Products

O,O-Diethyl-S-Chloromethyl Dithiophosphate [Content>15%]

    • Product Name: O,O-Diethyl-S-Chloromethyl Dithiophosphate [Content>15%]
    • Alias: dichlorvos
    • Einecs: 284-817-7
    • Mininmum Order: 1 g
    • Factroy Site: Yudu County, Ganzhou, Jiangxi, China
    • Price Inquiry: admin@ascent-chem.com
    • Manufacturer: Ascent Petrochem Holdings Co., Limited
    • CONTACT NOW
    Specifications
    HS Code 857620
    Chemicalname O,O-Diethyl-S-Chloromethyl Dithiophosphate
    Casnumber 2524-04-1
    Molecularformula C5H12ClO2PS2
    Molecularweight 234.71
    Appearance Colorless to pale yellow liquid
    Content >15%
    Boilingpoint 98-100°C at 1 mmHg
    Density 1.36 g/cm³ at 20°C
    Solubility Insoluble in water, soluble in organic solvents
    Flashpoint 110°C (closed cup)
    Odor Pungent
    Storagetemperature Store below 30°C
    Stability Stable under recommended storage conditions
    Refractiveindex 1.554 (20°C)
    Vaporpressure 0.02 mmHg at 20°C

    As an accredited O,O-Diethyl-S-Chloromethyl Dithiophosphate [Content>15%] factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing The packaging is a 25 kg blue HDPE drum, securely sealed and labeled with product details and hazard warnings for O,O-Diethyl-S-Chloromethyl Dithiophosphate (>15%).
    Shipping O,O-Diethyl-S-Chloromethyl Dithiophosphate [Content>15%] should be shipped in tightly sealed containers, protected from moisture and direct sunlight. It must be labeled as a hazardous chemical, and transported according to local, national, and international regulations for dangerous goods, typically under class 6.1 (toxic substances). Handle with appropriate safety precautions.
    Storage O,O-Diethyl-S-Chloromethyl Dithiophosphate [Content>15%] should be stored in a cool, dry, well-ventilated area away from heat, sparks, flame, and incompatible materials such as strong oxidizers and acids. Store in tightly sealed containers, protected from moisture and direct sunlight. Clearly label the storage area and ensure it is accessible only to trained personnel wearing appropriate personal protective equipment.
    Application of O,O-Diethyl-S-Chloromethyl Dithiophosphate [Content>15%]

    Applications of O,O-Diethyl-S-Chloromethyl Dithiophosphate [Content>15%] in Industrial Manufacturing

    As a direct manufacturer of O,O-Diethyl-S-Chloromethyl Dithiophosphate with content greater than 15%, we support a range of professional downstream sectors through precise supply and technical service. This raw material plays distinct roles at different points of industrial value chains. Detailed below are real-world applications across key industries, along with technical guidance on compliance, addition rates, process integration, and expected final products of downstream partners.

    1. Mining: Sulfide Ore Flotation Reagents

    Our chemical excels as a selective collector in the beneficiation of non-ferrous metal sulfide ores, particularly for copper, lead, and zinc recovery. Plants utilize this compound for its strong chemisorption onto mineral surfaces, allowing efficient separation even in complex polymetallic systems. Downstream clients optimize reagent dosage based on ore composition, grade requirements, and operating conditions to achieve consistent concentrate yield and purity.

    Industry compliance standards

    Typical usage ratio

    Downstream process integration

    Final product types

    2. Lubricant Additives: Extreme Pressure (EP) Formulations

    Formulators in the lubricants industry use our product as a phosphorus-sulfur donor, essential for metal surface passivation and wear protection under high-pressure or shock-load conditions. Its distinctive molecular structure allows efficient incorporation into additive packages, enabling gear oil, hydraulic fluid, and industrial grease producers to meet stringent testing thresholds on wear, corrosion, and load-carrying capacity.

    Industry compliance standards

    Typical usage ratio

    Downstream process integration

    Final product types

    3. Pesticide Intermediates: Synthesis of Organophosphorus Agrochemicals

    Downstream agrochemical manufacturers utilize this intermediate in the synthesis of specific organophosphorus pesticide actives. The compound serves as a key phosphorylating agent in multiple-step processes, enabling the construction of molecular frameworks required for potent agricultural pest control products. Controlled reaction conditions and precise raw material dosing are critical to maintain target purity and regulatory conformity in the final active ingredient.

