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HS Code |
148550 |
| Cas Number | 555-45-3 |
| Molecular Formula | C45H86O6 |
| Molar Mass | 723.14 g/mol |
| Appearance | White crystalline powder |
| Melting Point | 56-57 °C |
| Solubility In Water | Insoluble |
| Solubility In Organic Solvents | Soluble in ether, chloroform, and hot ethanol |
| Boiling Point | 626.2 °C at 760 mmHg |
| Density | 0.973 g/cm³ |
| Flash Point | 256.6 °C |
| Iupac Name | 1,2,3-tri(tetradecanoyl)glycerol |
As an accredited Trimyristin factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Trimyristin, 100g, packaged in a clear, sealed plastic bottle with a secure screw cap and a detailed chemical label. |
| Shipping | Trimyristin is typically shipped in tightly sealed containers to prevent moisture absorption and contamination. It should be stored in a cool, dry place, away from heat and strong oxidizing agents. Shipping complies with standard regulations for non-hazardous chemicals, ensuring safety and product integrity during transit. Handle with suitable protective measures. |
| Storage | Trimyristin should be stored in a tightly sealed container, away from moisture and incompatible substances. Keep it in a cool, dry, and well-ventilated area, ideally at room temperature (15-25°C). Protect it from direct sunlight and sources of ignition, as it is combustible. Proper labeling and secure shelving are essential to ensure safe and stable storage conditions. |
Applications of Trimyristin in Industrial ManufacturingAs a direct manufacturer of Trimyristin, we support diverse industrial sectors by supplying this naturally-derived triglyceride for specific, high-value applications. The scenarios below reflect established downstream markets where our customers integrate the material as a key functional ingredient to meet demanding regulatory and performance requirements. 1. Cosmetic and Personal Care EmollientsTrimyristin serves as an effective emollient and texture modifier in premium personal care formulations, particularly in skin creams, lotions, and specialty balms. Its unique fatty acid composition delivers softness, quick absorption, and supports the stability of emulsion systems required by luxury cosmetics, while maintaining performance at lower total lipid phases. Large-scale formulators incorporate it both in automated batch emulsification and continuous blending processes, taking advantage of its compatibility with sensitive actives and fragrance delivery matrices. Industry compliance standards
Typical usage ratio
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2. Industrial Lubricants and GreasesTrimyristin finds key use as a biodegradable base oil and thickener precursor in the manufacturing of environmentally-conscious lubricants and specialty greases. Its consistent glyceride structure supports optimal rheology and reduces volatility, making it suitable for certified non-toxic formulas engineered for sensitive machinery in food processing, pharmaceutical, and textile sectors. Plants deploy it in controlled heating and mixing stages to yield precise viscosity and lubricity without hazardous byproducts. Industry compliance standards
Typical usage ratio
Downstream process integration
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3. Pharmaceutical Suppository BasesIn pharmaceutical solid dosage manufacturing, Trimyristin is valued as a suppository base due to its uniform melting profile, biocompatibility, and inertness towards active ingredients. Facilities producing rectal and vaginal suppositories integrate it to achieve precise release characteristics and avoid fractionation issues common with semi-synthetic lipids. Each batch undergoes rigorous pharmaceutical-grade processing under GMP to prevent contamination and ensure reproducible crystalline structure. Industry compliance standards
Typical usage ratio
Downstream process integration
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4. Food Industry Flavor and Aroma EncapsulationAs a food-processing raw material, Trimyristin supports food formulators in high-performance encapsulation of delicate flavors and fat-soluble vitamins for functional foods and bakery ingredients. Its defined melting curve and neutral taste provide controlled release characteristics in confectioneries and nutritional powder blends. Large-scale applications employ spray-cooling or fluid bed coating systems for uniform encapsulation with enhanced shelf life and reduced oxidation. Industry compliance standards
Typical usage ratio
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5. Plasticizer and Mold Release Agent in Polymer ProcessingTrimyristin provides unique advantages as a biodegradable internal plasticizer or non-ionic mold release aid for specialty polymers and biodegradable plastics. Polymer processors rely on controlled addition to improve flow, reduce die build-up, and facilitate demolding operations without hazardous residues. Its thermal stability supports inclusion in heat-intensive processes such as PLA and PBS extrusion or injection molding, empowering downstream customers to meet eco-label and compostability criteria. Industry compliance standards
Typical usage ratio
Downstream process integration
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Competitive Trimyristin prices that fit your budget—flexible terms and customized quotes for every order.
