• 中文核心期刊
  • 中国科技核心期刊
  • ISSN 1007-6336
  • CN 21-1168/X
ZHAO Chun-yu, ZHANG Ling, JIANG Zhi-jian, WU Yun-chao, KE Zhi-xin, HUANG Xiao-ping. Distribution characteristics of the porewater inorganic nitrogen and their benthic exchange fluxes in coastal wetlands of Daya bay[J]. Chinese Journal of MARINE ENVIRONMENTAL SCIENCE, 2020, 39(3): 359-366. DOI: 10.12111/j.mes20200306
Citation: ZHAO Chun-yu, ZHANG Ling, JIANG Zhi-jian, WU Yun-chao, KE Zhi-xin, HUANG Xiao-ping. Distribution characteristics of the porewater inorganic nitrogen and their benthic exchange fluxes in coastal wetlands of Daya bay[J]. Chinese Journal of MARINE ENVIRONMENTAL SCIENCE, 2020, 39(3): 359-366. DOI: 10.12111/j.mes20200306

Distribution characteristics of the porewater inorganic nitrogen and their benthic exchange fluxes in coastal wetlands of Daya bay

More Information
  • Received Date: August 24, 2018
  • Revised Date: November 13, 2018
  • In order to study the spatial distribution of the inorganic nitrogen in the sediment and their environmental effects, the contents and the exchange fluxes of DIN at sediment-water interface have been studied during March (dry season) and August (wet season) in 2017 in coastal wetland in Daya bay.The results showed that the average nitrogen content of overlying water near coastal wetland was far higher than that in Daya bay offshore water, which indicated the influence of human activities on the wetland was relatively serious.The river runoff is the main channel of nitrogen input.The average contents of nutrients (NH4-N、NO3-N and NO2-N) were 770.60、7.63 and 7.39 μmol/L in the sediment porewater, respectively.NH4-N was the major component and accounted for 85.82%~99.67% of DIN. The estimation of the sediment-water exchange fluxes indicated that the average fluxes of NH4-N、NO3-N and NO2-N were 0.09、-0.18 and 0.36 mmol/(m2·d), respectively.Generally, the average exchange flux was 0.41 mmol/(m2·d) in dry season, as the source of DIN providing a lot of nitrogen into the overlying water.The sediment became the sink of DIN in wet season, with average flux of -0.23 mmol/(m2·d).Comparing with the original experiment group, it was found that the average exchange fluxes of NH4-N、NO3-N and NO2-N in the sterilized group decreased by 76.5%, 23.7% and 50.3%, respectively.This indicates that microorganism plays a very important role in nitrogen transformation.

