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4-N,N-Dimethylamino-3,5-Dimethylphenyl N-Methylcarbamate

    • Product Name 4-N,N-Dimethylamino-3,5-Dimethylphenyl N-Methylcarbamate
    • Alias Propoxur
    • Einecs 249-360-0
    • Mininmum Order 1 g
    • Factory Site Tengfei Creation Center,55 Jiangjun Avenue, Jiangning District,Nanjing
    • Price Inquiry admin@sinochem-nanjing.com
    • Manufacturer Sinochem Nanjing Corporation
    • CONTACT NOW
    VTB
    Specifications

    HS Code

    697657

    chemical_name 4-N,N-Dimethylamino-3,5-Dimethylphenyl N-Methylcarbamate
    molecular_formula C12H18N2O2
    molecular_weight 222.29 g/mol
    CAS_number 119-94-8
    appearance White to off-white crystalline solid
    melting_point 56-58°C
    solubility Slightly soluble in water, soluble in organic solvents
    boiling_point Decomposes before boiling
    density 1.07 g/cm³
    use Carbamate insecticide (active ingredient in certain pesticides)
    synonyms Promecarb; Promecarbin
    logP 1.71
    SMILES CC1=CC(=C(C=C1N(C)C)C)OC(=O)NC

    As an accredited 4-N,N-Dimethylamino-3,5-Dimethylphenyl N-Methylcarbamate factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing The 100g chemical is packaged in a sealed, amber glass bottle with tamper-evident cap, labeled with product and safety information.
    Shipping This chemical, 4-N,N-Dimethylamino-3,5-Dimethylphenyl N-Methylcarbamate, should be shipped in tightly sealed containers, protected from light, moisture, and incompatible substances. Appropriate hazard labeling and documentation are required. Transport must comply with local, national, and international regulations for hazardous chemicals, ensuring safety measures are in place for handling and potential spills.
    Storage 4-N,N-Dimethylamino-3,5-dimethylphenyl N-methylcarbamate should be stored in a tightly sealed container, in a cool, dry, and well-ventilated area away from incompatible substances such as strong oxidizers and acids. Protect from moisture, direct sunlight, and sources of ignition. Ensure storage area is equipped with spill containment and chemical-resistant shelving. Always follow relevant safety and regulatory guidelines when storing this compound.
    Application of 4-N,N-Dimethylamino-3,5-Dimethylphenyl N-Methylcarbamate

    Applications of 4-N,N-Dimethylamino-3,5-Dimethylphenyl N-Methylcarbamate in Industrial Manufacturing

    4-N,N-Dimethylamino-3,5-Dimethylphenyl N-Methylcarbamate is a specialized carbamate compound that plays a crucial role in high-value industrial manufacturing, particularly in agrochemical formulation and pest control chemistry. As a direct manufacturer, we support our customers with reliable supply, technical transparency, and process assistance for each downstream scenario. Below, we detail major applications where this material is integrated, focusing on areas with real-world adoption and clear regulatory, formulation, and processing requirements.

    1. Insecticide Active Ingredient for Specialty Crop Protection

    This carbamate is primarily used as an active substance in the manufacture of selective insecticides for high-value fruit, vegetable, and ornamental crop protection, targeting specific piercing and sucking pests while minimizing non-target toxicity. Manufacturers develop suspension concentrates or emulsifiable concentrates to suit diverse application needs in professional agriculture. Crop protection products using this molecule must address efficacy against resistant insect species within controlled residue limits to ensure food and ornamental crop safety.

    Industry compliance standards

    • FAO/WHO pesticide specifications
    • European Regulation (EC) No 1107/2009 concerning the placing of plant protection products on the market
    • China GB 2763-2021 Maximum Residue Limits for Pesticides in Food
    • US EPA PRIA Registration Standards for Insecticides

    Typical usage ratio

    • Active ingredient content in final EC/SC formulations: 2–20% w/w, adjusted per targeted pest spectrum and crop MRL regulations; field application rates typically range from 50–200 g/ha of AI.

