|
HS Code |
629577 |
| chemical_name | O,O-Diethyl-S-(Isopropylcarbamoylmethyl) Dithiophosphate |
| content_percentage | >15% |
| molecular_formula | C9H20NO3PS2 |
| molecular_weight | 285.36 g/mol |
| appearance | Colorless to light yellow liquid |
| solubility | Slightly soluble in water, soluble in organic solvents |
| boiling_point | Decomposes before boiling |
| density | Approx. 1.15 g/cm³ (at 20°C) |
| storage_conditions | Store in a cool, dry, and well-ventilated place, away from direct sunlight |
| stability | Stable under normal temperatures and pressures |
| odor | Characteristic, pungent odor |
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 25kg blue HDPE drum with a secure screw cap, clearly labeled with content and hazard information. |
| Shipping | The chemical **O,O-Diethyl-S-(Isopropylcarbamoylmethyl) Dithiophosphate [Content>15%]** should be shipped in tightly sealed, chemical-resistant containers. It must be labeled according to hazardous material regulations and kept away from incompatible substances. Transport at ambient temperature, ensuring the package is protected from moisture, direct sunlight, and physical damage during transit. |
| Storage | Store O,O-Diethyl-S-(Isopropylcarbamoylmethyl) dithiophosphate [Content>15%] in a cool, dry, well-ventilated area, away from heat, open flames, and direct sunlight. Keep container tightly closed and clearly labeled. Store separately from incompatible substances such as strong oxidizers and acids. Ensure proper spill containment, and restrict access to authorized personnel only. Use corrosion-resistant storage containers. |
Applications of O,O-Diethyl-S-(Isopropylcarbamoylmethyl) Dithiophosphate [Content>15%] in Industrial ManufacturingAs a specialist manufacturer of dithiophosphate-based reagents with controlled content above 15%, we support multiple industrial sectors by delivering precisely formulated intermediates optimized for downstream integration, process efficiency, and reproducibility in finished product manufacturing. Our direct involvement in chemical synthesis guarantees every shipment complies with regulatory and customer-specific requirements. 1. Flotation Collector in Non-Ferrous Metal Ore ProcessingO,O-Diethyl-S-(Isopropylcarbamoylmethyl) Dithiophosphate functions as a selective flotation collector primarily in the beneficiation and separation of copper, lead, and zinc sulfide ores, especially where fine grain flotation is required. Mining operators require tailored collector profiles to optimize recovery rates and concentrate purity. This material performs strongly in both alkaline and neutral circuits, giving operators flexibility regarding pH, reagent conditioning time, and pulping density. The dosage depends on ore grade, mineralogy, and circuit design, optimally adjusted by on-site laboratory testing. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
2. Precursor for Organophosphorus Synthesis in Agrochemical ManufacturingThis dithiophosphate derivative acts as a core intermediate in the synthesis of organophosphorus agrochemicals, particularly in the manufacture of certain insecticides and fungicides. Fine chemical firms rely on this material for forming phosphorothioate bonds during multi-stage synthesis routes under inert conditions. Controlled reaction stoichiometry ensures minimized by-product generation and high target molecule yield. Process integration often involves continuous flow reactors and in-line quality analysis to maintain batch consistency and regulatory compliance. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
3. Corrosion Inhibitor Additive in Industrial Lubricant BlendingThis dithiophosphate compound provides high sulfur and phosphorus content, which makes it effective as an antiwear and extreme-pressure (EP) additive for metalworking fluids, hydraulic oils, and gear lubricants. Lubricant formulators select this reagent to meet stringent requirements for steel and yellow metal corrosion prevention. Additive blending occurs at controlled temperatures with constant agitation to ensure full dissolution and homogeneity. Finished lubricants undergo field-simulation testing for oxidative stability and tribological performance prior to market release. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
4. Modifier in Resin and Polymer Crosslinking for Flame Retardant FormulationsChemical manufacturers include this phosphorodithioate as a crosslinking and chain-transfer agent in the synthesis of halogen-free flame retardant resins. Its phosphorus-sulfur backbone introduces both flame-suppressant and charring properties, extending the thermal stability and self-extinguishing performance of polymeric materials. Formulators consistently control the addition homogeneously by pre-dissolving in compatible monomer blends prior to polymerization or extrusion for uniform crosslink density and performance predictability. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
|
Competitive O,O-Diethyl-S-(Isopropylcarbamoylmethyl) Dithiophosphate [Content>15%] prices that fit your budget—flexible terms and customized quotes for every order.
For samples, pricing, or more information, please call us at +8615371019725 or mail to admin@sinochem-nanjing.com.
We will respond to you as soon as possible.
Tel: +8615371019725
Email: admin@sinochem-nanjing.com
Flexible payment, competitive price, premium service - Inquire now!