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Trimyristin deserves a closer look. Coming straight from our dedicated production line, this solid, high-purity triglyceride shows consistency batch after batch. With a melting point near 56–57°C and a clear, pale appearance when molten, it is the favorite choice of many professionals who need reliable performance in their applications. Quality starts with raw materials, so we use only meticulously sourced vegetable-based myristic acid, which means each lot meets food, cosmetic, or technical grade requirements, as contracted. We do not gamble with intermediaries or inconsistent supply—our composition control stands as a result of decades refining the extraction and recrystallization process. This builds trust, not just compliance.
You’ll hear a lot about commercial “purity”—and manufacturers who treat it as a number on paper. Our plant operators see things differently. Our Trimyristin samples undergo multiple in-line and batch-end GC and HPLC analyses, checking for even low-level contaminants. It does not stop there. Microbial plate counts, heavy metal screening, and residual solvents checks are regularly scheduled, not just during audits but every shipment. That’s because end users in cosmetics, pharmaceuticals, and food contact applications demand more than minimums. When formulating face creams, suppositories, or confections, off-flavors and trace volatility can ruin large batches. We have seen this happen in environments where quality slips.
We started blending and crystalizing medium- and long-chain triglycerides decades ago. Early on, our team learned that Trimyristin purification takes more than a one-step approach. We use controlled cooling and multi-stage solvent crystallization to push purity above 99%. When European confectioners tested our product against locally available grades, the feedback singled out our smoother melting profile and near-zero aftertaste. For pharma companies, we ran back-to-back compatibility tests and documented our stability results during high-shear tablet compounding. Our technical reps answer direct questions about wax compatibility for deodorant sticks and mold release rate for pressed confectionery—because we have worked next to our customers in pilot runs and scale-up batches.
A triglyceride such as Trimyristin can be seen in hard fats for chocolates, stabilizers for creams, and even in natural wax blends. Anyone who has tried to substitute with generic fats knows the typical troubles: bloom, grit, cloudy finishes, and overheating at molding temperatures. The crystalline structure of pure Trimyristin solves many of these. It contributes a stable base without graininess or unpredictable softening. Chefs depend on that in patisserie. Industrial chemists reach for Trimyristin when formulating topical creams that cannot tolerate greasy residues or unwanted perfume note carriers.
Trimyristin granules disperse easily in controlled heating and homogenization tanks. We offer it both as flake and as compacted powder, depending on what your process line favors. Where rivals ship in mixed fatty acid compositions or bulk grades, we precision-grind and sieve on-site, so fines, flow, and filterability match what our customers describe in their plant walkthroughs. Our own engineers work close to the mill to check that every batch performs to spec—not just on paper, but on the production line.
Understanding what’s inside yields better results. Trimyristin’s triester backbone results from esterifying glycerol with three myristic acid groups. That makes it resistant to rapid oxidation and capable of delivering melting and solidification curves that are predictable. For producers of coated confections or molded tablets, this translates into sharper cooling and more reliable unmolding. Melt point matters. Use anything with an inconsistent or wider melting range and see the difference in lost yield and trouble with pack-off. Our facility engineers record thermal analysis data on the fly to hunt for unexpected variances, and they tweak process parameters before you spot problems in your own lab.
