Tengfei Creation Center,55 Jiangjun Avenue, Jiangning District,Nanjing admin@sinochem-nanjing.com 3389378665@qq.com
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Flusilazole

    • Product Name Flusilazole
    • Alias Flusilazol
    • Einecs 106325-08-0
    • 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

    893388

    chemical_name Flusilazole
    cas_number 85509-19-9
    molecular_formula C16H15F2N3Si
    molecular_weight 315.39 g/mol
    appearance Colorless to pale yellow liquid
    solubility_in_water Low
    melting_point -27°C
    boiling_point 180-184°C at 0.1 mmHg
    density 1.16 g/cm³ at 20°C
    toxicity Moderately toxic to aquatic organisms
    mode_of_action Inhibits biosynthesis of ergosterol in fungi
    usage Systemic fungicide
    flash_point 121°C
    vapor_pressure 2.5 × 10⁻³ mPa at 20°C
    stability Stable under normal conditions

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

    Packing & Storage
    Packing A sturdy, white 1-liter HDPE bottle labeled “Flusilazole 40% EC,” featuring hazard symbols, usage instructions, and a secure screw cap.
    Shipping Flusilazole should be shipped in tightly sealed, clearly labeled containers designed for chemicals. Transport must comply with relevant hazardous materials regulations. Keep the shipment away from incompatible substances, extreme heat, and moisture. Appropriate safety documentation (SDS) must accompany the shipment to ensure safe handling and compliance with local and international regulations.
    Storage Flusilazole should be stored in a cool, dry, well-ventilated area, away from direct sunlight, heat sources, and incompatible materials such as strong acids and oxidizers. Keep the container tightly closed and properly labeled. Store in original containers or compatible, chemical-resistant containers. Ensure the storage area is secure and access is limited to trained personnel. Follow all local regulations for hazardous materials.
    Application of Flusilazole

    Applications of Flusilazole in Industrial Manufacturing

    As a dedicated chemical raw material producer, we supply Flusilazole to strictly regulated downstream sectors requiring precise technical performance. Below, we detail verified applications by industry, with specific compliance, dosage, manufacturing step, and end product context for each field.

    1. Cereal Fungicide Formulations for Agricultural Crop Protection

    Major agrochemical formulators use Flusilazole as a triazole fungicide active ingredient to control leaf and ear diseases in cereals such as wheat and barley. In these formulations, Flusilazole meets performance, safety, and environmental thresholds enforced by global crop protection regulators. Chemical manufacturers incorporate it during the technical concentrate synthesis phase, followed by blending with adjuvants and carriers to produce SC (suspension concentrate) or EC (emulsifiable concentrate) fungicidal products for broad-acre cereal programs.

    Industry compliance standards

    • EU Regulation (EC) No 1107/2009 (Plant Protection Products)
    • US EPA Registration (Federal Insecticide, Fungicide, and Rodenticide Act - FIFRA)
    • China GB 2763-2021 (MRLs for Pesticides in Food)
    • ISO 9001:2015 certified production systems

    Typical usage ratio

    • 100–125 g/L technical concentrate in SC/EC formulations; field rates 75–125 g ai/ha, adjusted for crop type and disease pressure

    Downstream process integration

    • Introduced during wet-milling, homogenization, or dissolution into solvent systems—combined with stabilizers and surfactants prior to packaging

    Final product types

    • Fungicide suspension concentrates (SC) for field spray application
    • Emulsifiable concentrates (EC) for manual and aerial treatments
    • Premixtures with companion active ingredients

    2. Horticultural Fungicide for Fruit and Vegetable Crop Production

    Flusilazole is adopted in specialized horticultural fungicide blends to manage fungal pathogens in high-value fruit and vegetable crops, such as apples, pears, sugar beets, and grapes. Formulators ensure compatibility with other actives and adjuvants to respect phytotoxicity limits and residue constraints demanded by retail and export frameworks. The technical input occurs at the microencapsulation or wet granulation phase, optimizing environmental and operator safety in finished dispersible formulations.

