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Acethydrazide

    • Product Name Acethydrazide
    • Alias Acetic acid hydrazide
    • Einecs 221-316-7
    • 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

    453885

    Chemical Name Acethydrazide
    Synonyms Acetohydrazide
    Molecular Formula C2H6N2O
    Molecular Weight 74.08 g/mol
    Cas Number 1068-57-1
    Appearance White to off-white crystalline solid
    Melting Point 59-62 °C
    Boiling Point 178 °C (decomposes)
    Solubility Soluble in water
    Density 1.2 g/cm3
    Smiles CC(=O)NN
    Inchi InChI=1S/C2H6N2O/c1-2(5)4-3/h3-4H2,1H3
    Storage Conditions Store in a cool, dry place, tightly closed container

    As an accredited Acethydrazide factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing Acethydrazide is packaged in a 100-gram amber glass bottle, labeled with hazard symbols and product information for laboratory use.
    Shipping Acethydrazide should be shipped in tightly sealed containers, protected from moisture, heat, and incompatible substances. It must be labeled according to relevant regulations and handled with appropriate safety precautions. During transit, ensure the packaging prevents leaks or spills. Follow local and international guidelines for the transport of chemical substances.
    Storage Acethydrazide should be stored in a tightly sealed container, protected from light, moisture, and incompatible substances such as oxidizing agents. Keep it in a cool, dry, and well-ventilated area, preferably in a chemical storage cabinet designed for hazardous materials. Clearly label the container, and restrict access to trained personnel only. Ensure proper secondary containment and spill control measures are in place.
    Application of Acethydrazide

    Applications of Acethydrazide in Industrial Manufacturing

    Acethydrazide is a niche chemical intermediate with defined roles in several industrial chemical synthesis routes. Our manufacturing expertise guarantees consistent quality for application-critical sectors where controlled reactivity, regulatory compliance, and formulation accuracy remain essential to meet customer specifications.

    1. Agrochemical Intermediates Synthesis

    Many pesticide and herbicide producers use acethydrazide as a key building block in the synthesis of hydrazide-functional active ingredients. Manufacturers employ it in the preparation of selective herbicides, specifically in the pre-emergent weed control category, and in the development of certain insecticide precursors. Process engineers precisely meter the material into multi-step organic syntheses, favoring its compatibility for hydrazinolysis and acylation reactions to form heterocyclic intermediates, ensuring high assay and low contaminant levels with each batch.

    Industry compliance standards

    • ISO 9001:2015 Quality Management System
    • REACH (EC 1907/2006) compliance for registration and safe handling
    • FAO/WHO Specifications for Pesticide Technical Grade Active Ingredients
    • EU Regulation 1107/2009 on Plant Protection Products (where applicable)

    Typical usage ratio

    • 0.5—2.5 mol equivalents, depending on the targeted hydrazide or heterocycle structure
    • Further dilution or concentration by downstream chemists adjusts for final activity and purity requirements

    Downstream process integration

    • Charged at condensation or cyclization step of active ingredient synthesis
    • Enters after substrate activation during hydrazinolysis or amidation
    • Requires controlled pH and temperature for full conversion with minimal side products

    Final product types

    • Pre-emergence and selective herbicide actives (e.g., specific triazole or pyrazole derivatives)
    • Hydrazide-based insecticide intermediates
    • Active ingredient isolates for emulsion or granule formulations

    2. Pharmaceutical API Manufacturing Intermediates

    Pharmaceutical ingredient manufacturers utilize acethydrazide in the synthesis of specialty APIs, especially where hydrazide or acylhydrazone motifs occur within the molecular backbone. Its role is prominent in anti-tubercular and anticonvulsant compound development, and researchers select it for specific antineoplastic agent syntheses. Material traceability, impurity limits, and documentation remain essential considerations at each production batch release.

