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Soil-air greenhouse gas fluxes influenced by farming practices in reservoir drawdown area: A case at the Three Gorges Reservoir in China

机译:水库回灌区耕作方式对土壤空气温室气体通量的影响-以中国三峡水库为例

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摘要

The Three Gorges Reservoir (TGR) in China has large water level variations, creating about 393 km~2 of drawdown area seasonally. Farming practices in drawdown area during the low water level period is common in the TGR. Field experiments on soil-air greenhouse gas (GHG) emissions in fallow grassland, peanut field and corn field in reservoir drawdown area at Lijiaba Bay of the Pengxi River, a tributary of the Yangtze River in the TGR were carried out from March through September 2011. Experimental fields in drawdown area had the same land use history. They were adjacent to each other horizontally at a narrow range of elevation i.e. 167-169 m, which assured that they had the same duration of reservoir inundation. Unflooded grassland with the same land-use history was selected as control for study. Results showed that mean value of soil CO_2 emissions in drawdown area was 10.38 ± 0.97 mmol m~(-2) h~(-1). The corresponding CH_4 fluxes and N_2O fluxes were -8.61 ± 2.15 μmol m~(-2) h~(-1) and 3.42 ± 0.80 μmol m~(-2) h~(-1). Significant differences and monthly variations among land uses in treatments of drawdown area and unflooded grassland were evident. These were impacted by the change in soil physiochemical properties which were alerted by reservoir operation and farming. Particularly, N-fertilization in corn field stimulated N_2O emissions from March to May. In terms of global warming potentials (GWP), corn field in drawdown area had the maximum GWP mainly due to N-fertilization. Gross GWP in peanut field in drawdown area was about 7% lower than that in fallow grassland. Compared to unflooded grassland, reservoir operation created positive net effect on GHG emissions and GWPs in drawdown area. However, selection of crop species, e.g. peanut, and best practices in farming, e.g. prohibiting N-fertilization, could potentially mitigate GWPs in drawdown area. In the net GHG emissions evaluation in the TGR, farming practices in the drawdown area shall be taken into consideration.
机译:中国的三峡水库(TGR)的水位变化很大,季节性地产生了约393 km〜2的降水面积。在TGR中,在低水位时期在回灌区的耕作方式很普遍。在TGR长江支流彭溪河李家坝湾休耕草地,花生田和玉米田的土壤空气温室气体排放量的田间试验于2011年3月至2011年9月进行。缩水区的实验田具有相同的土地利用历史。它们在狭窄的高度范围内(即167-169 m)水平相邻,这确保了它们具有相同的储层淹没持续时间。选择具有相同土地利用历史的未淹没草地作为对照。结果表明,回灌区土壤CO_2排放平均值为10.38±0.97mmol m〜(-2)h〜(-1)。 CH_4通量和N_2O通量分别为-8.61±2.15μmolm〜(-2)h〜(-1)和3.42±0.80μmolm〜(-2)h〜(-1)。在退耕面积和未淹没草地的处理中,土地利用之间存在明显差异和每月变化。这些受到土壤理化特性变化的影响,水库运行和耕作引起了土壤理化特性的变化。特别是,玉米田中的氮肥在3月至5月刺激了N_2O排放。就全球变暖潜能值(GWP)而言,缩水区玉米田的GWP最大,这主要是由于氮肥的影响。缩水区花生田的总GWP比休耕草地低约7%。与未淹没的草地相比,水库运营对缩水区的温室气体排放和全球升温潜能值产生了积极的净影响。但是,选择作物种类,例如花生以及农业的最佳做法,例如禁止氮肥施用,有可能减轻水位下降地区的全球升温潜能值。在TGR的温室气体净排放量评估中,应考虑缩水区的耕作方式。

著录项

  • 来源
    《Journal of Environmental Management》 |2016年第1期|64-73|共10页
  • 作者单位

    CAS Key Lab on Reservoir Environment, Chongqing Institute of Green and Intelligent Technology, Chinese Academy of Sciences, Chongqing, 400714, China,China Three Gorges Corporation, Beijing, 100038, China;

    College of Urban Construction and Environmental Engineering, Chongqing University, Chongqing, 400045, China;

    China Three Gorges Corporation, Beijing, 100038, China;

    China Three Gorges Corporation, Beijing, 100038, China;

    Institute of Mountain Hazards and Environment, Chinese Academy of Sciences, Chengdu, 610041, China;

    College of Urban Construction and Environmental Engineering, Chongqing University, Chongqing, 400045, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Three Gorges Reservoir; Drawdown area; Farming practices; Greenhouse gas emissions; Global warming potential;

    机译:三峡水库;缩水区;耕作方式;温室气体排放;全球变暖的潜力;

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