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首页> 外文期刊>Soil Biology & Biochemistry >Stabilization and plant uptake of N from 15N-labelled pea residue 16.5 years after incorporation in soil.
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Stabilization and plant uptake of N from 15N-labelled pea residue 16.5 years after incorporation in soil.

机译:掺入土壤16.5年后,从15N标记的豌豆残渣中稳定和吸收N。

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摘要

The decline of N from 15N-labelled mature pea residues was followed in unplanted soil over 16.5 yr. Eight years after residue incorporation, 24% of the residue 15N input was still present in the soil and, after 16.5 yr, 16% of the residue 15N input remained. A double exponential model successfully described the decay of N from 15N-labelled pea residues. The total residual 15N declined with average decay constants of 1.45 yr-1 for the 30 d to 1 yr period and of 0.07 yr-1 for the 1-16 yr period. Sixteen years following incorporation of the residues, indicator plants growing in residues-amended soils were obtaining 1.7% of their N from residue N. This is, to our knowledge, the longest study on decay of N in soils from 15N-labelled crop residues. The current study thus provides a unique data set for our empirical understanding of N-dynamics in agricultural systems, which is a prerequisite to parameterize and validate N-simulation models..
机译:在未种植的土壤中,从15N标记的成熟豌豆残留物中N的减少持续了16.5年。残留物掺入八年后,土壤中仍存在24%的残留15N输入,16.5年后,残留16%的残留15N输入。双指数模型成功地描述了15N标记的豌豆残基中N的衰减。总残留15 N下降,在30 d至1 yr期间平均衰减常数为1.45 yr-1,在1-16 yr期间为0.07 yr-1。掺入残留物十六年后,在残留物改良土壤中生长的指示植物从残留物氮中获得其氮的1.7%。据我们所知,这是对15 N标记的农作物残留物中土壤中N衰减的最长研究。因此,本研究为我们对农业系统中N动力学的经验理解提供了独特的数据集,这是参数化和验证N模拟模型的前提。

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