Measurement of Soil Surface and Plant Canopy Ammonia Fluxes in Red Pepper Field Using Dynamic Chamber Method
Author:
Publisher
Korean Society of Soil Science and Fertilizer
Subject
General Medicine
Link
http://www.kjssf.org/articles/pdf/doi/10.7745/KJSSF.2020.53.4.643.pdf
Reference14 articles.
1. Andreas, P., G. Cai, N. Rolf, R. Jörg, X. Fan, Z. Zhu, and R. Marco. 2006. Calibration of a simple method for determining ammonia volatilization in the field-comparative measurements in Henan Province, China. Nutr. Cycl. Agroecosyst. 74(3):259-273.
2. David, M., B. Loubet, P. Cellier, M. Mattsson, J.K. Schjoerring, E. Nemitz, R. Roche, M. Riedo, and M.A. Sutton. 2009. Ammonia sources and sinks in an intensively managed grassland canopy. Biogeosciences 6:1903-1915.
3. Freney, J.R., J.R. Simpson, and O.T. Denmead. 1983. Volatilization of Ammonia. Gaseous Loss of Nitrogen from Plant-Soil Systems. J. R. a. S. Freney, J. R. The Hague Boston Lancaster, Martinus Nijhoff Dr W. Junk Publishers: 1-32.
4. Hayashi, K., S. Hiradate, S. Ishikawa, and I. Nouchi. 2008. Ammonia exchange between rice leaf blades and the atmosphere: effect of broadcast urea and changes in xylem sap and leaf apoplastic ammonium concentrations. Soil Sci. Plant Nutr. 54:807-818.
5. Hutchinson, G.L., R.J. Millington, and D.B. Peters. 1972. Atmospheric ammonia: absorption by plant leaves. Science, 175:771-772.
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