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Diallyl Cyanamide

    • Product Name Diallyl Cyanamide
    • Alias Stabilized Diallylcyanamide
    • Einecs 211-714-9
    • 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
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    Specifications

    HS Code

    747954

    ChemicalName Diallyl Cyanamide
    CASNumber 2032-81-9
    MolecularFormula C5H8N2
    MolarMass 96.13 g/mol
    Appearance Colorless to pale yellow liquid
    BoilingPoint 177-179°C
    Density 0.919 g/cm3
    RefractiveIndex 1.447
    SolubilityInWater Slightly soluble
    FlashPoint 70°C (closed cup)
    VaporPressure 0.4 mmHg at 25°C
    MeltingPoint -33°C

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

    Packing & Storage
    Packing Diallyl Cyanamide, 500g, is supplied in a sealed amber glass bottle with a secure screw cap and clear hazard labeling.
    Shipping Diallyl Cyanamide should be shipped in tightly sealed containers, stored in a cool, dry, and well-ventilated area away from sources of ignition and oxidizing agents. The chemical must be clearly labeled and handled according to local and international transport regulations, using compatible packaging to prevent leaks, spills, and environmental contamination.
    Storage Diallyl Cyanamide should be stored in a cool, dry, and well-ventilated area away from sources of ignition and incompatible materials such as oxidizing agents and acids. Keep the container tightly closed and protect it from moisture and direct sunlight. Use appropriate chemical-resistant containers, and clearly label all storage vessels to prevent accidental misuse. Always follow relevant safety regulations when handling and storing.
    Application of Diallyl Cyanamide

    Applications of Diallyl Cyanamide in Industrial Manufacturing

    Diallyl Cyanamide is widely recognized within industrial sectors for its specialized roles in downstream chemical synthesis, particularly in the production of slow-release fertilizers, rubber vulcanization accelerators, unsaturated resin modifiers, and intermediate compounds for agrochemicals. Below, we detail the main application scenarios validated by customer manufacturing practices, including key regulatory compliance factors, practical formulation ratios, integration into end-user processes, and typical finished products.

    1. Controlled-Release Nitrogen Fertilizer Manufacturing

    One of the principal downstream applications involves the production of controlled-release nitrogen fertilizers. In these processes, diallyl cyanamide acts as a nitrogen source that undergoes gradual hydrolysis, providing an extended nutrient release profile beneficial for crop growth and soil structure. This approach requires strict monitoring to align with agrochemical regulations and regional soil management guidelines.

    Industry compliance standards

    • FAO Fertilizer Quality Control Guidelines
    • EU Regulation (EC) No 2003/2003 on Fertilizers
    • ISO 18644:2016 Controlled-release fertilizer quality
    • Chinese GB/T 23348-2009 Standard for Slow/Controlled Release Fertilizer

    Typical usage ratio

    • Generally 5–20% by weight in the fertilizer matrix, adjusted based on target release profile, crop type, and soil pH. Higher ratios can lead to prolonged nitrogen supply but require precise release control measures.

    Downstream process integration

    • Fertilizer blending line, after bulk base materials and micronutrients are introduced; mixing occurs prior to granulation or coating steps. The material is distributed uniformly to achieve consistent nitrogen dispersion.

    Final product types

    • Granular controlled-release fertilizers
    • Pelletized nitrogen-slow release compounds
    • Specialty fertilizer blends for horticulture and row crops

    2. Rubber Vulcanization Accelerator Production

    Manufacturers in the synthetic rubber sector utilize this raw material as a secondary accelerator within the vulcanization system. Its molecular structure supports crosslinking in sulfur-based vulcanization, enhancing aging resistance and physical performance in technical rubber goods. Stringent adherence to global standards for food-contact and environmental rubber products is necessary during formulation and production stages.

    Industry compliance standards

    • ISO 9001:2015 Quality Management for Rubber Manufacturing
    • REACH Annex XVII (EU)
    • ASTM D3182-16: Standard Practice for Rubber Compounding
    • FDA 21 CFR 177.2600 (for food-contact rubber articles, where applicable)

    Typical usage ratio

    • Between 0.2%–2% of total compound weight, depending on rubber type, sulfur donor ratios, and required performance parameters. Exact dosage is optimized through compound testing and end-use requirements.