    Downstream process integration

    • Incorporated into the formulation blending stage with co-solvents, surfactants, and stabilizers; follows quality assurance for purity and particle sizing prior to micronization or dispersion for SC products.

    Final product types

    • Suspension concentrates (SC) for foliar spraying
    • Emulsifiable concentrates (EC) for field dilution
    • Low-volume ready-to-use insecticide solutions
    • Co-formulations with other selective insecticide classes

    2. Public Health Vector Control Formulations

    Public sector and professional pest management organizations use this compound in vector control products intended to reduce populations of disease-carrying insects in urban, peri-urban, and rural settings. The main end products are indoor residual sprays and space sprays for use against mosquitoes, flies, and cockroaches in government and commercial control programs, especially in areas with resistance issues to pyrethroids and organophosphates. Compliance with toxicological safety and application method standards is essential for safeguarding human and environmental health.

    Industry compliance standards

    • WHO Specifications and Evaluations for Public Health Pesticides
    • ISO 9001:2015 certified manufacturing for quality assurance
    • National regulatory approvals, such as US EPA vector control guidelines
    • UNFAO International Code of Conduct on Pesticide Management

    Typical usage ratio

    • 0.5–5% w/w active ingredient in indoor residual spray and hand-applicator formulations; application dosage on surfaces is guided by efficacy studies, usually 0.1–0.4 g/m² of AI.

    Downstream process integration

    • Added during batch emulsification or suspension formulation, following strict QC for uniform dosage and particle size; wet milling and stabilizer addition tailored to indoor application safety profiles.

    Final product types

    • Indoor residual sprays (IRS)
    • Space and fogging concentrates
    • Ready-to-use trigger sprays for commercial premises
    • Insect repellent surface treatments for public facilities

    3. Livestock and Veterinary Ectoparasiticide Production

    This molecule serves as a key active ingredient in veterinary ectoparasite treatments, specifically in pour-on, dip, or spray solutions for cattle, sheep, and other livestock. Manufacturers integrate the compound into formulations targeting ticks, lice, and other external parasites, supporting animal health and complying with strict residue, safety, and processing guidance from veterinary authorities to avoid harmful carry-over into meat and milk products.

    Industry compliance standards

    • World Organisation for Animal Health (WOAH/OIE) recommendations for veterinary medicines
    • China Ministry of Agriculture GB 18599-2001 for Veterinary Drug Standards
    • European Medicines Agency (EMA) Veterinary Guidance
    • US FDA Center for Veterinary Medicine (CVM) requirements

    Typical usage ratio

    • Final pour-on solutions and dips contain 1–15% w/w active substance, depending on animal species, parasite risk, and withholding periods; final dosage refined during field trial validation.

    Downstream process integration

    • Integrated into the bulk blending phase for water-based or solvent-based veterinary solutions, with temperature and agitation control to ensure homogeneity; microfiltration prior to packaging for suspension stability and physical quality.

    Final product types

    • Livestock pour-on ectoparasiticide solutions
    • Farm animal dipping concentrates
    • Veterinary spray-on lice/tick control agents
    • Premix formulations for integration into animal health programs

    4. Industrial Pest Control Solutions for Stored Product Protection

    Commercial post-harvest operators, food processing facilities, and grain storage enterprises use this carbamate compound in protective treatments against storage pests like beetles and moths. Downstream manufacturers formulate contact-type protectants and fogging concentrates to preserve the quality of stored grains, seeds, and dried commodities without violating maximum residue limits for food-use products. Material traceability and batch consistency are critical for HACCP compliance at end-user sites.

    Industry compliance standards

    • Codex Alimentarius Maximum Residue Limits (MRLs) for Pesticides
    • US FDA regulations for chemical residues in food-contact applications
    • ISO 22000:2018 Food Safety Management Systems
    • EU Regulation (EC) No 396/2005 specific to food and feed of plant and animal origin

    Typical usage ratio

    • Concentrate products contain 10–25% w/w active substance; operational dosage onto grains or surfaces: 2–8 ppm (mg/kg), customized per commodity and required protection duration.

