compatibility with newer substrates. Recent years saw an uptick in requests from automotive cable and wire manufacturers seeking both lubricity and antistatic effects. We work side by side with end users, adjusting degree of substitution and process routing to ensure effective dosing without compromising flame retardant grades or UV stability. No batch leaves our plant without certification for the major markers that customers require: controlled melting range, tightly held amine values, and extremely low volatile content.

    Listening to Real-World Challenges

    Anyone in the chemical business sees a steady stream of questions from process engineers who find standard additives fail under unique process settings. It is rarely a textbook issue. Sometimes lines run hotter, other times additive packages need strict limitations on leachables due to downstream FDA or REACH submission. One manufacturer described a problem with films used in pet food packets, where too much slip led to surface whitening under storage. We fine-tuned the ethanolamine level to optimize for both migration resistance and slip, sending pilot lots till their lines passed both physical and lab tests. Solutions don't come from issuing new data sheets—they come from understanding where the pain points sit in practice, then addressing them through clever feedstock selection or pilot-scale tweaks.

    We have seen customers attempt to reduce cost by purchasing cheaper amides from the open market, only to face higher rejection rates from inconsistent melting points or unexpected blooming. Our own records show that higher up-front investment in ingredient tracking and process consistency pays off downstream. Production complaints fall, rework costs drop, and processor satisfaction increases.

    Why Oleamide Ethanolamine Finds Loyal Users

    Few other additives strike such a practical balance between slip, antistatic, and stability over time. Competing agents sometimes serve well in the short run, but gradual migration or surface changes erode product performance and user confidence. Where frequent cleaning or repackaging drives up costs, Oleamide Ethanolamine users report decreased needs for reprocessing or secondary treatment.

    Our facility continually tracks long-term deployment results, logging customer feedback from six months to two years out. The data confirms the real value: performance remains consistent under light exposure, routine temperature cycling, and across a wider range of polymers. By handling purification and reaction at the source, we stay one step ahead of the challenges that crop up during storage or deployment.

    Maintaining Quality and Safety

    All production occurs in enclosed units, cutting risk of cross-contamination. Teams train routinely to spot the warning signs of process drift—clouding in intermediate product, stray odors, or viscosity outside norms. Safety teams review every part of the workflow to eliminate exposure risk, both in the plant and for downstream clients. Tracking every batch from raw material through to shipment makes any recall issue traceable within hours. We run continual toxicity screens, even though standard requirements do not always demand it, providing customers with reports on extractables and migration limits.

    Clients have come to recognize this commitment, especially those working in markets with heavy regulatory oversight. We post data transparently and support third-party audits. By handing over raw test results, companies running food-contact or medical film applications can cross-verify their findings with ours before scaling up.

    Supporting Innovation and Efficiency

    Our product feeds into projects that look beyond today’s standard. As manufacturers work to cut environmental impact, they search for slip and antistatic agents that do not leach, degrade, or pollute at the end of life. The structure of Oleamide Ethanolamine enables segment leaders to phase out certain high-migration products, lowering recycling and waste treatment costs. Our own R&D team collaborates with both laboratory and production engineers to address side effects, like unwanted smells or changes in transparency that standard additives sometimes cause.

    Over the past five years, requests for help in downsizing total additive loads have risen fast. Oleamide Ethanolamine, because of its non-volatility and strong polymer compatibility, permits lower dosages—customers validate this by measuring static levels at similar or better performance compared to less selective agents, all at a fractional dose. This efficiency translates to cost savings and streamlined inventory, which are priorities for any operation confronting margin pressure.

    Challenges in the Oleamide Ethanolamine Market

    Managing the global supply chain throws up its own set of hurdles. Raw material fluctuations hit hardest in years with poor oil yields or spikes in energy prices. Our solution comes from both investment in multiple-source agreements and capacity to switch feedstock blends without compromising finished product traits. By maintaining on-site reserves, we keep fulfillment schedules reliable, even during volatility. No customer wants to redesign a production run to accommodate occasional shortages, so we strive to keep lead times steady.

    One persistent challenge lies in clearing outdated myths about antistatic agents. Many operators believe that performance must come at the expense of downstream clarity or regulatory peace of mind. Open sharing of process and purity information switches this narrative; by allowing customers to run their own head-to-head trials, doubt gives way to results-based trust.

    Lessons Learned on the Factory Floor

    From repeated runs, we’ve learned that unsupervised adjustments—rushes to meet tight shipping windows or overlooked drying—predictably produce inferior batches. Our workers know that shortcuts taken upstream never save time in the long run. A clean, dry reactor and meticulously logged ingredient screening result in fewer surprises and more predictable shipments.

    We never rely on automation alone. Experience teaches the best operators to spot trouble before it triggers alarms. Teams regularly swap process notes, watching for slightly off-colour samples or unexpected residue that can indicate impurities slipping through. Each process update filters back to both managers and the laboratory, to continuously improve.

    The Future of Oleamide Ethanolamine in an Evolving Industry

    As sustainability and plastics reformulation accelerate, Oleamide Ethanolamine adapts to meet new pressures. Demand for chemical transparency and low-migration behavior shapes the evolution of both the product and the process. Rather than simply react, we work alongside users to test lower environmental impact routes—from partial bio-feedstocks to energy-saving synthesis tweaks. Ongoing pilot programs pair our know-how with outside engineers, drawing from their experience to enhance plant output and reduce time-to-market for upgraded products.

    Research into expanding usage continues. Early investigations signal that in certain high-performance composites, Oleamide Ethanolamine allows for finer control over conductivity, opening doors to electronic packaging and precision manufacturing. Collaboration with downstream users means results can be shared—fast detection of processing anomalies, more immediate correction of process settings, and deeper troubleshooting if a test line fails.

    Conclusion: Experience-Driven Manufacturing Builds Confidence

    Year after year, the story of Oleamide Ethanolamine traces back to the same principle: hands-on production experience, close partnership with the field, and an unrelenting focus on practical improvement. Users trust the product not from reading spec sheets or third-hand endorsements, but because continued use delivers repeatable, measurable results. Through every drum produced, the intersection of plant-floor insight, lab testing, and customer feedback ensures not only steady quality but also innovation that stands up to real-world pressure.

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