Products

O,O-Diethyl-O-(2,2-Dichloro-1-Β-Chloroethoxyvinyl) Phosphate

    • Product Name: O,O-Diethyl-O-(2,2-Dichloro-1-Β-Chloroethoxyvinyl) Phosphate
    • Alias: Dichlorvos
    • Einecs: 265-047-2
    • 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 192435
    Chemical Name O,O-Diethyl-O-(2,2-Dichloro-1-β-Chloroethoxyvinyl) Phosphate
    Cas Number 52-68-6
    Molecular Formula C8H13Cl3O4P
    Molecular Weight 329.53
    Appearance Colorless to pale yellow liquid
    Density 1.437 g/cm³ (20°C)
    Boiling Point 158°C at 0.4 mmHg
    Solubility In Water Insoluble
    Melting Point -20°C
    Vapor Pressure 1.7 × 10^-5 mmHg (20°C)
    Refractive Index 1.501 (20°C)
    Flash Point 110°C (closed cup)
    Common Use Insecticide (active ingredient in Dichlorvos/ DDVP)
    Stability Decomposes in alkaline media
    Odor Mild, ester-like

    As an accredited O,O-Diethyl-O-(2,2-Dichloro-1-Β-Chloroethoxyvinyl) Phosphate factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing A 1-liter amber glass bottle, tightly sealed, labeled with hazard warnings and chemical details for O,O-Diethyl-O-(2,2-Dichloro-1-β-chloroethoxyvinyl) phosphate.
    Shipping O,O-Diethyl-O-(2,2-dichloro-1-β-chloroethoxyvinyl) phosphate must be shipped in approved, tightly sealed containers, clearly labeled, and compliant with hazardous material regulations. Transport requires cool, dry conditions, away from incompatible substances, with appropriate documentation. Personnel must follow safety protocols as per SDS and regulatory guidelines for toxic and environmentally hazardous chemicals.
    Storage **Storage Description:** Store O,O-Diethyl-O-(2,2-Dichloro-1-β-chloroethoxyvinyl) phosphate in a tightly closed, clearly labeled container, in a cool, dry, and well-ventilated area, away from direct sunlight, heat sources, and incompatible materials such as strong oxidizers and acids. Ensure secure storage, restrict access to authorized personnel, and use secondary containment to prevent environmental release in case of leaks or spills.
    Application of O,O-Diethyl-O-(2,2-Dichloro-1-Β-Chloroethoxyvinyl) Phosphate

    Applications of O,O-Diethyl-O-(2,2-Dichloro-1-Β-Chloroethoxyvinyl) Phosphate in Industrial Manufacturing

    As a direct manufacturer, we supply O,O-Diethyl-O-(2,2-Dichloro-1-Β-Chloroethoxyvinyl) Phosphate to a range of industrial sectors. Below, we outline principal downstream applications, detailing compliance aspects, typical formulation ratios, technical process integration, and real types of finished goods in each specialization.

    1. Active Ingredient for Crop Protection Products

    Our material serves as an essential organophosphate component in industrial-scale synthesis of selective agricultural insecticides. Agchem formulators incorporate it into concentrated emulsifiable and suspension formulations targeted at key pest species resistant to older active compounds. Manufacturers apply precision metering in pesticidal compounding lines, ensuring trace-level impurity control and maximum field stability. Batch records and analytical protocols meet both export market requirements and increasingly stringent toxicological review by registration authorities.

    Industry compliance standards

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    2. Synthesis Intermediate for Veterinary Ectoparasiticides

    Major animal health companies utilize this active as an intermediate for manufacturing topical veterinary treatments against ticks and flies. Formulators tailor inclusion levels to meet residue limits across various species and product presentations, ensuring animal safety and compliance with international MRLs. Dedicated cGMP lines handle transfer from technical bulk to veterinary-grade formulations. Rapid in-process checks support strict batch traceability before output to commercial packaging lines.

    Industry compliance standards

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    3. Chemical Intermediate for Specialized Polymer Additives

    Producers in plastics and polymer sectors employ this compound as a base for synthesizing custom flame retardant and plasticizer additives. Chemical engineers integrate the molecule into multi-stage alkylation or co-polymerization steps, controlling stoichiometry to meet precise thermal resistance targets for end applications. Finished additive concentrates must satisfy internal QC on migration rates and compatibility with major resin systems such as PVC and ABS, ensuring performance in demanding environments.

