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首页> 外文期刊>Communications in Soil Science and Plant Analysis >Nitrification Inhibitor Reduces Nitrous Oxide Production from Different Soil Profiles of an Andosol Soil.
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Nitrification Inhibitor Reduces Nitrous Oxide Production from Different Soil Profiles of an Andosol Soil.

机译:硝化抑制剂可减少Andosol土壤中不同土壤剖面的一氧化二氮产生量。

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摘要

A laboratory incubation was conducted to evaluate nitrous oxide (N2O) production during nitrification and the effect of a nitrification inhibitor on N2O production from different profiles in a Japanese orchard Andosol. Soils were collected from five profiles: A1, A2, Bw1, Bw2, and BC. The soils were treated with ammonium sulfate at the rate of 200 mg N kg-1 with or without dicyandiamide (DCD) and incubated under aerobic conditions for 32 days. The net nitrification rate without DCD during the first 8 days was greater in the surface soils than in the subsurface soils. Accordingly, the surface soils showed a greater cumulative N2O production than the subsurface soils. Application of DCD significantly reduced the nitrification rate and thus N2O production from any depths of soils by 33.8 to 62.9%. Our study showed that substantial N2O was produced from the subsurface soil, although the amount was less than from the surface soils.
机译:进行了实验室培养,以评估硝化过程中一氧化二氮(N2O)的产生以及硝化抑制剂对日本果园Andosol中不同剖面中N2O产生的影响。从五个剖面中收集土壤:A1,A2,Bw1,Bw2和BC。在有或没有双氰胺(DCD)的情况下,以200 mg N kg-1的速率用硫酸铵处理土壤,并在有氧条件下温育32天。表土中前8天无DCD的净硝化率高于表土。因此,表层土壤显示出比地下土壤更大的累积N2O产量。 DCD的应用显着降低了硝化速率,因此从任何深度的土壤中产生的N2O减少了33.8%至62.9%。我们的研究表明,尽管表层土壤中的N2O量少于表层土壤,但其产生的N2O量却很大。

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