Products

O,O-Diethyl-O-[2-Chloro-1-(2,4-Dichlorophenyl)Vinyl] Phosphate [Content>20%]

    • Product Name: O,O-Diethyl-O-[2-Chloro-1-(2,4-Dichlorophenyl)Vinyl] Phosphate [Content>20%]
    • Alias: 'DDVP'
    • Einecs: 259-098-3
    • 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 737247
    Chemical Name O,O-Diethyl-O-[2-Chloro-1-(2,4-Dichlorophenyl)Vinyl] Phosphate
    Synonyms Dichlorvos-VC, DDVP-VC derivative
    Cas Number Unknown/specific to this derivative
    Molecular Formula C12H12Cl3O4P
    Molecular Weight 373.56 g/mol
    Appearance Colorless to pale yellow liquid
    Odor Mild, characteristic
    Content Percentage >20%
    Solubility Slightly soluble in water; soluble in organic solvents
    Boiling Point Decomposes before boiling
    Density Approximately 1.40 g/cm³ (at 20°C)
    Flash Point None (decomposes)
    Stability Stable under normal storage conditions
    Toxicological Classification Toxic if swallowed, inhaled, or absorbed through the skin
    Usage Primarily used as an organophosphate insecticide

    As an accredited O,O-Diethyl-O-[2-Chloro-1-(2,4-Dichlorophenyl)Vinyl] Phosphate [Content>20%] 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 25 kg tightly-sealed HDPE drum, clearly labeled with hazard symbols and content details, ensuring safe transport.
    Shipping Shipping of **O,O-Diethyl-O-[2-Chloro-1-(2,4-Dichlorophenyl)Vinyl] Phosphate [Content>20%]** requires compliance with hazardous material regulations. The chemical should be packaged in certified containers, clearly labeled, and accompanied by appropriate safety data sheets. Ensure it is stored securely, away from incompatible substances, and transported by authorized carriers with proper documentation.
    Storage Store O,O-Diethyl-O-[2-Chloro-1-(2,4-dichlorophenyl)vinyl] phosphate (content >20%) in a cool, dry, well-ventilated, and locked area away from direct sunlight, heat, and incompatible materials such as strong oxidizers. Keep in tightly closed, properly labeled containers. Prevent contact with moisture and store away from food, drink, or animal feed. Access should be limited to trained personnel only.
    Application of O,O-Diethyl-O-[2-Chloro-1-(2,4-Dichlorophenyl)Vinyl] Phosphate [Content>20%]

    Applications of O,O-Diethyl-O-[2-Chloro-1-(2,4-Dichlorophenyl)Vinyl] Phosphate [Content>20%] in Industrial Manufacturing

    As a direct manufacturer, we supply O,O-Diethyl-O-[2-Chloro-1-(2,4-Dichlorophenyl)Vinyl] Phosphate [Content>20%] to specialty production lines worldwide. This organophosphate intermediate is integrated in core industrial segments requiring stringent process controls, reliable quality, and precise formulation. The following sections outline the key application scenarios in which downstream users incorporate this compound, referencing industry compliance, dosage metrics, process points, and finished products.

    1. Agrochemical Formulation for Crop Protection

    Our material serves as a critical intermediate in the synthesis of advanced organophosphorus pesticides focused on insect control. Technical teams in agrochemical plants utilize this compound during the formulation of contact and systemic agents intended for regulated agricultural use. Integration occurs post-basic synthesis but pre-final blending, demanding exact adherence to purity and stability criteria to ensure regulatory clearance and crop safety.

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    2. Public Health Insecticide Production

    Downstream manufacturers producing insect control agents for vector management in municipal and public health sectors rely on this compound as a backbone ingredient. Product integration focuses on applications targeting disease-transmitting mosquitoes and urban pest control, involving rigorous evaluations for human and environmental exposure. The compound is formulated in controlled environments to maintain traceability and mitigate by-product risks, especially in products destined for malaria-endemic regions.

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    3. Seed Treatment Chemistry Manufacturing

    Specialty seed treatment formulators use our material as a targeted additive to protect seeds against early-phase insect threats during storage, transport, and germination. Precise dosing is required to achieve efficacy without inhibiting seed viability, and industrial users maintain full batch traceability alongside third-party residue testing. The compound is introduced during controlled-coating operations, often as part of multi-component compositions paired with antifungal agents.

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    4. Livestock Ectoparasiticide Concentrates

    Veterinary chemical producers incorporate this raw material into concentrated formulations intended for dips and sprays used in on-farm livestock ectoparasite control. End users expect formulated products that maintain stability under variable storage, viable dilution in local water systems, and residue profiles that comply with maximum residue limits in animal products. Batch-level documentation includes integration position, stability batch records, and trace-level monitoring for every consignment.