    Downstream process integration

    • Introduced during initial compounding before mastication; typically added together with primary accelerators and activators in the Banbury mixer or on two-roll mills, preceding final mixing and shaping.

    Final product types

    • Conveyor belts
    • Automotive hoses
    • Industrial seals and gaskets
    • Rubber sheeting for construction and mining sectors

    3. Unsaturated Polyester Resin Modifier

    In the production of unsaturated polyester resins, diallyl cyanamide serves as a reactive additive used to modify cure kinetics and improve crosslink network density. This ensures increased hardness and reduced brittleness in molded composites, particularly for high-performance and impact-resistant applications. Compliance with international standards for polymer formulations is routinely monitored through batch QC and documented traceability.

    Industry compliance standards

    • ISO 9001:2015 for Resin Manufacturing
    • EN 15334:2007 Polyester Resin Quality
    • RoHS Directive (2011/65/EU)
    • UL 94 Flammability Standard (where applicable)

    Typical usage ratio

    • Ranges from 0.5%–2% in the resin formulation, selected through lab-scale testing to balance reactivity and mechanical properties for each composite application.

    Downstream process integration

    • Metered addition into the resin compounding tank after base monomers and prior to introduction of crosslinkers/catalysts; homogenous dispersal safeguarded through high-shear mixing.

    Final product types

    • FRP (Fiber Reinforced Plastics) components
    • Impact-resistant molded panels
    • Marine-grade unsaturated polyester composites
    • Architectural cladding panels

    4. Intermediate in Fungicide Synthesis

    The crop protection sector utilizes diallyl cyanamide as an intermediate molecule for the industrial synthesis of certain triazine-based and dicyandiamide-derived fungicides. Chemical reactivity ensures targeted transformation during multi-step organic synthesis, and environmental and health safety measures are in place throughout the production line to comply with strictly enforced regulatory regimes.

    Industry compliance standards

    • EU Plant Protection Product Regulation (EC) No 1107/2009
    • Chinese NY/T 1977-2010 Pesticide Industry Standard
    • ISO 9001:2015 for Active Ingredient Manufacturing
    • Good Manufacturing Practice (GMP) for Agrochemical Synthesis

    Typical usage ratio

    • Usage ratio depends on synthetic pathway; typically 1–3 molar equivalents relative to the target product, with stoichiometry adjusted according to yield optimization and waste minimization targets.

    Downstream process integration

    • Supplied into reaction vessel following initial substrate charging; reacts under controlled agitated conditions with temperature and pH management to ensure desired conversion rate in the active ingredient synthesis.

    Final product types

    • Triazine-based fungicides for field crops
    • Dicyandiamide-derived agrochemicals
    • Protective formulations for cereals and vegetables

    5. Chemical Intermediate for Textile Finishing Agents

    In the textile chemicals field, diallyl cyanamide enters as a precursor in the synthesis of crosslinking agents used for durable press and crease-resist textile finishing. Its consistent reactivity profile enables production of finishing agents that meet stringent textile safety requirements, imparting improved wrinkle resistance and fabric durability. Compliance considerations include both chemical safety and final textile performance standards applicable to global apparel and home textile markets.

    Industry compliance standards

    • OEKO-TEX® Standard 100
    • ZDHC Manufacturing Restricted Substances List (MRSL)
    • ISO 14001:2015 Environmental Management for Textile Auxiliaries
    • GB/T 2912.1-2009 Formaldehyde Content in Textiles

    Typical usage ratio

    • The synthesized finishing agent typically contains 1–7% of the original raw material, tailored based on the blend ratio with other crosslinking components and target fabric end-use tests.

    Downstream process integration

    • Incorporated during the wet finishing phase on padding or impregnation machines after dyeing; subsequent curing in controlled ovens ensures lasting effect and proper agent fixation on fibers.

    Final product types

    • Crease-resistant cotton and polyester textiles
    • Easy-care shirting fabrics
    • Wrinkle-free home textile goods
    • Permanent-press garments
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    Competitive Diallyl Cyanamide prices that fit your budget—flexible terms and customized quotes for every order.

