[Effects of different tillage measures on soil organic carbon in dryland wheat fields on the Loess Plateau, Northwest China based on meta-analysis].

Q3 Environmental Science
Xiao Huang, Long-Xin Wang, Tian-Jing Xu, Qiu-Yan Yan, Shuang-Dui Yan, Fei Dong, Chen Qi, Min-Min Zhang
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引用次数: 0

Abstract

To evaluate the effects of tillage measure on soil organic carbon (SOC) and influence degree of various factors on relative change rate of SOC at regional scale, we conducted a meta-analysis to investigate the impacts of tillage measures (CK, traditional deep tillage without straw return; NTS, no tillage with straw return; NT, no tillage without straw return; TS, traditional tillage with straw return; SS, subsoiling tillage) on SOC content and influence factors (climate conditions, soil types, cultivation types, and initial soil physicochemical properties) on relative change rate of SOC in dryland wheat fields on the Loess Plateau, based on literatures published during 2000-2023. Results indicated that NT, NTS, SS and TS performed varies positive effect on SOC content in 0-20 cm soil layer compared with CK. In addition, greater enhancement of SOC were obtained in conditions of loessal soil, mid-temperate zone, average annual temperature of ≤10 ℃ and average annual rainfall of ≤500 mm. It was favorable to carbon sequestration when the initial SOC ≥10 g·kg-1, alkaline nitrogen ≥60 mg·kg-1, available phosphorus ≥20 mg·kg-1 and available potassium ≥120 mg·kg-1. However, accumulation of SOC could be weakened under higher total nitrogen content (≥1 g·kg-1). In conclusion, NTS treatment performs better carbon sequestration effect in the topsoil and can be used as suitable tillage measure in dryland wheat fields on the Loess Plateau region.

[基于meta分析的黄土高原旱地小麦不同耕作方式对土壤有机碳的影响]。
为评价不同耕作措施对土壤有机碳(SOC)的影响及各因子对土壤有机碳相对变化率的影响程度,在区域尺度上对不同耕作措施(CK、传统深耕不秸秆还田;免耕秸秆还田;NT,不耕不还草;TS,秸秆还田的传统耕作;基于2000-2023年发表的文献资料,分析了黄土高原旱地小麦土壤有机碳含量和影响因素(气候条件、土壤类型、耕作类型和土壤初始理化性质)对土壤有机碳相对变化率的影响。结果表明,与对照相比,NT、NTS、SS和TS对0 ~ 20 cm土壤有机碳含量有不同程度的正向影响。此外,黄土、中温带、年平均温度≤10℃、年平均降雨量≤500 mm的土壤有机碳增加幅度较大。初始有机碳≥10 g·kg-1、碱氮≥60 mg·kg-1、速效磷≥20 mg·kg-1、速效钾≥120 mg·kg-1有利于固碳。较高的总氮含量(≥1 g·kg-1)会削弱有机碳的积累。综上所述,NTS处理具有较好的表层固碳效果,可作为黄土高原区旱地小麦的适宜耕作措施。
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来源期刊
应用生态学报
应用生态学报 Environmental Science-Ecology
CiteScore
2.50
自引率
0.00%
发文量
11393
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