Degradation of tricyclazole by colloidal manganese dioxide in the absence and presence of surfactants
Author:
Publisher
Elsevier BV
Subject
General Chemical Engineering
Reference44 articles.
1. Tricyclazole: A New Systemic Fungicide for Control of Piricularia oryzae on Rice
2. Methods of Applying Tricyclazole for Control of Pyricularia oryzae on Rice
3. Effect of tricyclazole on growth and secondary metabolism in Pyricularia oryzae
4. 1,8-Dihydroxynaphthalene (DHN)-Melanin Biosynthesis Inhibitors Increase Erythritol Production in Torula corallina , and DHN-Melanin Inhibits Erythrose Reductase
5. The inhibition of melanin biosynthetic reactions in Pyricularia oryzae by compounds that prevent rice blast disease
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