首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Can N Fertilizer Addition Affect N2O Isotopocule Signatures for Soil N2O Source Partitioning?
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Can N Fertilizer Addition Affect N2O Isotopocule Signatures for Soil N2O Source Partitioning?

机译:N肥料加成影响土壤N2O源分区的N2O同位素签名吗?

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摘要

Isotopocule signatures of N2O (δ15Nbulk, δ18O and site preference) are useful for discerning soil N2O source, but sometimes, N fertilizer is needed to ensure that there isenough N2O flux for accurate isotopocule measurements. However, whether fertilizer affects these measurements is unknown. This study evaluated a gradient of NH4NO3 addition on N2O productions and isotopocule values in two acidic subtropical soils. The results showed that N2O production rates obviously amplified with increasing NH4NO3 (p < 0.01), although a lower N2O production rate and an increasing extent appeared in forest soil. The δ15Nbulk of N2O produced in forest soil was progressively enriched when more NH4NO3 was added, while becomingmore depleted of agricultural soil. Moreover, the N2O sitepreference (SP) values collectively elevated with increasing NH4NO3 in both soils, indicating that N2O contributions changed. The increased N2O production in agricultural soil was predominantly due to the added NH4NO3 via autotrophic nitrification and fungal denitrification (beyond 50%), which significantlyincreased with addedNH4NO3, whereas soil organic nitrogen contributed most to N2O production in forest soil, probably via heterotrophic nitrification. Lacking the characteristicSPof heterotrophic nitrification,itsN2O contributionchangecannot be accurately identified yet. Overall, N fertilizer should be applied strictly according to the field application rate or N deposition amount when using isotopocule signatures to estimate soil N2O processes.
机译:N2O(δ15nbulk,Δ18O和现场偏好)的同位素差异可用于辨别土壤N2O源,但有时,需要N肥料以确保存在足够的N2O通量用于精确同位素测量。但是,肥料是否会影响这些测量是未知的。该研究评估了在两个酸性亚热带的N 2 O制剂中添加NH 4 NO 3的梯度和同位素值。结果表明,随着NH 4 NO 3的增加,N2O生产率明显扩增(P <0.01),但N2O生产率较低,森林土壤中出现较大程度。当加入更多NH 4 NO 3时,逐渐富集在森林土壤中产生的N2Oδ15NBULK逐步富集。更多的农业土壤枯竭。而且,N2O网站偏好(SP)值在两种土壤中增加NH4NO3增加,表明N2O贡献改变了。农业土壤中的N2O产量增加主要是由于添加的NH 4 NO 3通过自养硝化和真菌反硝化(超过50%),这显着增加了增加NH4NO3,而土壤有机氮在森林土壤中最大的影响最大,可能是通过异养硝化的N2O生产。缺乏特征SP.异养硝化,它的N2O贡献改变尚未准确识别。总的来说,在使用同位素差异以估计土壤N2O过程时,应根据现场施用率或N沉积量严格应用N肥料。

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