  • [1]
    HOWARTH R W, SHARPLEY A, WALKER D.Sources of nutrient pollution to coastal waters in the United States:implications for achieving coastal water quality goals[J].Estuaries, 2002, 25(4):656-676. doi: 10.1007-BF02804898/
    [2]
    SCAVIA D, BRICKER S B.Coastal eutrophication assessment in the United States[J].Biogeochemistry, 2006, 79(1/2):187-208. doi: 10.1007-s10533-006-9011-0/
    [3]
    COWAN J L M, PENNOCK J R, BOYNTON W R.Seasonal andinterannual patterns of sediment-water nutrient and oxygen fluxes in Mobile Bay, Alabama (USA):regulating factors and ecological significance[J].Marine Ecology Progress Series, 1996, 141:229-245. doi: 10.3354/meps141229
    [4]
    汪雅露, 袁华茂, 宋金明, 等.胶州湾沉积物-海水界面溶解无机氮的迁移特征及其影响因素解析[J].海洋科学, 2017, 41(3):102-112. http://d.old.wanfangdata.com.cn/Periodical/hykx201703014
    [5]
    MU D, YUAN D K, FENG H, et al.Nutrient fluxes across sediment-water interface in Bohai Bay Coastal Zone, China[J].Marine Pollution Bulletin, 2017, 114(2):705-714. http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=3bc6fdfbeb29baafee2e0b0296a64517
    [6]
    NI Z X, ZHANG L, YU S, et al.The porewater nutrient and heavy metal characteristics in sediment cores and their benthic fluxes in Daya Bay, South China[J].Marine Pollution Bulletin, 2017, 124(1):547-554. doi: 10.1016/j.marpolbul.2017.07.069
    [7]
    何桐, 谢健, 余汉生, 等.春季大亚湾海域沉积物-海水界面营养盐的交换速率[J].海洋环境科学, 2010, 29(2):179-183. doi: 10.3969/j.issn.1007-6336.2010.02.004
    [8]
    程香菊, 郭振仁, 刘国, 等.大亚湾养殖区沉积物-水界面氮磷的释放通量及其在水体中的扩散迁移[J].热带海洋学报, 2014, 33(4):77-84. doi: 10.3969/j.issn.1009-5470.2014.04.010
    [9]
    刘素美, 张经, 于志刚, 等.渤海莱州湾沉积物-水界面溶解无机氮的扩散通量[J].环境科学, 1999, 20(2):12-16. http://www.cnki.com.cn/Article/CJFDTotal-HJKZ902.002.htm
    [10]
    WHIGHAM D F, VERHOEVEN J A T, SAMARKIN V, et al.Responses of Avicennia germinans (Black Mangrove) and the soil microbial community to nitrogen addition in a hypersaline wetland[J].Estuaries and Coasts, 2009, 32(5):926-936. doi: 10.1007/s12237-009-9184-6
    [11]
    KE Z, TAN Y, HUANG L, et al.Spatial distributions of δ13C, δ15N and C/N ratios in suspended particulate organic matter of a bay under serious anthropogenic influences:Daya Bay, China[J].Marine Pollution Bulletin, 2017, 114, 183-191. doi: 10.1016/j.marpolbul.2016.08.078
    [12]
    张树兰, 杨学云, 吕殿青, 等.温度、水分及不同氮源对土壤硝化作用的影响[J].生态学报, 2002, 22(12):2147-2153. doi: 10.3321/j.issn:1000-0933.2002.12.019
    [13]
    罗跃辉, 阮晓红, 李荣富, 等.太湖西部湖区沉积物厌氧氨氧化潜在速率及其脱氮贡献研究[J].环境科学学报, 2017, 37(11):4187-4194. http://d.old.wanfangdata.com.cn/Periodical/hjkxxb201711018
    [14]
    STANFORD G, LEGG J O, DZIENIA S, et al.Denitrification and associated nitrogen transformations in soils[J].Soil Science, 1975, 120(2):147-152. http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=WK_LWW2017052520626950
    [15]
    孙云明, 宋金明.中国近海沉积物在生源要素循环中的功能[J].海洋环境科学, 2002, 21(1):26-33. doi: 10.3969/j.issn.1007-6336.2002.01.006
    [16]
    黄小平, 郭芳, 岳维忠.南海北部沉积物间隙水中营养盐研究[J].热带海洋学报, 2006, 25(5):43-48. doi: 10.3969/j.issn.1009-5470.2006.05.008
    [17]
    WEBB A P, EYRE B D.Effect of natural populations of burrowingthalassinidean shrimp on sediment irrigation, benthic metabolism, nutrient fluxes and denitrification[J].Marine Ecology Progress Series, 2004, 268:205-220. doi: 10.3354/meps268205
    [18]
    CHENG X L, HOU L J, LIU M, et al.Inorganic nitrogen exchange across the sediment-water interface in the eastern Chongming tidal flat of the Yangtze Estuary[J].Environmental Earth Sciences, 2015, 74(3):2173-2184. doi: 10.1007/s12665-015-4207-z
    [19]
    MORTIMER R J G, KROM M D, WATSON P G, et al.Sediment-water exchange of nutrients in the intertidal zone of the Humber estuary, UK[J].Marine Pollution Bulletin, 1998, 37(3/4/5/6/7):261-279. doi: 10.1016-S0025-326X(99)00053-3/
    [20]
    WANG J, CHEN Z L, WANG D Q, et al.Evaluation of dissolved inorganic nitrogen eliminating capability of the sediment in the tidal wetland of the Yangtze Estuary[J].Journal of Geographical Sciences, 2009, 19(4):447-460. doi: 10.1007/s11442-009-0447-8
  • Related Articles

