• Journal of Natural Resources
  • Vol. 35, Issue 2, 460 (2020)
Dong-xue LI1, Yu-qin LI1, Ke-hao ZHANG1, Xu MA1, Shu-yan ZHANG2, Wei-hua LIU2, Chun-guang CHE2, and Bao-shan CUI1、*
Author Affiliations
  • 1State Key Laboratory of Water Environment Simulation, School of Environment, Beijing Normal University, Beijing 100875, China
  • 2Huanghekou Management Station, Shandong Yellow River Delta National Nature Reserve Administration, Dongying 257500, Shandong, China
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    DOI: 10.31497/zrzyxb.20200217 Cite this Article
    Dong-xue LI, Yu-qin LI, Ke-hao ZHANG, Xu MA, Shu-yan ZHANG, Wei-hua LIU, Chun-guang CHE, Bao-shan CUI. Characteristics of carbon and nitrogen distribution in typical tidal creeks of the Yellow River Delta[J]. Journal of Natural Resources, 2020, 35(2): 460 Copy Citation Text show less
    Location of the study area and sampling plots
    Fig. 1. Location of the study area and sampling plots
    Soil sediment and erosion measuring device
    Fig. 2. Soil sediment and erosion measuring device
    Temporal and spatial distribution of soil organic carbon contents of typical tidal creeks in the Yellow River Delta
    Fig. 3. Temporal and spatial distribution of soil organic carbon contents of typical tidal creeks in the Yellow River Delta
    Temporal and spatial distribution of soil total nitrogen contents of typical tidal creeks in the Yellow River Delta
    Fig. 4. Temporal and spatial distribution of soil total nitrogen contents of typical tidal creeks in the Yellow River Delta
    Temporal and spatial distribution of carbon nitrogen ratio of typical tidal creeks in the Yellow River Delta
    Fig. 5. Temporal and spatial distribution of carbon nitrogen ratio of typical tidal creeks in the Yellow River Delta
    Soil erosion deposition and erosion at different levels in typical tidal channel system of the Yellow River Delta in August and September
    Fig. 6. Soil erosion deposition and erosion at different levels in typical tidal channel system of the Yellow River Delta in August and September
    Salinity of typical grade creeks in the Yellow River Delta in July, August and September
    Fig. 7. Salinity of typical grade creeks in the Yellow River Delta in July, August and September
    The pH values of typical grade creeks in the Yellow River Delta in July, August and September
    Fig. 8. The pH values of typical grade creeks in the Yellow River Delta in July, August and September
    Dry weight of plant litter in August and September in the typical tidal channel system of the Yellow River Delta
    Fig. 9. Dry weight of plant litter in August and September in the typical tidal channel system of the Yellow River Delta
    Bulk density for typical tidal channel systems in the Yellow River Delta in July, August and September
    Fig. 10. Bulk density for typical tidal channel systems in the Yellow River Delta in July, August and September
    参数有机碳/
    (g·kg-1)
    总氮/
    (g·kg-1)
    碳氮比pH盐度/‰容重/
    (N·m3)
    沉积侵蚀
    综合量/cm
    有机碳/(g·kg-1)10.919**-0.2810.0430.702**-0.529**-0.258
    总氮/(g·kg-1)1-0.1770.0150.712**-0.625**-0.216
    碳氮比1-0.2440.0470.249-0.242
    pH1-0.059-0.244-0.123
    盐度/‰1-0.413**-0.439*
    容重/(N·m3)10.002*
    沉积侵蚀综合量/cm1
    Table 1. Correlations between soil carbon and nitrogen contents and physico-chemical factors in typical tidal creek system of the Yellow River Delta
    数量/棵种类
    盐地碱蓬柽柳盐角草
    七月一级36432
    八月一级
    九月一级
    33311
    29201
    七月二级6480
    八月二级
    九月二级
    6280
    5570
    七月三级24011
    八月三级
    九月三级
    23900
    23800
    Table 2. Plant species and quantity of typical tidal channel systemin July, August and September in Yellow River Delta
    Dong-xue LI, Yu-qin LI, Ke-hao ZHANG, Xu MA, Shu-yan ZHANG, Wei-hua LIU, Chun-guang CHE, Bao-shan CUI. Characteristics of carbon and nitrogen distribution in typical tidal creeks of the Yellow River Delta[J]. Journal of Natural Resources, 2020, 35(2): 460
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