天然水体中铵态和硝态氮δ15N的测定

曾明, 余龙飞, 张逸, 王章玮. 天然水体中铵态和硝态氮δ15N的测定[J]. 环境化学, 2013, 32(8): 1486-1490. doi: 10.7524/j.issn.0254-6108.2013.08.010
引用本文: 曾明, 余龙飞, 张逸, 王章玮. 天然水体中铵态和硝态氮δ15N的测定[J]. 环境化学, 2013, 32(8): 1486-1490. doi: 10.7524/j.issn.0254-6108.2013.08.010
ZENG Ming, YU Longfei, ZHANG Yi, WANG Zhangwei. Determination of δ15N of ammonium and nitrate in nature waters[J]. Environmental Chemistry, 2013, 32(8): 1486-1490. doi: 10.7524/j.issn.0254-6108.2013.08.010
Citation: ZENG Ming, YU Longfei, ZHANG Yi, WANG Zhangwei. Determination of δ15N of ammonium and nitrate in nature waters[J]. Environmental Chemistry, 2013, 32(8): 1486-1490. doi: 10.7524/j.issn.0254-6108.2013.08.010

天然水体中铵态和硝态氮δ15N的测定

  • 基金项目:

    中国科学院知识创新方向性项目(K2CX2-YW-GJ01)

    中国科学院国际合作项目(GJHZ1205)

    国家重大基础研究(973计划)项目(2005CB422206)资助.