    Industry compliance standards

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    4. Technical Agent for Wood Preservation and Termite Control

    Wood treatment specialists use the active for formulation of persistent termite-control and wood-preserving solutions. Product development focuses on sustained-release, high-penetration systems to extend service life of outdoor and structural timber in aggressive environments. Material enters as a technical concentrate, its uptake rates and distribution optimized through solvent system selection and controlled-impregnation equipment. Ongoing production runs include environmental emission and worker safety monitoring according to occupational standards.

    Industry compliance standards

    Typical usage ratio

    Downstream process integration

    Final product types

    Free Quote

    Competitive O,O-Diethyl-O-(2,2-Dichloro-1-Β-Chloroethoxyvinyl) Phosphate 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.

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    Email: admin@ascent-chem.com

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    Certification & Compliance
    More Introduction

    Introducing O,O-Diethyl-O-(2,2-Dichloro-1-Β-Chloroethoxyvinyl) Phosphate: A Manufacturer’s Perspective

    In chemical manufacturing, real innovation shows up through the ability to fine-tune a compound’s properties—balancing physical characteristics and chemical reactivity so that a product delivers consistently and reliably. For many years, O,O-Diethyl-O-(2,2-Dichloro-1-Β-Chloroethoxyvinyl) phosphate has formed a backbone in targeted agrochemical formulations, primarily as a trusted organophosphate. As a producer deeply invested in synthesis, batching, and long-term supply, I think it’s important to take an inside look at this chemical beyond textbook descriptions or marketing gloss.

    What Sets O,O-Diethyl-O-(2,2-Dichloro-1-Β-Chloroethoxyvinyl) Phosphate Apart

    There are many phosphorylated compounds in circulation. Some exist only as basic research samples, others as multipurpose intermediates, but very few combine selective reactivity with stable handling quite the way this particular molecule does. Through process improvements, such as careful temperature staging and stringently clean reaction lines, it’s possible to minimize byproduct formation and achieve commercial-grade purity—consistently. Every batch demonstrates the outcome of precise chlorination and vinylation, which sets up the unique structure responsible for the compound’s mode of action.

    Direct exposure to the production process reminds me daily how critical each variable is—from raw material quality, to reaction pH, to post-processing filtration. Control delivers uniform physical appearance, with product ranging from clear to faintly amber liquids, always with a purity exceeding the minimums demanded by formulation partners. We run gas chromatography analyses on every run, we record real-time temperature-pressure curves, and our staff know the value of a sharp, undistracted eye during bottling. That’s what keeps our product standing apart from third-party alternatives, where outcomes may vary from load to load.

    Specification and Assured Quality

    Market application places serious demands on purity and stability. As an organophosphate destined for pest management products, trace residuals and contaminants have no room here. Every drum or container issued from our facilities reflects not just technical compliance but a culture of accountability—where each stage of synthesis and bottling receives signed verification, and where batch samples are shelved for potential retesting. Typical assays present active content in a range well within set tolerances, verified through both in-house and independent laboratories. Water content, acidity, and residual solvents receive separate profile confirmations. Technical specifications vary by client need, but every lot shares the goal: passing all regulatory checks while matching real working requirements.

    Model and Variants

    Through direct experience with the equipment and hands-on troubleshooting, I’ve learned that efficient production sometimes means providing multiple variants to clients. Some sectors require ultra-high purity for low-rate liquid sprayers, while others lean on cost-effective bulk containers for broader-scale fieldwork. We control volume run parameters, but never compromise on active ingredient concentration. If the product is destined for a humid climate, we customize packaging and desiccant loading. If our downstream partners request batch-level blending for multi-functional formulations, we can blend to their needs without contaminants or cross-reactivity. We stay alert to changing regulatory climates, adjusting chain-of-custody and traceability documentation for full transparency.

    Practical Use in Modern Agriculture

    Not every farm or pest-management program wants or needs the same chemistry. O,O-Diethyl-O-(2,2-Dichloro-1-Β-Chloroethoxyvinyl) phosphate typically joins systems designed to break pest resistance cycles, meaning any impurity could cascade into reduced reliability or create byproduct buildup. Practical experience in supply tells me that every liter must dissolve evenly, with no hidden sludge or residue to clog nozzles or promote uneven application. For this reason, we prioritize product homogeneity at every tank-fill, using streamlined storage, anti-static practices, and container compatibility checks. These small steps matter—out in the field, a mix line breakdown or sedimentation problem costs real labor and lost coverage.

    Comparison: How Our Chemistry Differs From Common Alternatives

    Every organophosphate brings a different story to the field or lab. Some molecules lean on simple esters or single halogen substitutions, but this molecule’s distinct double dichloro motif and vinyl ether group introduce a useful, controlled reactivity. It stands out when dealing with resistant insect populations seeking to evade older chemistries. While certain historical chemicals lean on persistent environmental residues yet lack selectivity, our product, when used as labeled, exhibits controlled breakdown—leaving less risk of legacy accumulation in treated soil or runoff. Many generics focus solely on bulk pricing, ignoring the batch-to-batch differences that matter to professional applicators. We approach production with a goal to deliver every liter as consistent as the last, because real results come from stability and trust in the raw material, not from chasing the lowest cost per kilo.

