[1]胡晓冕,李艳利,孙 伟,等.不同水文期太子河上游区域河流硝酸盐来源识别[J].水土保持研究,2021,28(02):7-13+20.
 HU Xiaomian,LI Yanli,SUN Wei,et al.Identification of Nitrate Sources in Upstream Areas of Taizi River Basin in Different Hydrological Periods[J].Research of Soil and Water Conservation,2021,28(02):7-13+20.
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不同水文期太子河上游区域河流硝酸盐来源识别

参考文献/References:

[1] Xia X H, Jia Z M, Liu T, et al. Coupled nitrification-denitrification caused by suspended sediment(SPS)in rivers: importance of SPS size and composition[J]. Environmental Science & Technology, 2017,51(1):212-221.
[2] 任玉芬,张心昱,王效科,等.北京城市地表河流硝酸盐氮来源的氮氧同位素示踪研究[J].环境工程学报,2013,7(5):1636-1640.
[3] Wong W W, Pottage J, Warry F Y, et al. Stable isotopes of nitrate reveal different nitrogen processing mechanisms in streams across a land use gradient during wet and dry periods[J]. Biogeosciences, 2018,15(13):3953-3965.
[4] Buchwald C, Santoro A E, Mcilvin M R, et al. Oxygen isotopic composition of nitrate and nitrite produced by nitrifying cocultures and natural marine assemblages[J]. Limnology and Oceanography, 2012,57(5):1361-1375.
[5] 金赞芳,张文辽,郑奇,等.氮氧同位素联合稳定同位素模型解析水源地氮源[J].环境科学,2018,39(5):2039-2047.
[6] 傅雪梅,孙源媛,苏婧,等.基于水化学和氮氧双同位素的地下水硝酸盐源解析[J].中国环境科学,2019,39(9):3951-3958.
[7] Chen F J, Jia G D, Chen J Y. Nitrate sources and watershed denitrification inferred from nitrate dual isotopes in the Beijiang River, south China[J]. Biogeochemistry, 2009,94(2):163-174.
[8] Lee K S, Bong Y S, Lee D, et al. Tracing the sources of nitrate in the Han River watershed in Korea, using δ15N-NO-3 and δ18O-NO-3 values[J]. Science of the Total Environment, 2008,395(2):117-124.
[9] 谢扬雄,张颖.太子河水环境质量与生态系统服务功能价值分析[J].环境保护与循环经济,2011,31(2):50-52.
[10] 李艳利,孙伟,杨梓睿.太子河流域中游地区河流硝酸盐来源及迁移转化过程[J].环境科学,2017,38(12):5039-5046.
[11] Xing M, Liu W. Using dual isotopes to identify sources and transformations of nitrogen in water catchments with different land uses, Loess Plateau of China[J]. Environmental Science & Pollution Research, 2016,23(1):388-401.
[12] 李艳利,杨梓睿,尹希杰,等.太子河下游河流硝酸盐来源及迁移转化过程[J].环境科学,2018,39(3):1076-1084.
[13] Zhang Y, Li F, Zhang Q, et al. Tracing nitrate pollution sources and transformation in surface and ground-waters using environmental isotopes[J]. Science of the Total Environment,2014,490:213-222.
[14] Yue F J, Li S L, Liu C Q, et al. Using dual isotopes to evaluate sources and transformation of nitrogen in the Liao River, northeast China[J]. Applied Geochemistry, 2013,36(1):1-9.
[15] Galloway J N, Aber J D, Erisman J W, et al. The nitrogen cascade[J]. Bioscience, 2003,53(4):341-356.
[16] Andrade A, Stigter T Y. Multi-method assessment of nitrate and pesticide contamination in shallow alluvial groundwater as a function of hydrogeological setting and land use[J]. Agricultural Water Management, 2009,96(12):1751-1765.
[17] Yu U, Hosono T, Onodera S I, et al. Sources of nitrate and ammonium contamination in groundwater under developing Asian megacities[J]. Science of the Total Environment, 2009,407(9):3218-3219.
[18] Wang W, Song X, Ma Y. Identification of nitrate source using isotopic and geochemical data in the lower reaches of the Yellow River irrigation district(China)[J]. Environmental Earth Sciences, 2016,75(11):1-13.
[19] David W, Emmanuelle P, Philippe N A, et al. Tracking the sources of nitrate in groundwater using coupled nitrogen and boron isotopes: A synthesis[J]. Environmental Science & Technology, 2005,39(2):539-548.
[20] Li W B, Song Y B, Xu H K, et al. Ion-exchange method in the collection of nitrate from freshwater ecosystems for nitrogen and oxygen isotope analysis:a review[J]. Environmental Science and Pollution Research, 2015,22(13):9575-9588.
[21] Yao L X, Li G L, Tu S H, et al. Salinility of animnal manure and potential risk of secondary soil salinization through successive manure application[J]. Science of the Total Environmental, 2007,383(1):106-114.
[22] Liu C Q, Li S L, Lang Y C, et al. Using δ15N- and δ18O-values to identify nitrate sources in karst ground water, Guiyang, southwest China[J]. Environmental Science & Technology, 2006,40(22):6928-6933.
[23] Sebestyen S D, Ross D S, Shanley J B, et al. Unprocessed atmospheric nitrate in waters of the Northern Forest Region in the U. S. and Canada[J]. Environmental Science & Technology,2019,53(7):3620-3633.
[24] Xu S G, Kang P P, Sun Y. A stable isotope approach and its application for identifying nitrate source and transformation process in water[J] Environmental Science and Pollution Research,2016,23(2):1133-1148.
[25] Boshers D S, Granger J, Tobias C R, et al. Constraining the oxygen isotopic composition of nitrate produced by nitrification. environmental[J]. Science & Technology,2019,53(3):1206-1216.
[26] Buchwald C, Casciotti K L. Oxygen isotopic fractionation and exchange during bacterial nitrite oxidation[J]. Liimnology and Oceanography, 2010,55(3),1064-1074.
[27] Mayer B, Boyer E W, Goodale C, et al. Sources of nitrate in rivers draining sixteen watersheds in the northeastern US: isotopic constraints[J] Biogeochemistry, 2002,57(1),171-197.

相似文献/References:

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 WANG An,ZHANG Lan-ying,WANG Hu,et al.Influence of Different Nitrogen Dosage on Nitrate Accumulation in Vegetables[J].Research of Soil and Water Conservation,2010,17(02):252.

备注/Memo

收稿日期:2020-03-07 修回日期:2020-05-07
资助项目:国家自然科学基金(41401029,U1704241,13A610319); 河南省高等学校重点科研项目(19A170006)
第一作者:胡晓冕(1995—),男,山东潍坊人,硕士研究生,研究方向为环境地球化学。E-mail:1530529421@qq.com 通信作者:李艳利(1979—),女,河南焦作人,博士,副教授,主要从事水文生态研究。E-mail:liyanli@hpu.edu.cn

更新日期/Last Update: 2021-02-10