...
首页> 外文期刊>Agricultural and Forest Meteorology >Improving the potential of red SIF for estimating GPP by downscaling from the canopy level to the photosystem level
【24h】

Improving the potential of red SIF for estimating GPP by downscaling from the canopy level to the photosystem level

机译:通过从遮篷级别抵消到照相级别来改善红色SIF的电位估算GPP

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Numerous studies have proved that solar-induced chlorophyll fluorescence (SIF) is a good proxy of gross primary production (GPP). The SIF spectrum covers the spectral window from about 640 nm to 850 nm. Due to the strong chlorophyll absorption effect at the red band, the red SIF is much more influenced by the radiative transfer effect inside the canopy than the near infrared (NIR) SIF is. Therefore, at the canopy level, the NIR SIF shows more potential for use in estimating GPP. However, the red-band SIF contains more information about PS II, which is more sensitive to photosynthesis. So, in theory, if the canopy radiative transfer effect could be corrected for, the potential of the red SIF for estimating GPP would be greatly improved. In this paper, we propose a new simple reflectance-based method for estimating the photosystem-level SIF at both the NIR band and the red band. Longterm observations of SIF and GPP at two crop sites in two years (four datasets in total) were used to investigate the SIF-GPP relationship at the canopy or photosystem level. The SIF downscaled by the simple reflectance-based approach is found to be consistent with that found using the random forest regression method proposed formerly. For the NIR band, the performance of the canopy-level SIF and PS-level SIF for GPP estimation is similar while, for the red band, the correlation between the SIF and GPP is greatly improved after downscaling the canopy-level SIF to the PS level. For the four test datasets, at the red band, the values of R-2 for the SIF-GPP relationship increase from 0.213-0.599 to 0.398-0.759 after the downscaling. At the PS level, the performance of the red SIF for GPP estimation is as good as or even better than that of the NIR-band SIF. The results of this study indicate that estimation of the SIF photosystem level to canopy level escape probability is important, and that more importance should be paid to the red-band SIF in the monitoring of GPP.
机译:许多研究证明,太阳能诱导的叶绿素荧光(SIF)是总初级生产(GPP)的良好代理。 SIF光谱覆盖约640nm至850nm的光谱窗口。由于红色频段的叶绿素吸收效应强,红色SIF受遮篷内的辐射转移效果的影响比近红外线(NIR)SIF是更大的影响。因此,在树盖级别,NIR SIF显示更多在估计GPP时使用的可能性。但是,红色频带SIF包含有关PS II的更多信息,对光合作用更敏感。因此,理论上,如果可以校正冠层辐射转移效果,则将大大提高了估计GPP的红色SIF的电位。在本文中,我们提出了一种新的简单反射率,用于估计NIR频带和红色频段的光系统级SIF。 SIF和GPP在两年内进行SIF和GPP的LONETTM观察(总共四个数据集)用于调查天坡或光系统级别的SIF-GPP关系。通过基于简单的反射率的方法缩小的SIF将与使用以前提出的随机森林回归方法相一致。对于NIR频段,针对RED频带的GPP估计的顶篷级SIF和PS-Level SIF的性能类似于SIF和GPP之间的相关性在向PS缩小到PS后大大提高等级。对于四个测试数据集,在红色频段,SIF-GPP关系的R-2值从缩小后的0.213-0.599增加到0.398-0.759。在PS级别,用于GPP估计的红色SIF的性能与NIR-BAND SIF一样好或甚至更好。本研究结果表明,SIF光系统级别对冠层水平逸出概率的估计很重要,并且在监测GPP时应将更多的重要性支付给RED频段SIF。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号