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Difenoconazole
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Properties
Product Name Difenoconazole
CAS Number 119446-68-3
Formula C19H17Cl2N3O3
Molar Mass 406.26 g/mol
Pub Chem CID 87146
Drug Bank DB11196
Chem Spider 78564
Bioavailability Unknown
Protein Binding 96%
Metabolism Hepatic
Elimination Halflife 2-4 days
FAQ
What is Difenoconazole and how does it work?
Difenoconazole is a broad-spectrum fungicide that belongs to the chemical group of triazoles. It works by disrupting the synthesis of ergosterol, an essential component of fungal cell membranes. By inhibiting this process, Difenoconazole effectively controls a wide range of fungal diseases in crops.

What crops is Difenoconazole recommended for?
Difenoconazole is recommended for a variety of crops, including but not limited to cereals (such as wheat, barley, and rice), oilseeds (like canola and soybeans), fruits (such as grapes and citrus), vegetables, and ornamentals. It provides excellent disease control in these crops, helping farmers achieve higher yields and better quality produce.

How should Difenoconazole be applied?
Difenoconazole can be applied as a foliar spray, seed treatment, or soil treatment, depending on the target crop and disease. It is important to follow the manufacturer's instructions and recommendations for application rates, timing, and methods to ensure optimal efficacy and minimize the risk of resistance development.

Is Difenoconazole safe to use?
Difenoconazole is considered to have a favorable toxicological profile when used according to label directions. It has a low acute toxicity to mammals, birds, and aquatic organisms. However, as with any pesticide, it is important to follow safety precautions, such as wearing appropriate personal protective equipment and avoiding unnecessary exposure during handling and application.

Does Difenoconazole have any impact on non-target organisms?
Difenoconazole has a favorable environmental profile due to its low toxicity to bees, beneficial insects, and other non-target organisms when used properly. It has a low potential for bioaccumulation in the environment and breaks down rapidly into non-toxic byproducts, reducing the risk of long-term impact on ecosystems.

What is the recommended resistance management strategy for Difenoconazole?
To prevent the development of resistance in fungal populations, it is important to use Difenoconazole as part of an integrated pest management (IPM) program. This includes rotating chemistries, using mixtures or sequential applications with different modes of action, and monitoring disease levels to adjust treatment strategies as needed.

What are the main benefits of using Difenoconazole in crop protection?
The main benefits of using Difenoconazole in crop protection include its broad-spectrum activity against a wide range of fungal diseases, its systemic translocation within the plant for long-lasting protection, its flexibility in application methods, and its compatibility with other pesticides. It helps farmers achieve higher yields, better quality produce, and sustainable pest management practices.

How does Difenoconazole contribute to sustainable agriculture?
Difenoconazole plays a crucial role in sustainable agriculture by reducing the need for excessive pesticide applications, lowering the risk of yield losses due to fungal diseases, and minimizing the environmental impact of crop protection practices. It allows farmers to produce more food with fewer resources while protecting natural ecosystems.

Are there any specific precautions or restrictions when using Difenoconazole?
It is important to read and follow all label instructions and precautions when using Difenoconazole, including proper storage, handling, application, and disposal practices. Some formulations may have specific restrictions on use near water sources, sensitive habitats, or during certain stages of crop growth. Be sure to check the product label for any specific precautions or restrictions.

What research and field trials support the efficacy of Difenoconazole?
Difenoconazole has been extensively studied and tested in numerous research trials and field studies to demonstrate its efficacy against a wide range of fungal diseases in different crops. These studies have shown consistent and reliable control of pathogens, improved crop health and quality, and increased yields when Difenoconazole is used according to recommended practices.
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