|
HS Code |
224841 |
| Chemical Name | Triacontanol |
| Molecular Formula | C30H62O |
| Molecular Weight | 438.82 g/mol |
| Appearance | White crystalline solid |
| Solubility | Insoluble in water, soluble in organic solvents |
| Melting Point | 86-87°C |
| Boiling Point | Unknown (decomposes before boiling) |
| Cas Number | 593-50-0 |
| Function | Plant growth regulator |
| Common Uses | Agricultural and horticultural growth stimulant |
| Odor | Odorless |
| Synonyms | n-Triacontanol, Melissyl alcohol |
| Purity | Typically >98% for commercial products |
| Storage Conditions | Store in a cool, dry place away from light |
| Stability | Stable under recommended storage conditions |
As an accredited Triacontanol factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | White, opaque plastic bottle labeled "Triacontanol, 100g." Features safety warnings, batch number, manufacturer details, and tightly sealed screw cap. |
| Shipping | Triacontanol is typically shipped in tightly sealed containers to prevent contamination and degradation. It should be kept away from strong oxidizing agents and stored in a cool, dry place. Shipping follows chemical safety regulations, with proper labeling and documentation to ensure secure handling and transportation during transit. |
| Storage | Triacontanol should be stored in a cool, dry, and well-ventilated area, away from sources of ignition and direct sunlight. Keep the container tightly closed and store it away from incompatible substances such as strong oxidizing agents. Ensure it is kept in a designated chemical storage area, and always handle with appropriate personal protective equipment to prevent contamination or accidental exposure. |
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Purity 98%: Triacontanol with 98% purity is used in foliar spray formulations for horticultural crops, where it promotes increased biomass accumulation and enhanced photosynthetic efficiency. Molecular Weight 438.84 g/mol: Triacontanol of molecular weight 438.84 g/mol is used in seed treatment protocols for cereal crops, where it accelerates germination and uniform seedling emergence. Melting Point 86°C: Triacontanol with a melting point of 86°C is used in greenhouse applications, where it maintains chemical stability and maximizes uptake by plant tissues. Particle Size <10 microns: Triacontanol with particle size less than 10 microns is used in nanoemulsion delivery systems, where it ensures rapid plant absorption and improved yield responses. Stability Temperature up to 40°C: Triacontanol stable up to 40°C is used in high-temperature agricultural environments, where it provides consistent plant growth regulation and minimizes degradation. Formulation 0.05% w/v: Triacontanol in 0.05% w/v formulation is used in hydroponic nutrient solutions, where it stimulates root elongation and enhances nutrient acquisition efficiency. |
Competitive Triacontanol prices that fit your budget—flexible terms and customized quotes for every order.
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Every batch of Triacontanol that leaves our facility reflects years of focused factory experience, direct operator feedback, and careful control at each step—no shortcuts, no relabeling. Triacontanol's backbone lies in its 30-carbon chain, making it a natural aliphatic alcohol with proven plant growth properties. You’ve probably seen many variations advertised online, but growers and formulators who have compared samples know one thing: purity matters. We offer Triacontanol with purity above 90%, achieved by controlled hydrogenation and repeated recrystallization steps that prevent the common contamination issues found with resold imports and “blended” powders. This isn’t about rebranding bulk stock; our teams monitor the reaction temperatures, the auxiliary solvent profiles, the micron filtration, and the finishing—only the right fraction meets our release specs.
Triacontanol works best when it’s clean, crystalline, and free from waxy residues. Many providers ship wax-heavy versions or oil-laden blends to shave cost, but these poorly dissolve in agricultural adjuvants and can gum up nozzles in foliar applications. Our process strips out unnecessary fatty residues, leaving a neutral, nearly odorless solid that blends easily into carriers—so your spray mixes don’t clog and your results remain consistent across seasons. We do not add “extenders” or unlisted bulking agents. Every shipment comes with full traceability to our process logs, which growers and formulators can verify for peace of mind.
Our Triacontanol model, available as powder and fine flakes, consistently tests between 90% and 95% active content by GC-MS. The remaining trace component is primarily other natural long-chain alcohols, with total impurities under 5%. Granule size sits between 80 and 120 mesh, making it ideal for tank mix, formulation, or tableting. The melting point remains between 85°C and 88°C—a narrow window, showing proper carbon chain length without “slippage” or early-melting residues that often signal incomplete purification.
