| HS Code | 394458 |
| Chemical Name | O,O-Diethyl-S-(Isopropylcarbamoylmethyl) dithiophosphate |
| Content Percentage | >15% |
| Molecular Formula | C9H20NO3PS2 |
| Molar Mass | 285.36 g/mol |
| Appearance | Colorless to pale yellow liquid |
| Odor | Slight, characteristic |
| Solubility | Slightly soluble in water, soluble in organic solvents |
| Boiling Point | Decomposes before boiling |
| Density | Approximately 1.18 g/cm³ |
| Stability | Stable under recommended storage conditions |
| Storage Conditions | Store in a cool, dry, well-ventilated place in tightly closed containers |
| Cas Number | 333-41-5 |
| Common Use | Used primarily as an organophosphorus pesticide |
As an accredited O,O-Diethyl-S-(Isopropylcarbamoylmethyl) Dithiophosphate [Content>15%] factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | The chemical is packaged in a 25 kg blue HDPE drum, securely sealed, and clearly labeled with the product name and hazard information. |
| Shipping | The chemical **O,O-Diethyl-S-(Isopropylcarbamoylmethyl) Dithiophosphate [Content >15%]** must be shipped in airtight, corrosion-resistant containers, clearly labeled with hazard warnings. Transport should comply with relevant ADR/IMDG/IATA regulations for toxic and environmentally hazardous substances. Avoid direct sunlight, heat, and moisture. Ensure spill control materials are available during transit. |
| Storage | Store O,O-Diethyl-S-(Isopropylcarbamoylmethyl) Dithiophosphate [Content>15%] in a tightly sealed, corrosion-resistant container within a cool, dry, and well-ventilated area away from heat, sparks, and open flames. Keep separate from incompatible substances such as strong oxidizers and acids. Ensure proper labeling and restrict access to authorized personnel. Store away from food, feed, and drinking water. |
As a direct manufacturer with established quality processes, we supply O,O-Diethyl-S-(Isopropylcarbamoylmethyl) Dithiophosphate [Content>15%] to specialized sectors, supporting customers’ downstream operations and meeting strict regulatory requirements. Below we detail its practical integration in real-world industrial production settings.
In gold extraction, this organophosphorus compound acts as a selective flotation collector to improve recovery of gold and associated precious metal sulfides from complex ores. Its substantive effect on particle surface chemistry leads to higher concentrate yields with reduced interference from gangue minerals, particularly under challenging processing conditions where traditional xanthates show lower selectivity. Mining operations rely on it for improving process efficiency within tightly regulated emission environments.
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Processing plants in polymetallic ore sectors employ this dithiophosphate derivative to selectively recover lead and zinc sulfide minerals during differential flotation. Its specific interaction with sphalerite and galena surfaces suppresses unwanted minerals and raises metal yields, supporting compliance with increasingly strict environmental limits on tailings impurities and reagent residues.
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Many copper beneficiation plants incorporate this compound as a sulfide flotation collector, enabling improved grade and recovery in chalcopyrite-rich ore bodies with refractory characteristics. Its molecular design allows finer discrimination between copper-bearing and iron sulfide gangue minerals, thus enhancing copper purity for electrolytic refining and downstream use in wire and electronic materials.
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O,O-Diethyl-S-(Isopropylcarbamoylmethyl) Dithiophosphate has demonstrated high selectivity for separating molybdenite from associated sulfides in complex copper-molybdenum ore flotation systems. Its application improves separation efficiency and downstream concentration grades, thus meeting stricter specifications for molybdenum products required in steel and superalloy manufacturing.
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Competitive O,O-Diethyl-S-(Isopropylcarbamoylmethyl) Dithiophosphate [Content>15%] prices that fit your budget—flexible terms and customized quotes for every order.
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We work with hundreds of specialty chemicals each month, but O,O-Diethyl-S-(Isopropylcarbamoylmethyl) Dithiophosphate stands out in our production line. This molecule, often recognized under its organophosphorus classification, brings a distinct combination of phosphorus, sulfur, and carbamate chemistry. Our experience producing this compound centers around finding the right balance between chemical purity, content, and batch-to-batch reliability to serve industries that demand consistency. Manufacturing O,O-Diethyl-S-(Isopropylcarbamoylmethyl) Dithiophosphate isn’t an exercise in routine—it requires careful attention at every step, from synthesis to packaging.