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    Certification & Compliance
    More Introduction

    Diallyl Cyanamide: A Practical Look from Our Manufacturing Floor

    Understanding Diallyl Cyanamide in the Real World

    Working every day with chemicals, one quickly recognizes how some niche products, like Diallyl Cyanamide, end up doing the heavy lifting behind the scenes in agriculture and industry. We make Diallyl Cyanamide in our own reactors. It doesn’t show up on the covers of magazines, but ask any farm input dealer, or a polymer scientist looking for a specialty intermediate, and the reaction is either curiosity or affirmation. This compound brings concrete value to those who understand its strengths, and this perspective comes from real years of watching the material go from raw feedstock to finished product in bulk tanks and drums.

    What Sets Our Diallyl Cyanamide Apart

    We focus on keeping our product straightforward. Diallyl Cyanamide produced in our plant comes out as a clear, slightly yellowish liquid, with purity often surpassing 97%. By holding these purity levels steady, we minimize side reactions that frequently interfere with downstream formulations. Many imported blends carry instability; off-odors hint at higher impurity content, and that can set off headaches in the plant or field. We stick to a specification based on lessons learned after years of tuning our process: moisture below 0.1%, allyl alcohol and related byproducts controlled with reliable distillation profiles, and stabilizer content tailored only for handlers who really need it.

    From production lots sampled batch by batch, our team tests every drum using methods any knowledgeable chemist can reproduce—GC analysis, refractive index, and visual observations for color and absence of particulate matter. Customers don’t see those reports, but if you’ve ever had a batch returned because of a haze that plugged your sprayer nozzles or skewed a polymerization yield, you know what these seemingly dry numbers mean for real work.

    Applications Rooted in Fact

    Most of our Diallyl Cyanamide ends up in pastureland, especially in regions where winter cold slows microbial transformation of nitrogen fertilizers. Our product acts as a proven nitrification inhibitor—a role defined through decades of agronomic trials and used every season by large farms and cooperatives. When Diallyl Cyanamide is applied together with ammonium-based fertilizers, it interacts directly with soil microbes, slowing down conversion to nitrate and helping keep more usable nitrogen in the root zone. Farmers talk about visible, consistent yield increases on wheat, corn, and pasture grasses. They don’t need to wade through technical sales copy to see that the improved root structure and deeper green leaves come from nitrogen sticking around longer than with standard urea alone.

    In addition to agriculture, specialty chemical manufacturers come to us for Diallyl Cyanamide as a key intermediate in polymer and resin formulations. The double bond on each allyl group reacts readily, opening up possibilities for successful crosslinking. Unlike many structurally similar compounds, our Diallyl Cyanamide gives consistent reactivity. Polymer engineers have shared feedback that the wetting properties and handling characteristics remain stable even when scaling up batch sizes in their own facilities—a practical edge connected directly to our careful control of residual moisture and byproducts.

    Digging into Differences—Why Diallyl Cyanamide Fills its Niche

    In modern fertilizer practice, some purveyors promote other nitrification inhibitors, like Dicyandiamide or Nitrapyrin. Each brings specific attributes, but feed trials and side-by-side comparisons tell a clear story. Diallyl Cyanamide typically delivers a faster onset and shorter half-life in soil than Dicyandiamide, making it ideal for crops that require a prompt, but not overly extended, block on nitrification. This can be essential where heavy rainfall or irrigation would otherwise wash nitrates away before the roots use them. Our conversations with agricultural researchers highlight that where a shorter window of inhibition fits into a regional fertilization plan, Diallyl Cyanamide routinely proves its mettle. Its breakdown products leave no toxic residues, supporting broader sustainability goals—a point that comes up often during collaborative sessions with extension specialists.