Solubility can hold back many batches on the market. Our product dissolves at 0.01g/L in water (with use of suitable adjuvants), and up to 10g/L in chloroform or methanol. Many attempts to cut cost result in fractionated mixes that cloud suspensions, but we use only high-integrity recrystallization and vacuum drying, avoiding synthetic shortcuts that introduce breakdown byproducts.
Triacontanol stands out most clearly in its effect on rapid cell elongation and photosynthetic pigment production. Row crop growers report boosted chlorophyll quantity in tissue analyses, while greenhouse operators use Triacontanol to prompt healthier rooting and earlier flowering in high-value ornamentals. Reliable effect starts at 5–10g per hectare in foliar mix, but some hydroponic feeds navigate closer to 0.1ppm in water. Our product’s consistent purity ensures that these low-dose uses remain predictable—no “lot-to-lot bounce” in response curve.
Direct customers include orchard growers looking for uniform fruit set, commercial nurseries targeting transplantation success, and compounders formulating specialty biostimulants for private-label lines. Unlike non-factory distributors, we respond to batch feedback from actual field trials and adapt screening accordingly; for example, one large grower’s report of nozzle fouling traced back to a single upstream solvent switch—caught and corrected before wider shipment.
Many of our new customers arrive after testing “Triacontanol” batches that underperform, clump, or fail to dissolve fully. Most of these samples sourced from relabelers show inconsistent color, unpredictable impurity spikes, and irregular particle sizes. Unlike those resellers—who buy from trading platforms or repackage industrial waste fractions—we maintain in-house granulation and blending lines. Customers never see inflow of random intermediate—every drum shares the same defined chain length, melting point, and dryness.
Trials reveal that off-spec blends, typically sourced by traders from refinery side streams, fail to match the rooting and vegetative growth boosts seen in genuine high-purity Triacontanol. We’ve tested and rejected these alternatives ourselves, as residue in suspension tanks often exceeds 10%, leaving sludge that grows bacteria or blocks dosing lines in fertigation setups. Purity aside, many bulk handlers import material with trace pesticide residue from shared upstream lines—something our vertical process control avoids by staying far from crude extraction origins.
Every processed drum passes a triple QC checkpoint—molecule count by GC-MS, visual particle check under 100x, and solvent residue chromatography. Each test responds to actual problems found in off-market samples, not a checklist prepared for marketing. For example, we keep mechanical shearing to a minimum, relying on controlled cooling for particle size, because excessive grinding heats unstable alcohols and changes activity.
Ripples in consistency hurt blended fertilizer or pesticide products. We learned through trial—abandoning joint processing or shared storage—to avoid cross-contamination from other plant-derived alcohols. Triacontanol’s structure is particularly susceptible to residue pick-up during shared line cleaning; even small residue affects field response curves. That is why we reserve dedicated vessels and pipelines for both synthesis and final packing.
Growers looking to integrate Triacontanol directly into tank sprays, seed treatments, or fertigation can rely on our technical sheets outlining mixing rates by crop species and application method. Many independent agronomists note that true Triacontanol, at our recommended rates, interacts with auxin and gibberellin signaling, improving stem thickening, expanding leaf area, and hastening establishment without negative carryover effects. Unlike hormonal pesticides or hormonal seed growth products, this natural plant alcohol finishes its action cycle cleanly, leaving no problematic residues for the next planting.
For custom formulation, direct solubility in common solvents—ethanol, methanol, acetone—makes batch prep straightforward. Soft gels, suspension concentrates, and microemulsion formulations all pass through QC for uniformity and shelf stability. Each year, we compare compatibility with new adjuvant lines based on detailed feedback from local and international customers.
Crop technology never stands still, and direct links between factory and farm help us answer new challenges. Recently, orchardists requested a Triacontanol blend optimized for high-pressure misting—prompting an internal pilot run with altered surface wetting agents. Controlled observation in our test greenhouses led to faster melt-dispersion mixes that outperformed generic powders. Our R&D team uses actual grower feedback rather than textbook trial data, letting us shift process parameters, refine solvent residue clearance, and improve small-particle versions for next-year releases.
