农田黑土自然恢复过程中土壤有机碳及其组分的变化特征
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1.黑龙江八一农垦大学;2.中国科学院东北地理与农业生态研究所黑土地保护与利用重点实验室

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国家重点基础研究发展计划(973计划)


Change characteristic of Soil Organic Carbon and Its Fractions during the Natural Restoration of Cultivated Black Soil
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1.Heilongjiang Bayi Agricultural University;2.State Key Laboratory of Black Soils Conservation and Utilization,Northeast Institute of Geography and Agroecology,Chinese Academy of Sciences

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    摘要:

    农田恢复为自然草地的过程能够显著提高土壤有机碳(SOC)含量。为探究植被恢复过程中黑土SOC的变化规律,基于19年的长期定位试验,研究农田黑土恢复为草原化草甸植被过程中SOC数量及其组分随时间的动态变化,并与农田(CL)和无植被覆盖的裸地(BL)进行对比分析。结果表明:(1)与初始土壤相比,自然恢复草地(GL)使表层(0~20 cm)SOC含量显著增加了26.19%,年均增长率为1.38%(0.41g·kg-1·a-1),而BL处理的SOC含量显著降低了7.99%,CL处理则无显著变化;(2)从整个0~100 cm土层来看,GL不仅提升了表层SOC含量,还显著增加了20~60 cm土层的SOC含量,其中0~20、20~40和40~60 cm土层的增幅分别为26.19%、12.08%和8.70%,而CL和BL处理对20 cm以下土层的SOC含量无显著影响;(3)与初始土壤相比,GL处理使土壤游离态轻组碳(fLFC)、闭蓄态轻组碳(oLFC)和重组碳(HFC)含量分别增加了199.45%、112.83%和12.00%,同时提升了fLFC和oLFC两个活性组分的比例,降低了HFC的比例;(4)从腐殖质组分来看,GL处理使土壤富里酸(FA)、胡敏酸(HA)和胡敏素(HM)含量分别增加了74.82%、29.69%和11.46%,并降低了胡敏酸与富里酸比值(HA/FA),表明土壤有机质的腐质化程度有所下降。综上所述,农田长期恢复能够有效提升黑土有机碳含量,并促进活性SOC组分的积累。

    Abstract:

    【Objective】The restoration of cultivated land to natural grassland can increase soil organic carbon (SOC) content. This study aimed to investigate the changes in black soil organic carbon during vegetation restoration.【Method】Based on a 19-year long-term field experiment, the temporal dynamics of SOC and its fractions were examined during the restoration of cultivated black soil to natural grassland vegetation (GL), with comparisons made to continuous cultivated land (CL) and bare land (BL) without vegetation cover.【Result】The results showed that: (1) Compared to the initial soil, the SOC content in the topsoil (0-20 cm) increased by 26.19% in the GL treatment, with an annual growth rate of 1.38% (0.41 g·kg-1·a-1). In contrast, the SOC content decreased by 7.99% in the BL treatment, while no significant change was observed in the CL treatment; (2) Across the entire 0-100 cm soil profile, GL not only significantly increased the SOC content in the topsoil (0-20 cm), but also increased the SOC content in the subsoil layers (20-60 cm). The increments in the 0-20, 20-40 and 40-60 cm layers were 26.19%, 12.08% and 8.70%, respectively. However, no significant changes in SOC content were observed below 20 cm in the CL and BL treatments; (3) Compared to the initial soil, the GL treatment increased the carbon contents of free light fraction (fLFC), occluded light fraction (oLFC) and heavy fraction (HFC) by 199.45%, 112.83% and 12.00%, respectively. Additionally, GL increased the proportions of fLFC and oLFC while reducing the proportion of HFC in the SOC; (4) For humus fractions, the GL treatment increased the contents of fulvic acid (FA), humic acid (HA) and humin (HM) by 74.82%, 29.69% and 11.46%, respectively, and decreased the HA/FA ratio, indicating a reduction in the humification degree of soil organic matter.【Conclusion】In conclusion, long-term restoration of cultivated land can effectively increase the organic carbon content of black soil and promote the accumulation of labile SOC fractions.

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武雅楠,邹文秀,王守宇,陆欣春,韩晓增.农田黑土自然恢复过程中土壤有机碳及其组分的变化特征[J].土壤学报,DOI:10.11766/trxb202503140117,[待发表]
wuyanan, ZOU Wenxiu, WANG Shouyu, LU Xinchun, Han Xiaozeng. Change characteristic of Soil Organic Carbon and Its Fractions during the Natural Restoration of Cultivated Black Soil[J]. Acta Pedologica Sinica, DOI:10.11766/trxb202503140117,[In Press]

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  • 收稿日期:2025-03-14
  • 最后修改日期:2025-05-11
  • 录用日期:2025-06-23
  • 在线发布日期: 2025-07-14
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