Professional Teams Empower Full-Chain Services, Core Advantages Forge Industry Benchmarks
The application of this system has not only increased the irrigation water use efficiency by more than 70%, significantly reducing freshwater consumption and the cost of water and fertilizer input, but also effectively improved the soil microenvironment. As a result, the fruiting rate of passion fruit has increased by 40% and the fruit sugar content has risen by 5%. It not only solves the technical problems of passion fruit cultivation in the arid and saline-alkali areas of Dubai, but also creates a demonstration model of high-efficiency water-saving agriculture in desert regions, providing a replicable technical solution for the cultivation of high-value-added crops in similar regions in the Middle East.
Dubai features an arid climate with scarce rainfall and limited freshwater resources, coupled with a high degree of soil salinization. Traditional irrigation methods fail to meet the growth characteristics of passion fruit that require precise water and fertilizer supply; they also easily lead to water and fertilizer waste and secondary soil salinization, becoming a core constraint for the development of the local passion fruit planting industry.The automatic precision irrigation system implemented in this project integrates soil moisture, salinity and crop growth sensors to real-time monitor key growth data of passion fruit. Relying on intelligent algorithms, it automatically adjusts the water-fertilizer ratio and irrigation frequency, and precisely delivers water and fertilizer to the crop roots through a drip irrigation pipe network.
Professional Teams Empower Full-Chain Services, Core Advantages Forge Industry Benchmarks






