Dynamics of physically-separated soil organic carbon pools assessed from δ13C changes under 25 years of cropping systems

被引:22
|
作者
Dou, Xiaolin [1 ,2 ]
Cheng, Xiaoli [3 ]
He, Ping [2 ]
Zhu, Ping [4 ]
Zhou, Wei [2 ]
Wang, Ligang [2 ]
机构
[1] Chinese Acad Sci, Res Ctr Ecoenvironm Sci, State Key Lab Urban & Reg Ecol, Beijing 100085, Peoples R China
[2] Chinese Acad Agr Sci, Inst Agr Resources & Reg Planning, Beijing 100081, Peoples R China
[3] Chinese Acad Sci, Wuhan Bot Garden, Wuhan 430074, Hubei, Peoples R China
[4] Jilin Acad Agr Sci, Gongzhuling 130124, Peoples R China
关键词
Continuous maize cropping; Maize-soybean rotation; delta C-13; Soil aggregates; Density fractionation; Soil C turnover; LONG-TERM FERTILIZATION; NITROGEN DYNAMICS; SOYBEAN CROPS; MATTER; CHINA; SEQUESTRATION; DECOMPOSITION; FRACTIONS; AGGREGATE; TURNOVER;
D O I
10.1016/j.still.2017.05.009
中图分类号
S15 [土壤学];
学科分类号
0903 ; 090301 ;
摘要
Quantification of the dynamics of soil organic carbon (SOC) pools under the influence of different cropping systems is essential for predicting carbon (C) sequestration. We combined soil fractionation with C isotope analyses to investigate the SOC dynamics of the various soil fractions in a black soil of Northeast China after 25 years of tillage. Soil samples from the initial condition (CK) and 2 cropping treatments including continuous maize cropping (MM), maize-soybean rotation (MS) were separated into 4 aggregate sizes (< 53 mu m, 250-53 mu m, 2000-250 mu m, and > 2000 pm) and 3 density fractions: free light fraction (LF), intra-aggregate particulate organic matter (iPOM), and mineral-associated organic matter (mSOM). The 25 years of cropping with manure application significantly increased the SOC storage, mainly by enhancing the soil C of the macroaggregates (2000-250 pm), with most of the C stored in the iPOM (62.01-90.32%). The MS system was more beneficial for the SOC accumulation in macroaggregates (> 250 pm) than the MM system because of enhanced SOC in heavier fractions (iPOM and mSOM); this was probably induced by the differentiation of the below ground humification rate between soybean and maize roots, while the MM system may be a more effective measure for future soil C sequestration because most of the stable C is stored in the small size fraction (< 53 mu m). The delta C-13 values indicated that, among aggregate sizes, the fastest soil C turnover occurred in microaggregates (250-53 mu m). Moreover, C in the MS soils had a faster turnover rate than in the MM soils.
引用
收藏
页码:6 / 13
页数:8
相关论文
共 50 条
  • [41] Dynamics of soil carbon to nitrogen ratio changes under long-term fertilizer addition in wheat-corn double cropping systems of China
    Cong, R. H.
    Wang, X. J.
    Xu, M. G.
    Zhang, W. J.
    Xie, L. J.
    Yang, X. Y.
    Huang, S. M.
    Wang, B. R.
    EUROPEAN JOURNAL OF SOIL SCIENCE, 2012, 63 (03) : 341 - 350
  • [42] Variation of δ13C and soil organic carbon under different precipitation gradients in alpine grassland on the Qinghai-Tibetan Plateau
    Zhao, YunFei
    Wang, Xia
    Li, Jia
    Xiao, JinJin
    Hao, ZhiGuo
    Wang, KaiChang
    Jiang, SiLong
    Zhou, XiaoHe
    Liu, HuiYing
    JOURNAL OF SOILS AND SEDIMENTS, 2022, 22 (08) : 2219 - 2228
  • [43] Turnover and availability of soil organic carbon under different Mediterranean land-uses as estimated by 13C natural abundance
    Novara, A.
    Gristina, L.
    Kuzyakov, Y.
    Schillaci, C.
    Laudicina, V. A.
    La Mantia, T.
    EUROPEAN JOURNAL OF SOIL SCIENCE, 2013, 64 (04) : 466 - 475
  • [44] Impacts induced by the combination of earthworms, residue and tillage on soil organic carbon dynamics using 13C labelling technique and X-ray computed tomography
    Guo, Yafei
    Fan, Ruqin
    McLaughlin, Neil
    Zhang, Yan
    Chen, Xuewen
    Wu, Donghui
    Zhang, Xiaoping
    Liang, Aizhen
    SOIL & TILLAGE RESEARCH, 2021, 205 (205)
  • [45] Contribution of above- versus belowground C inputs of maize to soil organic carbon: Conclusions from a 13C/12C-resolved resampling campaign of Belgian croplands after two decades
    Xu, Hui
    Vandecasteele, Bart
    De Neve, Stefaan
    Boeckx, Pascal
    Sleutel, Steven
    GEODERMA, 2021, 383
  • [46] Dynamics of Soil Organic Carbon and CO2 Flux under Cover Crop and No-Till Management in Soybean Cropping Systems of the Mid-South (USA)
    Firth, Alexandra G.
    Brooks, John P.
    Locke, Martin A.
    Morin, Dana J.
    Brown, Ashli
    Baker, Beth H.
    ENVIRONMENTS, 2022, 9 (09)
  • [47] Natural 13C abundance and soil carbon dynamics under long-term residue retention in a no-till maize system
    Jha, Pramod
    Verma, S.
    Lal, R.
    Eidson, C.
    Dheri, G. S.
    SOIL USE AND MANAGEMENT, 2017, 33 (01) : 90 - 97
  • [48] Carbon fluxes from plants to soil and dynamics of microbial immobilization under plastic film mulching and fertilizer application using 13C pulse-labeling
    An, Tingting
    Schaeffer, Sean
    Li, Shuangyi
    Fu, Shifeng
    Pei, Jiubo
    Li, Hui
    Zhuang, Jie
    Radosevich, Mark
    Wang, Jingkuan
    SOIL BIOLOGY & BIOCHEMISTRY, 2015, 80 : 53 - 61
  • [49] Limited carbon inputs from plants into soils in arid ecosystems: a study of changes in the δ13C in the soil-root interface
    Rovira, Pere
    Aranjuelo, Iker
    Nowak, Robert S.
    Nogues, Salvador
    PLANT AND SOIL, 2019, 443 (1-2) : 307 - 322
  • [50] Divergent responses of soil aggregate-associated organic carbon fractions and carbon flow pathways to land-use changes in karst ecosystems: Insights from δ13C signature
    Zhu, Xiai
    Shen, Youxin
    Yuan, Xia
    Singh, Ashutosh Kumar
    Jin, Liya
    Yang, Bin
    Yuan, Chuang
    Jiang, Xiaojin
    Liu, Wenjie
    CATENA, 2025, 249