    [1]PENG Xiuqiang, ZHANG Gang, YAN Yuru, YAO Caihua, LIU Qun, TANG Qian, LIANG Feigang. Microplastics in surface sediments of Yancheng coastal wetlands of Jiangsu province, China: distribution characteristics and ecological risk assessment[J]. Chinese Journal of MARINE ENVIRONMENTAL SCIENCE, 2024, 43(2): 320-328. DOI: 10.12111/j.mes.2023-x-0204
    [2]LI Shu-juan, DING Jia-qi, SUI Yu-zheng. Mechanism and path of the value realization of blue carbon sink of coastal wetlands in China from perspective of carbon sink trading[J]. Chinese Journal of MARINE ENVIRONMENTAL SCIENCE, 2023, 42(1): 55-63. DOI: 10.12111/j.mes.2021-x-0275
    [3]WANG Yun-qian, LUO Chang, SONG Guo-dong, LIU Su-mei, ZHANG Gui-ling. Distributions and fluxes of dissolved nitrous oxide in the Bohai Sea in autumn and winter and their influencing factors[J]. Chinese Journal of MARINE ENVIRONMENTAL SCIENCE, 2023, 42(1): 4-12. DOI: 10.12111/j.mes.2022-x-0009
    [4]LEI Wei, GAO Dong-xu, XING Qing-hui, LIAO Guo-xiang, SHANGGUAN Kui-xing, CHEN Peng-fei, CONG Pi-fu, LIU Chang-an. Waterfowl resource assessment during spring migration in Yingkou coastal wetland, China[J]. Chinese Journal of MARINE ENVIRONMENTAL SCIENCE, 2022, 41(1): 106-112. DOI: 10.12111/j.mes.20200160
    [5]LIAO Li-rong, WU Ming-yue, DAI Zi-yi, LIANG Jia-hui, ZUO Ping. Research analysis of carbon budgets in coastal wetlands based on bibliometrics[J]. Chinese Journal of MARINE ENVIRONMENTAL SCIENCE, 2022, 41(1): 32-39, 58. DOI: 10.12111/j.mes.20210016
    [6]WU Ting-ting, ZHANG Guang-shuai, YAN Ji-shun, CAI Yue-yin, FANG Hai-chao, SUN Jia-wen, YU Yong-hai. Dynamic evolvement of landscape pattern and its driving forces in Yalujiang delta coastal wetland during the last 30 years[J]. Chinese Journal of MARINE ENVIRONMENTAL SCIENCE, 2021, 40(5): 683-689, 698. DOI: 10.12111/j.mes.20200154
    [7]CHEN Chen, MA Yi, HU Ya-bin, ZHANG Jing-yu. A Convolution neural network model with adaptive learning rate and its application-a case study of remote sensing classification of coastal wetland[J]. Chinese Journal of MARINE ENVIRONMENTAL SCIENCE, 2019, 38(4): 621-627. DOI: 10.12111/j.mes20190421
    [8]JIANG Yang, LIU Chang-an, LIU Yu-an, YU Cai-fen, SHANGGUAN Kui-xing. Driving forces and landscape change analysis of coastal wetland in the Dalian Jinpu Newly Developed Area[J]. Chinese Journal of MARINE ENVIRONMENTAL SCIENCE, 2018, 37(5): 748-752. DOI: 10.12111/j.cnki.mes20180518
    [9]CHEN Peng-fei, LIU Chang-an, ZHANG Yue, ZHANG Yan-hua, LU Wei-zhi, ZHOU Sheng-ling, HAN Ming-fu, YU Cai-fen. Biomass estimating medels established for coastal Tamarix chinensis[J]. Chinese Journal of MARINE ENVIRONMENTAL SCIENCE, 2016, 35(4): 551-556. DOI: 10.13634/j.cnki.mes20160412
    [10]LIU Li-wei, ZHANG Yin-long, WANG Hui, SHI Jian-qiao, PI Yu-fei. Variation of landscape pattern in Jiangsu Yancheng coastal wetland 1983~2013[J]. Chinese Journal of MARINE ENVIRONMENTAL SCIENCE, 2015, 34(1): 93-100. DOI: 10.13634/j.cnki.mes.2015.01.017
  • Cited by

    Periodical cited type(1)

    1. 王艳明,郭云水,王锐. 基于灰色多元变权组合预测模型对山东省海水养殖产量预测. 海洋科学. 2024(03): 50-63 .

    Other cited types(1)

Catalog

    Article Metrics

    Article views (8559) PDF downloads (78) Cited by(2)
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return