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Long‐Term Biochar Application Improved Aggregate K Availability by Affecting Soil Organic Carbon Content and Composition

生物炭 土壤碳 作文(语言) 期限(时间) 总有机碳 骨料(复合) 碳纤维 环境科学 环境化学 化学 土壤科学 土壤水分 材料科学 有机化学 热解 纳米技术 物理 哲学 复合材料 复合数 量子力学 语言学
作者
Zhengrong Bao,Wanning Dai,Han Li,Zhengfeng An,Yu Lan,Hang Jing,Jun Meng,Zunqi Liu
出处
期刊:Land Degradation & Development [Wiley]
被引量:1
标识
DOI:10.1002/ldr.5285
摘要

ABSTRACT Straw biochar is an effective amendment at improving soil aggregate structure and increasing soil carbon and potassium (K) content. However, little information is available on the relationship between soil organic carbon (SOC) and aggregate‐associated K distribution under long‐term biochar application conditions. To address this, a field trial established in 2013 was used to examine the impact of biochar (B 0 : 0 and B 1 : 2.625 t ha −1 year −1 ) and K fertilizer (K 0 : 0 and K 1 : 60 kg ha −1 year −1 ) on the variation in soil aggregate K and reveal the associated influencing factors. A total of four treatments (B 0 K 0 , B 0 K 1 , B 1 K 0 , and B 1 K 1 ) were included in this study. The soil analysis results obtained in 2021 showed that after 9 years' amendment, B 1 K 1 increased the aggregate exchangeable K (EK) and nonexchangeable K (NEK) pools by 27.40% and 39.55%, respectively, and the increment was primarily because biochar enhanced > 0.25 mm aggregate fractions and strengthened soil K + adsorption capacity, which benefit from a synergistic increase in SOC and humic acid (HA) content by biochar. 13 C NMR analysis showed that long‐term biochar applications altered the chemical composition of SOC, with an outcome of increased aromaticity and hydrophobicity but decreased the lipidation of SOC, indicating that the complexity of SOC molecular structure was enhanced and eventually contributed to strengthening the macroaggregates stability and soil K + adsorption capacity. The correlation analysis revealed that soil aggregate EK and NEK contents were positively correlated with SOC and HA contents, which further proved that increase of SOC and soil HA is a significant mechanism for biochar ameliorate soil aggregate‐associated K availability.

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