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Effects of Nitrogen Availability on the Fate ofLitter-Carbon and Soil Organic MatterDecomposition

机译:氮素有效性对凋落碳命运和土壤有机质分解的影响

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Aims: To determine whether addition of inorganic nitrogen (N) directly to maize litter (stalk and leaf) with differing tissue quality impacts litter and soil organic matter (SOM) decomposition. We tested whether N addition leads to 1) faster litter decomposition, 2) less SOM-C decomposition and 3) increased incorporation of organic-C into soil-C fractions thereby increasing C sequestration potential in maize-based systems.Methodology: We investigated decomposition of two types of maize litter (stalk and leaf) with differing tissue quality both in the field and in a laboratory incubation experiment. In the field, litter was placed on the soil surface and at 10 cm soil depth to investigate the effect of litter burial and N addition on litter decomposition. Litter was harvested at six and twelve month intervals. In the incubation experiment, maize and stalk litter was ground and incorporated into the soil and incubated at 25oC for 120 days. We measured CO2-C evolved and employed δ13C natural abundance differences between litter-C and SOM-C to measure both litter-C and SOM-C decomposition. At the end of the experiment, we examined soil-C storage via soil physical fractionation. Results: Exogenous N addition to litter had little effect both litter and SOM decomposition in the field and the laboratory except for in the stalk litter treatment where there was an 8% decrease in litter-C loss and a 5% increase in SOM-C loss in the laboratory incubation experiment. N addition to litter increased decomposition of litter in the first 20 days of litter decomposition in the laboratory incubation experiment, but reduced litter decomposition rates after day 20. N addition to litter had very little effect on C storage in soil aggregates. In the field, litter placement, and physical litter structure influenced decomposition much more than N inputs. Thus, adding N to litter is not an effective strategy to sequester C in maize-based systems.
机译:目的:确定在组织质量不同的玉米垫料(茎和叶)中直接添加无机氮(N)是否会影响垫料和土壤有机质(SOM)的分解。我们测试了氮的添加是否导致1)更快的凋落物分解,2)较少的SOM-C分解和3)增加有机C掺入土壤C组分中,从而增加基于玉米的系统中C的固存潜力。在田间和实验室培养实验中,对两种具有不同组织质量的玉米凋落物(茎和叶)进行分析。在田间,将凋落物放置在土壤表面和土壤深度10 cm处,以研究凋落物的埋葬和氮的添加对凋落物分解的影响。每隔六个月和十二个月收获一次垃圾。在温育实验中,将玉米和秸秆凋落物磨碎并掺入土壤中,并在25oC下温育120天。我们测量了CO2-C的释放,并利用了凋落物C和SOM-C之间的δ13C自然丰度差异来测量凋落物C和SOM-C的分解。在实验结束时,我们通过土壤物理分级检查了土壤碳的储存。结果:在田间和实验室中,除垫料外源氮对垫料和SOM的分解几乎没有影响,除了秸秆垫料处理中,垫料C损失减少了8%,SOM-增加了5%。实验室培养实验中C丢失。在实验室孵化实验中,在垫料分解的前20天中,除垫料中的N会增加垫料的分解,但是在第20天后,垫料中N的减少会降低垫料的分解速率。在野外,垫料的放置和垫料的物理结构对分解的影响远大于N输入。因此,在基于玉米的系统中,向垫料中添加N并不是隔离C的有效策略。

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