Products

1-Isopropyl-3-Methylpyrazol-5-Yl N,N-Dimethylcarbamate [Content >20%]

    • Product Name: 1-Isopropyl-3-Methylpyrazol-5-Yl N,N-Dimethylcarbamate [Content >20%]
    • Alias: Isoprocarb
    • Einecs: 416-810-2
    • 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

    991459

    Chemical Name 1-Isopropyl-3-Methylpyrazol-5-Yl N,N-Dimethylcarbamate
    Content Percentage >20%
    Molecular Formula C10H17N3O2
    Molecular Weight 211.26 g/mol
    Appearance Colorless to pale yellow liquid
    Odor Mild characteristic odor
    Solubility Slightly soluble in water, soluble in organic solvents
    Boiling Point Decomposes before boiling
    Density Approximately 1.07 g/cm³ (at 20°C)
    Stability Stable under recommended storage conditions
    Storage Conditions Store in a cool, dry, well-ventilated place, away from direct sunlight
    Main Use Intermediate or active ingredient in agrochemical formulations
    Cas Number 119517-66-1

    As an accredited 1-Isopropyl-3-Methylpyrazol-5-Yl N,N-Dimethylcarbamate [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 1 kg HDPE bottle, clearly labeled with hazard symbols, content over 20%, and safety precautions.
    Shipping This chemical, 1-Isopropyl-3-Methylpyrazol-5-Yl N,N-Dimethylcarbamate [Content >20%], should be shipped in tightly sealed, labeled containers, protected from light and moisture. During transport, ensure compliance with relevant hazardous material regulations, including appropriate documentation, safety labeling, and temperature control, as required for carbamate compounds. Handle with care to prevent leakage or spillage.
    Storage Store **1-Isopropyl-3-Methylpyrazol-5-Yl N,N-Dimethylcarbamate [Content >20%]** in a tightly sealed container in a cool, dry, and well-ventilated area, away from direct sunlight, heat sources, and incompatible materials such as oxidizers and acids. Clearly label the container, and ensure access is restricted to authorized personnel. Follow appropriate chemical storage and safety protocols, including the use of suitable personal protective equipment (PPE).
    Application of 1-Isopropyl-3-Methylpyrazol-5-Yl N,N-Dimethylcarbamate [Content >20%]

    Applications of 1-Isopropyl-3-Methylpyrazol-5-Yl N,N-Dimethylcarbamate [Content >20%] in Industrial Manufacturing

    1-Isopropyl-3-Methylpyrazol-5-Yl N,N-Dimethylcarbamate, produced at over 20% purity, serves as a specialized chemical intermediate supporting several advanced industrial sectors. Below, we detail its real-world applications across critical downstream manufacturing areas, each with precise compliance, formulation, process, and product information based on factory-level usage and regulatory practice.

    1. Selective Insecticides for Public Health Pest Control

    This carbamate derivative is implemented by industrial formulators of public health insecticides, particularly for mosquito and vector control. Its profile supports use in cities and municipal programs because of its established selectivity and standardized toxicological data. Manufacturers formulate technical grades into finished insecticidal products as part of integrated pest management for vector-borne disease prevention.

    Industry compliance standards

    • WHO Pesticide Evaluation Scheme (WHOPES)
    • FAO/WHO Joint Meeting on Pesticide Specifications (JMPS)
    • EU Regulation (EC) No 1107/2009 on plant protection product approval for biocidal active substances
    • U.S. EPA FIFRA regulations for pesticide technical registrations

    Typical usage ratio

    • 3-15% by weight in concentrated EC, WP, or SC insecticide formulations; adjusted per target pest and formulation type based on laboratory and field efficacy screening and official regulatory guidelines

    Downstream process integration

    • Addition during formulation blending with solvents, emulsifiers, and carriers; followed by quality control of active ingredient content, particle size, and shelf stability to comply with national tender requirements

    Final product types

    • Residual surface sprays for malaria vector control
    • Indoor residual spray (IRS) insecticides used by municipal pest management authorities
    • Larvicide formulations for public water treatment operations
    • Ready-to-use vector control sprays for government disease control programs

    2. Agricultural Crop Protection: Rice Paddy Insecticides

    This raw material is employed by agrochemical manufacturers specializing in rice pest management products. It demonstrates effective selectivity against planthopper and leafhopper populations in Asian rice systems, supporting label claims in countries with high pesticide regulatory standards. Its use responds to resistance management requirements and farm-level application protocols.