In the field of chemical synthesis, a product’s real character shows in how it meets the demands of actual users. Our O,O-Diethyl-S-(Isopropylcarbamoylmethyl) Dithiophosphate (content above 15%) has held its ground for decades, both because of its chemical stability and its flexibility in use, especially in large-scale agricultural and industrial settings. Speaking as a manufacturer who witnesses the daily grind of what it means to create and refine this compound, I see trends, challenges, and advantages in ways few others do.
The backbone of this product starts with a careful selection of raw materials. Diethylphosphorodithioic acid and isopropylcarbamoylmethyl chloride react in controlled, monitored conditions. Temperatures, pressure, and purity of reagents get strict attention. Over the years, we have refined our continuous and batch processing lines, using jacketed glass-lined reactors to guard against corrosion and product contamination. Our team follows methodical sampling at every key stage, which allows for early correction of deviations and keeps content above the promised 15% threshold. Each model we release reflects the steps we have taken to continuously improve quality, yield, and safety controls.
Many in the industry may only see a catalog listing or a drum on a pallet. We see the trials behind each improvement: the utility of anti-foam agents, tweaks in agitation speed, or a new technique for solvent extraction. We do not cut corners. All outgoing product batches pass verification with liquid chromatography backed with at least one independent lab result every production quarter. This isn’t just about regulatory compliance—it is about pride in consistent output and accountability.
This molecule's value comes from more than just its structure or raw percentage. There are other dithiophosphate compounds on the market, but not all share the balance of solvency and selectivity found with this isopropylcarbamoylmethyl derivative. In the context of flotation agents for the mining sector, for example, operators notice how this compound pulls less froth interference when compared with normal alkyl or aryl dithiophosphate relatives. Industry feedback tells us this means lower reagent consumption on site and an easier time managing process waters post-use. Municipal treatment plants consistently thank us for that.
Agricultural users, on the other hand, point out how this molecule outperforms alternatives as a key intermediate for certain insecticides and fungicides. Ethyl and methyl analogs sometimes lack the shelf stability that this compound brings to finished products. Customers have reported less caking and clumping in powder blends after extended storage under humid conditions, which can be attributed to the tailored side chain structure we maintain batch to batch. The difference isn’t always visible on a spec sheet, but it emerges clearly in the storage yards and in the hands of workers preparing formulations at dawn.
Moving above the 15% content cutoff is not just a paper distinction. Every percentage fraction above the minimum brings with it tangible benefits, not just for headline yield, but for in-process control. At the plant, concentration directly influences solution viscosity, and that in turn affects pumping, mixing, and downstream dosing accuracy. The engineers who run these systems depend on our guaranteed content to keep things running smoothly and predictably. We do not have the luxury of vague batch labels or “approximate” purity.
I have learned through direct conversations with plant operators that even a small slip in average purity can mean hours of recalibration across a chemical production cycle. Unplanned shutdowns remain the silent killer of profitability in our business, and content consistency, while sometimes overlooked, prevents many of them. Meeting not just the letter, but the spirit of content thresholds allows customers to streamline their own QA checks and reduce unnecessary waste.
Our output focuses on a model packed for industrial flexibility. Standard containers come in polyethylene-lined fiber drums or UN-approved intermediate bulk containers, which hold up against solvents and reduce risks in shipping. We coat internal surfaces for less residual product loss, which is a lesson learned from watching one too many drums land at customer docks with product seepage. The goal stays the same: keep transport safe, leak-free, and efficient across all shipping routes, whether by rail or by long-haul truck.
We train logistics staff in proper sealing and labeling protocols beyond the basic HazCom or GHS requirements. By the time a delivery leaves our yard, the product’s integrity has already been scrutinized at three different verification points between production, packaging, and transport loading. We have never lost a shipment to regulatory non-compliance—something we attribute to the practical discipline built into every shipment, not just paperwork handed off at the last minute.
In the mining world, users employ our dithiophosphate product for the selective flotation of sulfide ores. Copper and zinc concentrate firms look for precise chemical action tailored to ore body and mill conditions. Through field visits, we learned that our product reduces the need for auxiliary foaming agents where water conditions vary through the season. This means lower total chemical consumption and less foam-management headaches for operators—tangible benefits that show in monthly budgets and daily routines.
In the synthesis of crop-protection chemicals, process chemists report reliable conversion rates and manageable cleanup. They prefer our product because it avoids side reactions that tend to appear with other thio-organics under batch conditions. Laboratories confirm low byproduct formation, and the downstream purification step, often the bottleneck in industrial production, moves forward without costly delays. By making a product that resists hydrolysis under routine storage and use temperature cycles, we cut down on the number of “scrap” lots that must be sent for secondary treatment or disposal. This real savings, measured in labor and waste volume, never shows on a marketing sheet but gets counted loudly in year-end reviews.