    Downstream process integration

    • Dosage systems integrate during bulk grain transfer or cleaning; mixing performed via automated dosing pumps or manual spray equipment to achieve precise coverage; full retention sample and impurity profile checking throughout batch release.

    Final product types

    • Bulk grain protectant concentrates for warehouses and silos
    • Aerosol/fogging canisters for food industry use
    • Liquid insecticide additive packs for integration at processing lines
    • Surface spray insecticides for storage bins and containers
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    Certification & Compliance
    More Introduction

    Introducing 4-N,N-Dimethylamino-3,5-Dimethylphenyl N-Methylcarbamate

    Crafting Quality Carbamates for Real-World Demands

    Being in the chemical manufacturing sector often means wrestling with the reality of performance, reliability, and consistent supply. Every day, our team handles 4-N,N-Dimethylamino-3,5-Dimethylphenyl N-Methylcarbamate—better known in the lab as a finely tuned carbamate compound that meets precise industry demands. We have carried this product through years of hands-on formulation, scale-up, and stringent production protocols because real work in the field—whether in agriculture, public health, or industrial processing—leaves no margin for error.

    Commitment to Specification and Consistency

    We manufacture this carbamate with a sharp focus on batch-to-batch repeatability. Quality starts with high-purity raw materials and ends with a crystalline product that passes every single internal and third-party specification. Over the years, we’ve seen slight variations in specification from lab-scale suppliers introduce headaches for downstream users—yield losses, irregular solubility, and even equipment trouble. To avoid those pitfalls, our technical team enforces controls at each process step, with HPLC purity readings and moisture analysis documented and reviewed at every output. Customers rely on our 4-N,N-Dimethylamino-3,5-Dimethylphenyl N-Methylcarbamate to be present, soluble, and stable, every shipment and every drum.

    End Uses That Influence How We Manufacture

    Those working on pest management chemistry or public health applications know the stakes of field deployment. The margin between effect and excess can run razor-thin, especially in environments with food crops or stored grain. We have worked with clients in these areas for more than a decade. Their feedback led us to refine drying, milling, and particle size selection processes to ensure product handles smoothly on automated lines and keeps dust to a minimum. Using our own experience blending batch after batch, we can say that the material’s grain and flow properties matter tremendously for plant scale-up, often far more than theoretical numbers on paper.

    Labs often approach us looking for technical data that translates to the realities of tank mixing, water dispersibility, or compatibility with adjuvants and other actives. The solubility profiles, storage stability results, and compatibility tests we report come straight from production batches—no bench-top shortcuts or assumptions. That approach has let us partner closely with development teams who need repeatable outcomes from jar tests to pilot production.

    How Our Carbamate Compares in the Marketplace

    Years ago, the market for 4-N,N-Dimethylamino-3,5-Dimethylphenyl N-Methylcarbamate was more fragmented, with supply chains built around intermediates that shifted from region to region. These days, large-scale processors look for reliable logistics, traceable intermediates, and compliance with national and international requirements. We do more than ship a product—we maintain traceability from raw material allocation through production documentation, with confirmed analytical documentation attached to each lot.

    Our customers ask about differences between our product and competing sources: we focus on chemical purity, freedom from colored byproducts, and packaging suitable for bulk handling. Vendors who go through brokers often see off-color batches, inconsistent particle morphology, or unexplained caking on arrival. Many times, these problems track back to supply through non-integrated manufacturers or post-synthesis blenders without fixed process standards. Our own equipment is set for one purpose—consistent, large-scale production with cleaning protocols, closed transfer systems, and filtration steps that control both appearance and fluidity, batch after batch.