Determination of δ15N of ammonium and nitrate in nature waters

  • Fund Project:
  • 摘要: 介绍了一种天然水体中铵态和硝态氮δ15N的测定方法,包括3个步骤:(1)离子交换法富集水中铵态和硝态氮;(2)蒸馏法进一步提纯铵态和硝态氮;(3)阳离子树脂萃取由转化和蒸馏得到的铵态氮,并将树脂干燥后送入元素分析仪串联质谱(EA-IRMS)测定δ15N.用这种方法处理NH4Cl和KNO3配制的人工模拟水样和野外采集的天然水样,发现δ15N-NH4+和δ15N-NO3-测定的准确性高、重复性好,人工模拟水样δ15N-NH4+的测定值和标准值相差0.560‰,δ15N-NO3-的测定值和标准值相差0.341‰,所有水样重复间的标准偏差在0.008‰—0.384‰之间.测定方法需要的水样体积较少,水样处理速度较快,离子交换后水样中的铵态和硝态氮可长期保存,适合野外天然水体δ15N测定.
  • 加载中
  • [1] Galloway J, Townsend A, Erisman J, et al. Transformation of the nitrogen cycle: Recent trends, questions, and potential solutions[J]. Science, 2008, 320 (5878): 889
    [2] Duce R, LaRoche J, Altieri K, et al. Impacts of atmospheric anthropogenic nitrogen on the open ocean[J]. Science, 2008, 320 (5878): 893
    [3] Robinson D. δ15N as an integrator of the nitrogen cycle[J]. Trends in Ecology & Evolution, 2001, 16 (3): 153-162
    [4] 罗绪强,王世杰,刘秀明. 稳定氮同位素在环境污染示踪中的应用进展[J]. 矿物岩石地球化学通报, 2007, 26: 295-299
    [5] Sigman D, Altabet M, Michener R, et al. Natural abundance-level measurement of the nitrogen isotopic composition of oceanic nitrate: an adaptation of the ammonia diffusion method[J]. Marine Chemistry, 1997, 57 (3/4): 227-242
    [6] Lehmann M, Bernasconi S, McKenzie J. A method for the extraction of ammonium from freshwaters for nitrogen isotope analysis[J]. Anal Chem, 2001, 73 (19): 4717-4721
    [7] 刘秀娟,俞志明. 海水中溶解态硝酸盐的氮同位素分析的预处理方法[J]. 分析化学, 2009, 37: 643-647
    [8] Khan S, Mulvaney R, Brooks P. Diffusion methods for automated nitrogen-15 analysis using acidified disks[J]. Soil Science Society of America Journal, 1998, 62 (2): 406
    [9] Clark I, Timlin R, Bourbonnais A, et al. Origin and fate of industrial ammonium in anoxic ground water—15N evidence for anaerobic oxidation (anammox)[J]. Ground Water Monitoring & Remediation, 2008, 28 (3): 73-82
    [10] Sakata M. A simple and rapid method for δ15N determination of ammonium and nitrate in water samples[J]. Geochemical Journal Japan, 2001, 35 (4): 271-275
    [11] Silva S, Kendall C, Wilkison D, et al. A new method for collection of nitrate from fresh water and the analysis of nitrogen and oxygen isotope ratios[J]. Journal of Hydrology, 2000, 228 (1/2): 22-36
    [12] 王茜. 鼎湖山无机氮湿沉降来源研究[J]. 环境科学研究, 2008, 21: 156-160
    [13] 张维理. 中国农业面源污染形势估计及控制对策Ⅰ.21世纪初期中国农业面源污染的形势估计[J]. 中国农业科学, 2004, 7: 1008-1017
    [14] Bremner J, Edwards A. Determination and isotope-ratio analysis of different forms of nitrogen in soils: I. Apparatus and procedure for distillation and determination of ammonium[J]. Soil Science Society of America Journal, 1965, 29 (5): 504
    [15] Bremner J, Keeney D. Determination and isotope-ratio analysis of different forms of nitrogen in soils: 3. Exchangeable ammonium, nitrate, and nitrite by extraction-distillation methods[J]. Soil Science Society of America Journal, 1966, 30 (5): 577
    [16] Lindau C, Delaune R, Alford D. Monitoring nitrogen pollution from sugarcane runoff using 15N analysis[J]. Water, Air, & Soil Pollution, 1997, 98 (3): 389-399
  • 加载中
计量
  • 文章访问数:  2910
  • HTML全文浏览数:  2861
  • PDF下载数:  1069
  • 施引文献:  0
出版历程
  • 收稿日期:  2012-05-25
曾明, 余龙飞, 张逸, 王章玮. 天然水体中铵态和硝态氮δ15N的测定[J]. 环境化学, 2013, 32(8): 1486-1490. doi: 10.7524/j.issn.0254-6108.2013.08.010
引用本文: 曾明, 余龙飞, 张逸, 王章玮. 天然水体中铵态和硝态氮δ15N的测定[J]. 环境化学, 2013, 32(8): 1486-1490. doi: 10.7524/j.issn.0254-6108.2013.08.010
ZENG Ming, YU Longfei, ZHANG Yi, WANG Zhangwei. Determination of δ15N of ammonium and nitrate in nature waters[J]. Environmental Chemistry, 2013, 32(8): 1486-1490. doi: 10.7524/j.issn.0254-6108.2013.08.010
Citation: ZENG Ming, YU Longfei, ZHANG Yi, WANG Zhangwei. Determination of δ15N of ammonium and nitrate in nature waters[J]. Environmental Chemistry, 2013, 32(8): 1486-1490. doi: 10.7524/j.issn.0254-6108.2013.08.010

天然水体中铵态和硝态氮δ15N的测定

  • 1. 中国科学院生态环境研究中心, 北京, 100085
基金项目:

中国科学院知识创新方向性项目(K2CX2-YW-GJ01)

中国科学院国际合作项目(GJHZ1205)

国家重大基础研究(973计划)项目(2005CB422206)资助.

摘要: 介绍了一种天然水体中铵态和硝态氮δ15N的测定方法,包括3个步骤:(1)离子交换法富集水中铵态和硝态氮;(2)蒸馏法进一步提纯铵态和硝态氮;(3)阳离子树脂萃取由转化和蒸馏得到的铵态氮,并将树脂干燥后送入元素分析仪串联质谱(EA-IRMS)测定δ15N.用这种方法处理NH4Cl和KNO3配制的人工模拟水样和野外采集的天然水样,发现δ15N-NH4+和δ15N-NO3-测定的准确性高、重复性好,人工模拟水样δ15N-NH4+的测定值和标准值相差0.560‰,δ15N-NO3-的测定值和标准值相差0.341‰,所有水样重复间的标准偏差在0.008‰—0.384‰之间.测定方法需要的水样体积较少,水样处理速度较快,离子交换后水样中的铵态和硝态氮可长期保存,适合野外天然水体δ15N测定.

English Abstract

参考文献 (16)

返回顶部

目录

/

返回文章
返回