Products

O,O-Diethyl-O-2,5-Dichloro-4-Methylthiophenyl Phosphorothioate

    • Product Name: O,O-Diethyl-O-2,5-Dichloro-4-Methylthiophenyl Phosphorothioate
    • Alias: Fenitrothion
    • Einecs: 248-836-3
    • 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 711536
    Chemical Name O,O-Diethyl-O-2,5-Dichloro-4-Methylthiophenyl Phosphorothioate
    Cas Number 28249-77-6
    Molecular Formula C11H15Cl2O3PS
    Molecular Weight 345.19 g/mol
    Appearance Colorless to pale yellow liquid
    Solubility In Water Insoluble
    Boiling Point Decomposes before boiling
    Density 1.36 g/cm3 (approximate)
    Vapor Pressure Low vapor pressure
    Odor Mild, characteristic odor

    As an accredited O,O-Diethyl-O-2,5-Dichloro-4-Methylthiophenyl Phosphorothioate factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing The chemical is packaged in a 500g high-density polyethylene bottle with a secure screw cap, featuring hazard symbols and detailed labeling.
    Shipping Shipping of **O,O-Diethyl-O-2,5-Dichloro-4-Methylthiophenyl Phosphorothioate** requires compliance with hazardous material regulations. Package in tightly sealed, compatible containers, clearly labeled with hazard information. Transport under cool, dry conditions, away from heat, ignition sources, and incompatible chemicals. Ensure all documentation and safety data sheets accompany the shipment according to local and international regulations.
    Storage O,O-Diethyl-O-2,5-Dichloro-4-Methylthiophenyl Phosphorothioate should be stored in a cool, dry, well-ventilated area, away from direct sunlight, heat, and incompatible substances such as strong oxidizers. Keep the container tightly closed and appropriately labeled. Use corrosion-resistant storage materials. Store under secure conditions, minimizing exposure and ensuring restricted access to authorized personnel only. Avoid moisture and sources of ignition.
    Application of O,O-Diethyl-O-2,5-Dichloro-4-Methylthiophenyl Phosphorothioate

    Applications of O,O-Diethyl-O-2,5-Dichloro-4-Methylthiophenyl Phosphorothioate in Industrial Manufacturing

    O,O-Diethyl-O-2,5-Dichloro-4-Methylthiophenyl Phosphorothioate primarily supports downstream sectors centered around agrochemical and crop protection product manufacturing, with real-world adoption by formulators of specific active ingredient solutions. The following sections detail differentiated industrial use scenarios, focusing on established and regulated sectors respecting global standards.

    1. Active Ingredient in Insecticidal Formulations for Crop Protection

    Major agrochemical producers incorporate this organophosphorus compound directly as the primary active substance in concentrated insecticidal products designed for commercial farming applications. The compound joins batch processing at the active blending stage, where formulation chemists integrate it with surfactants, solvents, and carriers to tune release profile and leaf adherence according to local pest control requirements. Dosage precision remains critical, as variation impacts field safety and regulatory compliance. Downstream, the material advances through dilution, packaging, and extensive QC to deliver liquid or granular insecticide concentrates for licensed agricultural distribution channels.

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    2. Intermediate for Synthesis of Broad-Spectrum Pest Control Agents

    Producers of advanced organophosphorus pesticides employ the compound as a strategic intermediate for multi-step synthesis of broad-spectrum active molecules suited for both pre- and post-emergence application in large-acreage crops. After initial raw material verification, operators introduce the material to esterification or thiophosphorylation reactions, using it as a reactive backbone for downstream structural modifications. Precision tracking of molar ratios and reaction conditions determines overall purity of the final technical active, which then moves to purification and micro-encapsulation for commercial formulation.

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    3. Component in Public Health Vector Control Formulations

    Municipal health suppliers and public sector contractors source this compound for use in indoor residual spray and vector management applications targeting disease-carrying insects. Facility technicians blend the technical material with proprietary adjuvant matrices tailored to local deployment protocols, ensuring precise coverage and minimal environmental drift in sensitive settings. As vector control regulations in public health remain especially rigorous, thorough batch tracking and traceability accompany the downstream process from raw charging to packaging of ready-to-use sprays or fogging solutions.

