不同光照处理对芸苔养分浓度和叶片交换的影响

A. N. Harun, R. Ahmad, N. Mohamed, Abdul Rahman Abdul Rahim, Sheroz Khan
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引用次数: 2

摘要

利用物联网(IoT)技术作为远程监测系统,研究了不同LED光处理对芸苔(Brassica chinensis)养分浓度和叶片气体交换的影响。在4种不同的光照条件下对中国芸苔进行了生长试验。实验分别为T1(连续光照;24小时灯),T2(脉冲灯:1小时灯15分钟暗),T3(各种光强)和T4(持续灯+远红色)。对养分浓度和叶片气体交换植物活性进行了分析。采用嵌入式系统实现了LED的自动控制和操作。该系统能够通过网络对数据进行分析,对工厂的环境参数进行在线监测。结果表明,该系统运行稳定,对植物工厂或室内养殖系统具有重要的参考价值。综上所述,持续光照(CL)对芸苔的生长影响较大。因此,氯与远红的配用也提高了植株养分浓度和叶片气体交换活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The effect of different light treatments on nutrient concentration and leaf exchange in Brassica Chinensis
The effect of different LED light treatments on nutrient concentration and leaf gas exchange in Brassica chinensis was performed in this study utilizing Internet of Things (IoT) technology as remote monitoring system. Brassica chinensis were grown under four different light treatments and have been used as light source. The experiments were conducted namely T1 (continues light; 24 h lights), T2 (pulse lights: 1 h lights 15 minutes darks), T3(various light intensities) and T4 (continues lights + Far red). The observation of nutrient concentration and activity leaf gas exchange plants were analyzed. An intelligent system using embedded system has been developed to automate the LED control and manipulation. The system is able to analze on data and monitor the environmental parameters of the plant factory on line via internet. The result shows that the system is stable and has a significant referential in the area of plant factory or indoor farming system. Based on the overall result, Continues Light (CL) gave a high impact towards Brassica chinensis growth. Therefore, combination CL and Far red also enhanced the plant nutrient concentration and the activity of leaf gas exchange.
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