Solar-induced chlorophyll fluorescence intensity has a significant correlation with negative air ion release in forest canopy

被引:16
作者
Shi, Guang-Yao [1 ,2 ]
Huang, Hui [1 ,2 ]
Sang, Yu-Qiang [3 ]
Cai, Lu-Lu [3 ,4 ]
Zhang, Jin-Song [1 ,2 ]
Cheng, Xiang-Fen [1 ,2 ]
Meng, Ping [1 ,2 ]
Sun, Shou-Jia [1 ,2 ]
Li, Jian-Xia [5 ]
Qiao, Yong-Sheng [5 ]
机构
[1] Chinese Acad Forestry, Res Inst Forestry, Key Lab Tree Breeding & Cultivat, State Forestry Adm, Beijing 100091, Peoples R China
[2] Nanjing Forestry Univ, Coinnovat Ctr Sustainable Forestry Southern China, Nanjing 210037, Peoples R China
[3] Henan Agr Univ, Coll Forest, Zhengzhou 450002, Henan, Peoples R China
[4] Henan Geophys Space Informat Res Inst, Zhengzhou 450016, Henan, Peoples R China
[5] Nanshan Natl Forest Farm, Shaoyang 459000, Henan, Peoples R China
关键词
NAI; SIF; Photosynthetically active radiation; Forest canopy; LIGHT-USE EFFICIENCY; GROSS PRIMARY PRODUCTIVITY; PHOTOSYNTHESIS; VEGETATION; PERFORMANCE; RETRIEVAL; STRESS; IMPACT; MODEL; FIELD;
D O I
10.1016/j.atmosenv.2021.118873
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Forest vegetation is an essential source of negative air ion (NAI) and influencing factor of the process. A number of studies have focused on the temporal and spatial changes of NAI in different forest communities and their relationship with meteorological factors; however, there is no literature on the relationship between solar induced chlorophyll fluorescence intensity (SIF) and NAI, and quantitative research on relationship between NAI and photosynthesis of forest vegetation is comparatively limited. In this study, we investigated the dynamic changes NAI, SIF, and meteorological parameters in canopy during the growing season by using a flux tower at the sites Xiaolangdi and Minquan in a warm-temperate monsoon climate zone from June to September of 2019 and 2020. Results showed that the canopy NAI, SIF, and photosynthetically active radiation (PAR) showed significant diurnal and seasonal dynamic change characteristics, and that the changes in the observed indicators at different times were significantly different. The seasonal change characteristics of canopy NAI and SIF were relatively similar, and canopy SIF could accurately capture the dynamic changes of NAI. Additionally, the NAI-SIF relationship was increasingly significant at higher PAR levels, and the coefficient of determination (R-2) of the two sites reached 0.652 and 0.570. It showed that when vegetation photosynthesis was fully activated, the dynamic change process of the canopy NAI provided a more robust correlation and more accurate estimation in the vegetation's main growth stage, thus demonstrating the reliability of SIF as an indicator for tracking NAI seasonal changes. In the future, automatic, continuous SIF observations could provide reliable understanding of the photosynthetic characteristics of terrestrial ecosystems, thereby quantifying the contribution potential of forest to NAI application in ground-based optical measurement and airborne and satellite remote sensing. This provides a working foundation for direct assessment of spatial and temporal distribution patterns of global seasonal NAI.
引用
收藏
页数:10
相关论文
共 72 条
[41]  
Page J.S., 1969, EVOLUTION PLANT DESI, V26, P586
[42]  
Pinto F., 2020, PLANT CELL ENVIRON, V1, P1
[43]   Linking chlorophyll a fluorescence to photosynthesis for remote sensing applications: mechanisms and challenges [J].
Porcar-Castell, Albert ;
Tyystjarvi, Esa ;
Atherton, Jon ;
van der Tol, Christiaan ;
Flexas, Jaume ;
Pfuendel, Erhard E. ;
Moreno, Jose ;
Frankenberg, Christian ;
Berry, Joseph A. .
JOURNAL OF EXPERIMENTAL BOTANY, 2014, 65 (15) :4065-4095
[44]   Efficiency of ionizers in removing airborne particles in indoor environments [J].
Pushpawela, Buddhi ;
Jayaratne, Rohan ;
Nguy, Mine ;
Morawska, Lidia .
JOURNAL OF ELECTROSTATICS, 2017, 90 :79-84
[45]  
Ranson K.J., 2015, PHOTOGRAMM ENG REMOT, V52, P649
[46]   Red and far red Sun-induced chlorophyll fluorescence as a measure of plant photosynthesis [J].
Rossini, M. ;
Nedbal, L. ;
Guanter, L. ;
Ac, A. ;
Alonso, L. ;
Burkart, A. ;
Cogliati, S. ;
Colombo, R. ;
Damm, A. ;
Drusch, M. ;
Hanus, J. ;
Janoutova, R. ;
Julitta, T. ;
Kokkalis, P. ;
Moreno, J. ;
Novotny, J. ;
Panigada, C. ;
Pinto, F. ;
Schickling, A. ;
Schuettemeyer, D. ;
Zemek, F. ;
Rascher, U. .
GEOPHYSICAL RESEARCH LETTERS, 2015, 42 (06) :1632-1639
[47]   What is global photosynthesis? History, uncertainties and opportunities [J].
Ryu, Youngryel ;
Berry, Joseph A. ;
Baldocchi, Dennis D. .
REMOTE SENSING OF ENVIRONMENT, 2019, 223 :95-114
[48]   Compensation of Oxygen Transmittance Effects for Proximal Sensing Retrieval of Canopy-Leaving Sun-Induced Chlorophyll Fluorescence [J].
Sabater, Neus ;
Vicent, Jorge ;
Alonso, Luis ;
Verrelst, Jochem ;
Middleton, Elizabeth M. ;
Porcar-Castell, Albert ;
Moreno, Jose .
REMOTE SENSING, 2018, 10 (10)
[49]   Seasonal variation in the atmospheric deposition of inorganic constituents and canopy interactions in a Japanese cedar forest [J].
Sase, Hiroyuki ;
Takahashi, Akiomi ;
Sato, Masahiko ;
Kobayashi, Hiroyasu ;
Nakata, Makoto ;
Totsuka, Tsumugu .
ENVIRONMENTAL POLLUTION, 2008, 152 (01) :1-10
[50]  
Sawant V.S., 2013, Int. J. Eng. Innov. Technol, V2, P48