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首页> 外文期刊>Acta Universitatis Agriculturae et Silviculturae Mendelianae Brunensis >Evaluation of Indirect Measurement Method of Seasonal Patterns of Leaf Area Index in a High-Density Short Rotation Coppice Culture of Poplar
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Evaluation of Indirect Measurement Method of Seasonal Patterns of Leaf Area Index in a High-Density Short Rotation Coppice Culture of Poplar

机译:杨树高密度短轮转小灌木林叶面积指数季节性模式的间接测量方法评价

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摘要

Leaf area index (LAI) is an important determinant of biomass production and yield of short rotation bio-energy plantation. An accurate measurement of LAI is critical for quantifying light interception and penetration within the canopy, and subsequently understanding its influence on the stand carbon and energy balance. The aim of the current study is validation of the Sunscan Plant Canopy Analyzer which serves as an indirect method for the evaluation of the seasonal patterns of LAI, relation between LAI and above ground woody dry biomass and to determine the specific leaf area in short-rotation poplar hybrid clone J-105 (iPopulus nigra/i × iP. maximowiczii/i) in uncoppiced (1supst/sup rotation) and coppiced (2supnd/sup rotation), respectively. LAI was measured in uncoppiced and coppiced by two different methods using indirect (SunScan Plant Canopy Analyzer) and direct (litterfall collection). Sunscan Plant Canopy Analyzer was compared against litterfall collection (only way to retrieve the actual LAI). Simple regression (Rsup2/sup = 0.82) model was fitted to validate indirect measurement method and a very good agreement (82%) was observed in LAI values estimated from SunScan Plant Canopy Analyzer and from litterfall collection. Seasonal variability of LAI in a short rotation coppice (SRC) culture of poplar clone J-105 was evaluated over six years period (2008–2013), for uncoppiced (2008 and 2009) and coppiced (2010, 2011, 2012 and 2013) culture. The maximum canopy LAI (LAIsubmax/sub) reached 7.3 (uncoppiced) and 9.5 (coppiced). The linear regression (Rsup2/sup = 0.93) for average LAI and above ground woody dry biomass was determined, and it was found that LAI acts an indicator of biomass productivity. Specific leaf area (SLA) was estimated in both uncoppiced and coppiced culture of poplar. The maximum SLA was found to be 138.9 cmsup2/supgsup?1/sup in uncoppiced and 126.9 cmsup2/supgsup?1/sup in coppiced. To conclude, the evaluated indirect LAI measurement method is portable, reliable and faster than direct LAI measurement in high density poplar short-rotation coppice culture.
机译:叶面积指数(LAI)是决定短周期生物能源人工林生物量生产和产量的重要决定因素。 LAI的准确测量对于量化顶盖内的光线拦截和穿透以及随后了解其对林分碳和能量平衡的影响至关重要。本研究的目的是对Sunscan植物冠层分析仪进行验证,该分析仪可作为间接方法来评估LAI的季节性模式,LAI与地上木质干生物量之间的关系并确定短轮伐期的比叶面积杨木杂种J-105(

旋转)。用间接(SunScan植物冠层分析仪)和直接(凋落物收集)两种不同的方法对LAI进行了测量。将Sunscan植物冠层分析仪与凋落物收集进行了比较(这是检索实际LAI的唯一方法)。使用简单回归(R 2 = 0.82)模型验证间接测量方法,并且从SunScan植物冠层分析仪和凋落物收集量估计的LAI值中观察到非常好的一致性(82%)。杨树克隆J-105的短轮交矮生(SRC)培养中的LAI的季节性变化在六年期间(2008-2013),未定殖(2008和2009)和定殖(2010、2011、2012和2013)培养物中进行了评估。最大冠层LAI(LAI max )达到了7.3(未显示)和9.5(已显示)。测定了平均LAI和地上木质干生物量的线性回归(R 2 = 0.93),发现LAI是生物量生产力的指标。在杨树的未交配和交配的培养物中均估计了比叶面积(SLA)。发现未完成的最大SLA为138.9 cm 2 g ?1 和126.9 cm 2 g ?1 在应付。总之,在高密度杨树短轮转小灌木林培养中,所评估的间接LAI测量方法比直接LAI测量更便携式,可靠且速度更快。

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