Silicone Technology Improves Efficiency of Pesticide Utilization

In November 2005, Momentive Advanced Materials Group (then known as GE Advanced Materials Group) signed a memorandum of understanding with the Ministry of Agriculture to collaborate on a pesticide spraying technology project. Following this agreement, the group, in partnership with the Ministry and its affiliated agricultural technology promotion center, initiated a series of testing, training, and promotional activities across key agricultural regions nationwide. Momentive's product line includes silicone-based surfactants that significantly enhance the performance of agrochemicals. These surfactants allow pesticides to adhere more effectively to plant surfaces compared to traditional options, offering superior spreading, wetting, and penetration properties. This improved performance enables the pesticide to be absorbed through plant pores more quickly and resist being washed away by rain. As a result, only a small amount of pesticide is needed to achieve full coverage and effective pest control, reducing the risk of wash-off and improving treatment reliability. According to Xia Jingyuan, director of the National Agricultural Technology Extension Service Center under the Ministry of Agriculture, the application of this innovative silicone technology can boost pesticide use efficiency by up to 30%. This means that farmers can reduce pesticide application by an average of 20% to 30% per acre while maintaining the same level of effectiveness. Experts from the Ministry of Agriculture also highlight that this silicone-based innovation not only conserves water but also minimizes environmental damage caused by excessive pesticide use. For example, with 1.8 million mu of farmland nationwide, the technology could save 75 kilograms of water per acre annually—representing a 50% reduction, applied five times a year. If fully adopted, it could save at least 135 million tons of spray water and pesticide nationwide. Additionally, reducing pesticide use by 30% could lead to a savings of approximately 48,000 tons of chemicals annually. This collaboration marks a significant step forward in sustainable agriculture, combining advanced materials science with practical farming needs to create a more efficient and environmentally friendly approach to crop protection.

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