Achieving optimal flower quality depends on precise cultivation practices, particularly in managing environmental and nutritional factors. Inadequate nutrient management can reduce vegetative growth, photosynthetic pigment levels, and flower quality, while suboptimal water and nutrient regulation often hamper seedling productivity. Because moon orchids require specific humidity, watering frequency, and nutrient concentrations, smart farming technology is needed to control these conditions accurately. This study investigated the interaction between nutrient concentration and application frequency on the growth of Phalaenopsis orchids in a smart farming system, employing a factorial randomised block design. Treatments included nutrient concentrations of 30%, 3%, and 0.3% (v/v) and application frequencies of once, twice, and three times daily at two-day intervals. Observed variables included leaf number, leaf area, chlorophyll content, and plant weight gain. Results showed no significant interaction between the two factors across all parameters. However, the 0.3% concentration produced the best growth response, comparable to 3%, while 30% inhibited growth. Application frequency significantly affected leaf area and weight gain, with once- and twice-daily treatments yielding similar results. Overall, low nutrient concentrations (0.3-3%) applied once or twice daily were identified as the most efficient and sustainable strategy for cultivating Phalaenopsis orchids in smart farming systems.
Sunawan et al. (Fri,) studied this question.