Influence of land use and change in the proportion of electron donors required for denitrification on N2O in groundwater

被引:0
作者
Zhao Li
Fadong Li
Qiuying Zhang
Jianqi Wang
Peifang Leng
Chao Tian
Xiaoyan Li
机构
[1] Chinese Academy of Sciences,Key Laboratory of Ecosystem Network Observation and Modeling, Institute of Geographic Sciences and Natural Resources Research
[2] University of Chinese Academy of Sciences,College of Resources and Environment
[3] Chinese Research Academy of Environmental Sciences,State Key Laboratory of Earth Surface Processes and Resource Ecology
[4] Beijing Normal University,undefined
来源
Environmental Science and Pollution Research | 2021年 / 28卷
关键词
Denitrification; Groundwater; Nitrous oxide; Nitrate; Electron donor; EF;
D O I
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中图分类号
学科分类号
摘要
Nitrate (NO3−) and nitrous oxide (N2O) accumulate in groundwater in relation to human activities and pose multiple threats to the global environment (harming human health and atmospheric damage). This study focused on the evaluation of groundwater NO3−, N2O, and its indirect emission factor under different land use types (agricultural land, urban land, and forest) and response mechanism of major anions to dissolved N2O within groundwater in Dexing which has the largest copper mine in Asia. Specifically, this work used self-organizing maps (SOMs) to identify which anion conditions (NO3−, SO42−, F−, Cl−) and water quality parameters were suitable for the accumulation of groundwater N2O. Finally, we found that the shallow groundwater of agricultural land has a high concentration of NO3− and N2O and the agricultural activity has a significant effect on the temporal and spatial variation of N2O in groundwater. The result of SOMs combined with the positive correlation between N2O and NO3−/SO42− suggested that the electron donor required for denitrification has a significant effect on N2O accumulation. In this respect, when an increased proportion of reduced sulfur is available as an electron donor for autotrophic denitrification, this results in lower concentrations of N2O in groundwater. Through the comprehensive evaluation of the anion conditions and N2O in groundwater under different land use types, this study case can help to estimate the N2O indirect emission from groundwater, so as to constrain the global nitrogen budget.
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页码:17684 / 17696
页数:12
相关论文
共 199 条
[41]  
Zhao C(2017)Abiotic nitrous oxide (N Sci Total Environ 574 1044-359
[42]  
Cheng G(1980)O) production is strongly pH dependent, but contributes little to overall N Mar Chem 8 347-1226
[43]  
Huang P(2008)O emissions in biological nitrogen removal systems Biogeosciences 5 1215-1972
[44]  
Hayakawa A(2010)A review of indirect N Biogeosciences 7 1953-5548
[45]  
Hatakeyama M(2008)O emission factors from agricultural nitrogen leaching and runoff to update of the default IPCC values Acta Ecol Sin 28 5532-132
[46]  
Asano R(2012)Denitrification of groundwater with pyrite and Thiobacillus denitrificans Chem Geol 300-301 123-246
[47]  
Ishikawa Y(2019)Indirect N Environ Pollut 248 238-196
[48]  
Hidaka S(2019)O emissions from shallow groundwater in an agricultural catchment (Seine Basin, France) J Water Supply Res Technol AQUA 69 184-267
[49]  
Höll BS(2015)Spatial variability of N Biogeochemistry 126 251-undefined
[50]  
Jungkunst H(undefined)O concentrations and of denitrification-related factors in the surficial groundwater of a catchment in Northern Germany undefined undefined undefined-undefined