土壤水分
环境科学
转化(遗传学)
农业
土壤科学
地理
化学
考古
生物化学
基因
作者
Gaodi Zhu,Xiaotong Song,Xiaotang Ju,Jinbo Zhang,Christoph Müller,R. Sylvester‐Bradley,R. E. Thorman,I. J. Bingham,Robert M. Rees
标识
DOI:10.1016/j.scitotenv.2019.02.241
摘要
Abstract The properties of agricultural soils in various regions of the world are variable and can have a significant but poorly understood impact on soil nitrogen (N) transformations and nitrous oxide (N2O) emissions. For this reason, we undertook a study of gross N transformations and related N2O emissions in contrasting agricultural soils from China and the UK. Seven Chinese and three UK agricultural soils were collected for study using a 15N tracing approach. The soil pH ranged from 5.4 to 8.7, with three acidic soils collected from Jinjing, Lishu and Boghall; one neutral soil collected from Changshu, and the other six alkaline soils collected from Quzhou, Zhangye, Changwu, Jinzhong, Boxworth and Stetchworth. Our results showed that the main N transformation processes were oxidation of ammonium (NH4+) to nitrate (NO3−) (ONH4), and mineralization of organic N to NH4+. The gross autotrophic nitrification rates calculated in the three acidic soils were between 0.25 and 4.15 mg N kg−1 d−1, which were significantly lower (p
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