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    4. Substrate for Controlled-Release Agrochemical Coatings

    Specialty formulators utilize this compound as a substrate in the design of controlled-release coatings for pesticide granules. The raw material integrates with polymeric matrices through extrusion or spray-coating operations, enabling tailored release profiles suited for extended field persistence in soil or on plant surfaces. Compliance with environmental and runoff regulations drives the ratio of substrate incorporation, coordinated with crosslinker or carrier selection to sustain efficacy over required crop protection intervals. This process produces value-added slow-release agricultural inputs to meet precision agriculture planting regimens.

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    Free Quote

    Competitive O,O-Diethyl-O-2,5-Dichloro-4-Methylthiophenyl Phosphorothioate prices that fit your budget—flexible terms and customized quotes for every order.

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    Certification & Compliance
    More Introduction

    O,O-Diethyl-O-2,5-Dichloro-4-Methylthiophenyl Phosphorothioate: Production-Level Insights and Real-World Application

    Manufacturing O,O-Diethyl-O-2,5-Dichloro-4-Methylthiophenyl Phosphorothioate has introduced us to the evolving demands and expectations of modern agricultural chemistry. Working at the intersection of innovation and practicality, our facility produces this compound at industrial scale, shaped by years of hands-on refinement, safety optimization, and commitment to quality. Every batch arriving at the loading dock reflects the lessons learned across hundreds of production runs—real chemistry, not just trade.

    Model and Production Specifics: From Lab Bench to Full Plant Scale

    We refer to this product using its proprietary model: DDMP-25. Behind this label sits a chemical synthesis fine-tuned over cycles of process tweaks. The raw starting materials begin their journey in our controlled reactors. Over the years, we’ve tuned reagent ratios and temperature profiles to pull the purest product from our columns. Purity thresholds average above 97% for technical grade, as confirmed by our in-house GC-MS—our team doesn’t send anything down the line that doesn’t meet strict benchmarks. We rely on a closed system, fine filtration, and continuous sampling from first hour to tail end. Every packed drum represents more than the sum of reactants; it signals completion of a cycle watched over by chemists and engineers whose shoes tread the plant floor daily.

    From Molecule to Field: Practical Utility and Real Observations

    This compound entered the agrochemical sector with clear purpose: field practitioners put it to use where they demand systemic and contact control in crop protection. Its organophosphorous backbone suits large-scale application, without imposing tight application windows that complicate sprayer schedules. Growers choose it for strength against coleopteran and lepidopteran pests in crops like cotton, rice, and maize. Talking to consultants, feedback echoes consistency—treated fields show marked pest suppression over seasons, with pest rebound slower due to the residual properties carried by this specific molecular configuration.

    Formulation teams favor this molecule for its solvent compatibility, sticking at moderate concentrations without caking or separation in standard EC (emulsifiable concentrate) blends. Out in the storage sheds, coformulation tests tell us it stays stable in multi-active recipes, allowing formulators flexibility when integrating newer actives or surfactants. In recent years, we’ve shifted towards micronized variants for improved dispersion, responding to demand from tank-mix end-users who will not accept clogged filters in high-acreage runs.

    Safety, Handling, and Worker Realities

    No one who works with this compound at scale forgets the importance of daily safety discipline. Our facility does not treat this molecule lightly; engineers routinely review airflow and containment checks, and operators rely on PPE and established protocols for every step from weighing to drumming. We have invested in on-site analytical capacity—not to satisfy on-paper compliance, but because quick diagnostics avoid escalation of quality or exposure issues. Over time, even experienced hands admit that strict training and transparent team communication save more trouble than the quickest fixes. Field users’ experience backs this: secure packaging, clear labeling, and straightforward MSDS guidance translate to fewer incidents at the application stage. Repackaging partners appreciate tamper-evident seals and batch-level traceability baked into every shipment.

    Comparison with Other Organophosphates and Distinct Advantages

    Working with O,O-Diethyl-O-2,5-Dichloro-4-Methylthiophenyl Phosphorothioate puts us in direct touch with those who remember trial runs of older phosphorothioates. Compared to classic alternatives like parathion or chlorpyrifos, DDMP-25 balances high-field persistence with a more targeted residual curve. Many legacy organophosphates linger longer in soil or clip yields at higher doses—tested side by side, field officers found this molecule preserves stand establishment and does not scorch new shoots. Rainfastness checks in field plots showed lower wash-off rates than some of the cheaper substitutes, helping reduce retreatment costs in unpredictable seasons.