    Industry compliance standards

    • ICH Q7A Good Manufacturing Practice for Active Pharmaceutical Ingredients
    • European Pharmacopoeia (Ph. Eur.) monographs for intermediate purity
    • USP/NF General Chapters & manufacturing documentation
    • 21 CFR Part 211 for finished drug cGMP

    Typical usage ratio

    • 1—2 mol equivalents relative to substrate
    • Scale optimized for batch or continuous processing based on target API campaign

    Downstream process integration

    • Used at acylhydrazone-forming condensation or ketone substitution stage
    • Integrated into core fragment coupling or intermediate build-up process streams
    • Requires documented in-process QC and release testing

    Final product types

    • API intermediates for anti-tubercular drugs like isoniazid derivatives
    • Hydrazide-based anticonvulsants (e.g., specific pyridazinone analogs)
    • Raw materials for oncology research compounds

    3. Polymer Additives and Crosslinkers

    Producers of high-performance polymers formulate acethydrazide as a polymer crosslinking agent, especially in composite engineering plastics and specialty coatings. The functional hydrazide group reacts with carbonyls or active esters during curing, resulting in increased thermal and chemical resistance properties within the matrix. R&D and process engineers value its defined functionality for material improvements in harsh end-use environments.

    Industry compliance standards

    • ISO 14001:2015 Environmental Management for chemical operations
    • RoHS 2015/863/EU for restricted substance levels (where applicable)
    • UL 94 requirements for polymer flammability
    • ANSI/ASTM guidelines for specialty coatings

    Typical usage ratio

    • 0.5–3 wt% in engineering plastics, depending on polymer backbone and desired crosslink density
    • Adjusted for final product performance (e.g., abrasion resistance, rigidity)

    Downstream process integration

    • Introduced to polymer compounds before extrusion or mold curing
    • May be pre-reacted with a co-monomer or blended at masterbatch stage
    • Curated for even dispersion in matrix for consistent mechanical properties

    Final product types

    • High-durability thermoset polymer parts
    • High-performance composite coatings for electrical and automotive use
    • Adhesive layers for specialty laminates

    4. Fine Chemical Synthesis and Specialty Reagents

    Manufacturers of fine chemicals and specialty reagents use acethydrazide as a precursor in the creation of molecular probes, azo initiators, and custom ligands for industrial research. The compound’s reactivity provides reliable platform customization for downstream processes, especially in analytical standards and specialty organics. Every production lot undergoes rigorous analysis for trace residuals and reactivity matching.

    Industry compliance standards

    • ISO 9001:2015 Quality Management System
    • OECD Good Laboratory Practice (GLP) for analytical reagent production
    • Internal and customer-specific impurity profile targets
    • UN Model Regulations for hazardous chemicals shipping (as applicable)

    Typical usage ratio

    • As a limiting reagent, used at 0.8–1.2 equivalents for most custom syntheses
    • Adjusted by QC depending on purity specs and downstream assay requirements

    Downstream process integration

    • Added at the nucleophilic substitution or diazotization step in specialty synthesis
    • Serves as a reactant or coupler for the preparation of research novelties or analytical probes
    • Supports reagent-grade output for precise laboratory needs

    Final product types

    • Custom azo initiators for polymerization reactions
    • Reference standards for QC and research labs
    • Molecular ligands for metal complexation studies
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    Competitive Acethydrazide prices that fit your budget—flexible terms and customized quotes for every order.

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    Certification & Compliance
    More Introduction

    Acethydrazide: Reliable Performance for Your Applications

    Direct Insight from the Production Floor

    In chemical manufacturing, reliability hinges on more than purity numbers or stale certificate templates. Day after day, our teams handle, refine, and package Acethydrazide at a scale that puts us face to face with both opportunities and obstacles. Our perspective doesn’t come from reading catalogs or relaying information from agents. We turn raw materials into finished product right here, handling every step, tracking every variable. This experience shapes both how we talk about Acethydrazide and how we judge its value to our clients.

    Technical Overview and Model Highlights

    Acethydrazide, produced in our reactors, meets a molecular formula of C2H6N2O and a molecular weight set at 74.08 g/mol. We adhere to industry-accepted assay benchmarks, typically not falling below the 99% mark in purity assessments, and frequently push higher depending on the synthesis run and end-use requirements of our partners. Physical properties can vary slightly depending on atmospheric controls and residence time, but customers report consistency across shipment lots—something we monitor batch by batch, not simply by statistical spot-checks.

    We recognize each plant has a different fit for Acethydrazide—be that in pharmaceutical intermediates, agricultural compounds, or specialty additives in dyestuffs. Many buyers look for particular forms; our production lines focus on crystalline Acethydrazide with particle size distribution optimized for smooth dissolution and manageable handling. We avoid excessive dusting, which helps laboratories, scale-up technicians, and automated feed systems maintain a tidy process.