We set the standard for our product at greater than 15% active content, driven by market demands for higher potency and reliable baseline performance. Lower-content versions often lead to complaints about reduced process throughput and heightened variability in application outcomes. The industry gravitates toward our model because operators need predictable concentrations, especially when scaling up to industrial volumes. Producing batches above the 15% mark presents its own set of challenges—the chemical environment must be kept free from water and trace oxidants. Any slip during synthesis can cascade through to the final product, knocking down the active percentage and, in severe cases, creating instability that affects product shelf life and downstream use.
Chemicals in this class perform best when their content remains stable through shipping, storage, and application. Technicians using dilute or unpredictable content versions face a frustrating repair cycle: off-ratio mixes, clogged equipment, and either reduced yields or the need for constant recalibration. By maintaining a minimum threshold above 15%, we help our industrial clients cut down on lost labor, wasted feedstock, and equipment cleaning costs. High-content batches simplify dosing protocols—operators confirm input concentrations and maintain their workflow without constant adjustments. This benefits both the end-user and our own quality assurance, as feedback from the field often pinpoints instability in formulations with lower-grade starting materials.
Each step in manufacturing O,O-Diethyl-S-(Isopropylcarbamoylmethyl) Dithiophosphate calls for attention to conditions such as temperature, pressure, and reaction time. Early in our production history, we ran into issues with incomplete reaction and side product formation. It took process modifications—tight pH control, better solvent selection, upgrades to reactor materials—to get consistent product above the 15% level. The presence of moisture can degrade the product rapidly, forming acids that corrode packing drums and compromise the purity. To prevent this, we invested in closed-loop systems and desiccant towers, learning directly from each incident where a slight atmospheric leak spoiled an entire batch. These details matter because rework and disposal cut into both margins and trust.
Compared to generic dithiophosphates or analogs with a different carbamoyl moiety, O,O-Diethyl-S-(Isopropylcarbamoylmethyl) Dithiophosphate demonstrates stronger affinity for certain metal ions and less volatility under typical storage temperatures. Our clients in the mining sector report more efficient complexation compared to older chemistries, and preferred handling characteristics—less noxious odor, lower vapor pressure, and a manageable liquid form. While some competitors offer powder forms, the liquid we produce has proven easier to meter, especially in automated dosing systems. In comparison, powders often cake or settle out, causing uneven distribution and unpredictable reactivity. Our product's physical properties open applications in areas where liquid dosing and easy solubility in alcohol or hydrocarbon solvents are central.
Mining, pesticide formulation, and specialty synthesis represent the three main sectors consuming O,O-Diethyl-S-(Isopropylcarbamoylmethyl) Dithiophosphate. In flotation processes at mining sites, technicians add this chemical to pull select metals to the surface, separating them cleanly from gangue. Here, low-quality reagents stall productivity: froths collapse, concentrate grades fall, and mine operators ramp dosage to meet minimum targets. Our experience shows that providing consistently high-content batches shortens process troubleshooting and limits chemical waste. In agricultural chemical production, formulation chemists turn to our product when they require both a robust phosphorus moiety and carbamate functionality to act in tandem, boosting activity against a target pest while maintaining environmental compatibility. Technological advancements in both these fields have raised the bar for input chemicals: more systems are automated and metered at scale, so unpredictably formulated or inconsistent batches introduce real operational risks and extra costs for our clients.
Years of feedback from process engineers and plant trial technicians have influenced our quality control protocols. Regular HPLC and NMR analysis on every batch ensure active content stays above 15% throughout the shelf life. We test storage stability under different temperature and humidity settings—because we’ve seen firsthand what happens to unprotected stocks stored near dock doors in midsummer, or inside poorly ventilated sheds during rainy seasons. Material failures trace back to lapses in either incoming raw material inspection or final drum testing, so we never cut corners in batch sampling. We keep retention samples from every lot—if our clients discover an issue at the point of use, we can dig back and prove consistency or investigate where unexpected changes might have crept in. Most of our long-term customers choose us because of this rigorous traceability. Laboratory staff keep logs of all deviations and adjust procedures as field data comes in—a continual loop that keeps our product reliable and favored.
Every chemical leaves a mark. Early versions of dithiophosphate products developed in the 1960s contributed to persistent environmental residues. Modern regulations force us to rethink everything from solvent use to effluent treatment. Our engineers have retooled reaction setups to capture and reuse solvents wherever possible and opted for feedstocks that can be traced to compliant sources. Waste streams from our plant receive staged treatment—acid neutralization, heavy metal removal, biological polishing—before leaving our facility. Our customers now ask for documentation on both the cradle-to-gate impact and the long-term decomposition of our products, especially in agricultural and mining processes that intersect directly with waterways or crops. We provide full declarations on impurities, by-products, and handling instructions because we know that any lapse can turn into regulatory sanctions or community concern. The move away from legacy formulations with persistent environmental impact has shaped the structure of our production plant, pushing us toward more closed-system and low-emission technologies.