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    5. Bulk Technical Grade Supply for Agrochemical Further Synthesis

    Bulk buyers who further process technical-grade active into proprietary derivatives work with high-concentration forms as a starting point for synthesis of unique, patent-compliant agrochemical actives. These plants require documentation of impurity profiles and consistency across lots, and often operate integrated technical production where our material forms an essential feedstock batch. Integration occurs at controlled reaction steps, ensuring traceability for intellectual property management and downstream certification.

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    Free Quote

    Competitive O,O-Diethyl-O-[2-Chloro-1-(2,4-Dichlorophenyl)Vinyl] Phosphate [Content>20%] 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-Chloro-1-(2,4-Dichlorophenyl)Vinyl] Phosphate: Insights from Our Factory Floor

    Real Experience Behind a Trusted Organophosphate

    Bringing O,O-Diethyl-O-[2-Chloro-1-(2,4-Dichlorophenyl)Vinyl] Phosphate to market means putting both research and hands-on know-how to the test. Speaking from years of hands-on chemical manufacturing, creating this compound has shown us how critical exact formulation, tight process control, and regular testing factor into product integrity. This is more than a long name—it's a phosphorus-based ester whose unique structure unlocks a specific value for crop protection industries, consistently delivering where routine alternatives fall short.

    Most factories talk about quality. Our view is that quality takes shape early—at the raw materials stage. Decades sourcing the right ethanol and phosphorus oxychloride make all the difference in our production workflow. Each batch depends on verified sourcing standards, not just cost or speed. A lot of people look for the cheapest components. That route breeds unexpected headaches, especially with something as reactive as this molecule. Carefully vetting suppliers, checking in on their compliance, and building a paper trail keep our batches on spec, batch after batch.

    Stable Output and Clarity in Formulation

    The history of this product stretches back to the needs of high-control agrochemical applications. Today, O,O-Diethyl-O-[2-Chloro-1-(2,4-Dichlorophenyl)Vinyl] Phosphate with content above 20% stands out in the category because of its robust activity and solubility profile. It's not a matter of reinventing the wheel; it's about bringing each lot to the same clarity, color standards, and assay numbers—no off-odors, no hazing, no residue. Before we talk about formulation, we look with a clear eye at every consignment leaving our plant. Color and clarity sometimes say more than a certificate of analysis, and we train quality staff to spot even small deviations by sight, smell, and simple lab tests.

    Actual end-users have asked for more from their suppliers. They want less sedimentation, reduced breakdown under transport, and reliable mixing with surfactants. Well-made O,O-Diethyl-O-[2-Chloro-1-(2,4-Dichlorophenyl)Vinyl] Phosphate delivers. It remains stable across normal warehouse temperatures, and transportation doesn't bring surprises. Higher concentration means less carrier, so the product moves in smaller, more transport-efficient containers. Specifying a content greater than 20% is not just about hitting a number—it means growers and formulators can dilute and tailor mixes themselves, stretching purchase farther over hectares.

    Specifications Backed by Real-World Needs

    Having seen how this product is used out in the fields, we've set parameters not as a box-checking exercise, but because missteps can cost time, labor, and crop yields. We manufacture the product typically in liquid form, as clearer liquids blend better during field mixing and keep sprayers clog-free. Viscosity sits in a range that allows uniform spreading without drift issues or excessive foaming. No two seasons are the same for our customers. Surface tension matters. We keep the formulation at a specific density and pH to maximize compatibility with the top commercial adjuvants.

    Consistency in our product spectrum comes from operating our reactors under fixed temperature and pressure, using well-calibrated, real-time monitoring. Stirring speeds, reactant drip rates, and cooling curves have been optimized over countless runs to match the needs of high-throughput end users and regional regulatory thresholds. Total phosphorus content is checked every batch. Any deviation signals us to rerun purification, not to rebrand misfit chemicals or ship subpar goods—something you hear about too often in our industry.

    With over 20% active content per verified batch, our product provides a strong base for dilution. This reduces the volume required for final application, saving on storage, shipping, and handling. Many alternatives on the market offer diluted formulations at a similar price, quietly inflating end-user costs when you run the numbers per field. Our preference is clear: ship concentrated actives meeting strict purity standards, let users maximize flexibility, and back up every shipment with a test result file tied to batch number and date.

    Effective Laboratory Management: Lessons from Continuous Improvement

    Walking through our lab, notebooks from multiple years line the shelves, each filled with minor tweaks and iterative changes. Sometimes a small change in reaction time or agitation makes a measurable difference in the separation phase. Running side-by-side titrations and GC-MS checks, we don't take for granted the impact of a single off-spec drum. Accountability in our process shows up as batch reworks, not discounts or vague apologies. Many chemical firms boast of high throughput, but throughput without a stopgap policy for quality control makes those numbers meaningless.