    Industry compliance standards

    Typical usage ratio

    Downstream process integration

    Final product types

    4. Metalworking Fluids: Corrosion Inhibitor and Antiwear Component

    Metalworking fluid producers rely on this material as an organophosphorus additive to inhibit corrosion, reduce tool wear, and prolong bath life during metal cutting, grinding, and forming operations. It imparts specific properties to synthetic and semi-synthetic metalworking formulations, ensuring surfaces remain protected under high thermal and mechanical stress encountered in industrial machining environments.

    Industry compliance standards

    Typical usage ratio

    Downstream process integration

    Final product types

    5. Rubber Compounding: Curing Accelerator/Secondary Antioxidant

    Technical rubber manufacturers leverage the phosphorus-sulfur chemistry to fine-tune vulcanization kinetics in specialty rubber goods. Used as a synergistic secondary accelerator and antioxidant, this raw material supports optimal crosslink density, color stability, and protection against reversion or premature aging in both natural and synthetic rubber systems.

    Industry compliance standards

    Typical usage ratio

    Downstream process integration

    Final product types

    6. Industrial Cleaners: Sulfur-Phosphorus Complexing Agent

    In the production of heavy-duty industrial cleaning chemicals, downstream formulators select this compound to promote the solubilization and removal of metal sulfide and phosphate residues from processing equipment. Its complexing action under alkaline or mildly acidic conditions ensures rapid breakdown of persistent scales within reactors, pipelines, and mineral processing lines, minimizing downtime and maintenance intervals.

    Industry compliance standards

    Typical usage ratio

    Downstream process integration

    Final product types

    Free Quote

    Competitive O,O-Diethyl-S-Chloromethyl Dithiophosphate [Content>15%] prices that fit your budget—flexible terms and customized quotes for every order.

    For samples, pricing, or more information, please contact us at +8615365186327 or mail to admin@ascent-chem.com.

    We will respond to you as soon as possible.

    Tel: +8615365186327

    Email: admin@ascent-chem.com

    Inquiry

    Get Free Quote of Ascent Petrochem Holdings Co., Limited

    Flexible payment, competitive price, premium service - Inquire now!

    Certification & Compliance
    More Introduction

    O,O-Diethyl-S-Chloromethyl Dithiophosphate: Quality and Value from a Real Producer

    Introduction to O,O-Diethyl-S-Chloromethyl Dithiophosphate

    O,O-Diethyl-S-Chloromethyl Dithiophosphate [Content>15%] remains one of the key ingredients we manufacture, refined across years of experience and focus on technical proficiency. Our production teams know the significance behind every barrel tied to pesticide and industrial intermediate demand. Practical knowledge of its chemical behavior, along with hands-on control over the reaction and post-processing, gives us confidence not claimed lightly. This product walks the line between systematic chemical accuracy and cost stability for large-scale customers.

    Production Approach and Model Consistency

    We operate our reaction vessels with strict monitoring equipment. Controlling exotherm and managing feed rates form daily talking points for our shift foremen. Raw material purity shapes batch yields, but equipment layout and operator attention lock in repeatability. Product Model: O,O-Diethyl-S-Chloromethyl Dithiophosphate [Content>15%], typified by a sulphur-rich profile and robust P=S bond structure, reaches the market only after onsite GC-MS and IR checks confirm both identity and content. Batch records stand ready for review, linking each drum to actual production logs.

    Years of steady output let us maintain a >15% assay while hitting bulk volume, so larger-scale buyers see minimal batch-to-batch drift. No analyst sitting at a distance can match the certainty we get from being the hands at the reactor. This focus goes beyond paperwork and touches everything from reaction temperature to downstream neutralization.

    Typical Specifications and Key Characteristics

    O,O-Diethyl-S-Chloromethyl Dithiophosphate [Content>15%] shows as a yellow to amber liquid, with an oft-noted pungency from the chloromethyl group. Viscosity and solubility vary by the lot’s precise age and handling, which is why our shipping specs always carry a recommended turnover date. Compliance checks for content by phosphorus assay, free acidity, specific gravity, and water content take place with each lot, governed by protocols written through trial and error, not just clipboard theory.

    A crucial factor is hydrolytic stability. We blend and store under dry N2 or argon where appropriate, controlling decomposition that can produce undesirable byproducts. Investment in vapor-phase monitoring hardware and leak detection stands as a testament to mistakes learned and lessons applied—service interruptions in the past spurred us to build a risk-averse loading process.

