一种提高蝴蝶兰二次开花品质的生理营养补充方法
By constructing a personalized nutrient solution formula generation model for Phalaenopsis orchids and a temperature-nutrient dual-factor response surface model, the problems of morphological differences among various Phalaenopsis orchid varieties and decreased phosphorus absorption rate during low-temperature periods were solved. This enabled adaptive matching and real-time compensation of the nutrient solution formula, thereby improving the quality of secondary flowering.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- QINGZHOU SUPPLY & MARKETING TECH CO LTD
- Filing Date
- 2026-06-17
- Publication Date
- 2026-07-17
AI Technical Summary
In existing technologies, the morphological differences among various Phalaenopsis orchid varieties during the second flowering stage make it impossible for the nutrient solution formula to adapt and match, and the decrease in phosphorus absorption rate during the low-temperature induction period cannot be compensated in real time, resulting in nutrient deficiency in the plants.
By constructing a variety-adaptive formula generation model and combining it with a temperature-nutrient dual-factor response surface model, the nutrient solution formula is adjusted in real time. By utilizing 12-dimensional morphological feature values and a leaf surface permeation coupling model, the dynamic generation of personalized nutrient solution formulas and compensation for the active absorption rate of phosphorus are realized.
It achieves adaptive matching of nutrient solution formula for the second flowering stage of Phalaenopsis orchids, ensures real-time compensation of phosphorus absorption rate during low temperature period, improves the dynamic matching ability of plant nutrition, and enhances the quality of second flowering.
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Figure CN122397448A_ABST