    Shortcuts attract problems. Batch logs and chemical tracking guard us against regulatory scrutiny. Reproducible results and verified traceability give partners, especially multinational distributors and local growers, real comfort. This is not a call for bureaucracy. Instead, we see record-keeping as a safety net that lets us act, not react, when an issue arises. We revisit failed batches in annual reviews with our team, mining them for process improvements. Lessons learned from defects feed directly into updated operating procedures and checklists—this ensures mistakes don’t leave the premises in new product.

    Product Differences: Side-by-Side with Other Organophosphates

    I've lost count of how many times customers ask why different phosphorus pesticides aren't interchangeable. The molecular backbone of O,O-Diethyl-O-[2-Chloro-1-(2,4-Dichlorophenyl)Vinyl] Phosphate drives both its spectrum of activity and environmental fate. Unlike simpler dialkyl phosphates, our compound includes two chlorine-substituted aromatic rings with a vinyl bridge, creating selective action on target pests by disrupting nervous system pathways while breaking down more predictably in the environment when compared to related compounds of similar backbone.

    Field crews notice performance differences. The duration of residual action, breakdown into non-toxic end products, and compatibility with water from different sources all hinge on this molecule's exact structure. Some products tend to form precipitates with hard water, or act unpredictably when mixed with trace metals found in irrigation pipelines. We've run repeated tank-mix tests, dialing in chelators and stabilizers, but the raw product from our lines already resists most common issues. Time and again, off-brand compounds claiming equivalence show stratification in tank tests. Our formulation resists crystallization and breaking apart after repetitive agitation cycles in the field.

    Another comparison point: safety profiles during storage and use. Simpler organophosphates generate higher levels of unwanted byproducts during large-scale synthesis. We refined our method to eliminate problematic side reactions, reducing operator risk at every handling stage. Proper ventilation in our facility and containment plans have enabled us to pass regular health and environment audits without incident. This comes from intentional planning and upgrades, not luck. Every step from raw material entry to product packaging involves staff training, mechanical safeguards, and real-world experience with batch upsets and power outages.

    Serving Changing Market Demands

    Years in this sector have taught us that end users, whether they work in temperate orchards, subtropical plantations, or greenhouse environments, have shifting priorities. Crop profiles, seasonal variations, and fluctuating pest pressures all influence demand. Adaptability doesn't mean overhauling the molecule; it means anticipating new downstream requirements, keeping up with environmental regulations, and supporting better stewardship with education.

    Groups working to phase out persistent organic pollutants keep close watch on organophosphates. Our research and published literature reviews assure public agencies and certification groups our production lines meet permissible exposure limits and thresholds set by supranational organizations. It's not just about compliance. We train safety on-the-job, reinforcing PPE use, chemical safety briefings, and safe disposal routes. Collaboration with academic laboratories keeps us abreast of environmental metabolism studies—data we incorporate into customer guidance, not just regulatory filings.

    Sometimes, regulatory bodies release updated toxicity profiles. We maintain an internal library, cross-referencing raw material data sheets, locally-issued certifications, and residue findings from independent labs. This approach lets us flag any new research fast, checking our stocks for compliance and communicating any adjustments transparently to customers before any official recall is necessary. Trust is a two-way street; long-term partners often send feedback on formulation quirks, which we track and use in our continuous improvement cycle.

    End-Use Feedback: Building a Product that Pulls Its Weight

    Walking end-users' fields side-by-side with agronomists and technical teams has shaped our understanding of how O,O-Diethyl-O-[2-Chloro-1-(2,4-Dichlorophenyl)Vinyl] Phosphate outperforms older phosphates and carbamate competitors. Formulation integrity means operators don’t need to stop for frequent agitation or filter changes, and spray runs complete faster with less downtime. Contact coverage runs even across leaves with fewer deposits left behind, saving growers time on equipment cleaning and maintenance.

    Growers have long flagged off-odors, skin sensitivity, and persistent residue as their key complaints with early-generation actives. Careful purification and final product polishing steps have reduced these side effects. Spray drift into sensitive habitat edges is minimized through judicious density settings, protecting non-target insects and aquatic organisms. Leadership in stewardship isn’t just a slogan. We bring university researchers into the plant annually to conduct ad hoc analysis and welcome the opportunity for independent lab audits. This has allowed us to refine our approach, cut down on formulation “dust,” and keep our ratings high with both regulators and buyers.

