Chemical Fungicide hexaconazole 5% SC for paddy flied
Mode of Action
Hexaconazole is a systemic conazole (imidazole) fungicide that is used to control a variety of seed-borne and soil-borne diseases and fungi, primarily Ascomycetes and Basidiomycetes. Hexaconazole is an effective inhibitor of Ergosterol biosynthesis. It is frequently used to control apple, coffee, and peanut diseases. It is known to interfere with membrane function.
Benefits of Hexaconazole 5% SC
- Keeps the plant green, which increases crop yield and profits for the farmer.
- Broad-spectrum fungicide that controls a wide range of diseases that affect many crops.
- Excellent control of diseases caused by Ascomycetes, Basidiomycetes, and Deuteromycetes fungi.
- Effective inhibitor of Ergosterol biosynthesis
Application method
Spray Mixture: Prepare the required amount of Hexaconazole 5% SC by diluting it with water.
Target Crops
Groundnut, Mango, Cotton, Chilli, Grapes, and Paddy
Target Disease
Scab in apple, Tikka leaf spot in groundnut, Powdery mildew in mango and blast, and Sheath blight in rice.
Target Crops, Pests, and Doses of Hexaconazole 5% SC
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Crop(s)
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Target Pest
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Dosage/Acre (ml)
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Dilution in Water (lit/Acre)
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Grapes
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Powdery mildew
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200-400
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200-250
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Mango
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Powdery Mildew
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400-450
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200-250
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Rice
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Sheath blight
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400-450
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200-250
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Application Best Practices and Dosage Guidelines
Optimal Timing and Application Methods
For implementation to go well, the right time must be used to match crop growth stages with disease pressure tracking when using Hexaconazole 5% SC. The best security comes from applying preventative measures during the early stages of growth. Within 24 to 48 hours of application, curative measures can stop current diseases. The quality of the spray coverage directly affects how well the treatment works, and all plant areas must be evenly covered for full safety.
Tank mixing compatibility increases treatment options, letting you get rid of both pests and diseases at the same time. However, physical compatibility testing is still needed before mixing with other agrochemicals. This is especially important when mixing with concentrates that can emulsify or alkaline products that could make the solution less stable.
Dosage Recommendations by Crop Type
Rates of application depend on the type of food, the number of diseases that are present, and the weather. For grapes, the recommended amount is 250 to 500 ml per hectare, spread out every 14 to 21 days during key growth times. Apple farms get the same rates, but the timing is changed to match up with times when scabs are most likely to appear based on weather tracking systems.
To get rid of widespread rust outbreaks, coffee plantations often soak the soil with 1-2 liters of water per hectare. The liquid concentrate recipe makes sure that the product is spread evenly throughout the root zone. This protects against soil-borne pathogens for a long time while still meeting environmental safety standards.
Chemical-resistant gloves, eye protection, and respiratory protection are all required as part of personal safety equipment during the mixing and application stages. Food safety standards are met by following pre-harvest intervals, and products stay effective throughout the growing season.
Comparing Hexaconazole 5% SC with Competing Fungicides
Performance Advantages Over Alternatives
Comparative research shows that this fungicide has major benefits over other fungicides that are currently on the market around the world. Compared to benzimidazole fungicides like carbendazim, which have problems with broad resistance across many pathogen populations, Hexaconazole 5% SC exhibits better resistance management features. This systemic treatment protects for longer periods of time than mancozeb formulations that need to be reapplied often because they are affected by the weather.
Triazole chemical is safer for the environment than older fungicide groups. Acute toxicity levels are still much lower than those of organochlorine alternatives, and biodegradation tests show that the chemicals will break down in a way that is safe for the environment. Mammal safety data support its use in integrated production systems where protecting workers and customers is the main goal.
Economic Considerations for Procurement
A cost-effectiveness study shows that the economics are good, even though the product costs more than generic options. Longer periods between spraying lower the cost of application, and better disease control lowers the cost of crop loss. Allowing large-scale farming businesses to buy in bulk through approved distributors additionally lowers costs.
Storage stability is higher than industry standards, so the active ingredient stays intact for longer amounts of time in the right warehouse circumstances. This feature lowers the need to quickly sell items and keeps performance stable during long storage times that are common in farming supply lines.