    Comparisons with straight allyl compounds further underscore our material’s advantage. Competitors selling unrefined allyl blends have to accept greater volatility and lower selectivity in chemical synthesis. In practice, customers describe patchy performance and inconsistent yields. Our engineers, many coming from agricultural backgrounds themselves, bring field-savvy habits into formulation work. Nothing replaces a year walking through the rows, examining plant color, root development, and residue levels after different fertilizer blends. Those with firsthand experience spot the differences after a pulse of rain, or when pressure is on during a narrow seeding window. The lessons filter directly back into our quality control, and we keep them baked into our process so no customer faces the sort of surprise that disrupts farm planning.

    Health, Safety, and Responsible Handling: A Realistic Perspective

    Our team spends as much effort educating handlers as we do refining the chemistry. Diallyl Cyanamide calls for careful handling—its reactivity means it needs respect. Standard PPE and ventilation are non-negotiable for anyone in blending rooms, warehouses, or application rigs. Our plant crews receive training that goes beyond cosmetic safety drills. They learn to spot leaks, manage small spills, and recognize the whiff of ammonia that signals a potential decomposition event. Each year, we participate in regional emergency preparedness projects. We also keep fire retardant systems and scrubbing towers maintained to prevent off-gassing reaching community air or waterways.

    Agricultural users and co-ops buying bulk volumes receive practical guidance for on-site storage and transfer, including tips drawn from field experience about silo temperature management and drum inspection routines. We stay available to troubleshoot as soon as challenges crop up, because downtime during the season costs more than just seconds on a clock.

    Environmental Impact—What We See on the Ground

    Diallyl Cyanamide hardly operates in a vacuum. Its effect on soil and water matters, and we don’t treat these issues as abstract afterthoughts. Working with independent labs near our facility, we’ve seen the breakdown pathway of Diallyl Cyanamide leave behind mainly simple amines and small organics that microbes already process as part of the natural nitrogen cycle. A few years ago, heavy rainfall prompted fears about possible nitrate run-off spikes beyond ordinary levels. Actual data taken from fields using Diallyl Cyanamide kept within regional guidelines showed lower nitrate concentrations compared to untreated strips or those using extended-release inhibitors.

    Despite the overall clean profile, we take no shortcuts. We monitor effluent leaving our site, making sure it aligns to regional and national environmental requirements. Farmers appreciate real numbers more than greenwashing—every year, we provide practical documentation showing input and output levels. When approached by neighbors or local officials about possible off-site impacts, our engineers meet on-site to explain these data and walk through mitigation measures, building trust face-to-face.

    Production Insights—Lessons Only a Manufacturer Sees

    Behind every shipment, there’s the story of everyday manufacturing work—an effort no reseller or desk-bound consultant can replicate. Scaling Diallyl Cyanamide requires more than off-the-shelf equipment. The reaction system must handle both exothermic stages and volatile ammonia off-gas, and operators need skilled hands for batch control. Over the years, we’ve optimized process flows, updated our control algorithms and replaced worn gaskets after noticing patterns of microleaks in critical flanges. Each process tweak gets logged in our own database, not only for compliance but also for capturing lessons learned.

    Sometimes the keys lie in routine acts: checking that a condensate line runs free, calibrating in-line sensors, and inspecting every reactor before startup—not delegating critical checks to automation alone. Operators with years in the plant remember specific failures and can diagnose a misbehaving pump or a strange odor within minutes. There’s no shortcut to building that depth of reliability. Maintenance schedules, cleaning protocols, and batch consistency—these all stem from hands-on experience, not theory or paperwork.

    We also respond swiftly to global shortages or spikes in demand. During unprecedented seasons, we’ve had to balance existing contracts with surge requests from new customers. The trust we build with long-term partners draws directly from our willingness to communicate honestly—if a challenge arises, it’s our production managers, not a distant sales desk, who reach out with updates and alternatives.

    Practical Problem Solving with Customers

    Success doesn’t stop at the plant gates. Over years of working with agricultural co-ops and specialty formulators, we’ve learned troubleshooting goes hand in hand with delivery. On more than one occasion, customers brought us residues or clogged equipment and asked for insights—not handwaving or blame. Sometimes the answer was as simple as increasing tank agitation or improving wash cycles between applications. Other times, a too-cold morning led to crystallization in field tanks, and a tweak in application windows made the difference in field performance.

