Azoxystrobin
2720
2025年06月09日 13:32:22
指南
亮点速览
本文系统介绍了杀菌剂唑菌酯(Azoxystrobin)的化学与物理性质、生产工艺、应用特性及市场格局。其化学结构源自天然斯特罗比林类化合物,属QoI类线粒体呼吸抑制剂,分子式C₂₂H₁₇N₃O₅,熔点约116°C,水溶性低(6–7 mg/L),脂溶性好,光解较快但水解稳定。合成以多步偶联为主,强调E-异构体控制与绿色工艺;制剂以悬浮剂、水分散粒剂为主。广泛用于小麦、葡萄、番茄等作物防治白粉病、锈病、霜霉病等,具跨层传导与植株健康效应,但抗性风险高,须轮换用药。全球年销售额超10亿美元,亚太为最大市场,面临专利过期后激烈 generics 竞争及欧盟监管趋严挑战。
1.Chemical and Physical Properties
1.1 Chemical Identity
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Common Name: Azoxystrobin
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Chemical Name (IUPAC): methyl (αE)-2-[[6-(2-cyanophenoxy)-4-pyrimidinyl]oxy]-α-(methoxymethyl)benzeneacetate
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Or more simply: methyl (E)-2-{2-[6-(2-cyanophenoxy)pyrimidin-4-yloxy]phenyl}-3-methoxyacrylate
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CAS Registry Number: 131860-33-8
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Chemical Class: Strobilurin fungicide (QoI - Quinone outside Inhibitor)
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Molecular Formula: C₂₂H₁₇N₃O₅
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Molecular Weight: 403.4 g/mol
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Development Code: ICIA5504 (from ICI/Zeneca, now Syngenta)
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Structure:
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Azoxystrobin has a complex structure derived from naturally occurring strobilurins found in wood-rotting fungi (e.g., Strobilurus tenacellus). Key features include a β-methoxyacrylate toxophore (responsible for its fungicidal activity) linked to a (2-cyanophenoxy)pyrimidine side-chain.
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1.2 Physical Properties
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Appearance:
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Pure: White to pale beige crystalline solid or powder.
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Technical Grade (>95%): Typically an off-white to light brown powder.
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Odour:
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Faint, slightly sweetish or aromatic odour. Some describe it as almost odourless.
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Melting Point:
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116°C (may start to decompose if held at this temperature for extended periods or depending on polymorph). Some sources list ranges like 114-116°C or 118-119°C depending on purity and crystal form.
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Boiling Point: Decomposes before boiling at atmospheric pressure.
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Vapour Pressure: Very low.
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Typically reported as:
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1.1 x 10⁻⁷ mPa (8.25 x 10⁻¹⁰ mmHg) at 20°C
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1.1 x 10⁻⁴ Pa (or 1.1 x 10⁻⁹ atm) at 25°C
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This low vapour pressure indicates it is not readily volatile.
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Density: Approximately 1.33 - 1.34 g/cm³ at 20°C.
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Solubility:
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Water: Low solubility.
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6.0 mg/L (or 6.7 mg/L) at 20°C or 25°C.
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Its solubility is pH-independent over typical environmental pH ranges.
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Organic Solvents (at 20-25°C):
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Methanol: ~20 g/L
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Acetone: >200 g/L (or ~100-200 g/L)
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Ethyl acetate: ~56 g/L (or ~100-200 g/L)
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Dichloromethane: >200 g/L (or >500 g/L)
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Toluene: ~26 g/L (or ~50-100 g/L)
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n-Hexane: ~0.056 g/L (or 0.03-0.1 g/L) - poorly soluble in aliphatic hydrocarbons.
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Acetonitrile: ~80 g/L
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1.3 Chemical Properties
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Stability:
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Hydrolysis: Stable to hydrolysis under normal environmental pH conditions (pH 5, 7, and 9). DT₅₀ (half-life for hydrolysis) >30 days at 25°C across this pH range.
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Photolysis/Photostability: Moderately susceptible to photolysis (degradation by sunlight).
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In water: DT₅₀ can range from a few hours to several days depending on conditions (e.g., presence of sensitizers, light intensity). Typically reported as rapid (e.g., DT₅₀ ~11-17 hours in aqueous solution exposed to simulated sunlight).
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On soil surfaces: Also undergoes photolytic degradation, with DT₅₀ values of several days.
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Thermal Stability: Stable at ambient temperatures. As noted, it melts around 116°C and may start to decompose if held at temperatures near or above its melting point for extended periods.
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Reactivity:
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Not considered highly reactive with common materials.
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Not corrosive.
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Can be degraded by strong oxidizing agents or strong acids/bases under harsh conditions (not typical environmental conditions).
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2.Production Technologies (synthesis and Formulation)
2.1 Chemical Synthesis
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General Approach:
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A multi-step process typically involving the reaction of key intermediates like 2-hydroxybenzonitrile and 4,6-dichloropyrimidine, followed by coupling and formation of the β-methoxyacrylate toxophore.
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Key Considerations:
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Stereochemical control (E-isomer is active), high purity requirements (≥95% for technical grade), and increasingly, green chemistry principles.