Urban vertical farms now seek out dust-free, fully dispersible microgranules, wishing to reduce fine particulate drift inside hydroponic systems. Our engineers adjusted crystallization speed and final drying, increasing particle regularity and eliminating “stringers” that plug emitters. This sort of short response loop—absent among traders—ensures every season delivers on promise rather than shortcut or stock rebranding.
With intensifying regulatory focus on trace residues, heavy metals, and process contaminants, our Triacontanol production remains documented against evolving benchmarks. Each lot passes heavy metal screening and is verified below current maximum residue limits for all known regulated zones. Our in-house team holds fast to full ingredient declaration—nothing “hidden in the matrix,” so blending partners and organic certification agents can audit without obstruction.
We also handle safe packaging—triple-sealed, food-grade drums, with attention to antistatic and photoprotective liners for maximized shelf-life. Each outgoing shipment leaves with a full analytical passport generated in-house—no relabel or imported generic certificates cut-and-paste from other sources. Every farmer, orchardist, or formulator holding our product can track batch origins back to a processing date and input material record, closing the safety and compliance loop for the modern regulated market.
Triacontanol isn’t the only plant growth stimulant on the market. Hundreds of root boosters and energy cocktails make similar claims, but very few match its track record for yield, stress tolerance, and rapid establishment. Synthetic auxins or gibberellin-based products often require complex handling, carry greater regulatory scrutiny, and can linger across crop cycles. Many third-party stimulants use non-specific carbon chains, muddying their effect and bringing erratic outcomes.
Our Triacontanol, with declared purity and detailed trace logs, avoids the build-up of non-native residues and carries minimal regulatory drag. The molecule’s natural origin and clear breakdown in plant tissue help growers protect sustainability credentials—especially important for export-focused orchards and large-scale vegetable operations now facing mandatory audit. In comparative trials, only properly purified Triacontanol regularly matches or exceeds yield spikes shown by expensive synthetic alternatives, all while integrating safely into low-residue or certified-organic protocols.
No product launch or improvement happens solely behind lab doors. For over a decade, we’ve field-tested directly with progressive farm groups, greenhouse managers, and independent researchers. Each improvement—more uniform particle size, solvent residue drops, speedier solubility—comes from feedback, not guesswork. Our internal logs are open to large-scale users, ensuring equipment integrations run smoothly, and shipment cycles line up with local growing seasons.
Partnership with community ag colleges and local extension agents has helped us customize technical guidance for real-world conditions. Tropical fruit growers need a different solubility curve from arid-region vegetable clusters—our process can shift particle size and carrier ratios in response, and we keep records of requested tweaks for future refinements.
Triacontanol demand continues to rise among fruit orchard operators, row crop specialists, and tissue culture labs. This growth brings technical and logistical challenges—like keeping up with increasingly stringent environmental benchmarks and scaling for larger, more diverse blends. We constantly work to perfect inline residue clearance, reducing trace contaminants to below detection limits, and optimizing crystallization speed to enable new formulation technologies like nano-particulates and fast-dissolve carriers. Supply chain disruptions remain a concern industry-wide; direct-from-factory production can cushion some shocks but cannot substitute for good planning and dedicated customer communication.
Ongoing collaborations with field researchers aim to fine-tune dose-response targets, minimize input waste, and keep application advice practical and crop-specific. By never breaking the link between production team and customer—unlike trading-led or paper-based supply models—we stay ahead of common quality drift and mismatched application outcomes.
No one batch leaves the line without blending customer input, field trials, and practical on-the-ground oversight. True factory sourcing keeps quality, traceability, and response time inside the same roof, free from surprises or surprise substitutions. Triacontanol demands real control over synthesis, purification, and packaging—no step can be offshored, relabeled, or treated as “just another waxy extract.” Decades of hands-on process improvement, monthly field testing, and transparent QC logs back up every shipment.
To the end user—growers, formulators, and industry partners—this means trust, repeatable results, and freedom from the guesswork that too often haunts growth regulator supply chains. Our commitment is measured not by sales pitch, but by lot-to-lot success, farmer feedback, and the integrity visible in each kilo delivered. Triacontanol, made and tracked from start to finish, delivers on its purpose—supporting healthy crops, sustainable yields, and real agricultural progress, from factory floor to farm field.