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首页> 外文期刊>Biology and Fertility of Soils >Processes responsible for the nitrous oxide emission from a Costa Rican Andosol under a coffee agroforestry plantation
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Processes responsible for the nitrous oxide emission from a Costa Rican Andosol under a coffee agroforestry plantation

机译:咖啡农林业园中哥斯达黎加安多索尔排放一氧化二氮的过程

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We used the inhibitor acetylene (C2H2) at partial pressures of 10 Pa and 10 kPa to inhibit autotrophic nitrification and the reduction of nitrous oxide (N2O) to N2, respectively. Soils (Andosol) from a Coffea arabica plantation shaded by Inga densiflora in Costa Rica were adjusted to 39, 58, 76 and 87% water-filled pore space (WFPS) and incubated for 6 days in the absence or presence of C2H2. Soil respiration, nitrification rates and N2O emissions by both processes were measured in relation to soil moisture conditions. At all WFPS studied, rates of N2O and N2 productions were small (4.8; 14.7; 23 and 239.6 ng N–N2O g−1 d.w. d−1 at 39, 58, 76 and 87% WFPS, respectively), and despite a low soil pH (4.7), N2O was mainly produced by nitrification, which was responsible for 85, 91, 84 and 87% of the total N2O emissions at 39, 58, 76 and 87% WFPS, respectively. At the three smaller values of WFPS, a linear relationship was established between WFPS, soil respiration, nitrification and N2O released by nitrification; no N2 was produced by denitrification. At more anaerobic conditions achieved by a WFPS of 87%, a large rate of N2O production was measured during nitrification, and N2 production accounted for 84% of the gaseous N fluxes caused by denitrification.
机译:我们在分压为10 Pa和10 kPa的条件下使用抑制剂乙炔(C2 H2 )抑制自养硝化和将一氧化二氮(N2 O)还原为N2 , 分别。将在哥斯达黎加的Inga densiflora遮蔽的阿拉伯咖啡种植园土壤(Andosol)调整为39%,58%,76%和87%充满水的孔隙空间(WFPS),在不存在或存在C2的情况下孵育6天 H2 。测定了这两个过程的土壤呼吸,硝化率和N2 O的排放与土壤湿度的关系。在所有研究的WFPS上,N2 O和N2 的产生率都很小(4.8、14.7、23和239.6 ng N–N2 dw d-1 分别达到39%,58%,76%和87%的WFPS),尽管土壤pH值较低(4.7),N2 O主要是通过硝化作用产生的,分别导致85、91、84和分别以39%,58%,76%和87%的WFPS排放总N2 O中的87%。在三个较小的WFPS值下,WFPS与土壤呼吸,硝化作用和硝化释放的N2O之间存在线性关系。反硝化不会产生N2 。在WFPS达到87%的更多厌氧条件下,在硝化过程中测得N2O的生成率很高,而N2sub的生成占反硝化过程中气态N流量的84%。

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