    For users balancing pest management and stewardship, this product’s profile fits into integrated programs with rotational strategies, tank-mixing protocols, and evolving stewardship guidelines. That means continual communication with field users, not just paperwork exchanges. Across repeated feedback from agronomists and formulation chemists, we hear the same: time lost on unpredictable ingredient performance doubles operational costs and erodes trust. That’s a risk we work every day to avoid.

    Physical Characteristics Drive Real-World Success

    Beyond active ingredient content, O,O-Diethyl-O-(2,2-Dichloro-1-Β-Chloroethoxyvinyl) phosphate stands up to repeated real-world handling. The liquid’s manageable viscosity flows through modest pump and meter setups without excessive foaming or splashing—a feature often overlooked by those unfamiliar with field logistics in large plots under adverse weather. Water miscibility and emulsion stability enable operators to focus on acreage, not clogged equipment or uneven application. Drawing from years observing practical operations, the importance of easy, error-tolerant blending operations leads our quality teams to target optimal distribution within tank solutions, even under sub-ideal field mixes.

    Color and odor signatures provide immediate cues for quality. An off-smell or unexpected hue signals possible contamination or poor storage, something our on-site chemists are vigilant in watching for. Subtle differences in viscosity carry major consequences; we calibrate for uniform flow through standard pumps and minimize settling, even after weeks of shelf life. That hands-on attention, made possible by on-site process monitoring and field feedback, drives our adjustments to production conditions batch-by-batch.

    Manufacturing With Accountability and Transparency

    Every stage of production follows a set of practices designed from decades of plant-floor experience—routine equipment maintenance, repeated process validation, and systematic quality checks. We use environment-controlled storage for sensitive intermediates, staged reactor charging, and operator record-keeping at each transfer point, so every kilogram produced carries a documented history. This approach doesn’t just fulfill audits—it delivers the reliability that field operators, warehouse managers, and regulatory officers demand.

    Certification for quality management, including annual audits and material-exposure records, builds trust in a way that anonymous or bulk-only sources cannot. It’s the difference between scrambling for answers when a shipment fails to meet standard, versus having a partner who can trace an issue right back to the exact reactor shift and raw material lot. Our own employees receive regular hands-on training, not just online reminders, which pays off when someone notices a piece of glassware out of calibration or a temperature probe beginning to drift. Roots in the manufacturing line create a culture of ownership, not just box-checking.

    Regulatory Standards: Surpassing Basic Compliance

    Most manufacturers face an array of national and international standards for organophosphates. We take regulatory compliance as baseline—our internally imposed targets almost always exceed stated limits, particularly around active ingredient verification and contaminant exclusions. Having submitted countless registration dossiers and periodic updates, the documentation trail backs up every analytical result. We submit samples for random confirmation by independent labs, publish certificates of analysis in line with both importing and local expectations, and assist partners in interpreting analytical methods if results ever come into question.

    Working closely with regulatory bodies means tracking evolving standards for residues, breakdown products, and worker exposure limits. We encounter shifting global attitudes around stewardship and safety; the right approach adapts labeling, packaging, and shipping practices ahead of the regulatory curve, so partners never face surprises. Bringing inspectors into our facilities fosters a relationship based on open records and immediate access to batch histories—not simply racing to prepare for an announced visit.

    Serving Evolving Agricultural Needs

    Change marks every new growing season: Pest populations evolve, climate brings new stressors, and stewardship programs now demand not just reliability but accountability. O,O-Diethyl-O-(2,2-Dichloro-1-Β-Chloroethoxyvinyl) phosphate has enabled more sustainable integrated pest management strategies by providing targeted, controlled action while supporting rotational and resistance-management programs. We’ve seen large farms transition away from one-size-fits-all solutions, requiring flexible raw material supply paired with technical support that doesn’t end at the point of sale. We field frequent inquiries about compatibility with novel tank-mix partners and new application tech. Our formulation specialists and supply planners respond quickly, drawing on current analytical data and hands-on field results, not just outdated paper specs.

    Every step, from pre-planting supplier checks through post-harvest analytics, builds a continuous feedback loop: As user needs shift, so does our production logic. If operators report seasonal storage issues in humid zones, our packaging lines adapt with improved barrier liners and new closure technology. If field margins face new runoff restrictions, our researchers update breakdown pathway data and support practical transition planning. As more farms convert to GPS-guided application, our product’s handling characteristics stand up to repeat dosing across variable acreage, supporting new efficiency standards.