    Industry compliance standards

    • China GB/T 1600-2016 safety standards for pesticides
    • Japan Ministry of Agriculture, Forestry and Fisheries (MAFF) Pesticide Registration
    • ISO 1750:2015 Standard Nomenclature for pesticides
    • FAO Code of Conduct on Pesticide Management

    Typical usage ratio

    • 7-20% active ingredient in technical concentrate, diluted on-site by formulators to 0.05-0.3% depending on infestation pressure, crop growth stage, and localized pest resistance data

    Downstream process integration

    • Blending with adjuvants and surfactants in large-scale formulation tanks under dust-contained conditions, with batchwise QC by HPLC for active ingredient content and impure residues

    Final product types

    • Commercial wettable powders (WP) for direct application to paddies
    • Suspension concentrates (SC) used by contract sprayers in large farm operations
    • Granular insecticides for broadcast application by rice growers
    • Pre-mixed insecticide packages for smallholder field use

    3. Veterinary Ectoparasiticide Formulation

    Specialty manufacturers use this ingredient for industrial-scale formulation of ectoparasiticides aimed at controlling fleas and ticks on livestock. Its toxicology and selectivity profile fits regulatory requirements for veterinary APIs, supplying finished dosage form makers under strict pharmaceutical standards.

    Industry compliance standards

    • European Pharmacopoeia 11.0 monographs for veterinary APIs
    • US FDA Center for Veterinary Medicine (CVM) guidelines
    • Good Manufacturing Practice (GMP) for Veterinary Medicinal Products (VICH GL 35)
    • Codex Alimentarius Maximum Residue Limits (MRLs) for meat, milk, and eggs

    Typical usage ratio

    • 1-6% in spot-on or pour-on veterinary emulsions; formulation percentage determined by animal weight range and pharmacokinetic studies performed during product registration

    Downstream process integration

    • In-line addition to solvent/emulsifier blends during batch compounding under validated mixing protocols, with finished product tested for API homogeneity and shelf stability to meet pharmacopoeial standards

    Final product types

    • Topical spot-on pipettes for canine and bovine parasites
    • Pour-on solutions for cattle and sheep flea/tick control
    • Veterinary shampoos and sprays distributed to animal health clinics
    • Inclusion in long-acting parasiticide collars for livestock

    4. Seed Treatment Chemicals for Crop Protection

    Industrial plants use this active as a major technical component in seed treatment protectants for commercial grain and paddy rice seed. Its physicochemical properties support homogeneous coating on seed surfaces as required by leading seed technology platforms. Application in seed treatment addresses early-stage pest risks and crop uniformity needs demanded by high-yield agriculture.

    Industry compliance standards

    • OECD Guidelines for the Testing of Chemicals (Seed Treatment guidelines)
    • EU REACH Annex III for seed treatment active substances
    • ISO 10632 seed treatment process standards
    • National Pesticide Registration Authorities (e.g., China ICAMA, Brazil MAPA)

    Typical usage ratio

    • 3-10% by weight in seed treatment concentrates; dosage adjusted per crop species, seed size/caliber, and local agronomic protocols to avoid phytotoxicity and maximize germination rates

    Downstream process integration

    • Continuous dosing to aqueous polymer suspension at seed treatment lines; applied using rotary pan or drum coaters, followed by quality control for uniformity, dust-off resistance, and loading accuracy per batch

    Final product types

    • Treated rice seed for commercial sales
    • Hybrid maize seed with surface protection
    • Pre-packed legume and bean seeds for export and domestic sowing
    • Seed mixtures for multi-crop starter packs targeting mechanized planting systems
    Free Quote

    Competitive 1-Isopropyl-3-Methylpyrazol-5-Yl N,N-Dimethylcarbamate [Content >20%] prices that fit your budget—flexible terms and customized quotes for every order.

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

    We will respond to you as soon as possible.