Some users compare Trimyristin to shorter chain triglycerides, such as trilaurin, or longer ones like tripalmitin. Every one has its own performance curve and end-use suitability. Shorter chain types can be more brittle and quicker to melt but often release odor. Longer chain homologs may bring unwanted waxiness and leave tough residues in production kettles. By producing a tight-cut Trimyristin grade, we offer a middle ground—not too quick to melt, not sticky in finish, just enough structure to bridge high-fat and wax phases without phase separation. These are not marketing claims, but results from head-to-head testing run by our technical teams.
No one investing in a new grade wants surprises with global compliance. Our QA department tracks relevant standards published by authorities like the U.S. FDA, EU REACH, and Asian equivalents. We keep batch records on-site, but digital twins let customers review certificates down to analytical batch. Many of our food clients demand kosher, halal, or allergen-free statements to run in their validated plants. We know these requirements up close and keep in-house traceability records for more than what a site audit will review. Our process engineers run additional migration and extraction studies where end-use contact with products is possible. That includes specialty wax crayons, lipstick, or chewable tablets. No one should risk downtime fixing compliance mistakes made by someone else’s third-party contractor.
The use cases for Trimyristin cover a wide range. In fine chocolate manufacturing, it backs up cocoa butter, lending a sharp snap and clean release from molds. In flavor encapsulation, where active ingredients need to survive manufacturing but release on cue, Trimyristin gives a stable encapsulation matrix. We have worked with flavor houses, trialing multiple spray-cooling techniques. Trimyristin produces smoother, more regular particles than the lower-cost blends.
In cosmetics, formulators turn to Trimyristin for its sensory profile and stability under temperature stress. Our samples have run through multiple stability testing runs for lipstick bases, cream sticks, and “all-natural” deodorant. It solves two persistent problems: rapid sweating in sticks and poor fragrance fixative properties. The material resists pilling when combined with natural butters and holds fragrances much longer than non-saturated triglycerides.
Pharmaceutical compounding labs opt for our product in solid fats for medicated suppositories. Unlike some hard fats, Trimyristin melts close to body temperature, supporting predictable drug release rates and patient comfort. Its consistency becomes crucial where dose and active ingredient carriers can’t vary from batch to batch. Medical device producers have tapped us for mold-release media in their manufacturing. Formulation notes from partners who scale up rectal and vaginal suppositories repeatedly pick out Trimyristin for ease of melting and non-reactivity with most active substances.
Industrial uses extend to specialty lubricants, wax blends for polishes, and even technical printing inks. Lubricant formulators harness its oxidative stability, and painters use it in pigment-binder systems where high gloss and low volatility matter over years of wear and exposure. In each of these cases, our team worked directly to adjust form factors or tailor particle sizing for easier feeding and mixing.
Many market sources offer blended or re-packed imported material, often as lot-mixed or technical grade only. Differences show up when the customer chases consistency at volume. We invested years in tightening up process parameters and automating quality checks, so customers get exactly what they expect each time. New customers have come to our team after trouble using less reliable grades, facing frequent plant shutdowns from blocked filters, unexpected off-odors developing after warehouse storage, or unpredictable melting behavior. We have taken pride in running onboard batch trials with those customers, showing first-hand how true high-purity Trimyristin can cut rework and boost total annual yield.
Feedback from regulatory consultants often touches on ingredient declarations and extractables. Our material ships with full chain-of-custody, not relabeled. Any time customers propose a tighter spec, we organize pilot runs to test feasibility before making claims. Our teams published joint whitepapers with multinational clients on how high-purity Trimyristin reduces nucleation of off-tastes and improves migration rates of aroma compounds. The data come from measured, repeatable results, not authority citations or borrowed data from other producers.
We avoid unnecessary intermediaries and ship directly from our finishing plant. Keeping inventory under our roof for both regular and contract clients means faster turnaround and better lot selection. This helps prevent contamination risks associated with re-melting, exposed storage, or bulk shipping in uncleaned drums. Clients focused on traceability value this approach, especially when their auditors require proof that no cross-contamination or in-transit risks occurred.