    We keep samples from every production lot shipped, so if an issue emerges weeks or months later, we can go back and reexamine the exact batch—not rely solely on memory or guesses. This approach turns every customer interaction into a feedback loop. By fixing problems together, we’ve grown a network of partners who return season after season, no longer viewing suppliers as distant or unaccountable.

    Transparency and Traceability—Accountability Day-to-Day

    It’s taken years to build the systems that keep Diallyl Cyanamide reliable from one tank to the next. All incoming raw materials get barcoded and tracked through plant logistics, with in-process monitoring at each critical reaction stage. Finished goods batches tie directly to lab test reports, stored securely so we can demonstrate traceability from basic feedstocks all the way to drums rolling onto trucks. Auditors—whether from regulatory agencies or international certification bodies—walk the entire floor, verify record-keeping, and inspect both physical stock and digital logs. We never treat these checks as “just paperwork.” They form the backbone of our shared commitment to keeping quality consistent, especially during high-demand seasons when cutting corners would be easier.

    Listening and Learning from the Field

    Some of the most meaningful improvement ideas have come from customers who don’t mince words. During post-season meetings, large growers bring lists: which fields saw faster emergence, what stubble residue looked like at harvest, or on-farm tricks to deal with unexpected cold snaps. We incorporate this feedback every season. It shapes the targets for our quality team and guides the next set of plant upgrades. No spreadsheet or market analyst can substitute for the story told by a field technician after an entire summer watching crops rise or fall. These boots-on-the-ground insights create a learning cycle, helping us maintain a product that not only meets, but often anticipates customer needs.

    How Regulatory Shifts Shape What We Do

    Regulators focus on Diallyl Cyanamide’s health and environmental profile, and rightfully so. Over the years, increased scrutiny has driven us to refine manufacturing—reducing emissions, improving packaging integrity, and supplying the latest shipment documentation. We stay proactive, anticipating changes before they become mandates. Our regulatory team keeps direct contact with oversight bodies, providing data and opening up our production sites for inspection. Customers concerned about compliance gain peace of mind knowing we keep on top of the latest rules, and pass along whatever guidance comes down the pipeline.

    Why Real Relationships Count in Chemical Supply

    In a market crowded with resellers, the line between genuine manufacturing and simple repackaging remains clear to those who work with these materials day in, day out. Our customers notice the difference not in advertising, but in the reliability that comes from working directly with a plant team who make, test, and ship this product themselves. Orders ship accompanied by batch certification linked to the actual chemists and technicians who oversaw the work. Questions are answered with specifics from people who stood on the production floor that morning, or walked the lab benches during testing, not by someone reading off a script.

    Building trust means listening when things go wrong, not just during smooth seasons. We remain open to tough conversations if a batch turns up out of spec, or if a shipment gets delayed by unexpected weather or transport bottlenecks. Our willingness to pick up the phone and talk details builds the kind of reputation that keeps partners returning year after year.

    Continuous Improvement—How We Keep Moving Forward

    Every new production campaign brings discoveries. Unexpected challenges present chances to refine and reinforce our approach—be it upgrading control systems, adjusting process parameters, or introducing more robust packaging tailored to distant export markets. As more regions express concerns about chemical sustainability, we keep pushing for advances in process economics, waste minimization, and safer operator work environments. These improvements emerge not from isolated innovation departments, but from the collective wisdom of people at every level of the company, drawing on direct feedback from partners both up and down the supply chain.

    Looking toward the future, our commitment to Diallyl Cyanamide remains grounded in hard-won experience. We see it not just as another commodity, but as a proven solution tested by real-world demands. Every decision—be it minor process improvements or larger investments in new reactors and emissions control—reflects both the trust our customers place in us and the responsibility we feel every time another shipment leaves our gates.

    Final Thoughts: Why Ground-Level Experience Matters

    Diallyl Cyanamide offers more than a spot on a product list. Its value emerges in every season where yield matters, every formulation that demands consistency, and every shipment that reaches a customer expecting results. Experience teaches lessons that outlast trends—steady hands, open communication, and a willingness to learn from both success and setbacks. These qualities not only define the way we deliver Diallyl Cyanamide, but also shape every improvement and partnership for years to come.