Years of plant experience have shown that dithiophosphate derivatives like O,O-Diethyl-S-(Isopropylcarbamoylmethyl) Dithiophosphate can present both acute and chronic exposure risks. Small leaks in transfer pumps or drum seals result in concentrated vapors, which plant staff are trained to detect and resolve in real-time. We hold safety drills; the protocols reflect lessons learned from actual incidents—a pinhole leak unnoticed for half a shift leading to skin irritation, or improper PPE causing preventable chemical burns. Our facilities maintain up-to-date MSDS, frequent ventilation checks, and continuous monitoring for airborne concentrations. Those systems protect workers, but they also tell the story of how stringent production must be to ensure the product our customers receive has minimal volatilization and odor during handling. Field users benefit from these same precautions, as higher-content and more stable batches produce fewer surprises during storage and application.
Looking back at years of production, we've learned that no two batches are identical—reactor uptime, supply chain interruptions, and seasonal humidity all play roles. Keeping meticulous records, revising formulations, and updating standard operating procedures allow us to learn from both mistakes and successes. For example, a year with unstable supply of one key precursor led us to partner with alternative suppliers and validate their product through side-by-side batch trials—discovering a previously unnoticed impurity that affected stability. This cycle of continuous improvement not only keeps quality up but ensures our recommendations and guidance to customers stem from firsthand trial and error, not just textbook knowledge.
What sets our operation apart isn’t just technical know-how, but an ongoing dialogue with clients in real-world conditions. Process engineers in flotation plants, agronomists in pesticide formulation labs, and chemical distributors share back failures and successes that shape each production campaign. Sometimes, feedback is simple: a technician notes a slight color shift, prompting us to audit the batch and confirm purity. Other times, large-scale trials uncover unexpected behaviors—a slow drop in performance traced to a new drum liner material or a subtle change in the feedstock. We document these findings and adjust production schedules, supplier selection, or shipping methods as needed. This responsiveness moves our product past just a commodity chemical and turns it into a process-critical tool for our customers.
Chemicals are tools—and the toolbox keeps growing. While mining and pesticide manufacturing claim the bulk of current demand, researchers test our high-content O,O-Diethyl-S-(Isopropylcarbamoylmethyl) Dithiophosphate in specialty synthetic processes, such as chiral ligand design or novel polymerization catalysts. Industrial chemical R&D rarely follows a linear path: sometimes a small tweak in the structure or a unique solvent blend uncovers an entirely new end use. We make batches available for trial at universities and specialty labs; by tracking these experiments, we gain deeper understanding of our own molecule’s range. Some of tomorrow’s key industrial processes will likely trace their roots to pilot-scale work happening now in fields outside where we originally expected this chemical to shine.
Producing chemicals for a global market brings challenges in logistics, customs, and evolving regulatory standards. Customs holds for improper labeling or delayed container shipments disrupt both our schedules and customer plans. To tackle this, we work with shipping partners experienced in handling hazardous and sensitive chemicals, and stay updated on changing safety data requirements and documentation. Our risk mitigation strategy includes keeping buffer stock and using regional hubs for faster distribution. When the European Union, North America, or Asia-Pacific authorities update permissible impurity levels or handling protocols, our technical staff implement those changes swiftly, running new validation tests and providing updated documentation to clients. Meeting and often exceeding global standards keeps us competitive, but more so, it protects personal relationships built with clients who rely on reliability for their own operational commitments.
In decades of chemical manufacturing, subtle variations in formulation, purity, and shipping care decide whether a product earns trust or gathers dust. For O,O-Diethyl-S-(Isopropylcarbamoylmethyl) Dithiophosphate, the difference lies in our refusal to compromise on key points—consistent active content above 15%, precise tracking throughout the production cycle, and meaningful, real-world feedback loops from end users. Each flask and drum that ships from our facility reflects hard-won technical lessons and a practical understanding of what clients need out in the field. The result: a specialty chemical that doesn’t just fill a line on a material list but enables better process yields, safer operation, and the possibility of innovation in entirely new domains. That’s the standard we set day in and day out.