    Production Experience: What Matters in Carbamate Synthesis

    From a production standpoint, the synthesis of 4-N,N-Dimethylamino-3,5-Dimethylphenyl N-Methylcarbamate demands careful reagent selection and precise reaction control. We’ve optimized reaction times, temperatures, and mixing protocols to limit side products and keep yields high. Our in-house engineers learned through years of production that exothermic spikes and byproduct build-up can make or break a batch. Adjustments in order of addition, agitation speed, or solvent swaps come directly from on-the-ground lessons, not textbook advice. In the past, we solved clumping problems by shifting to a cooled milling process and developed a closed drying cascade that reduced handling time and moisture pick-up.

    Quality assurance means more than final product analysis. Every manufacturing lot gets tracked from raw material to final drum. We have internal barcoding and sample retention that covers every single production date. Over the years, we’ve received countless complaints from downstream users about sourcing from pooling traders—delays, unknown provenance, broken fobs, and unpredictable impurities. By taking ownership at each step, we avoid these issues.

    Why Consistent Carbamate Quality Matters

    Drawing on experience, we know end users—whether agrochemical formulators, vector control programs, or specialty applications—depend on products that perform exactly as expected, every time. There’s no room for guesswork in active ingredient quality or physical form. Any deviation from specification shows up downstream, as poor performance in field trials or unexpected warehouse issues. We've seen big differences in field efficacy linked not to theoretical activity but simply to clumping, off-spec purity, or trace contaminants that crept in from shortcut manufacturing.

    It is common to see performance setbacks when switching supply from one origin to another. Our customers bring up stories of gummed-up formulation lines or tank mix incompatibility just because particle sizes wandered or dryness disappeared during transport. Many times, we've resolved these situations by helping users troubleshoot with samples of our product, run through their own lines, and compared to material from other origins. Consistency wins every time.

    Upstream Chemicals, Downstream Applications

    Active ingredient synthesis only tells part of the story. We select every upstream chemical from verified sources, using analytical confirmation as our basic expectation. Each drum that leaves our facility holds only what we would accept for our own production lines—free from off-odor batches or visually dirty material. Our technical group regularly works with researchers on process optimization, ensuring that scale-up from our kilogram lots for lab development to ton-scale manufacturing happens seamlessly. Many of the user complaints we have heard through the years center around missed reactivity in pilot lines, traced later to inconsistent intermediates.

    Any lab or production team looking to formulate with our carbamate encounters fully documented characterization, with FTIR, HPLC, and melting point measured on every lot. We avoid over-reliance on abstract performance claims; our documentation speaks to reality—if a batch caked in transit, we hear about it, troubleshoot root causes, and refine packing protocols. The hands-on adjustment is a daily exercise, not a once-a-year review.

    Addressing End-User Concerns

    Formulators ask about solubility in different carriers and the possible interaction of residual solvents in complex blends. We supply detailed data sets derived from actual production using the same protocols at scale, not small-scale speculative tests. Over years of feedback, we've built solvent exchange steps and post-reaction treatments into our standard operating procedure until the product behaves reliably under field and warehouse storage.

    We learned—sometimes the hard way—that keeping a consistent melting range preserves processing repeatability during blending or re-crystallization steps. Customers who tried variable material from non-integrated sources found themselves adjusting blending temperatures or running repeated filtration just to avoid visible occlusions. We rely on hands-on experience here; understanding why a batch behaves unexpectedly builds over countless production runs and direct customer calls, not theory.

    Overcoming Challenges in Global Supply Chains

    A genuine manufacturer’s worries extend beyond chemistry. Regulatory expectations shift with every export region. Our compliance staff maintains registrations, solvent logs, and transport options to avoid delays. Global events or changing environmental standards sometimes tighten sourcing for solvents or specialty reagents, but by running vertically integrated lines and keeping supply close to home, we have buffered clients from most disruptions. Our raw material teams source months ahead and lock in contracts to avoid last-minute price shocks.

    Clients have asked how we handle environmental scrutiny. Closed reactor technology, in-process waste neutralization, and solvent recovery systems help us stay above the curve of tightening regulatory inspection—work that began years before such controls became widespread. Our own lab benches doubled as test beds for greener alternatives, slowly phasing in renewable solvents and minimizing hazardous waste. That school-of-hard-knocks approach—testing, refining, and investing in better production—is why the supply stays consistent and compliant, no matter external surprises.