    The Role of Technology in Refining and Quality Assurance

    Investments into in-house testing capability have transformed how we handle lot release. Gas chromatography, UV-Vis analysis, and thermogravimetric balance offer quick turnarounds and let us spot trace contaminants before packaging. Fielding equipment that stays calibrated isn’t automatic; it takes a culture of care, and hands-on attention both before and after production shifts. We maintain a rolling spare parts inventory so unplanned downtime never puts a shipment at risk. Equipment logbooks help prioritize preventive maintenance, and root-cause analysis is conducted after every deviation.

    Sometimes, machine learning has offered insight into long-term production fine tuning. Pattern analysis lets us predict deviations, showing us which reactor settings return the highest purity across seasons. It took trial and error, input from process engineers, and constant comparison against tried practices to optimize blends.

    Supporting Stakeholders Throughout the Product Lifecycle

    Our philosophy has always put user support at the front. We aren’t making clean labs and tidy production floors for the photos. Day to day, teams field technical queries, share process insights with customers, and conduct hands-on troubleshooting should application issues arise. Tracking seasonal usage trends lets us help partners plan stocks so they can buffer against international freight blips and unforeseen demand surges.

    This means more than shipping drums on pallets. Guidance on dilution rates, mixing order with other tank additives, and operator protection finds its way from our lab notebooks directly to our recommendations. Having walked through countless storage sheds and seen makeshift agitation rigs up close, we tune our product to handle real-world conditions—variable tank pH, line residue, and different sprayer technologies across global markets.

    Some competitors rebrand or offer white-label drums with limited support. Direct manufacturing, batch testing, and open lines of communication open room for real feedback. Not every user faces the same pest load or field conditions, so we run use-case tests and factor regional differences into our process. Over years of shipments, adaptation means less waste, more predictable results, and relationships that last beyond a single growing season.

    Commitment to Transparent and Sustainable Manufacturing

    Every facility visit conveys the culture and mindset behind a product. Transparency plays out as real investment—onsite solvent recovery, emissions management, and water use reduction aren’t just regulatory checkboxes. These efforts keep our site in compliance and serve as insurance against supply disruptions. Upgrades in automated dosing, chilled water recovery, and lead abatement add resilience to the factory, reducing human error and improving margins thanks to lower loss rates and remedial actions saved.

    We keep close watch on how waste streams are treated and leftovers are reused where safe and permitted. It’s not only a cost-saving measure, but a commitment to the places and people who live near production sites. Regular air and water sampling confirm that containment systems work, and periodic third-party audits verify ongoing adherence to changeable laws and global green chemistry standards.

    Despite sector-wide pressure for ever-lower input costs, we have resisted short-sighted cuts in material quality or oversight. Standardizing our own inputs across suppliers and insisting on audited transport ensures each batch remains within set tolerances, even as volumes scale. Downstream support systems keep us nimble in responding to new client requirements or adopting updated best practices as industry standards shift.

    Strength in Technical Partnerships and Continuing Education

    Our staff turn up at trade shows, peer-review roundtables, and government-industry dialogs, advocating both for safe handling and the ongoing relevance of phosphorus-based chemistries. Getting feedback directly from multinational buyers, local ag extensions, and even smallholder field reps keep us tuned to ground reality. Investment into ongoing operator and user education addresses not only best operating practices but also first-responder safety drills and environmental reporting requirements.

    Everyone at our plant, whether in the lab, on the factory floor, or upkeep, knows that today’s batch will shape long-run relationships and future contracts. Knowing crop loss or operator exposure on the customer’s end reflect back on us, the feedback loop stays open, routing every issue toward better product and safer practices. Published updates, safety bulletins, and training modules accompany all product launches, and we view collaborations as a chance for reciprocal growth—not checklists. We have seen time and again that strong, transparent partnerships drive sales and innovation alike.

    Conclusion: A Manufacturer’s Perspective on Value and Responsibility

    Standing at the heart of chemical manufacturing, real value means consistent outputs, honest responses to issues, and long-term investments in people and process. Users trust us with tight operating windows and demanding application conditions—anything less than honesty and ongoing refinement lacks staying power. Supporting resilient crops and reliable harvests starts with a commitment to rigorous formulation and ongoing engagement with science, standards, and society.

    For those operating in tough growing conditions or seeking new levels of stewardship, O,O-Diethyl-O-[2-Chloro-1-(2,4-Dichlorophenyl)Vinyl] Phosphate with content over 20% embodies how technical excellence and everyday field know-how intersect. Our batch logs, field tests, and open-door policy anchor a product that’s always ready to justify its place in growers’ arsenals and researchers’ protocols alike. The years behind our process show in every delivery—a difference that emerging competitors find difficult to match and end-users value season after season.

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