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Pelletization involves the use of water-soluble pesticides that are processed into small, uniform pellets. These pellets can be evenly distributed across paddy fields, minimizing the risk of pesticide drift and enhancing the effectiveness of pest control. This method ensures a more targeted application, reducing waste and environmental impact.
The circulating spray method is an innovative approach that modifies traditional atomizers by adding a drug recovery system on the opposite side of the spray nozzle. Any excess pesticide solution that doesn't adhere to the target is collected and returned to the tank for reuse. This not only increases the efficiency of pesticide use but also reduces costs and environmental contamination.
Electrostatic spray technology uses a high-voltage electrostatic generator combined with a low-foam drip charging system. This allows the pesticide to be more effectively deposited on the surface of plant leaves, improving coverage and reducing runoff. The electrostatic charge helps the droplets stick better to the target, making this method particularly useful in areas where wind or uneven surfaces may affect conventional spraying.
Low volume spray is a technique that applies a reduced amount of pesticide solution per unit area, typically diluted to about 1/5 to 1/10 of the volume used in traditional methods. This approach improves work efficiency, especially in greenhouses and mountainous regions where manual spraying can be challenging. It also helps conserve water and reduces the overall amount of chemical used.
Roller smear is a method that uses a foam-based medicine roller capable of absorbing and releasing liquid pesticide. As the roller comes into contact with plant leaves, it gently applies the solution directly to the target surface. This minimizes the loss of pesticide and ensures a more precise and controlled application, making it ideal for delicate crops.
Computer-controlled spraying systems represent a modern advancement in agricultural technology. These systems use ultrasonic sensors to detect the shape and structure of plants, allowing the sprayer to adjust its output in real time. By adapting to the specific needs of each plant, this technology significantly improves pesticide efficiency and reduces overuse. It marks a promising direction for sustainable and smart farming practices.
Biological pesticides offer an eco-friendly alternative to synthetic chemicals. Derived from natural sources such as bacteria, fungi, or plant extracts, they target pests more selectively while minimizing harm to beneficial organisms and the environment. For more information on biological pesticides, visit [http://example.com](http://example.com).