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黄土丘陵沟壑区不同覆被类型梯田措施土壤有机碳增汇及影响因素

成辉 喻恺阳 李智广 冯浩 张晓萍 徐佳 黄智军 白云斌

中国水土保持科学2025,Vol.23Issue(5):17-24,8.
中国水土保持科学2025,Vol.23Issue(5):17-24,8.DOI:10.16843/j.sswc.2024143

黄土丘陵沟壑区不同覆被类型梯田措施土壤有机碳增汇及影响因素

Soil organic carbon sequestration benefit and influencing factors in terraces with different cover types of soil in the loess hilly region

成辉 1喻恺阳 2李智广 3冯浩 4张晓萍 4徐佳 5黄智军 6白云斌7

作者信息

  • 1. 中国科学院教育部水土保持与生态环境研究中心,712100,陕西杨凌||中国科学院水利部水土保持研究所,712100,陕西杨凌||中国科学院大学,100049,北京||水利部水土保持监测中心,100053,北京
  • 2. 水利部水土保持监测中心,100053,北京||西北农林科技大学水土保持研究所黄土高原土壤侵蚀与旱地农业国家重点实验室,712100,陕西杨凌||黄河流域水土保持生态环境监测中心,710021,西安
  • 3. 水利部水土保持监测中心,100053,北京
  • 4. 中国科学院教育部水土保持与生态环境研究中心,712100,陕西杨凌||中国科学院水利部水土保持研究所,712100,陕西杨凌||中国科学院大学,100049,北京||西北农林科技大学水土保持研究所黄土高原土壤侵蚀与旱地农业国家重点实验室,712100,陕西杨凌
  • 5. 黄河流域水土保持生态环境监测中心,710021,西安
  • 6. 南昌工程学院水土保持学院,330099,南昌
  • 7. 延安市吴起县吴起镇林业站,717600,陕西延安
  • 折叠

摘要

Abstract

[Background]Terraces and vegetative measures significantly enhance soil organic carbon(SOC)levels and improve the efficiency of SOC sequestration,serving as crucial soil and water conservation strategies.However,there is limited research on the differences and influencing factors of SOC sequestration effects when these two measures are combined.Thus,our study analyzed the variations in SOC and its primary influencing factors across different vegetation cover types in terraces and evaluated the SOC sequestration benefits of terraces.[Methods]We selected 96 sample plots in Wuqi county,Shaanxi province,including 37 terraced croplands(TC),23 Terraced grasslands(TG),18 terraced forestlands(TF),10 terraced orchards(OL),and 8 slope croplands(SC)on hillsides.Soil samples were collected from soil layers at depths of 0-10,10-20,20-40,40-60,60-80,and 80-100 cm,totaling 576 soil samples.In the laboratory,SOC was determined by potassium dichromate volumetric method.Bulk density and soil water content were measured using oven drying method.Soil mechanical composition was analyzed with a laser particle size analyzer.Then,we analyzed the significant differences and correlations among the data using the Games-Howell method and Pearson correlation analysis.[Results]1)The SOC in the 0-100 cm soil layer of the four types of land cover under the terrace ranges from 2.34 to 3.42 g/kg,with the order of TF(3.42±1.85)g/kg>OL(2.89±0.99)g/kg>TG(2.84±1.20)g/kg>TC(2.34±0.95)g/kg.2)After SC is convert into TF,TG,TO,and TC,it has improved the carbon sequestration benefits of soil.The carbon sequestration of TF,TO,TG,and TC is 12.01,8.78,8.13,and 2.13 t/hm2,respectively.3)The vertical distribution of SOC sequestration benefits differs among various land cover types.The SOC sequestration benefit of TC,TG,TO,and TF is 0.40,3.30,4.29,and 7.03 t/hm2 and 1.48,2.99,3.07,and 3.05 t/hm2 in the 0-40 cm and 40-100 cm soil layer,respectively.The SOC sequestration benefit of terraced fields is higher in the 60-100 cm soil layer than the 0-40 cm soil layer.However,when terracing is combined with vegetation measures,the trend is reversed.4)The SOC of TF,TG,TO TC,and SC have a significant negative correlation with soil bulk density and an extremely significant positive correlation with soil moisture content,respectively.However,compared to SC,only the soil moisture content of TC and TO shows a significant increase.[Conclusions]The implementation of terrace measures influences SOC sequestration benefits by increasing soil moisture,especially enhancing the sequestration in deep soil layers.When terraces are combined with vegetation measures,the SOC sequestration benefits are further enhanced,with a particularly greater impact on the sequestration benefits of surface soil.The results of our study could provide strong support for achieving the effects of relevant soil and water conservation measures and developing SOC sequestration methodology.

关键词

水土保持/土壤有机碳汇/梯田/监测评价/黄土高原

Key words

soil and water conservation/soil organic carbon sequestration/terrace/monitoring and evaluation/Loess Plateau

分类

农业科学

引用本文复制引用

成辉,喻恺阳,李智广,冯浩,张晓萍,徐佳,黄智军,白云斌..黄土丘陵沟壑区不同覆被类型梯田措施土壤有机碳增汇及影响因素[J].中国水土保持科学,2025,23(5):17-24,8.

基金项目

国家重点研发计划项目"旱作土壤有机质与产能协同提升技术研发和应用"(2023YFD1900300) (2023YFD1900300)

中国水土保持科学

OA北大核心

2096-2673

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