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首页> 外文期刊>Revista Brasileira de Engenharia Agricola e Ambiental >Sprouting of pre-sprouted sugarcane seedlings and micrometeorological variables under photo-selective nets
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Sprouting of pre-sprouted sugarcane seedlings and micrometeorological variables under photo-selective nets

机译:在照片选择性网下发芽预先发芽的甘蔗幼苗和微观气象变量

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Sugarcane is a grass species that stands out worldwide in the production of ethanol. Brazil is the world’s largest producer and leader in exports, responsible for more than 50% of the products that are marketed worldwide. The objective of this study was to investigate the effect of photo-selective nets on micrometeorological variables and on sprouting of pre-sprouted sugarcane seedlings. The experiment was carried out in a protected environment at Universidade Federal Rural de Pernambuco - UFRPE, in a completely randomized design. Seedlings of cultivar RB92579 were obtained by the technique of production of pre-sprouted seedlings. The protected environment was divided into four modules corresponding to the treatments: covered with anti-UV low-density polyethylene plastic: + Solpack?? red ultranet net, + Solpack?? white net, + Solpack?? freshnet net and without shade net. Micrometeorological data of air temperature and substrate temperature were recorded in each module. The first count of emergence, sprouting speed index and sprouting percentage were calculated. Principal component analysis was used to verify the association between the cultivation modules and the micrometeorological and sprouting variables of the seedlings. Air temperature in the protected environment was 8.7% higher than that in the external environment. The white net led to sprouting of 78.93%. The substrate temperature above 30.4 ?°C favored seedling sprouting. The modules with white net and red ultranet net favored seedling sprouting.
机译:甘蔗是一种在乙醇生产中脱颖而出的草地。巴西是世界上最大的出口生产商和领导者,负责全球销售的50%以上的产品。本研究的目的是研究光学选择性净对微观气象变量的影响以及对预先发芽的甘蔗幼苗发芽。该实验是在普遍的受访环境中的受保护环境中进行的,在完全随机设计中,在佩尔南巴 - UFRPE的普遍化。通过预先发芽幼苗的生产技术获得品种RB92579的幼苗。保护的环境分为与治疗相对应的四个模块:用抗紫外线低密度聚乙烯塑料覆盖:+溶胶??红色超空网,+ solpack ??白网,+ solpack ?? Freshnet Net和没有阴影网。在每个模块中记录空气温度和衬底温度的微型气象数据。计算出出的第一次出现,发芽速度指数和发芽百分比。主要成分分析用于验证培养模块与幼苗的微观气象和萌芽变量之间的关联。保护环境中的空气温度比外部环境高8.7%。白色网导致萌芽78.93%。高于30.4Ω的衬底温度有利于幼苗发芽。具有白色网和红色超空网的模块,青苗萌芽。

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