    Acethydrazide’s Unique Strengths in Real-World Usage

    A chemical might appear identical on two data sheets, yet even minor changes in synthesis route or purification steps can transform its performance once it lands in a process line or pilot trial. With Acethydrazide, consistency depends on the control of hydrazine input, reaction temperature, and downstream purification. Personnel with direct production control help us maintain this level of detail. Having dealt with clogged filters, slurry carryover, and batch yield variations firsthand, we refine our procedures continuously until our final product fees reliably into client recipes.

    That daily focus on hands-on work pays off for end-users: feedback from major customers shows our Acethydrazide helps shorten reaction times in certain acetylation protocols and improves reliability in suspension polymerization, areas where slight impurities in suppliers’ material can derail batch outputs. We push to reduce trace metals and side-products, proven benefits for customers who run sensitive downstream chemistries. Our technical staff trace any customer-reported deviations directly to production logs and make immediate adjustments—a closed loop back to the reactors, not layers of bureaucracy or blame-shifting between intermediaries.

    Comparison with Market Alternatives: Substance over Marketing Claims

    We know cost gets plenty of attention, but without dependable performance, a cheap product can mean high downstream losses. Some traders source Acethydrazide from facilities that cut corners on reactor cleaning or skip secondary recrystallization to trim time. It looks fine in a jar; difficulty starts on charging day when dust builds up in feeders, fines coat vessel walls, or off-odors point to decomposition. We keep quality front and center: infrared spectra, gas chromatography, and HPLC confirm real purity targets—tools that catch off-spec batches before customers ever have to troubleshoot.

    Several buyers ask about shelf life and thermal behavior under extended storage. Our batches retain their properties through variable warehouse conditions, with stabilizer content and moisture content checked at release and periodically on retained samples. Having stood beside pallets in non-ideal holding zones, we know what happens if product aging leads to deterioration, so we over-design our packaging to handle temperature swings and outdoor transits.

    Where another supplier might gloss over production limitations, we keep lines open about what can impact final Acethydrazide characteristics. Particle size control used to fluctuate; after multiple customer site visits and test runs, we retrofitted our grinding and sifting lines to keep deviations narrow. If you’ve ever needed to adjust feed rates mid-batch because of an unexpected bulk property, you know how valuable a stable, predictable supply can be.

    Applications: Feedback from the Field

    Acethydrazide’s reputation sits largely on its reliability in synthetic transformations as a key acylating agent and as an important intermediate. In pharmaceutical labs developing new active ingredients, predictable performance during the introduction of hydrazide groups can make the difference between a clean reaction and a tangle of unidentifiable byproducts. Working closely with development chemists, we adjust dryness and purity on request, supporting new drug or regulated chemistry with real analytical support and open sample policies before scale-up.

    In certain crop protection molecules, purity levels must meet or exceed those for direct ingestion. Field formulators sometimes want extended certificates or retest data—our analytical department builds this in, based on genuine retained lot samples. Laboratories pushing seasonal production schedules can rely on same-day shipment of documentation, and we provide technical backup when customers tweak processes or encounter new analytical questions in production changeovers.

    Customers who handle colorant intermediates or specialty polymers value Acethydrazide’s reactivity profile, which enables flexible adaptation into a range of functional compounds. Some producers require tight control over trace contaminants to avoid regulatory pushbacks or lot rejections during export or third-party audits. We support such users through customized production and packaging runs, ensuring traceability and simplifying compliance. We hear from colorants plants globally that quality swings—sometimes almost invisible—can show up as color drift or unplanned waste. In our experience, direct coordination between producer and user avoids finger-pointing and gets problems solved fast.

    Production Experience and Ongoing Optimization

    Every batch of Acethydrazide that leaves our facility results from a set of choices about temperature curves, raw inputs, and operator oversight. We’ve invested heavily in real-time monitoring over the past decade—inline sensors, automated feed controls, and particle imaging link with our quality teams to provide both batch-to-batch reproducibility and faster identification of drift. Raw material sources are reviewed ourselves, not just through supplier paperwork. We select hydrazine and acetic acid sources after chemical, not only commercial, trials, monitoring impurities all the way back to their generators or distillation towers.