    Industry compliance standards

    • FAO/WHO Codex Alimentarius MRL standards
    • EU Regulation (EC) No 396/2005 (Setting Maximum Residue Levels)
    • Global GAP Certification for raw material traceability
    • National Ministry of Agriculture pesticide registration

    Typical usage ratio

    • 5–10% w/w in water-dispersible granule (WDG) or suspension concentrate (SC) final formulations, tuned to target crop and country-specific MRL

    Downstream process integration

    • Combined at the granulation or encapsulation stage with micronized clays and dispersing agents to form dust-free, free-flowing commercial products

    Final product types

    • Water-dispersible granules (WDG/WG) for orchard and vegetable crops
    • Ready-to-use fruit fungicide blends for packhouse or field application
    • Tank-mix compatible multi-active fungicide products

    3. Seed Treatment Additive for Cereal and Oilseed Planting

    Seed treatment manufacturers integrate Flusilazole as a key active to inhibit early-season fungal infections in wheat, barley, and rape seed production. Raw material dosing respects seed safety, germination rates, and monitored residue compliance in treated seed protocols. Mixing is conducted in closed-system blending with binders and pigments, followed by on-seed application via drum or mist coating technologies to produce uniform coverage and durable disease protection during storage and planting.

    Industry compliance standards

    • OECD Seed Treatment Guidelines
    • ISO 17025 accredited QC protocols for residue analysis
    • US EPA Seed Treatment Tolerance Exemptions
    • Regional seed regulatory agency rules for treated seed labeling and PPCP traceability

    Typical usage ratio

    • 0.005–0.015 g active/1000 seeds, with adjustment based on crop, target pathogen, and seed company QC method

    Downstream process integration

    • Introduced at the additive mixing stage for water-based or polymer-based coating products, followed by blending with coloring, adhesives, and micronutrient components

    Final product types

    • Treated cereal seed for commercial and certified seed producers
    • Canola/rapeseed with multi-active antifungal coatings
    • Specialty grain seed with branded fungicide + micronutrient treatment

    4. Turf and Ornamental Fungicide for Professional Lawncare Markets

    Formulators serving golf course, sports turf, and ornamental plant markets select Flusilazole for its curative and preventative activity against leaf spot, powdery mildew, and rusts affecting managed grasses and shrubs. Professional-use products mandate minimal phytotoxicity, re-entry periods, and environmental risk, so production involves precise technical grading and compatibility tests. The technical is processed during the low-dust granule formation stage or loaded into liquid suspension systems, with rigorous QC to meet commercial application standards.

    Industry compliance standards

    • US EPA Professional Use Pesticide Registration
    • EU Harmonized Classification and Labeling (CLP/GHS)
    • Golf Environment Organization (GEO) chemical policies
    • Japanese Agricultural Standards (JAS) trade safety for turf-use chemicals

    Typical usage ratio

    • 2.5–10% w/w in flowable concentrate or granular formulations; recommended field rates 0.5–1.0 L/ha, varying by grass species and local weather

    Downstream process integration

    • Added at the concentration and carrier mixing phase before conversion into granules or dispersion into aqueous systems; blends finalized with wetting agents and application aids

    Final product types

    • Flowable turf fungicide concentrates for commercial sprayers
    • Granular turf disease control products for broadcast spreaders
    • Special formulation packs for sports field maintenance
    Free Quote

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    Certification & Compliance
    More Introduction

    Flusilazole: The Triazole Fungicide Made by Producers Who Rely on Chemistry

    What Sets Our Flusilazole Apart

    Every day on the production line, real chemistry takes shape. Our Flusilazole isn’t pulled from a catalog or resold with someone else's story. We manufacture it ourselves with a hands-on approach, paying attention to each reaction and process from raw materials to finished product. This triazole fungicide owes its popularity to years of field use in fruit, vegetable, and cereal crops. The result is a crop protection solution that growers around the world trust, and that our plant team stands behind with pride.

    Known by its technical model, Flusilazole 95% TC (technical concentrate), our material brings a purity that experienced buyers recognize as critical in higher-value agriculture. The 95% grade comes straight from our reactors, before formulation and dilution. These active ingredients don’t tolerate shortcuts, so we monitor the process step by step. The finished technical concentrate shows high clarity, stable composition, and reliable triazole content. What comes from our site meets the same benchmarks demanded by global agrochemical companies and local cooperatives.

    Some fields demand more than technical concentrate, so we custom-produce Flusilazole 12.5% SC (suspension concentrate), 40% EC (emulsifiable concentrate), and a range of water-dispersible granules. These formulations match the regional needs—suspension concentrates handle orchard spraying well, while emulsifiable versions suit cereal and broadacre farmers. Each batch is traceable to its origin, with necessary attention to the solvents, surfactants, and grind quality that give a stable, easy-to-apply formulation. Our technical staff, many with more than a decade of chemistry experience, personally inspect and refine processes as required.

