原文服务方: 地球化学学报(英文)       
摘要:
This paper focused on nitrate fate in the vadose zone (VZ) and its implications for groundwater vulnerability under different soil types in the agricultural area of Huaihe River Basin, China. Isotopic compositions of nitrate (δ15N and δ18O) along with NO3- and Cl- concentrations were determined in the VZ-shallow groundwater continuum beneath silty-loam and silty-clay-loam, which are distinctive in texture and organic carbon (OC). In the soil zone ( < 1 m in depth), measured δ18O-NO3- suggested the ubiquitous of nitrification regardless of soil types. In the subsoil zone ( > 1 m in depth), however, the concurrent enrichment of δ15N–NO3- and δ18O–NO3- indicated the occurrence of denitrification, which showed a dependence on subsoil properties. Specifically, during wheat and maize land uses, denitrification removed as much as 76 %–88 % of the total nitrate where the subsoil was dominated by stratified OC-rich silty-clay-loam. In contrast, only 0 %–28 % of the nitrate was degraded via denitrification where the subsoil was composed of uniform, OC-depleted silty-loam. Furthermore, inactive denitrification and higher permeability in the silty-loam VZ implied higher groundwater vulnerability. This observation was consistent with the fact that groundwater NO3--N concentration beneath silty-loam (11.24 mg L-1) was over two times higher than that of the silty-clay-loam (5.32 mg L-1), where stricter fertilization management and conservation strategies should be applied to protect groundwater quality.
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篇名 In-situ nitrogen fate in the vadose zone of different soil types and its implications for groundwate
来源期刊 学科 地球科学
关键词 Vadose zone Silty-loam Silty-clay-loam Nitrogen transformation Groundwater vulnerability Stable isotopes
年,卷(期) 2022,(3) 所属期刊栏目
研究方向 页码范围 281-290
页数 9页 分类号
字数 语种 英文
DOI 10.1007/s11631-020-00412-8
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Vadose zone
Silty-loam
Silty-clay-loam
Nitrogen transformation
Groundwater vulnerability
Stable isotopes
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地球化学学报(英文)
双月刊
2096-0956
52-1161/p
16开
贵阳市林城西路99号
1982-01-01
英语
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230
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0
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0
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