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Development:
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Originally synthesized by ICI/Zeneca (now Syngenta); various alternative routes have been developed by other companies post-patent expiry.
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2.2 Technical Production Process
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Scale & Equipment:
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Industrial production occurs in batch or continuous-flow reactors with systems for temperature control, mixing, separation, and purification.
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Quality Control:
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Rigorous testing for chemical purity, isomer ratio, specified impurities, and physical properties.
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Environmental
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Aspects: Focus on solvent recovery, waste stream management, and minimizing emissions and worker exposure
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2.3 Formulation Technologies
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Common Types:
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Primarily Suspension Concentrates (SC, e.g., 250 g/L), Water Dispersible Granules (WG/WDG, e.g., 50%), and Seed Treatment formulations (FS). Also used in mixtures.
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Key Components:
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Active ingredient, water/solvents, surfactants, dispersants, anti-freeze agents, preservatives, and sometimes specific adjuvants like film-formers or colorants for seed treatments.
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Purpose:
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To provide a stable, effective, and easy-to-use product tailored for specific application methods and crops. Mixtures with other active ingredients are common to broaden spectrum and manage resistance.
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3.Applications
3.1 Biological Mode of Action
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Mechanism:
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Azoxystrobin is a Quinone outside Inhibitor (QoI) fungicide (FRAC Group 11). It inhibits mitochondrial respiration by binding to the Qo site of cytochrome b, blocking electron transfer and ATP synthesis in fungi.
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Effects:
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Prevents spore germination, mycelial growth, and sporulation of target fungi.
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Plant Interaction:
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Exhibits translaminar (across the leaf) and acropetal systemic (upward in xylem) movement, protecting new growth.
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3.2 Agricultural Applications
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Crop Spectrum:
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Widely used on cereals (wheat, rice), fruits (grapes, apples), vegetables (tomatoes, potatoes), row crops (soybeans, corn), and specialty crops (turf, ornamentals).
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Disease Spectrum:
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Broad-spectrum activity against Ascomycetes (powdery mildews), Basidiomycetes (rusts), Deuteromycetes (leaf spots), and some Oomycetes (downy mildews).
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Application:
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Primarily via foliar spray, but also through seed treatment and soil application. Best used preventatively or at very early stages of infection.
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Resistance Management:
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High risk of resistance; requires rotation or mixture with fungicides of different modes of action.
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3.3 Non-Agricultural Applications
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Turf and Ornamentals:
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Significant use in professional turf management (golf courses, sports fields) and in ornamental plant production for controlling various fungal diseases.
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Specialized Uses:
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Limited applications in post-harvest treatment of fruits/vegetables in some regions, and very specific uses in forestry or aquaculture. Not a major material protection agent.
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4.Market Analysis
4.1 Global Market Overview
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Size & Position:
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One of the world's leading fungicides, with annual sales typically exceeding $1 billion. A key product within the strobilurin (QoI) market segment.
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Growth Trends:
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Mature product. Growth is modest, driven by demand in emerging markets, new formulations/mixtures, and evolving disease pressures. Patent expirations have led to increased generic competition.
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Regional Demand:
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Strong demand in Asia-Pacific (largest market), North America, Europe, and Latin America, with applications varying by regional cropping patterns
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4.2 Key Market Dynamics
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Drivers:
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Broad-spectrum efficacy, plant health benefits beyond disease control, versatility across many crops, and relative safety profile compared to older chemistries. Generic availability has increased accessibility.
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Restraints/Challenges:
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Widespread development of pathogen resistance, increasing regulatory scrutiny (especially in Europe), environmental concerns regarding aquatic toxicity, and competition from newer fungicide classes
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4.3 Competitive Landscape
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Innovator:
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Syngenta remains a key player with branded products and mixtures.
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Generic Market:
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Numerous generic manufacturers globally (e.g., ADAMA, UPL, various Chinese and Indian companies) offer azoxystrobin, increasing price competition.
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Strategies:
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Innovators focus on premium formulations and mixtures; generic players compete on price and market access.
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5.Upstream and Downstream Linkages
5.1 Upstream Linkages (Inputs for Production)
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Raw Materials:
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Key chemical intermediates such as 2-hydroxybenzonitrile, substituted phenols, pyrimidine derivatives, various reagents (bases, catalysts), and solvents (e.g., DMF, toluene).
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Supply Chain:
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Sourcing of intermediates often from specialized chemical manufacturers, with China and India being significant producers.
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Technology & Equipment:
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Requires specialized chemical reactors, separation and purification equipment, and analytical instrumentation for quality control.
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5.2 Downstream Linkages (outputs and Consumers)
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Primary Users:
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Farmers (large-scale and specialty crop growers), turf managers, and agricultural cooperatives.
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Distribution Channels:
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Agricultural input retailers, distributors, direct sales to large operations, and increasingly online platforms.
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End-Product Connection:
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Impacts the quality and quantity of food (grains, fruits, vegetables) and ornamental products. Adherence to Maximum Residue Limits (MRLs) is crucial for trade.
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Supporting Services:
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Relies on crop consultants, application services, and IPM programs for effective and responsible use.
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