    Working With Triazole Chemistry, Safeguarding Fields

    Flusilazole works by interfering with sterol biosynthesis in fungal pathogens, which keeps rusts, mildews, and leaf spots controlled through the growing cycle. That biochemical mechanism isn’t just academic—we see the results when samples from our factory make it to trial plots and commercial farms. The consistent purity of the technical Flusilazole ensures growers get the most active molecule possible, not fillers or unconverted intermediates.

    Crop protection is all about timing and reliability. Field teams depend on product flow from the plant floor to the application tank, with stability during warehousing, transport, and mixing. Our chemists routinely check every batch, watching for changes in color, odor, and particle size. We know an operator’s complaint from a distant country likely began with a formulation choice or storage condition in our own supply chain. A transparent trace-back system, built from years of practical trouble-shooting, keeps accountability high. Buyers who visit—both big firms and local partners—often remark on the visible order and strict batch documentation.

    Differences That Matter in Practical Use

    A common question from buyers is, “Why not use the cheaper generic?” After years in agrochemical manufacturing, the answer is clear in both the chemistry and the results. Flusilazole is not like older dithiocarbamates or contact fungicides that wash off with a shower. Workers in the field notice better rainfastness and systemic action, because our molecule moves through the crop canopy and resists breakdown in harsh sun or rain. That performance comes from the synthetic route and purification—fine points that get overlooked by firms only blending or repacking. Decades of making triazole molecules have taught us the importance of reactor cleaning, solvent control, and chromatography to strip out trace contaminants.

    Compared with other leading triazoles such as tebuconazole or propiconazole, Flusilazole lands in a particular niche. In apples and grapes, it offers a wider disease spectrum and longer residual action, with less risk of visible damage to fruit or foliage. Cereal growers report it holds septoria, powdery mildew, and rust in check over longer growing windows. Several university extension reports confirm the broad field spectrum, which is why Flusilazole remains popular with growers investing in premium-quality produce.

    Another key difference comes from tank-mixing ability. Our formulations respond well to both hard and soft water, with low risk of antagonism or precipitate formation. That lets applicators combine Flusilazole with insecticides and fertilizers without facing blocked nozzles or uneven spray. Years of formulation tuning have built a product line that embarrasses quick-blend imitations, where settled solids or phase separation frustrate end users. We watch real-world feedback and batch complaints closely, feeding each lesson back into our manufacturing steps.

    The Human Side of Production

    Manufacturing a molecule like Flusilazole relies on a mix of automated and hands-on steps. In our facility, workers monitor critical control points—temperature, pressure, solvent volumes—every shift. Operators know the tiniest solvent impurity or an off-line filtration can ruin yield and clarity. Experienced plant managers train juniors not just to follow instructions, but to watch for the signs that something is off: a shift in color, a gasket leaking, pressure reading out of range. Chemistry textbooks only go so far. Keeping the process tidy, the work areas safe, and the equipment calibrated comes from discipline and learning from incidents over years on the line.

    We view every batch not just as stock for sale, but as a representation of our facility’s capabilities. Success draws from the skill of our analytic team and lab support, who check samples for all traces of unwanted by-products. The fingerprint of our Flusilazole lies in the consistency of its chromatographs and its ability to meet international test standards batch after batch. Third-party audits, customer visits, and repeat shipments push us to improve with each campaign. No one feels more pressure than a plant team racing to meet a big delivery, knowing a delay can cost a grower an entire season.

    Every operator and chemist working in agrochemicals has witnessed the stress on growers caused by weather shifts, pathogen outbreaks, and labor shortages. When a season turns out damp, or an unexpected disease appears, the only support comes from having a reliable product on hand. That’s where our blend of science and close supervision makes the difference. Flusilazole, formulated and sent out from our own site, carries both our technical ambitions and the hope that one less variable will stand in the way of a bumper crop.