    Logistics and True Partnership

    Supply doesn’t end with a shipment’s transfer—true value comes with reliability through every step, from dispatch to final use. We coordinate directly with logistics partners to shorten warehouse dwell and limit transit-time exposures, paying particular care in the handling of heat- and moisture-sensitive goods. Our shipping lines maintain direct feedback routes with consignee teams, so unexpected delays or damage receive rapid investigation and resolution. Barcoded, sealed drum lines and lot-based tracking systems let us give immediate answers to stock rotation queries. We monitor container quality and replace packaging showing any sign of compromise, reducing avoidable incidents and downtime on the user side.

    Production disruptions sometimes arise, whether from raw material interruptions or external events. In such cases, our approach centers on immediate, transparent communication. Users receive direct status updates, along with alternative planning if necessary. As raw material origins shift in response to supply-chain pressures, we remain up front about substitutions and provide pre-shipment analytical data to reassure customers of consistent product quality. Over time, this directness saves crops, reputations, and bottom lines alike—something no trading house or intermediary achieves through paperwork alone.

    Supporting Stewardship and Responsible Use

    Manufacturers have a front-line role in supporting both crop productivity and rural stewardship. By supplying a product that delivers targeted, controlled outcomes, we enable end-users to reduce overall input rates, minimizing the environmental load often associated with older, less selective chemistries. Responsible use begins with raw material choice and extends through active crop protection to post-season disposal. We back this up with ongoing steward education—hosting technical sessions and creating plain-language guides based on real-world trials, not theoretical modeling alone. We collect feedback from operators about handling questions, drift management, and tank-clearing protocols, channeling these reports into improved packaging and guidance documents. This field-driven approach ties our manufacturing floor directly to hands-on stewardship improvements nationwide.

    Every kilogram delivered represents more than just a commodity; it reflects a collaborative commitment to efficient, sustainable crop protection. We channel customer input into research around better breakdown pathways, lower-user-exposure formulation models, and more forgiving storage conditions for remote areas. As field practices change and stewardship requirements evolve, our promise centers on supporting responsible, informed use that protects both yield and land.

    Continuous Improvement and Future Challenges

    Our dedication to O,O-Diethyl-O-(2,2-Dichloro-1-Β-Chloroethoxyvinyl) phosphate doesn’t stop at established processes or resting on reputation. Improvements happen at ground level, with operators and technicians suggesting tweaks, chemists running iterative synthesis trials, and suppliers alerting us to possible bottlenecks or new contaminants. As users demand materials with reduced hazard classifications or compliance with stricter export controls, we adapt production lines accordingly. Modernization projects, from new instrumentation to real-time process control, help us spot deviations in time to correct before off-spec batches develop.

    Our research division scans scientific literature and regulatory bulletins for early warning of emerging requirements—sometimes long before these translate into new laws. We invest in product characterization to support downstream claims and export certifications. As supply chains globalize, our batch-release team manages document harmonization for each major market, providing the analytical, transportation, and stewardship records needed for seamless transactions across borders. This groundwork assures every partner—even in rapidly evolving regulatory conditions—a steady supply underpinned by traceable, responsible manufacturing.

    Pushing for safer, smarter chemistries means working closely with users and regulators alike. We welcome open discussion on formulation improvements, safer handling practices, and enhanced breakdown mechanisms. Batches destined for pilot projects often get additional scrutiny, with field partners offering candid operational feedback. Using this direct data loop, we upgrade product performance and safety—demonstrating once again that manufacturing is about partnership, not volume sales.

    A Lasting Commitment to Reliability

    In our experience, maintaining the quality and reliability of O,O-Diethyl-O-(2,2-Dichloro-1-Β-Chloroethoxyvinyl) phosphate means respecting the complexity of agrochemical supply today. Each order handed over at dispatch tells the story of dozens of quality checkpoints, safety measures, and team contributions—never just a line on a batch report. Value follows from continuous investment in staff skills, equipment upkeep, and open dialogue with frontline users. As agriculture, stewardship, and regulatory demands shift, our manufacturing keeps pace, pushing for reliability, safety, and practical adaptation in real time.

    We supply more than an active ingredient—we deliver a promise of consistency, adaptability, and direct support no intermediary can match. Years of close collaboration with growers, agronomists, and regulatory partners have forged a product and a process that remain trusted across the industry. As conditions change, we stay at work—not just in the factory, but alongside those who depend on us—sustaining the standards and performance they’ve come to rely on, year in and year out.

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