|
HS Code |
564405 |
| Chemical Name | Terallethrin |
| Cas Number | 23031-36-9 |
| Molecular Formula | C19H26O3 |
| Molar Mass | 302.41 g/mol |
| Appearance | Colorless to pale yellow liquid |
| Odor | Faint characteristic odor |
| Solubility In Water | Insoluble |
| Density | 1.027 g/cm³ at 20°C |
| Use | Insecticide |
| Chemical Class | Pyrethroid |
| Flash Point | 132°C |
| Toxicity | Moderate |
As an accredited Terallethrin factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | The packaging for Terallethrin 500 ml features a sturdy, labeled plastic bottle with safety warnings, hazard symbols, and proper storage instructions. |
| Shipping | Terallethrin should be shipped in tightly sealed containers, protected from moisture and direct sunlight. It must be labeled as a hazardous substance and comply with relevant transport regulations (such as IMDG, IATA, or ADR). During transport, ensure proper ventilation and prevent contact with incompatible materials, avoiding excessive heat or ignition sources. |
| Storage | Terallethrin should be stored in a cool, dry, well-ventilated area, away from direct sunlight, heat sources, and incompatible substances such as oxidizers. Keep the container tightly closed and clearly labeled. Store at temperatures below 40°C. Ensure the storage area is secure, inaccessible to unauthorized personnel, and equipped with appropriate spill containment and fire-fighting equipment. Avoid contact with food, feed, and potable water. |
Competitive Terallethrin prices that fit your budget—flexible terms and customized quotes for every order.
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Terallethrin stands out among the synthetic pyrethroid insecticides for its reliable knockdown effects on mosquitoes, flies, and household pests. In our production facilities, we focus on developing high-purity Terallethrin, focusing on practical uses that matter to real users. After years of field feedback and lab testing, the market continually relies on our 92% technical-grade material and the 25:75 cis-trans isomer blend. This ratio supports both efficacy in aerosol formulations and consistent user results. Those involved in formulating water-based and oil-based sprays often request technical powder because it dissolves efficiently and delivers rapid knockdown.
Our production lines use precise temperature and pressure control, verified by regular batch analytics. We understand that impurities in technical grades can cause residue after application or produce unwanted odors during use. We have optimized the purification steps to remove problematic isomers. This is not an academic exercise; the results show up every time a consumer uses a coil, mat, or spray built from our active.
Terallethrin leaves the reactor as a pale yellow to brownish liquid, with a faint, characteristic smell. It doesn’t linger, and it doesn’t introduce harsh notes that get noticed over the floral or herbal scents that formulators prefer to add. All batches fall within the narrow density and refractive index ranges preferred by automated blending plants. Our teams confirm every batch meets GC purity above 92%, with trace solvents below 0.5%. These details reduce equipment fouling and eliminate filter clogs that shut down high-speed filling lines.
We provide two popular models: a 92% technical and a 93% refined grade. Over the last decade, direct feedback from household product makers pushed us to reduce trace PCBs and heavy metals—the kinds of contaminants overlooked when cuts are made on raw material costs. You get clear certificates with each lot because users have a right to know what ends up in their homes.
The viscosity and pourability of our product enables direct tank blending without pre-dilution. This small detail matters for formulators who want to run a clean plant, reduce solvent losses, and keep costs predictable. Several partner companies have reported a 10-15% increase in line uptime after switching to our refined technical. That translates into easier scaling and more predictable project completions.
Household mat and coil producers rely on Terallethrin for the rapid knockdown it delivers to flying and crawling insects common in tropical and temperate areas. We observed mat formulators adding the active during the last stage of slurry mixing. This approach avoids premature evaporation or chemical loss during oven drying. In mosquito coil production, small improvements in consistency help reduce smoking and ash buildup. Using our material leads to cleaner burning without the streaks or uneven coloration that brands hate to see.
Aerosol and spray formulators mix the technical directly with light solvents and propellants. Field tests from partners in Southeast Asia and Africa confirm that the 25:75 isomer ratio achieves household knockdown under local temperature and humidity conditions. Large-scale public health projects use foggers and ULV machines charged with blends derived from our product. Reliable suspension and rapid volatilization matter during emergency spraying in dengue and malaria outbreaks—there’s no room for product separation or leftover sludge in the tanks.
Those working in factories speak up regularly about ease of use. The consistency in our technical reduces re-mixing time, minimizes nozzle clogs, and shortens overall downtime during changeovers. Small efficiencies here add up over thousands of production hours, delivering better results to the end-user at home.
People often ask how Terallethrin compares with other pyrethroids like D-Allethrin, Prallethrin, and Transfluthrin. The answer comes from long-term side-by-side application and continued investment in process improvements.
D-Allethrin offers good knockdown but tends to show lower vapor action, which limits its reach in larger or open spaces. Prallethrin works well in electric vaporizers, but its higher volatility sometimes causes odor migration, especially in sealed storage. Transfluthrin has excellent fast vapor-phase action but can be difficult to blend without specialized handling.
