Spatial variability of nitrous oxide emissions and their soil-related determining factors in an agricultural field

被引:109
作者
Yanai, J [1 ]
Sawamoto, T
Oe, T
Kusa, K
Yamakawa, K
Sakamoto, K
Naganawa, T
Inubushi, K
Hatano, R
Kosaki, T
机构
[1] Kyoto Univ, Grad Sch Agr, Kyoto 6068502, Japan
[2] Hokkaido Univ, Grad Sch Agr, Sapporo, Hokkaido 0608589, Japan
[3] Chiba Univ, Fac Hort, Chiba 2718510, Japan
[4] Shimane Univ, Fac Life & Environm Sci, Matsue, Shimane 6908504, Japan
关键词
D O I
10.2134/jeq2003.1965
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
To evaluate spatial variability of nitrous oxide (N2O) emissions and to elucidate their determining factors on a field-scale basis, N2O fluxes and various soil properties were evaluated in a 100- x 100-m onion (Allium cepa L.) field. Nitrous oxide fluxes were determined by a closed chamber method from the one-hundred 10- x 10-m plots. Physical (e.g., bulk density and water content), chemical (e.g., total N and pH), and biological (e.g., microbial biomass C and N) properties were determined from surface soil samples (0-0.1 m) of each plot. Geostatistical analysis was performed to examine spatial variability of both N2O fluxes and soil properties. Multivariate analysis was also conducted to elucidate relationships between soil properties and observed fluxes. Nitrous oxide fluxes were highly variable (average 331 mug N m(-2) h(-1), CV 217%) and were log-normally distributed. Log-transformed N2O fluxes had moderate spatial dependence with a range of >75 m. High N2O fluxes were observed at sites with relatively low elevation. Multivariate analysis indicated that an organic matter factor and a pH factor of the principal component analysis were the main soil-related determining factors of log-transformed N2O fluxes. By combining multivariate analysis with geostatistics, a map of predicted N2O fluxes closely matched the spatial pattern of measured fluxes. The regression equation based on the soil properties explained 56% of the spatially structured variation of the log-transformed N2O fluxes. Site-specific management to regulate organic matter content and water status of a soil could be a promising means of reducing N2O emissions from agricultural fields.
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页码:1965 / 1977
页数:13
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