Soil concentration profiles and diffusion and emission of nitrous oxide influenced by the application of biochar in a rice-wheat annual rotation system

被引:0
作者
Ziqiang Zhou
Xin Xu
Zhichao Bi
Lu Li
Bo Li
Zhengqin Xiong
机构
[1] Nanjing Agricultural University,Jiangsu Key Laboratory of Low Carbon Agriculture and GHG Mitigation, College of Resources and Environmental Sciences
来源
Environmental Science and Pollution Research | 2016年 / 23卷
关键词
Soil profile; N; O concentration; N; O diffusion; N; O emission; Biochar; Rice-wheat rotation;
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中图分类号
学科分类号
摘要
Field experiments were carried out to determine biochar effects on nitrous oxide (N2O) concentration profiles, diffusion, and emissions in paddy soil under rice-wheat annual rotation in southeastern China. An in situ soil gas device was adapted to measure N2O concentrations at depths of 7, 15, 30, and 50 cm. Five treatments were installed as N0B0, N0B1, N1B0, N1B1, and N1B2 (B0, B1, and B2 designated as biochar at 0, 20, and 40 t ha−1, respectively, while N0 and N1 as nitrogen at 0 and 250 kg N ha−1 crop−1, respectively). The results showed that N2O concentrations were higher in the 15 and 30 cm depths than other depths. With positive diffusive fluxes, the 7 cm in the rice season and 15 cm in the wheat season were main production sites. The surface N2O emissions and topsoil diffusive fluxes showed good agreement. N application strongly increased soil N2O profiles and surface emissions. Relative to N1B0, N1B1 decreased N2O concentration, surface emissions, and diffusive fluxes by 25.2, 31.8, and 26.5 %, respectively, while N1B2 decreased them averagely by 40.7, 43.2, and 44.2 %, correspondingly. Therefore, the gas gradient method is effective for estimating N2O emissions, and biochar can decrease N2O production when N was applied.
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页码:7949 / 7961
页数:12
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共 342 条
[1]  
Billings SA(2000)Sensitivity of soil methane fluxes to reduced precipitation in boreal forest soils Soil Biol Biochem 32 1431-1441
[2]  
Richter DD(1966)Use of saran resin to coat natural soil clods for bulk-density and water-retention measurements Soil Sci 101 108-12
[3]  
Yarie J(2012)Greenhouse gas soil production and surface fluxes at a high arctic polar oasis Soil Biol Biochem 52 1-16
[4]  
Brasher BR(2014)Biochar’s role in mitigating soil nitrous oxide emissions: a review and meta-analysis Agric Ecosyst Environ 191 5-5163
[5]  
Franzmeier DP(2015)Denitrification kinetics in biomass- and biochar-amended soils of different landscape positions Environ Sci Pollut Res 22 5152-11
[6]  
Valassis V(2005)A review of the movement and fate of N Nutr Cycl Agroecosyst 72 3-293
[7]  
Davidson SE(2013)O in the subsoil Agron J 3 275-662
[8]  
Brummell ME(2009)A review of biochar and soil nitrogen dynamics Nat Geosci 2 659-134
[9]  
Farrell RE(2008)The contribution of manure and fertilizer nitrogen to atmospheric nitrous oxide since 1860 Soil Sci Soc Am J 72 126-221
[10]  
Siciliano SD(2005)A subsurface, closed-loop system for soil carbon dioxide and its application to the gradient efflux approach Can J Soil Sci 85 213-293