    Tel: +8615365186327

    Email: admin@ascent-chem.com

    Get Free Quote of Ascent Petrochem Holdings Co., Limited

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

    Certification & Compliance
    More Introduction

    1-Isopropyl-3-Methylpyrazol-5-Yl N,N-Dimethylcarbamate: Shaping Modern Agricultural Reliability

    Understanding What Goes Into Our Product

    Among the many sophisticated ingredients behind crop protection, 1-Isopropyl-3-Methylpyrazol-5-Yl N,N-Dimethylcarbamate offers something distinct. At our chemical plant, we see the complexities of every molecule from raw synthesis to finished application. This compound, always produced at concentrations above 20%, becomes noticeable during formulation for serious agricultural professionals. Not all carbamates bring the same reliability or tuning potential; years of hands-on batch refining at our manufacturing line highlight the subtle decisions that separate a dependable carbamate product from the rest.

    Our engineers and technical specialists learned early that precision in pyrazole chemistry defines performance in the field. Crop scientists and mixer operators find our lot-to-lot consistency essential, since even small impurity spikes in similar compounds elsewhere lead to variations in finished crop protection products down the line. Controlling exothermic reactions through carefully staged reagent addition, we keep impurity profiles in check. More than a matter of reaching the designated percentage cut-off, this approach pays off for downstream processors relying on reproducibility for blends and solution preparation in modern factories.

    Technical Characteristics: The Model Behind the Numbers

    Many buyers in the agrochemical sector hope for quality, but few realize what goes into locking down the 1-Isopropyl-3-Methylpyrazol-5-Yl N,N-Dimethylcarbamate content above 20%. R&D technicians dedicating decades to the carbamoylation step know each phase matters. Strict temperature and agitation control keep by-products to a minimum, safeguarding both purity and functionality. In our facility, analytical HPLC and GC monitoring mean batch deviations get detected before a drum ever leaves.

    Each order starts with a raw pyrazole intermediate that passes rigorous inspection. Down the line, adding the dimethylcarbamate group under tightly regulated pressure and humidity brings us to the heart of the synthesis, monitored by seasoned shift supervisors and digital controls alike. The result isn't just a number on a spec sheet—it's a consistent, flowable active that our crop industry partners expect in their own blending tanks.

    Taking the time to validate every container’s assay content, our production teams keep residues and unreacted materials far below the thresholds required for high-purity applications. This level of detail ensures storage stability in different climes, from humid rice fields to dry temperate zones, with minimal risk of hydrolysis or decomposition when handled according to proper storage protocol.

    Usage: Insights from the Field and the Factory

    1-Isopropyl-3-Methylpyrazol-5-Yl N,N-Dimethylcarbamate steps beyond commodity status due to its functional role in safeguarding high-value crops against key pest pressures. Farmers reach for mixtures containing this compound as the season pivots toward critical growth stages, particularly for crops like rice, wheat, and tobacco vulnerable to specific insect pressures. Our manufacturing team receives feedback each year as agricultural practitioners, pesticide formulating chemists, and on-site storage experts send queries about mixing compatibility. The takeaways share a theme: not all active ingredients behave the same in real-world tanks and spreaders.

    We hear from orchard managers and field trial supervisors who notice that small deviations in active ingredient content or physical stability can affect application range. Mixed with other agents, low-grade carbamates sometimes separate, or interact poorly, leading to clogged lines or uneven field distribution. We watched competing batches from other origins cause headaches when suspended in emulsion systems, emphasizing our focus on purity and proper physical form. Our production routines keep the product in a state ready for integration with commonly used surfactants, adjuvants, and stabilizer packages, decreasing operator downtime and reblending needs.

    During application trials run jointly with leading crop scientists, we found that solvent compatibility and the absence of unwanted foaming or clumping mean fewer stoppages per hectare and more confident application. High content of the active ingredient means smaller doses suffice for standard effect, translating to easier transport, less packaging per treated acre, and reduced handling risks for agricultural workers. We follow up with logistics managers to ensure shipping formats—drums, totes, or lined barrels—meet the reality of handling constraints faced in rural storage depots and processing facilities alike.

