首页> 外文OA文献 >The Influence of Three Years of Supplemental Nitrogen on Above- and Belowground Biomass Partitioning in a Decade-Old Miscanthus × giganteus in the Lower Silesian Voivodeship (Poland)
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The Influence of Three Years of Supplemental Nitrogen on Above- and Belowground Biomass Partitioning in a Decade-Old Miscanthus × giganteus in the Lower Silesian Voivodeship (Poland)

机译:三年补充氮对较低的Miscanthus×Giganteus在较低的Silesian voivodeh(Poland)中的影响

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摘要

Because of the different opinions regarding nitrogen (N) requirements for Miscanthus × giganteus biomass production, we conducted an experiment with a set dose of nitrogen. The objective of this study was to examine the effects of nitrogen fertilization on the biomass yield, water content, and morphological features of rhizomes and aboveground plant parts in various terms during a growing season over the course of three years (2014–2016) in Lower Silesia (Wroclaw, Poland). The nitrogen fertilization (dose 60 kg/ha and control) significantly affected the number of shoots (p = 0.0018), the water concentration of rhizomes (p = 0.0004) and stems (p = 0.0218), the dry matter yield of leaves (p = 0.0000), and the nitrogen uptake (p = 0.0000). Nitrogen fertilization significantly affected the nitrogen uptake in all plant parts (p = 0.0000). Although low levels of nitrogen appeared to be important in maintaining the maximum growth potentials of mature Miscanthus × giganteus, the small reductions in the above- and belowground biomass production are unlikely to outweigh the environmental costs of applying nitrogen. More studies should use the protocols for the above- and belowground yield determination described in this paper in order to create site- and year-specific fertilizer regimes that are optimized for quality and yield for autumn (green) and spring (delayed) harvests.
机译:由于关于氮气(N)氮素×Giganteus生物质生产的不同意见,我们进行了一种氮气的试验。本研究的目的是在较低三年(2014-2016)的过程中,在各种术语中审查氮肥对根茎产量,水含量和形态特征的影响。 Silesia(弗罗茨瓦夫,波兰)。氮肥(剂量60kg / ha和对照)显着影响芽的数量(p = 0.0018),根茎水浓度(p = 0.0004)和茎(p = 0.0218),叶子的干物质产量(p = 0.0000),氮吸收(P = 0.0000)。氮肥显着影响所有植物零件中的氮吸收(P = 0.0000)。虽然低水平的氮似乎在维持成熟的Miscanthus×Giganteus的最大生长潜力方面是重要的,但是上述和低于地下生物量产生的少量减少不太可能超过施用氮的环境成本。更多研究应使用本文描述的上述和下面地收益率的协议,以创建针对秋季(绿色)和春季(延迟)收获的质量和产量进行优化的现场和年度特定肥料制度。

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