    Long experience tells us corners cut upstream turn into problems downstream. Years ago, improper reactor cleaning caused a spate of “unknowns” in our HPLC traces, which helped reinforce strict cleaning and inspection routines. Restarting production after maintenance now ties directly to both visual inspections and test runs with non-critical material, minimizing surprises with premium raw material. We treat these lessons as institutional memory and feed improvements back to the next generation of operators and chemists.

    For any client who has ever received an off-specification shipment from another supplier, we open our records to share real root-cause investigations, so clients see not just a fix but the background of continuous improvement. This transparency shortens troubleshooting and builds actual confidence, not just contract language. Our laboratory staff welcome technical dialog, and our doors stay open for customer audits—many of our best suggestions come from visitors walking our production lines, observing our processes, and sharing their needs.

    Solutions to Common Challenges: Ideas Informed by Practice

    Handling hydrazide derivatives presents its share of challenges—dust control, safe transfer, uniformity over time, and packaging durability stand out across our experience. In particular, we have addressed the risk of dust formation by modifying our crystal recovery and drying operations, shifting to closed system transfers, and enhanced ventilation protocols. Maintenance staff have adjusted machinery and cleaning frequency schedules based on observed build-up patterns, which has led to measurable reductions in airborne particulates and fewer operator interventions.

    Shipping standards in international trade often split packaging requirements from real storage realities. We recognize that once a drum leaves our site, it journeys thousands of kilometers, facing temperature swings and handling practices unique to each logistics route. We over-specify drum linings, humidity seals, and secondary containment, drawing on direct feedback from clients who unpack shipments at remote and sometimes challenging delivery points. The result: fewer returns, fewer complaints about cake formation, and better flow when transferred to customer storage.

    Workspace safety and process control in downstream use form another focus. Our technical representatives advise users on integration; from safe transfer protocols to vacuum-assisted feeding if operators experience bridging or rat-holing in hoppers. These suggestions were not developed remotely—they grew out of problem-solving at customer plants during real process upsets. By understanding the lived process on both our side and the user end, we design not just the core Acethydrazide, but also the means by which it arrives ready for use—packaged right, documents in hand, and consistent in each new lot.

    Partnering for Innovation and Stewardship

    Our approach treats supply as a partnership between producer and user. When clients face evolving regulatory pressures, changing environmental standards, or shifts in permitted impurities, we regularly update synthesis and purification steps, driven by both statutory requirements and direct collaboration with environmental chemists or compliance managers. Relationships with regulators and local industry bodies keep us informed before major changes—including those affecting shelf life, impurity levels, or reporting obligations—reach the field.

    Value does not stem from price alone. Our clients expect more than commoditized chemicals; they seek a partner who can help navigate process changes, update documentation standards, and respond swiftly to market or regulatory shifts. We openly share stability studies, impurity trend data, and user-specific technical documentation because we believe chemical manufacturing works best as an open conversation grounded in facts, real-world feedback, and a common drive for consistent, high-performing outputs.

    Continuous Listening and Improvement

    We do not just sell Acethydrazide. We listen to operators who tell us about filter plugging, to warehouse bosses phoning about label durability, and to lab managers quick to spot subtle shifts in color or odor. Each of these voices shapes our improvements. Feedback does not stop at sales; ongoing technical and logistical support builds the trust that long-term chemical supply rests on. Whether the conversation involves specialty pharmaceuticals, colorant intermediates, or process additives, we believe in moving forward through shared experience.

    Serving as both manufacturer and technical partner, we strengthen our offering not by chasing extra volume, but by protecting the quality and traceability of every kilogram. Each batch carries the benefit of repeated learning cycles, open communication, and real manufacturing ownership—not distant procurement games or hands-off representation.

    Looking Forward with Confidence

    We have built our approach to Acethydrazide through years of hands-on production, feedback from processors, and collaboration with analytical minds in the field. As production lines keep running and new challenges appear, we keep evolving. Technical teams track changes, refine methods, update packaging, and work with every customer to ensure every kilogram meets modern demands. If you are looking for a manufacturer committed not just to supply, but to partnership and ongoing technical engagement, we welcome your inquiries—and always invite you to see our process for yourself.