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光环境调控技术在蔬菜工厂化育苗中的应用及前景 被引量:38
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作者 苏娜娜 邬奇 崔瑾 《中国蔬菜》 北大核心 2013年第02X期14-19,共6页
幼苗的健壮程度直接影响定植后蔬菜植株的生长发育,并与蔬菜的产量和品质密切相关。研究开发安全环保、经济有效的育苗技术是现代设施农业发展所面临的重要课题,而通过光环境调控技术培育壮苗是一项节能环保、经济有效且简便易行的新方... 幼苗的健壮程度直接影响定植后蔬菜植株的生长发育,并与蔬菜的产量和品质密切相关。研究开发安全环保、经济有效的育苗技术是现代设施农业发展所面临的重要课题,而通过光环境调控技术培育壮苗是一项节能环保、经济有效且简便易行的新方法,具有突出优势。本文从光强、光质和光周期3个方面总结了光环境调控技术在蔬菜育苗中的研究进展及应用,并对LED光源在蔬菜工厂化育苗中的应用前景进行了展望。 展开更多
关键词 光环境 蔬菜幼苗 工厂化育苗 综述
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基于PLC技术的种苗精准光培育平台设计与试验
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作者 李斌 魏鑫钰 +3 位作者 陈夕 赵俊宏 罗毅智 周星星 《广东农业科学》 CAS 2023年第7期47-56,共10页
【目的】光是影响植物生长、发育、代谢及外部表型最为重要的一个因素。在植物生长过程中,常使用人工光源代替自然光对种苗进行补光,以提高果蔬的品质、产量和效率。人工光型植物工厂是标准化高效育苗的重要途径之一,但其光源能耗高,占... 【目的】光是影响植物生长、发育、代谢及外部表型最为重要的一个因素。在植物生长过程中,常使用人工光源代替自然光对种苗进行补光,以提高果蔬的品质、产量和效率。人工光型植物工厂是标准化高效育苗的重要途径之一,但其光源能耗高,占植物工厂总能耗的60%~80%,严重阻碍工厂化育苗技术的推广与应用。因此,降低光源能耗,提高光的利用率是植物工厂育苗的核心目标之一。【方法】针对植物工厂培育平台层高固定、能耗高且难以匹配种苗生长光需求等问题,采用理论分析、模型构建和试验相结合的方法,开发一款基于可编程控制器(Programmable Logic Controller,PLC)技术的种苗精准光培育平台。以黄瓜幼苗为对象,验证种苗精准光培育平台光强调控系统性能,探究其对黄瓜幼苗生长的影响。【结果】灯珠结构优化后的光强以及光分布均匀性均有所提高。开发的平台可通过手动、自动、HMI(Human Machine Interface)和上位机等方式对黄瓜幼苗进行补光。通过平台光辐射能耗模型和层高调整控制策略,有效降低LED运行功率,节约电能约40.65%,光平台辐射模型的最大相对误差为34.37%,最小相对误差为3.57%,平均相对误差为11.45%。栽培试验表明,在相同光强处理下,通过对比种苗精准光培育平台与传统层高固定平台对比,幼苗表型参数与壮苗指数无显著性差异。【结论】基于PLC技术的种苗精准光培育平台可以实现自动升降和智能调光,且在不影响种苗生长的情况下最多可节约电能40.65%。 展开更多
关键词 PLC技术 种苗 光培育 植物工厂 能耗
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Two-stage seedling cultivation method for sweet peppers combining closed plant factory and solar greenhouse
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作者 Hongbo Cui Fang Ji +3 位作者 Yanni Liu Zhengyang Luo Xiufeng Wang Jianfeng Wang 《International Journal of Agricultural and Biological Engineering》 SCIE 2023年第6期56-66,共11页
This study introduced a two-stage cultivation method for sweet pepper seedlings, integrating the strengths of a closed plant factory and solar greenhouse, to mitigate the environmental constraints in Northeast China d... This study introduced a two-stage cultivation method for sweet pepper seedlings, integrating the strengths of a closed plant factory and solar greenhouse, to mitigate the environmental constraints in Northeast China during the early spring season. In the first stage, seedlings were cultivated in a closed plant factory, followed by a second stage in a solar greenhouse. Four treatments- T1 (9 and 36 d), T2 (12 and 33 d), T3 (15 and 30 d), and T4 (18 and 27 d) - were designed for the first and second stages, respectively, with solar greenhouse-only approach serving as the control (CK). The findings reveal that the two-stage methodology significantly outperformed the control across multiple metrics, including seedling health index, chlorophyll content, photosynthetic capacity, yield, etc. Specifically, T3 emerged as optimal, boosting the health index by 38.59%, elevating chlorophyll content by 39.61%, increasing net photosynthesis by 34.61%, and augmenting yield per plant by 40.67%. Additionally, T3 expedited the time to harvest by 25 d compared to the control. Although the seedling cost for T3 was 0.12 RMB yuan higher, the benefits offset the additional investment. In conclusion, the two-stage cultivation method effectively leverages the advantages of both closed-plant factories and solar greenhouses, resulting in superior seedling quality compared to using only solar greenhouses. It offers a practical and economically viable solution for enhancing the quality and yield of sweet pepper seedlings, thus contributing to the progress in the field of facility seedling cultivation research. 展开更多
关键词 TWO-STAGE seedling cultivation sweet peppers closed plant factory solar greenhouse
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