    Where This Product Fits and How Customers Use It

    Most of this compound lands in the hands of pesticide formulators, especially organophosphate or dithiophosphate lines. Some take it direct into in-plant reactions, where it acts as a phosphorus-sulfur donor. Others see value in it as a building block for custom molecules, reacting further to yield specific intermediates. Our logistics teams talk with procurement planners on solvent compatibility, handling temperature, and turnover rates. Safety officers appreciate our regular shipment QC and dialogue around transportation.

    It's common for customers to ask about dithiophosphate selection. What they end up using depends on their downstream process temperatures, local environmental codes, and even the laydown options in their own storerooms. We take time to walk through formulation choices, from dilution in base to compatibility with co-additives or solvent carriers. This conversation goes beyond spec sheets—most production hiccups trace back to a misunderstanding of how a batch reacts to actual, in-the-moment plant conditions.

    Differences from Other Dithiophosphate Products

    Comparing O,O-Diethyl-S-Chloromethyl Dithiophosphate to alternatives underlines both overlap and key departures. Some clients ask how it measures against O,O-dimethyl derivatives or O,O-diethyl variants with different halogen substitutions. The answer comes down to reactivity profiles: the S-chloromethyl group grants it a faster reaction rate in nucleophilic substitution, but also raises its needs for dry handling to prevent unwanted hydrolysis. Where O,O-diethyl analogs with other leaving groups show more stability but slower downstream conversion, this grade requires tighter control during storage but pays back in throughput and reactivity.

    Physical properties shift with every minor change. Go from methyl to ethyl, and boiling points climb. Swap out chlorine for something bulkier, and the molecule's reactivity or safety profile shifts—sometimes for the better, sometimes not. Our teams have run comparative pilot runs, watching how plant temperature, mixing, and bottle turns impact output or waste rate. These details change outcomes for formulators and production managers, impacting both yields and plant safety performance.

    Meeting Technical and Safety Demands in Production

    Producing this compound takes more than just standardized documentation. Our day-crew teams check closed-loop venting and double-check the compatibility of valves, transfer lines, and drum materials before every batch fill. Chlorinated phosphorodithioate intermediates can attack common gaskets and pump seals—you learn these lessons only by troubleshooting leaks and adapting on the fly.

    On the QA side, temperature and pH control determine final output more than theoretical calculations ever show. It’s not rare for process supervisors to walk trace lines and check for condensation or leaks firsthand, not trusting anything they can’t see or smell.

    Clients appreciate our transparency on minor variations. One season’s output of raw ethanol or chloromethanol affects the trace impurity levels. Teams analyze and track these drifts—not to hide them, but to build solutions with each end user. We’re upfront about what minor variances mean for a large reactor charge versus smaller lab-scale testing.

    Transport and Handling Insights from Real Experience

    Anyone who’s shipped chloromethylated dithiophosphates knows about pressure, temperature, and the reality of global freight timelines. We choose packaging based on shipment distance, lead time, and local climate swings—metal drums for some carriers, composite totes for others. Our loading operators see the downstream effects of each packaging material, noting corrosion or headspace changes over time. Unloading at the customer’s site reveals any flaw in drum selection more quickly than a checklist ever does.

    We encourage direct dialogue between our team and those at delivery, swapping notes on what’s working and where improvements arise. Some requests come in for alternate filling—bulk tanker, smaller carboys, even vessel-to-vessel transfer for certain bulk-buyers—prompting adjustments in both scheduling and safety oversight.

    Environmental and Regulatory Awareness—Directly Applied

    Producing O,O-Diethyl-S-Chloromethyl Dithiophosphate involves compliance with local environmental standards, but paperwork isn’t our only concern. Teams experience first-hand how vented material can impact local air or water systems. As a manufacturer, we commit direct resources—on-site secondary containment, scrubbers for offgas, and physical barriers.

    Safe handling rules grow from mistakes. Years ago, one incident of trace spillage taught us the value of redundant floor barriers and continuous air monitoring. We carry this vigilance to our shipping preparation, making sure both our plant and the client’s site see the lowest risk exposure. Feedback from customers facing evolving regulations gives us the practical basis to suggest handling improvements or design product labels with current best-practice advice.

    From Plant Lessons to Customer Results

    Pesticide manufacturers and specialty intermediate producers shape most of the demand for this chemical. Many send technical teams for plant visits, preferring direct engagement over glossy brochures. We let visitors tour the lines, review control charts, and trace product fate from raw stock to filled drum. Our operators explain why temperature ramp-up rates or solvent choices affect not only output but safety and environmental risk.