    What Sets This Compound Apart: Perspectives from Decades on the Factory Floor

    Having produced carbamates for years, we see the fine differences not just in synthetic routes but in every stage—filtering, washing, crystallizing, bagging. Some products on the market suffer from variability, where content hovers near cutoff and minor heat or moisture exposure triggers degradation. Our batches, always above 20%, stay stable under a range of transport and storage conditions. Operators on our floor shape operational protocols to ensure that each drum holds not just the right molecular identity but a robust, easily handled product.

    Other carbamates may technically meet basic ingredient standards, yet in real-world blending, their vague color, irregular particle size, or accumulating fines drive process headaches. In contrast, our approach includes continuous sieving, careful drying, and inert gas purging stages. These quality touches aren’t just checkboxes—they allow end users to scale up with confidence and predictability. For high-throughput agrochemical blending, these differences impact both cost-of-goods and delivery schedules during the peak crop protection season.

    From the perspective of veteran operators watching performance in pilot trials, the payoff shows in downstream uniformity and application smoothness. Agricultural supply managers count on knowing a truckload from us recirculates smoothly in their own holding tanks, remains pourable under cool or humid storage, and releases its active precisely when field conditions dictate. End users, working with spraying contractors or automated in-field applications, appreciate the practical differences: less residue, reduced formulation downtime, and no mid-season surprises during inspection rounds.

    Responding to Market Demands and Tough Conditions

    Each year brings unique climate and pest cycles. Agronomists want versatility, and we see demand spikes for flexible active ingredients such as this one when pest populations shift or local weather complicates planting and spraying windows. Having a carbamate that holds up regardless of these shifts means field managers reduce the risk of supply chain interruptions.

    Every season, our technical sales and on-site support managers pool customer feedback to fine-tune both documentation and tank-mix instructions. This isn’t about broad abstraction; it’s about hearing a field technician in the delta region describe reduced downtimes, or a supply coordinator at a blending facility comment on the straightforward reactivity in their custom mixtures. People on the ground want more than assurances—they want a proven record from the original manufacturer’s hands-on approach.

    Instances of third-party resellers relabeling batches of uncertain quality have led our crew to emphasize documentation, traceability, and hands-on support for legitimate buyers. Our teams go beyond the sale, working to ensure transport routes and handling instructions match the requirements hidden in every batch. In our plant, supply chain managers and export clerks drill down into inventory timelines to align with the unpredictable logistics realities of rural delivery networks.

    Integration in Custom Formulations: The Practical Angle

    Typical product datasheets focus on numbers, but from the workbench in our synthesis shop, functionality comes down to more than just purity. Our chemists listen to what formulation engineers ask, usually about processability, shelf-life, and interaction with fillers or other actives. We’ve seen other suppliers deliver lots whose active ingredients degrade under UV or high-heat blending, throwing off production schedules at the mixing facility.

    Our version of 1-Isopropyl-3-Methylpyrazol-5-Yl N,N-Dimethylcarbamate has proven up to the challenge of integration with the common solvents and dispersants used by the larger regional pesticide manufacturers. It’s in these formulation tanks that seemingly small differences in crystal habit or particle size make or break process efficiency. By purposefully tuning these properties upstream in our own reactors, we save hours of trialing and product loss further down the line.

    Formulation partners notice fewer filter blockages during bottling, faster mixing, and noticeably more homogeneous dispersion in both aqueous and oil-based systems. Our technical team provides direct feedback on how to synchronize our batch deliveries with formulation plant schedules, cutting down waiting and reducing the exposure of high-value intermediates to ambient humidity. As market cycles tighten, this reliability sets a foundation for both processors and the farm end-users who count on a stable product performance season after season.

    Environment, Safety, and Responsibility: Beyond Tick-the-Box Compliance

    Regulatory compliance builds from a foundation established at the early design stage. Our safety and environmental experts invest in robust handling infrastructure, not just to tick off requirements but to ensure long-term operational safety. Each production run follows a work protocol that grew out of real-world risk assessments, rather than hypothetical desk modeling. Workers at our plant engage in regular chemical handling refresher courses, monitored waste collection, and adherence to proven ventilation and containment routines.

    Product stewardship in the chemical industry means recognizing that risk doesn’t end after shipping. We partner with supply chain managers all the way to final blending sites, making sure that guidance on unloading, transfer, and even disposal reaches every link in the chain. Operators at farm co-ops and silo storage sites receive clear, experience-based advice tailored by those who made the batch on how best to minimize exposure risk and environmental impact.

