Conservation tillage enhances both organic and inorganic carbon in dryland: Insights from a 20-year field experiment and meta-analysis

耕作 环境科学 领域(数学) 碳纤维 荟萃分析 土壤碳 农学 农林复合经营 土壤科学 生物 数学 土壤水分 纯数学 内科学 复合数 医学 算法
作者
Weiting Ding,Liangjie Sun,Zhiming Qi,Shengping Li,Vilim Filipović,Xueping Wu,Hailong He
出处
期刊:Agriculture, Ecosystems & Environment [Elsevier BV]
卷期号:393: 109845-109845 被引量:9
标识
DOI:10.1016/j.agee.2025.109845
摘要

Conservation tillage is widely recognized as a promising practice for sequestering soil organic carbon (SOC). However, its impact on soil inorganic carbon (SIC) remains less understood and has seldom been quantified. This study aimed to examine the effects of conservation tillage on soil carbon pools, focusing on SIC, by combining a 20-year field experiment in an arid-calcareous cropland of China with a meta-analysis of 76 pairwise data from 7 studies. The field experiment confirms that conservation tillage significantly increases carbon stock, with reduced tillage (RT) increasing SOC (25.09 %, 0–40 cm) and no-tillage (NT) increasing SIC (10.67 %, 0–20 cm). SOC and SIC exhibit a complementary relationship, whereby an increase in SOC effectively compensates for reduced SIC within RT. Notably, the proliferation of calcifying bacteria (e.g., Bacillus ) and reduced urease activity suggest that microbial-induced carbonate precipitation, a process known to be facilitated by these bacteria, may contribute significantly to SIC formation under NT. Agronomic practices, as well as soil abiotic and biotic factors, collectively influence SIC. The relative importance of these factors varies with soil depth: biotic variables effects weaken with depth, while abiotic variables increase. Furthermore, our meta-analysis reveals that the response of SIC to conservation tillage varies with climatic, edaphic, and agronomic factors. Arid regions benefit the most from NT in enhancing SIC stock (3.27 %). These findings provide valuable insights into how conservation tillage influences soil carbon, particularly SIC, and enhance our understanding of carbon dynamics in arid systems. ● Conservation tillage significantly improves soil properties in arid alkaline cropland. ● Reduced tillage develops soil organic carbon, while no-tillage (NT) increases soil inorganic carbon (SIC). ● NT is associated with an increase in ureolytic microbial abundance, potentially promoting carbonate precipitation. ● SIC is influenced by both biotic and abiotic factors. ● NT is a pivotal strategy for enhancing SIC sequestration in dryland agriculture.
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