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.

CN122397448APending Publication Date: 2026-07-17QINGZHOU SUPPLY & MARKETING TECH CO LTD
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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

Technical Problem

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.

Method used

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.

Benefits of technology

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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Abstract

本发明提供一种提高蝴蝶兰二次开花品质的生理营养补充方法,属于植物培养技术领域,本发明通过对蝴蝶兰植株进行12维形态特征值测量,输入品种自适应配方生成模型输出初始营养液配方,结合叶面渗透耦合模型确定叶面喷施参数,再以自适应梯度贝叶斯优化算法在15维配方空间内搜索最优营养液配方,在低温诱导花芽分化阶段通过温度‑营养双因子响应曲面模型依据温度敏感性系数对磷素供给浓度实施动态补偿,同时实时采集根际电导率与叶片氮素荧光值计算营养平衡指数,最终依据拮抗协同效应图谱校验配方后执行灌施或叶面喷施,解决了蝴蝶兰二次开花阶段多品种形态差异导致营养液配方无法自适应匹配、低温诱导期磷素吸收速率下降无法实时补偿的技术问题。
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