Effects of Different Rotation Patterns of Oil-Rice on Methane and Nitrous Oxide Emissions in Rice Fields

被引:3
|
作者
Chen Y.-D. [1 ]
Zhao Y. [1 ]
Gao D.-J. [1 ]
Luo X.-F. [1 ]
Cui T. [2 ]
Tong Z.-Q. [2 ]
Wu J.-M. [3 ]
机构
[1] Hunan Rice Research Institute, Changsha
[2] Nanxian Agricultural and Rural Bureau, Nanxian
[3] Hunan Engineering Research Center for Prevention and Control of Agricultural Non-point Source Pollution in the Basin of Lake Dongting, Institute of Agriculture Environment and Ecology, Hunan Academy of Agricultural Science, Changsha
来源
Huanjing Kexue/Environmental Science | 2020年 / 41卷 / 10期
关键词
Greenhouse gas intensity; Methane; Nitrous oxide; Paddy field; Rotation patterns;
D O I
10.13227/j.hjkx.202002107
中图分类号
学科分类号
摘要
A field experiment was carried out to investigate the effects of different rice-rape rotation systems on methane and nitrous oxide emissions, which were measured using the static chamber/gas chromatography method, prediction of their global warming potentials (GWP), and greenhouse gas intensity (GHGI) in paddy fields. The results showed that the average cumulative emissions of CH4from a double cropping paddy field, single season rice field (including middle or late), rape field, and leisure land were 135.25, 55.64, 5.05, and 1.89 kg•hm-2, respectively. The CH4 emission during the rice season accounted for 91.8%-98.5% of the annual CH4 emission in different rotation years, and the contents of dissolved organic carbon in paddy soil exhibited a significantly positive correlation with CH4 emission. The CH4 emission in conventional late rice paddy was 18.7% higher than that of hybrid late rice paddy (P<0.05). The average cumulative emissions of N2O from double cropping paddy field, single season rice field (including middle or late), rape field, and leisure land were 0.94, 0.64, 1.38, and 0.24 kg•hm-2, respectively. Out of the total annual N2O emission, 57.2% to 70.2% was from the rape field; 17.8% and 30.6% was due to the winter fallow treatments with previous crop type of double corpping rice and single season rice, respectively. There was no significant difference in N2O emission between hybrid rice and conventional rice paddy fields. The GWP of double cropping rice-winter fallow and double cropping rice-rape was higher than that of rice-rape and rice-winter fallow, and the GWP of CH4 in rice season accounted for 71.2% to 90.9% of the annual GWP of rotation. The highest treatment of GHGI was rice-rice-rape, and the treatment of rice-oil and rice-winter slack was lower. According to the comprehensive environmental and economic benefits, the late hybrid rice-rape patterns should be selected to reduce greenhouse gases in multiple cropping rice fields of South China. © 2020, Science Press. All right reserved.
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页码:4701 / 4710
页数:9
相关论文
共 42 条
  • [21] Le Mer J, Roger P., Production, oxidation, emission and consumption of methane by soils: a review, European Journal of Soil Biology, 37, 1, pp. 25-50, (2001)
  • [22] Fu Z Q, Huang H, Xie W, Et al., Effects of high-yielding rice cultivar and cultivation pattern on methane emission from paddy field, Chinese Journal of Applied Ecology, 20, 12, pp. 3003-3008, (2009)
  • [23] Zhang H, Xue Y G, Wang Z Q, Et al., Morphological and physiological traits of roots and their relationships with shoot growth in "super" rice, Field Crops Research, 113, 1, pp. 31-40, (2009)
  • [24] Jiang Y, Wang L L, Yan X J, Et al., Super rice cropping will enhance rice yield and reduce CH<sub>4</sub> emission: a case study in Nanjing, China, Rice Science, 20, 6, pp. 427-433, (2013)
  • [25] Ma E D, Ji Y, Ma J, Et al., Effects of soil tillage and rice cultivation pattern on methane emission from paddy field, Journal of Ecology and Rural Environment, 26, 6, pp. 513-518, (2010)
  • [26] Ye R Z, Horwath W R., Influence of rice straw on priming of soil C for dissolved organic C and CH<sub>4</sub> production, Plant and Soil, 417, 1, pp. 231-241, (2017)
  • [27] Zang Y, Luo X W, Zhang G Z, Et al., Effects on methane emission in the precision rice hill-drop drilled field during the early tillering stage, Journal of South China Agricultural University, 35, 2, pp. 96-100, (2014)
  • [28] Tang H M, Xiao X P, Shuai X Q, Et al., Effects of different winter covering crops cultivation on methane (CH<sub>4</sub>) and nitrous oxide (N<sub>2</sub>O) emission fluxes from double-cropping paddy field, Acta Ecologica Sinica, 32, 5, pp. 1481-1489, (2012)
  • [29] Zhou Y F, Liu N, Liu Z Y, Et al., Effects of winter cover crop on methane and carbon dioxide emissions from paddy field, Ecological Science, 37, 5, pp. 94-101, (2018)
  • [30] Tang H M, Xiao X P, Tang W G, Et al., Effects of winter covering crop residue incorporation on CH<sub>4</sub> and N<sub>2</sub>O emission from double-cropped paddy fields in southern China, Environmental Science and Pollution Research, 22, 16, pp. 12689-12698, (2015)