Older dithiophosphate compounds often get produced with less attention to the precise control of mono- versus di-substituted isomers. Our process strictly separates undesired byproducts, which keeps application performance predictable in every shipment. Some competitors ship product containing 10% or more of off-spec side chains—not always flagged on paperwork—leading to operational surprises at the plant. We do not accept that practice in our facility, and our customers have learned to trust this.
Compared with mixed O,O-alkyl dithiophosphates, our isopropylcarbamoylmethyl variant manages a tighter reactivity profile—especially noticeable where process engineers must run at high throughput for weeks. In mining, this reduces “overfroth” events and time spent cleaning flotation tanks. In agri-synthesis, it cuts down on the need to purge reactors in between batches. Small differences in chemical profile accumulate into big differences in plant uptime and overall operational safety.
Our experience as a manufacturer brings attention to the steps that matter. Raw materials go through identification with both IR and NMR. All intermediates see at least two rounds of cold filtration to pull out submicron contaminants that disrupt downstream reactions. Finished product never enters the warehouse until three independent titrations confirm content above 15%, and gas chromatography certifies absence of prohibited toxicants. The lab signs off before the packing supervisor touches a drum, and full batch traceability links every shipment to lab, floor, and operator data.
Many buyers may not notice the absence of certain impurities or the extra decimal point of consistency, but we see the impact all the way down the supply chain—fewer warranty claims, easier system maintenance, and lower waste generation. Our technical service team, made up of engineers who once stood on the production line, offer troubleshooting that’s rooted in real-world hands-on experience. They report back every unusual incident, so every batch reflects a loop of applied knowledge—not just adherence to a static standard.
Managing risk goes well beyond compliance. As a production site, we invest in scrubbing systems that neutralize airborne organosulfur emissions, a choice that follows both environmental rules and the practical need to maintain a safe working environment. Waste streams from our synthesis do not get routed to common municipal treatment but receive in-house neutralization, removing risk at the source. We do not pass environmental burdens on to somebody else down the river. On the user end, we support safety education and give plain-language guidance on storage and disposal, drawing from the lessons of decades in the field. Many customers thank us for this clarity, as it helps prevent product mishandling that puts both people and crops at risk.
Our dithiophosphate brings minimal persistence in soil or process water, breaking down into safe end products. This offers another point of difference from longer-chain, less biodegradable relatives. Extension agents working with farmers or mine reclamation teams have remarked on easier site clearance post-use, and we provide ongoing support when users face regulatory reporting questions. We take our stewardship role seriously, reflecting a long view of industry responsibility.
We do not see chemical manufacturing as a static venture. Improvements in reactor design, process automation, and in-line analytics mean better product every year. Our feedback channel reaches down to the line operator and field technician—the people who see what works and what causes trouble every day. Their input steers modification in both process and packaging. For instance, recommendations from a remote mining operation led to our adoption of UV-blocking container liners, which now keep product stable through weeks of outdoor storage in desert climates. These changes, though they may seem minor compared to formulation chemistry, give real value to real users.
Laboratory collaboration programs ensure our quality benchmarks stay meaningful in the ever-shifting regulatory landscape. We regularly bring in new analytical equipment and welcome external validation, not out of fear of audit but because shared data breeds trust. Product development cycles run in tight collaboration with pilot users who pressure-test new batches and report back any deviation, large or small. This produces a continuous improvement culture centered not on slogans, but on hands-on, measured reality.
Sourcing raw materials for isopropylcarbamoylmethyl dithiophosphate is not always straightforward. Volatility in the global chemical supply chain affects everything from shipment scheduling to feedstock purity. By maintaining secondary sources and building readiness for in-house testing of alternative suppliers, we hedge against sudden disruption. Experienced staff review every change, linking chemical origin, documentation, and processing impact before product reaches the final stage. This is time-consuming compared to automated procurement, but our real-world experience shows it pays off through fewer unplanned recalls and more consistent end-user satisfaction.
In recent years, freight issues and political shifts have underscored the need for local warehousing and responsive logistics. We adapted by building regional storage hubs in major distribution centers, cutting end-user wait times and reducing risk during international border delays. Customers, especially those managing tight seasonal windows in mining and agriculture, have responded well to this change, often returning feedback on the resilience these changes add to their supply chains. By standing behind each drum shipped—rather than hiding behind intermediaries—we remain responsible for every facet of the product’s journey.
Each year brings its unique set of hurdles, from weather-induced shipping interruptions to raw material price spikes. As a manufacturer, we adapt with an eye on both production technology and customer experience. We invest in better solvent recovery, employee safety, and long-term, trusted relationships with both customers and suppliers. Selling O,O-Diethyl-S-(Isopropylcarbamoylmethyl) Dithiophosphate with content greater than 15% means standing on a foundation built over decades: one of learning, adjustment, technical investment, and earned trust. Our decisions stem from hands-on lessons, not mere theoretical ideals. In every batch, drum, and customer call, we see the connection between consistent, responsible manufacturing and real-world industry progress.