    Supporting Sustainability and Regulation

    Market standards for Flusilazole change yearly. Some countries enforce maximum residue limits far below global norms; others want certificates matching strict environmental or toxicological benchmarks. Our registration staff spends countless hours aligning our manufacturing and analytical pathways to satisfy all stakeholders. Each step, from raw material traceability to waste stream treatment, brings scrutiny—and our teams meet it head-on. We run LC-MS and GC testing in-house, sharing every assay result with customers and sometimes with government inspectors.

    After years in industry, we have learned the hard truth: regulatory compliance does not happen at the paperwork stage, but on the factory floor. Small decisions—such as using higher-grade solvents or running longer distillation cycles—prevent issues a year later, when a cargo sits in port and samples get retested. Our company has faced sudden changes to national standards, such as lower tolerance levels or recipe restrictions. We adapt by adjusting our synthesis routes, updating safety procedures, and investing in newer mitigation for handling waste streams. Continuous investment in both people and technology gives us the freedom to deliver Flusilazole batches that satisfy custom export and domestic requirements.

    The pressure for sustainability is everywhere, from investor briefings to questions in our own canteen. Our people recognize that producing triazole compounds demands responsibility—to the environment, neighbors, and end-users. We invest in water recycling units, updated scrubbing towers for exhaust, and continuous operator training on safe chemical handling. These aren’t afterthoughts. Regulatory authorities notice when manufacturers address these issues directly and transparently. Buyers feel more confident requesting documentation and records, knowing we don’t treat safety as a marketing slogan. Many clients work with us for years, inviting our staff to audit their own farms or warehouses, deepening trust on both sides.

    Working Through Global Disruption

    Fungicide demand swings with weather, crop diseases, and global logistics. No chemical factory lives in a bubble. In recent years, global shipping snags, energy price spikes, and raw material cost hikes threw the whole supply chain into chaos. We have tackled each challenge head-on: negotiating longer contracts with key suppliers, stockpiling critical intermediates, and fast-tracking investments in local raw material sourcing. Importers and farm groups tell us the reality: price spikes and delays from traders ruin planting schedules and harvests. As direct manufacturers, we buffer our buyers against wild market swings because we control our planning and output.

    Our supply chain managers spend late nights tracking incoming and outgoing shipments. Despite obstacles—border shutdowns, port congestion, raw material rationing—we stay in close contact with shipping agents and custom officers. Direct manufacturing brings a unique advantage: every batch of Flusilazole ships with confidence in its quality and reliability. When traders or resellers scramble for alternate lots or substitutes during shortages, our customers rely on a steady source—they know where their fungicide originated, right down to the production date and batch number.

    Looking Forward: Challenges and Opportunities

    As disease resistance trends evolve, triazole chemistry faces tough competition from newer classes of fungicides. But experience shows that Flusilazole retains a role, thanks to its proven performance and adaptable formulations. We see demand for both technical concentrate and value-added blends rising in key regions, driven by both orchard and broadacre crops. Farm size shifts, technology adoption, and climate unpredictability all influence how users select and apply fungicides.

    As an agricultural chemical manufacturer with years in the business, we focus not just on meeting the standards of the day but preparing for the next decade. This means deeper technical partnerships with growers, extension services, and regulators. Collaborative field trials, residue monitoring programs, and tailored technical support form the new normal. We welcome partners who test our Flusilazole head-to-head with competitors or push us for tighter documentation. Every season delivers new challenges, from unexpected pests to unseasonable rains, demanding a level of flexibility that only comes from deep technical roots and operational discipline.

    Feedback from end users guides our investment and product direction. Growers now demand less environmental impact, better safety information, and guidance in resistance management. We answer these needs by reviewing every manufacturing protocol and investing in better operator training, safer formulation ingredients, and tools for traceability. The challenge belongs as much to the teams on the production line as to the development chemists and compliance officers.

    From Our Site to Your Field

    Owning the manufacturing process puts us face to face with the reality of every drum and every delivery: satisfaction is measured not in units sold, but in fields protected and harvests made safer and larger. Each order that leaves our plant stands for the dedication of our staff, the careful control of our process, and a promise to deliver not just a chemical product, but a partnership rooted in decades of experience and a shared ambition for agricultural progress.

    Flusilazole will keep evolving as growers and markets demand more from crop protection. As a direct manufacturer, our attention stays fixed on both achieving chemical precision and supporting the people who turn raw science into abundant crops. We remain committed to maintaining rigorous quality, open communication, and a willingness to learn from every season’s lessons, so that each new generation of Flusilazole rises to new standards.