    From our own internal audits, downstream applicators rarely report phytotoxicity or formulation separation, common complaints with older base molecules. What truly stands out is the customizability DDMP-25 provides when paired with new-gen adjuvants or in alternation with synthetic pyrethroids; we have documented outcomes where integrated resistance management practices gain from this versatility, delaying onset of field resistance as documented by agronomic researchers in intensive cropping regions.

    Technical Application in the Real World

    Logistics teams on the farm confirm that properly blended batches maintain spray line integrity through long shifts, even when acreage stretches demand lengthy runs. The lower density compared to older crystalline alternatives lets field teams reduce wear on pumps. Mixers appreciate its fast dissolution, and QA sample checks rarely flag instability over quarterly storage. In cold stores or high humidity, clumping remains a non-issue. Rural input suppliers have commented on the benefit of a product that, after delivery, does not require second-stage reconstitution or advanced agitation—factory consistency means just that, and every field team down the line can apply confidently on standard equipment without troubleshooting.

    Crop scientists often put this molecule to use in research trials beyond its original registration. We’ve seen published evidence of knockback effect on emergent pest populations, and extension specialists note improved outcomes when paired in rotation with alternate mode-of-action products—each rotation helping keep resistance from outpacing innovation. We receive periodic queries from research agronomists looking to tweak rates in micro-plot work, and our process engineers respond directly, knowing plant operators have refined purity and granule sizing to meet these advanced needs. Such two-way dialogue grounds R&D in on-the-ground realities.

    Supply Chain Know-How: Meeting Fluctuating Market Demands

    Production cycles have taught us about shifting market signals. Run rates change season to season; drought or flood in one geography can mean sudden spikes in demand elsewhere. Our supply chain office tracks active ingredient requirements well ahead, buying feedstocks and lining up transport, especially during regional surges before planting windows. Unlike trading houses that find themselves short in a pinch, our on-site warehousing and year-round production keep buffer stocks ready. We fine-tune batch sizes not just for efficiency but for flexibility—one year, it’s 200-liter drums, the next quarter, clients ask for flexitank shipments. Plant workers and logistics coordinators solve these puzzles daily, keeping delivery schedules tight and lead times short.

    Our sales engineers and client liaisons often walk the fine line between the needs of global formulators and local end-users. It takes direct channels and clear product flow mapping to bridge from factory floor to grower field, and every production shift that logs a new batch knows this isn’t just chemistry—it’s supply chain discipline, the sum of many moving hands working towards dependable output. Our years of experience showed consistent output in extreme weather disruptions keeps clients loyal—even competitors acknowledge that only a fully integrated manufacturer can promise such reliability.

    Environmental Considerations: Balancing Output and Responsibility

    From the factory, environmental stewardship starts at the core. We maintain solvent recycling at over 80% recovery across runs, limiting plant footprint and cutting tank cleaning cycles. Process engineers routinely introduce new traps and scrubbing media to minimize air emissions; these measures grew from early lessons, not regulatory deadlines. Solid residue is managed to minimize off-site disposal, and internal audits prioritize waste reduction at source. We see the impact of cumulative improvements each month; solvent purchases drop, maintenance teams report fewer system upsets, and effluent matches our own stricter benchmarks—experience breeds process, and process results in measurable gains.

    Field feedback influences product stewardship well beyond the plant. Advisory teams collect application and run-off data, reporting back to process design engineers who act on findings to tweak synthesis or pursue joint studies with environmental scientists. The result is a cycle where the needs of soil microbiomes, applicator exposure concerns, and baseline residue checks form part of factory priorities, not just marketing. We have discontinued blends or encouraged rotation schedules in regions where cumulative organophosphate load risks rise, choosing long-term brand trust over short-horizon sales.

    Continuous Improvement: Built on Factory Floor Learning

    Nobody exposed to this molecule’s journey from synthesis to final use can ignore the pace of change in production standards. Operators bring up new instrumentation tools at daily stand-ups—if a better spectrophotometer flags compromise in impurity profile sooner, the plant invests ahead of the curve. Maintenance teams advocate for sealed reactor upgrades when past-practice leaks raise concern; leadership shifts shop floor funds to real upgrades, not just paperwork exercises. Open reporting channels encourage line operators to voice ideas; more than once, a practical tweak from an experienced hand saved downtime or improved distribution in the drying line.

