| Literature DB >> 26904062 |
Kun Li1, Zhipeng Li1, Qichang Yang1.
Abstract
The high energy consumption of a plant factory is the biggest issue in its rapid expansion, especially for lighting electricity, which has been solved to a large extent by light-emitting diodes (LED). However, the remarkable potential for further energy savings remains to be further investigated. In this study, an optical system applied just below the LED was designed. The effects of the system on the growth and photosynthesis of butterhead lettuce (Lactuca sativa var. capitata) were examined, and the performance of the optical improvement in energy savings was evaluated by comparison with the traditional LED illumination mode. The irradiation patterns used were LED with zoom lenses (Z-LED) and conventional non-lenses LED (C-LED). The seedlings in both treatments were exposed to the same light environment over the entire growth period. The improvement saved over half of the light source electricity, while prominently lowering the temperature. Influenced by this, the rate of photosynthesis sharply decreased, causing reductions in plant yield and nitrate content, while having no negative effects on morphological parameters and photosynthetic pigment contents. Nevertheless, the much higher light use efficiency of Z-LEDs makes this system a better approach to illumination in a plant factory with artificial lighting.Entities:
Keywords: light use efficiency; precise illuminating; principles during transplanting; reserved growing space; zoom
Year: 2016 PMID: 26904062 PMCID: PMC4746466 DOI: 10.3389/fpls.2016.00092
Source DB: PubMed Journal: Front Plant Sci ISSN: 1664-462X Impact factor: 5.753
Electricity consumption of lighting, plant yields and light utilization efficiencies (LUEs) of lettuce under zoom lens lighting-emitting diode (Z-LED), and conventional non-lens LED (C-LED).
| Energy parameters | Z-LED | C-LED |
|---|---|---|
| Electricity consumption (kWh/m2) | 23.73 | 49.51 |
| Plant yields (g/m2) | 1130.72 ± 12.19b | 1496.93 ± 25.04a |
| LUEs (g/kWh) | 94.38 ± 1.02a | 60.64 ± 1.03b |
Lettuce fresh weight (FW), dry weight (DW), leaf area, plant height, true leaf number, leaf length and leaf width for lettuce under Z-LED and C-LED.
| Growth parameter | Z-LED | C-LED |
|---|---|---|
| Leaf FW (g) | 37.68 2.04b | 45.23 5.69a |
| Leaf DW (g) | 1.31 0.21b | 1.89 0.45a |
| Leaf area (cm2) | 1.22 10ˆ3 185.52a | 1.22 10ˆ3 150.73a |
| Plant high (mm) | 68.56 11.62a | 75.01 9.06a |
| True leaf number | 29.10 1.52a | 28 2.45a |
| Leaf length (mm) | 142.87 4.35a | 141.57 4.12a |
| Leaf width (mm) | 83.85 6.72a | 84.65 7.72a |
Net photosynthesis (Pn), stomatal conductance (Cond), transpiration rate (Tr), and intercellular CO2 concentration (Ci) data subjected to the zoom lens lighting-emitting diode (Z-LED) and conventional non-lens LED (C-LED).
| Photosynthesis parameter | Z-LED | C-LED |
|---|---|---|
| Pn (μmol CO2m-2s-1) | 2.72 0.46b | 4.57 0.43a |
| Cond (mol H2Om-2s-1) | 0.04 0.01b | 0.07 0.02a |
| Tr (mmol H2Om-2s-1) | 0.30 0.08b | 0.48 0.09a |
| Ci (μmol CO2mol-1) | 265.43 11.96b | 297.70 24.54a |
Concentrations of sucrose, nitrate, protein, chlorophyll a (Chl a), and chlorophyll b (Chl b) of lettuce under Z-LED and C-LED.
| Physiological parameter | Z-LED | C-LED |
|---|---|---|
| Sucrose (mg/g) | 34.08 10.48a | 12.55 8.59b |
| Nitrate (μg/g) | 177.81 68.06b | 233.73 53.38a |
| Protein (mg/g) | 0.26 0.01a | 0.26 0.01a |
| Chl a (mg/g) | 0.40 0.01a | 0.43 0.05a |
| Chl b (mg/g) | 0.10 0.01a | 0.10 0.02a |
Piecewise energy consumption under Z-LED and C-LED, recorded by an electricity meter every 5 days.
| Piecewise energy consumption (kWh) | Z-LED | C-LED |
|---|---|---|
| 1–5 days | 0.66 | 3.84 |
| 5–10 days | 0.78 | 3.84 |
| 10–15 days | 2.21 | 5.52 |
| 15–25 days | 8.32 | 11.04 |
| Total | 11.98 | 24.24 |