Articles | Volume 24, issue 9
https://doi.org/10.5194/acp-24-5303-2024
https://doi.org/10.5194/acp-24-5303-2024
Research article
 | 
07 May 2024
Research article |  | 07 May 2024

Response patterns of moss to atmospheric nitrogen deposition and nitrogen saturation in an urban–agro–forest transition

Ouping Deng, Yuanyuan Chen, Jingze Zhao, Xi Li, Wei Zhou, Ting Lan, Dinghua Ou, Yanyan Zhang, Jiang Liu, Ling Luo, Yueqiang He, Hanqing Yang, and Rong Huang

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Subject: Clouds and Precipitation | Research Activity: Field Measurements | Altitude Range: Troposphere | Science Focus: Chemistry (chemical composition and reactions)
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Cited articles

Arróniz-Crespo, M., Leake, J. R., Horton, P., and Phoenix, G. K.: Bryophyte physiological responses to, and recovery from, long-term N deposition and phosphorus fertilisation in acidic grassland, New Phytol., 180, 864–874, https://doi.org/10.1111/j.1469-8137.2008.02617.x, 2008. 
Boquete, M. T., Fernández, J. A., Aboal, J. R., and Carballeira, A.: Analysis of temporal variability in the concentrations of some elements in the terrestrial moss Pseudoscleropodium purum, Environ. Exp. Bot., 72, 210–216, https://doi.org/10.1016/j.envexpbot.2011.03.002, 2011.  
Britton, A. J. and Fisher, J. M.: Terricolous alpine lichens are sensitive to both load and concentration of applied nitrogen and have the potential as bioindicators of nitrogen deposition, Environ. Pollut., 158, 1296–1302, https://doi.org/10.1016/j.envpol.2010.01.015, 2010. 
Burpee, B. T. and Saros, J. E.: Cross-ecosystem nutrient subsidies in Arctic and alpine lakes: implications of global change for remote lakes. Environ. Sci. Proc. Imp., 22, 1166–1189, https://doi.org/10.1039/C9EM00528E, 2020. 
Clark, C. M. and Tilman, D.: Loss of plant species after chronic low-level nitrogen deposition to prairie grasslands, Nature, 451, 712–715, https://doi.org/10.1038/nature06503, 2008. 
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Estimating atmospheric nitrogen (N) deposition is critical to understanding the biogeochemical N cycle. Moss has long been considered as a bio-indicator for N deposition due to its accumulation of N from the atmosphere. Here, we improved the method for monitoring atmospheric N deposition using mosses. The sampling frequency and time were optimized. This study contributes to improving the accuracy of the model of quantifying N deposition by using mosses.
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