    How End-Use Guides Manufacturing Priorities

    Pest management, hygiene, and specialty application teams use our carbamate for specific functionalities. These sectors shape priorities all through our order book. We fine-tune crystalline size distribution, drying temperature, and storage to fit not just lab benchmarks, but how a batch will run through real-world application. If public health projects in humid climates need moisture-protected packaging, we line every drum accordingly. Agricultural formulators with automated dispersing lines require steady micron sizing to avoid feed chute blockages. Experience in the field is as valuable as data from the lab, and we take field feedback as seriously as analytical numbers.

    Interaction with downstream formulators lets us test new solutions—modifications in particle morphology, improved flow aids, updated antistatic options. We roll out these adaptations only after full performance checks across production batches. The strongest validation arrives not in a spec sheet, but when a refilled order runs seamlessly for yet another season. Every year adds more insight to our process, and every repeat customer builds on it.

    Comparison Against Non-Integrated Suppliers

    We regularly see non-integrated sources blur the distinction between quality control and afterthought packaging. The result shows up as clumping powders, colored grades, or delayed reactivity in the hands of users. Our own plant setups do not permit cross-batch contamination or process shortcuts. We react, blend, filter, and dry batch by batch under consistent controls. That level of integration stands behind our claim of repeatable quality. It draws a clear line from production oversight to customer outcome.

    Customers tell us the value here: fewer surprises, better yield, and more predictable performance. Projects run smoother when there is no need for extra filtration, solvent washes, or rework. Those savings translate into direct operational efficiency, freeing up resources for research or expanded scale.

    Solutions and Continuous Improvement

    We believe in making continuous improvements from daily challenges. Customer stories drive our evolution—as they encounter logistical holdups, shelf-life concerns, or formulation bottlenecks, we feed their real-world data into refining our process. Introducing silica gel packets in certain packs started out as a simple fix to a specific customer request. Switching to UV-proof drums came after feedback about colored byproduct sensitivity in some end uses.

    Feedback about reactivity in extenuated storage conditions led us to introduce in-line stability trials during the packaging phase. These steps, often invisible at the end-user level, add up to reliable supply and fewer headaches all around. Instead of issuing lengthy justifications or “one size fits all” templates, we prefer the ground-level approach—troubleshoot, test, document, and deploy improvements that matter for the next shipment.

    It isn’t unusual for a customer technologist to teleconference with our technical manager and manufacturing engineer in real time. We have solved thermal lability issues, storage recommendations, and even application questions about tank mixing by joining these calls—the process isn't static. We invite challenge and open communication. Our job does not finish at shipping. Production knowledge and end-use understanding form a loop that constantly upgrades product and process together.

    Looking Ahead: Meeting Future Demands

    Staying ahead in carbamate manufacturing calls for more than current compliance or specification leadership. Analytical techniques continue to evolve; our investment into real-time monitoring—through next-generation chromatography, particle analysis, and moisture detection—means we can foresee and respond to quality risks sooner. As regulatory standards shift and awareness grows around purity and traceability, we expect rising demand for complete, integrated documentation and ultra-clean manufacturing.

    Market demand constantly shifts. We watch these trends closely and plan for new production protocols that anticipate not just regulatory expectation but user application feedback. From changing particle size requirements to tightening environmental criteria, we align our future investment toward real, day-to-day application, not just academic perfection.

    A Manufacturer’s Perspective

    Making 4-N,N-Dimethylamino-3,5-Dimethylphenyl N-Methylcarbamate at scale is an exercise in paying long-term attention—monitoring, refining, and taking responsibility for product at every stage. Years on the floor, in the lab, and on customer calls proved that real performance results from hands-on, data-driven manufacturing. We have seen what can go wrong with non-integrated product, shortcut production, or paper-only specifications. Our process stays rooted in direct oversight, transparent documentation, and immediate feedback for continuous process improvement. This is how we see carbamate supply built for today—and for tomorrow’s challenges.