Seasonal swings in demand sometimes challenge inventory planning, but our process scales from pilot to multi-tonnage runs without significant process drift. Our sales and production teams stay tightly linked, adjusting stocks and scheduling to fulfill just-in-time delivery. For multinationals, this frequently means integrating with their ERP to pre-book batches or hold lot-dedicated stocks for major rollouts in food or pharma launches. No one wants to hear reruns of “unexpected shipment delay” stories with a product so tightly linked to sensitive production schedules.
Our long record with customers covers technical service beyond just shipping product. For new users, we walk through melt and blend trials, giving practical advice on vessel temperature and agitation choices. Experienced process engineers share field data if a customer’s formulation starts to slump or grain, working hands-on to diagnose and correct root causes beyond the material itself. Unfiltered feedback from the field gets relayed to our R&D chemists, who often recreate customer lines at bench scale to see what can go wrong.
Working on-site with dozens of pilot plants means we’ve faced most formulation headaches. These might be graininess in solidified bars or slow-set in confectionery, residue build-up in tanks, or stability drops during hot season transit. Every fix we propose draws from both our lab data and on-site fixes seen in real production. That boots-on-ground experience sets the tone of our technical support; we keep things practical and close to what our customers actually face, not just theoretical fixes copied from literature.
The pressure to provide traceable, sustainable raw materials grows every year. Customers, regulators, and NGOs scrutinize every supply chain. We shifted our palm-based sourcing decades ago, favoring forest-friendly operations and independent traceability audits. Our team monitors the upstream process to keep documentation current and transparent; no secret subcontracts or obfuscated origins. Site energy inputs leverage renewables when available, and waste streams feed biogas recovery, lowering total impact over fossil-fuel systems. Once cost control and site performance align, our site can run competitive with any conventional producer.
Trimyristin as a product has the rare advantage of full biobased origin, so end-users in food and personal care can promote a renewable carbon backbone in their own supply chains. Downstream certification, including RSPO or other recognized sustainability markers, responds to growing client and end-market demand for clean, accountable chemistry. Sharing best practices with other producers and learning from regular client audits keeps our approach sharp.
We recognize formulators’ demands never stand still. Every year, new food safety, environmental, or performance benchmarks push even staple ingredients like Trimyristin toward closer scrutiny. Our in-house R&D investigates alternate fatty acid feedstocks, process intensification to shrink energy input, and new physical forms to support customer requests for super-fine or dust-free handling. We invest real time in pilot project partnerships, running process simulation and co-developer trials with new or prospective clients to test both existing grades and explore next generation improvements.
Digital quality control platforms help us catch deviations sooner. Thin-layer chromatography, particle imaging, and automation of trace impurity alerts cut out a lot of manual error and speed up reporting turnaround. These results go out to our clients, not just buried in internal audit logs. We see clean reporting ecosystems as part of our value, letting regulators, partners, and customers quickly access every relevant datapoint for their own compliance, which builds more trust than just “meets spec” assurances.
Honest collaboration remains at the core of our approach. Industry groups and professional associations know us from decades of open-door collaboration. We learn as much from end-user challenges as we share from our production expertise. Many of our upgrades—such as micro-cut granulation or odor-controlled handling—originated not with our internal teams, but from a customer walking our floor and asking for new solutions to old problems. Fielding those requests, even if it means running short-turnaround pilot batches or altering packing forms, challenges us to keep improving.
A reliable source of Trimyristin grows from placing customer needs first, screening what matters most to their success, and backing each order with hard experience as a real producer. That principle guided our team through countless process upgrades, and it continues to steer our work as demands for transparency, safety, and quality grow. Direct accountability, rigorous technical support, and hands-on experience with every batch set the standard for what a real producer should provide—not just a shipment, but a true partner in your production pipeline.