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首页> 外文期刊>Forest Ecology and Management >Effects of drip irrigation and nitrogen fertigation on stand growth and biomass allocation in young triploid Populus tomentosa plantations
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Effects of drip irrigation and nitrogen fertigation on stand growth and biomass allocation in young triploid Populus tomentosa plantations

机译:滴灌灌水和氮气辐射对年轻三权酚杨树种植园的展台生物量分配的影响

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摘要

A field experiment was conducted in 2017-2018 to investigate the effects of drip irrigation and N fertigation (DIF) on stand growth and biomass allocation in a triploid Populus tomentosa plantation in the North China Plain. The experiment, which included a 3 x 4 factorial structure (four levels of additional N fertigation in each of three levels of irrigation) and an untreated control, was laid out as a complete randomized block design with 5 replicates. Based on the proper model for the augmented factorial design, the results of ANOVA for stand basal area increment and stand total biomass in 2017 and 2018 showed that high irrigation (irrigation when soil water potential at soil 20 cm depth reached - 20 kPa) significantly enhanced early stand growth, but additional N fertigation did not further improve early stand growth. The Dirichlet regression model was directly fitted biomass proportion data from destructively sampled trees to differentiate between developmental and treatment effects on biomass allocation. After correction for the tree-size effect, the high irrigation or the high-fertigation associated DIF regimes altered biomass allocation to some extent. Additional N fertigation did not affect early stand growth but affected biomass allocation, suggesting the monitoring of longer-term responses is necessary.
机译:2017 - 2018年进行了一个田间实验,探讨了滴灌和氮灌溉(DIF)对华北平原三倍体Populus植物种植园的支架生长和生物量分配的影响。该实验包括3×4因子结构(在三级灌溉水平中的每一个中的四个额外的N水平)和未处理的对照,作为一个完整的随机块设计,有5个重复。基于适当的增强阶段设计,2017年和2018年ANOVA的展台基地面积增量和支架总生物量的结果表明,高灌溉(当土壤水平20厘米深度达到 - 20kPa)显着增强早期站立增长,但额外的氮潜水并未进一步提高早期的立场增长。 Dirichlet回归模型直接从破坏性采样树上直接装配生物质比例数据,以区分生物质分配的发育和治疗效果。在校正树尺寸效应后,高灌溉或高潜水相关的DIF制度在一定程度上改变了生物量分配。额外的N次施肥不会影响早期的立场增长,但影响生物质分配,这表明需要监测长期反应。

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