As a new technology for seed treatment, Seed coating formulations have beenused in many countries in recent years. In this paper, through the introduction ofthe fermentation industry waste Jinggangmycin Fermentation Waste Residue ascarrier, the7%fipronil-tebuconazole seed coating agent were prepared, studied theimpact of Jinggangmycin Fermentation Waste Residue to sees coating agent on thephysical and chemical properties,and the application of biological activity indooranalyze its, the specific results of the study are as follows:1.Using SEM, XPS, and particle size analysis, fermentation waste residueJinggangmycin were characterized by means of specific surface area, the resultsshowed that: the fermentation waste residue Jinggangmycin have a large specificsurface area, and do not contain heavy metal elements in soil pollution;2.Through Suspension concentrates for seed pesticide active ingredients andtheir auxiliaries system,7%fluorine? amyl suspension concentrates for seed havebeen developed. Fipronil and tebuconazole amount of the suspension concentratesfor seed were5%and2%; auxiliaries and the amount of1%of the film-forming agentpoly methyl cellulose sodium, the carrier Jinggangmycin fermentation waste residue1%, a dispersing agent for KY5552%, dispersant NNO1%, xanthan gum0.5%, ethyleneglycol,4%, the warning color rhodamine B0.5%;3.Suspension concentrates for seed physical and chemical properties analysisshows that the Jinggangmycin fermentation residue and dispersant NNO KY555mixed, the stability of the suspension concentrates for seed best suspension rate of98%, suitable viscosity, viscosity changes value5.7%and zeta potential absolutevalue of the largest suspension system exhibits shear thinning behavior exhibitedtypical non-Newtonian pseudoplastic characteristics;4.Indicators of the physical and chemical properties of the suspensionconcentrates for seed developed fluorine? amyl suspension concentrates for seedquality standards;5.Homemade suspension concentrates for seed indoor biological activity analysis showed that the coating of wheat and corn, the germination rate thanuncoated significantly improved compared to, respectively,90%and94%, theinhibition rate reached80.5%, control effect was79.64%for wheat, its better thancommodity... |