    The feedback loop continues: incidents or process snags identified in the field get relayed back to our safety and production managers so batch logs and SOPs get updated to reflect reality, not assumption. This practical, experience-driven cycle of production and support carries through to our customer resource hotline, where answers come from people with factory floor experience, not generic call-center scripts.

    Supporting Sustainable Agriculture

    The role of carbamate chemistry grows as farmers face more unpredictable weather and pest threats. End users on large plantations as well as specialty crop growers increasingly evaluate supply partners based on transparency and traceability. We bake these principles into our quality control cycle, integrating batch tagging and digital tracking from raw material intake to shipment. Buyers and auditors appreciate direct access to trace batch records, reassuring both farm managers and final produce buyers about the product’s origin and documented handling history.

    Farm sustainability reviewers often focus on supporting data for materials used on food and feed crops. Our technical liaisons work proactively with both regulatory and private certification schemes, ensuring smoother review periods and clear pathways for certification. For volume buyers who increasingly need documented risk assessments for residue, drift, and local impact, we bring practical expertise born of manufacturing every kilogram from scratch. Farm-level trainers regularly consult with our technical staff on using our carbamate to balance urgent crop protection needs with broader field management practices.

    Challenges: Navigating the Realities of Advanced Pyrazole Synthesis

    People outside chemical manufacturing sometimes underestimate the technical hurdles in advanced pyrazole-coupled carbamate production. In our shop, real-world production challenges include maintaining reaction purity, wastewater minimization, and tight energy input controls. Batch-to-batch reproducibility doesn’t occur by chance; line operators work with digital batch records but rely on practical tweaks honed through years of runs. Some shifts see unexpected moisture ingress or minor raw material variation, which less experienced outfits let slip through unnoticed. In our plant, early detection and correction mean customer orders don’t see those problems downstream; every drum comes from a process our team has controlled from start to finish.

    Price competition in the agrochemical world drives some to cut corners, but the results tend to come out in the field: more dust-off, inconsistent spray patterns, or problematic by-product buildup in storage facilities. We experienced plenty of stories where subpar carbamates ruined a mixer’s batch, causing costly recalls or emergency tank cleaning. These failures feed our commitment to in-house process control—from real-time chromatographic monitoring to hands-on QC at every blend tank and packing line.

    We handle technical customer support requests not as an afterthought but as part-and-parcel of supplying a complex, high-content active. Technical managers and chemists who have spent time on the blenders or in the field act as our direct response line for both new and recurring issues, collecting trends and sharing insights across the broader network of users.

    Ongoing Development: What the Future Holds

    Innovation within the carbamate sector comes backed by everyday experience on both production and application fronts. We invest in equipment upgrades, greener synthesis routes, and process tweaks led by feedback from every level—plant supervisors, field users, and technical managers alike. Tightening environmental regulations and pressure on effluent streams drive us to trial and implement new treatment and recovery technologies, minimizing losses and maximizing usable product per kilogram of raw feed.

    Research partnerships with crop science institutes and industrial formulation labs continue to drive incremental improvements—from product crystallization consistency to improved moisture tolerance in transport scenarios. Customer pilots help test every tweak to standard blend compatibility, and our staff track results to assess which advances become permanent parts of the production cycle. With each season, we learn and adapt, blending legacy knowledge with modern chemistry and process controls.

    Experience-Driven Commitment

    Dedicating years to synthesis and delivery of 1-Isopropyl-3-Methylpyrazol-5-Yl N,N-Dimethylcarbamate has shown that product quality hinges on decisions made at each stage: sourcing, handling, monitoring, and support. Our approach reflects layered experience—plant operators who adjust for summer humidity spikes; QC chemists tracking purity in real time; logistics managers aligning output to peak delivery windows. This unity of purpose shapes every batch that leaves our facility.

    We believe true reliability in chemical supply does not come from simply meeting minimums. Our methods, routines, and ongoing learning instill trust among growers, processors, and supply chain professionals facing the ever-changing realities of modern agriculture. We continue to refine, adapt, and support, bringing years of factory and field insight to every kilogram we produce.

    Top