    Customers choose our material largely because they trust the tale behind the numbers. Their purchasing teams weigh not just the initial cost but the total lifecycle—including plant disruptions, potential off-spec batches, and adaptation to minor input changes. We share real-world observations about how our chemical behaves in large reactors, in blending with co-formulants, or during scaling from trial to full production. If a batch reacts out of spec, we help troubleshoot. These lessons get baked into every revised process or shipping cycle.

    Supporting Innovation and Customization

    The synthetic possibilities around O,O-Diethyl-S-Chloromethyl Dithiophosphate interest research labs and commercial production lines alike. R&D teams want clear, consistent feedback on customization potential. We field requests for alternate grades—minor content boosts, purity lifts, or alteration of stabilizer types. Some labs want us to support pilot-scale tests, others ask for technical assistance adapting our product for tailored synthesis. Every request runs through plant feasibility checks—equipment compatibility, throughput capacity, and yield impact—before we roll changes into commercial output.

    We invest in this flexibility so that customers don’t chase a dream formulation only to find their supplier lacks scale-up experience. Our track record in scaling up from kilogram to multi-tonne lots keeps users confident from pilot to commercial run. Ongoing feedback from R&D teams helps refine both plant parameters and support documentation, closing the loop between experiment and large-scale manufacture.

    Managing Supply Chain Risks and Responding to Market Shifts

    Supply chain resilience has shaped our operations for over a decade. When shipping delays or raw material price spikes hit global chemicals trade, production lines can stall in hours. Years of dealing with market turbulence taught us to source from multiple upstream vendors, keep buffer stocks, and lock in forward material contracts.

    No one supplier or customer lives in a vacuum. We share production and demand projections openly with our partners, aiming for realistic shipping schedules rather than optimistic but fragile timelines. Our partnerships with logistics providers come from regular communication and mutual learning—knowledge of port protocols, customs hurdles, and the quirks of regional delivery shape our planning decisions.

    Surging demand from agricultural sectors or slowdowns amid regulatory shifts in organophosphorus compounds force adaptive thinking. Sometimes we run extra shifts and flex maintenance routines, other times we advise buyers about alternative products or formulations that better suit emerging compliance rules or price curves.

    Sustaining Quality in Years, Not Just Months

    Quality in this business comes from people and culture as much as process control hardware. Our plant managers enforce cross-team knowledge transfer. New operators train alongside experienced ones, learning to spot subtleties in color change, odor, or viscosity that barely register in a lab report. This tacit knowledge keeps quality-centered culture alive as staff cycles or technologies evolve.

    Routine audits—internal and by visiting clients—build accountability and highlight room for in-plant improvement. Every customer audit brings actionable feedback; sometimes an outside eye spots a production step ripe for tweak or upgrade. This openness grounds our operations against complacency, keeping quality high as regulations and expectations shift.

    Safety and Stewardship from Production Floor to End-User

    Our crews sweat the details of proper PPE, loading dock protocols, and incident drill reviews well before shipment. Our on-site EHS teams coordinate with outside inspectors, ensuring process changes or plant upgrades enhance, not compromise, our historic safety record. Clients value our guidance on safe handling, storage, and disposal.

    Years of direct plant experience shine through—unlike companies who only resell, we answer for our manufacturing record. We support customers in risk assessment and training, including review of specific plant setups and custom recommendations. On several occasions, sharing lessons from our own near-misses kept users from repeating similar errors in their facilities.

    Insights and Opportunities Ahead

    The experience, investment, and care that go into O,O-Diethyl-S-Chloromethyl Dithiophosphate [Content>15%] provide buyers more than chemical content—they receive a partnership grounded in process smarts, supply chain realism, and mutual technical discovery. Each order carries stories of problem-solving, real-world testing, and ongoing refinement.

    Looking ahead, we continue to invest in both process upgrades and knowledge transfer. Automation blends with human expertise, and every improved batch reflects countless small tweaks grounded in plant-floor observations. Customers rest assured that each barrel links back to a real place, real people, and a history of problem-solving.

    O,O-Diethyl-S-Chloromethyl Dithiophosphate made by a true producer carries more than a formula; it brings a legacy of technical rigor and hands-on learning. Those who rely on it know their supply rests in the hands of those who make it, day after day, with pride and precision.

    Top