Terallethrin strikes a balance. The 25:75 cis-trans ratio delivers strong initial knockdown in close quarters without overpowering residual odors. Its moderate vapor pressure means it acts fast but doesn’t evaporate away before doing its job. Our in-process controls keep the isomer levels within such a tight range that end-users and blenders see less batch-to-batch variation, leading to less troubleshooting and fewer complaints at customer care hotlines.
Compared to lower-purity technicals sometimes offered in the market, our material stays cleaner over time and avoids precipitation problems, especially in low-temperature storage. Product teams reported better compatibility with fragrance oils, anti-mold agents, and stabilizers, which enables longer shelf life for the final insecticide product.
Decades in chemical manufacturing give real insight into the supply chain challenges facing active ingredient production. We don’t treat waste streams as an afterthought. Every batch run is built around waste minimization. By capturing and recycling solvents, and by using closed-loop reactors, we’re able to keep process losses below 2%. Teams regularly monitor effluent and air emissions, meeting tough local and international standards. Regulatory audits and unannounced inspections verify our records, not glossy brochures.
Some manufacturers cut corners on purification and solvent recovery, sending higher impurity loads down the supply chain or into the local environment. That’s short-sighted. Our plant designers invest in double-sealed storage, automated drum handling, and vapor containment systems. These practices protect both products and the people who handle them daily.
Our on-site lab tracks every shift’s output, collecting retention samples for a minimum of 36 months. If there’s ever a question from a customer about an off-odor, strange color shifts, or poor performance, we can trace the source faster than relying on aging stock inventories or finger-pointing between suppliers. This openness helps downstream users produce safer, higher-quality consumer goods—something we take seriously.
We don’t sell Terallethrin on abstract claims. Our R&D teams deploy test batches with partnered manufacturers, testing directly against local insect populations. Mosquitoes and flies change with the seasons and climate—products that work well in the lab sometimes fall short in city apartments or rural clinics. Regular field reports—visible knockdown rates, consumer panel feedback, shelf life results—reach our process technicians.
In Southeast Asian cities, mat testers repeatedly reported effective knockdown within 10-12 minutes after exposure. Results held consistent between summer and rainy season peaks, confirming both isomer balance and purity are on target. Spray trials performed in hospital wards and classrooms showed rapid action against Aedes and Culex mosquitoes, giving critical protection during peak transmission months for dengue and filariasis.
Failures teach as much as successes. Years ago, an early batch had trace off-odors traceable to a solvent change. Customers noticed. We traced the source, invested in new purification columns, and retested all upstream stock. Feedback cycles like these drive our ongoing material improvements, benefiting everyone in the chain from blenders to household users.
People using and formulating household products depend on predictable active ingredient performance. Each production run benefits from suggestions and complaints logged by those working the lines, mixing, filling, and packaging thousands of units per shift.
For example, certain mat producers struggled with clumping during rainy seasons, which we traced to a trace-fatty acid impurity. Action at raw material sourcing and small tweaks in the purification process eliminated this. Another time, partner companies in the Middle East found that a minor shift in isomer content led to less effective knockdown in late summer. More precise monitoring on reactors fixed future batches. These aren’t isolated fixes; the lessons become permanent process upgrades.
It often takes less than a week to go from problem report in the field to on-site lab re-testing, then to plant-level corrective action. Large-scale blenders and public health agencies value this agility. Supply reliability and honest dialogue about batch-to-batch results turn customers into long-term partners.
Continuous engagement with field users influences every production campaign. As a direct manufacturer, we limit the use of third-party raw materials and run regular supplier audits. Any new source enters side-by-side labs tests to confirm matching GC profiles and knockdown outputs. If lots don’t match, they don’t ship to our blend tanks or our customers.
Our Terallethrin batches are designed for daily, high-volume use—not just for passing spec sheets. Formulators, blenders, and factory workers gave critical input on which properties make workflows smoother. Each update means less downtime, fewer raw material disputes, and better-performing consumer goods on supermarket shelves and online stores.
Cheaper alternatives often cut corners on purity or change isomer ratios, sacrificing shelf-life and application results. Technical support and field teams run annual training for customer QA teams, sharing batch histories, troubleshooting tips, and case studies from live product launches. Open records and production transparency keep everyone aligned—so fewer surprises turn up after launch.
As a direct manufacturer, all our process insights, problem-solving, and customer experiences shape every drum and pail we ship. Terallethrin’s growth in the global market reflects more than process engineering and chemistry. End-users put their trust in what comes out of our plants, and we stay accountable for every shipment. From small-batch public health kits to mass-market household brands, careful handling, honest feedback, and ongoing improvement define how we work.
Each batch of Terallethrin delivers more than an active ingredient. It connects expertise built from the ground up—one production run at a time.