    Management realised early that top-down mandates alone never solve bottlenecks—chemists, engineers, and cleaning staff work together, learning from near-misses or successes alike. In this way, the product’s evolution reflects real-world feedback, not assumptions. Yearly reviews take into account not just batch yields and lab certificate rates but also what field reps, client agronomists, and warehouse managers see in their daily grind. The cycle of improvement is driven by feedback loops that connect plant chemistry with boots-on-the-ground experience, ensuring that performance matches or beats the changing expectations in international agriculture.

    Regulatory Realities and Industry Trends

    Laws, registration norms, and compliance targets keep shifting. From original regulatory filings to today’s international harmonization efforts, our team adapts protocols and batch record-keeping to the latest guidelines. Inspection readiness is more than a buzzword; it’s part of process plans, built into how operators log every run. Our experience dealing with multi-country label claims and dynamic MRLs means updates to documentation flow straight from the plant to our partners. We avoid shortcutting these protocols, knowing that a gap in traceability today becomes next season’s audit headache.

    As industry scrutiny grows, especially after watershed shifts in pesticide regulation, we keep close ties with both authorities and research circles. Participation in working groups and feedback to standards agencies helps us ensure that DDMP-25 maintains its approval in key markets. When required, we supply granular impurity data, real-life application data, and rapid-response sample sets—a practice that prevents bottlenecks in product flow and avoids last-minute surprises. It’s these habits, honed in production trenches more than boardrooms, that shape legal resilience and market endurance for our chemical solutions.

    Perspectives on Market Differentiation—Why Our Product Holds its Ground

    Scale, reliability, and first-hand problem-solving underpin how our DDMP-25 sets itself apart from competitors. Repeat customers cite consistent spray coverage and fewer post-purchase complaints as reasons for loyalty. In one case, a multi-country seed company measured yield lifts across five seasons, correlating results to the standout batch consistency from our plant lines. Distribution partners mention that technical inquiries rarely escalate beyond initial guidance, streamlining their customer support.

    End-users tell us the compound integrates smoothly into their field practices without changes to dosage, diluent, or application protocol. It’s not a theoretical advantage—it comes from tight batch control and a looped feedback system that plugs agronomists, plant operators, and transport partners into the quality conversation. Because technical teams remain accessible, trouble tickets rarely linger. Every production shift understands the direct tie between plant diligence and how field officers get their jobs done at the sharp end of the season. This culture of shared responsibility, not buzzword compliance, keeps our molecule at the top of preference lists in competitive markets year after year.

    Looking Ahead: Forward-Thinking Practice Rooted in Experience

    Market trends and grower preferences change quickly. We watch rates of new pest outbreaks, the arrival of resistance, and the emergence of green chemistry alternatives. Our recent initiatives reflect this—ramping up pilot facilities for low-drift granules, supporting field trials for alternate formulations, and collaborating with agritech partners testing remote sensing for in-field spray pattern optimization. This ongoing investment means our product keeps pace—not just with chemistry, but with technology and practical solutions at the farm edge.

    The next generation of our manufacturing plant builds on automation, in-line monitoring, and remote diagnostics. A new analytic wing, staffed by practitioners who cut their teeth on production lines, powers continuous feedback and trend mapping across batches and seasons. Every improvement reflects a mix of pride and hard-won know-how: solving supply chain hiccups, adapting to regulatory currents, and delivering field-ready chemical solutions that answer to both performance and responsibility. Our commitment runs deeper than product labels—we stand behind every delivery with the full weight of our team’s experience, resilience, and ongoing learning.

    The Value of a Manufacturer’s Perspective

    Experience matters in chemistry. DDMP-25 is not a product of commoditized trading or disconnected production—it is the result of plant-floor persistence, direct feedback from applicators, and real accountability from first beaker to farm gate. We keep our lines running smoothly because the work provides direct benefit to those growing our food, managing field realities, and balancing short-term yield with long-term stewardship. We welcome questions from those interested in joining us, as inquiry and honest dialogue fuel the practical advances that make both our product and team better, season after season.

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