低辐射期HPS和PLS灯补光对黄瓜生长和产量的影响

J. Kwon, 권 준국, I. Yu, K. Park, Jae-Han Lee, Jin-Hyun Kim, Jung-Sup Lee, Dong Soo Lee, 유 인호, 박 경섭, 이 재한, 김 진현, 이 중섭, 이 동수
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引用次数: 3

摘要

本试验采用普通高压钠灯(HPS)和新型等离子体照明系统(PLS),研究了冬季低辐射期补光对黄瓜(Cucumis sativus L. ' Fresh ')植株生长和产量的影响。在没有补充照明的情况下生长的植物被视为对照。2015年11月20日至2016年3月15日提供补充照明,保证14小时的光周期(自然光+补充光),当外界太阳辐射水平小于100 W·m时,灯具自动开启。光谱分析表明,HPS灯具有离散光谱,在400-550 nm波段(蓝绿光)缺乏辐射,但在550-650 nm的橙红色区域有高输出。较高的红光输出导致HPS灯的红远红比(R/FR)增加。PLS光谱连续,在绿色区域(490 ~ 550nm)有峰值辐射。与PLS相比,HPS在光合有效辐射(PAR)方面的输出低12.6%,但在近红外(NIR)光谱区域的输出高12.6%。HPS和PLS灯发出的紫外线辐射水平都很低(300-400 nm)。与对照相比,HPS灯和PLS灯的补充光照均增加了黄瓜植株的株高、叶片数、节间数和干重。两种补光系统下黄瓜的光合活性具有可比性。对照、PLS和HPS小区黄瓜单株果数(单株果重)分别为21.2 (2.9 kg)、38.7 (5.5 kg)和40.4 (5.6 kg),产量比对照提高1.8-1.9倍。对黄瓜栽培中补充照明的经济可行性分析表明,考虑灯具安装和电费成本,PLS和HPS灯的补充照明收入分别增加37%和62%。关键词:人工照明,温室,PAR,光合作用
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Supplemental Lighting by HPS and PLS Lamps Affects Growth and Yield of Cucumber during Low Radiation Period
In this experiment the effect of supplemental lighting on the growth and yield of cucumber (Cucumis sativus L. ‘Fresh’) plants during low radiation period of winter season were investigated in glasshouses using common high-pressure sodium (HPS) lamps and newly developed plasma lighting system (PLS) lamps. Plants grown without supplemental lighting were considered as a control. Supplemental lighting was provided from November 20th, 2015 to March 15th, 2016 to ensure 14-hour photoperiod (natural+supplemental light), also lamps were operated automatically when the outside sun radiation levels were less than 100 W·m. Spectral analysis showed that HPS lamp had a discrete spectrum, lacked of the radiation in the 400-550 nm wave band (blue-green light), but had a high output in the orange-red region (550-650 nm). A higher red light output resulted in an increased red to far-red (R/FR) ratio in HPS lamp. PLS had a continuous spectrum and had a peak radiation in green region (490-550 nm). HPS has 12.6% lower output in photosynthetically active radiation (PAR) but 12.6% higher output in near infra-red (NIR) spectral regions compared to PLS. Both HPS and PLS lamps emitted very low levels of ultra-violet radiation (300-400 nm). Supplemental lighting both from HPS and PLS lamps increased plant height, leaf number, internode number and dry weight of cucumber plants compared to control. Photosynthetic activity of cucumber plants grown under two supplemental lighting systems was comparable. Number of fruits per cucumber plant (fruit weight per plant) in control, PLS, and HPS plots were 21.2 (2.9 kg), 38.7 (5.5 kg), and 40.4 (5.6 kg), respectively, thereby increasing yield by 1.8-1.9 times in comparison with control. An analysis of the economic feasibility of supplemental lighting in cucumber cultivation showed that considering lamp installation and electricity costs the income from supplemental lighting increased by 37% and 62% for PLS and HPS lamps, respectively. Additional key words : artificial lighting, greenhouse, PAR, photosynthesis
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