Organic fertilization increased soil organic carbon stability and sequestration by improving aggregate stability and iron oxide transformation in saline-alkaline soil

碱土 化学 土壤碳 肥料 土壤水分 土壤有机质 土壤结构 土壤健康 土壤肥力 环境化学 总有机碳 农学 矿化(土壤科学) 氮气 土壤科学 环境科学 生物 有机化学
作者
Mengmeng Chen,Shirong Zhang,Lu Liu,Jiangong Liu,Xiaodong Ding
出处
期刊:Plant and Soil [Springer Science+Business Media]
卷期号:474 (1-2): 233-249 被引量:101
标识
DOI:10.1007/s11104-022-05326-3
摘要

PurposeThe poor soil structure and low stability of organic carbon limit the sustainable development of agriculture. The effect of organic fertilizer application on soil aggregates, soil organic carbon (SOC) functional groups, Fe oxides, SOC stability, and storage was assessed in saline-alkaline paddy soil.MethodsA 7-year field experiment was designed with organic fertilization in saline-alkaline soil of Yellow River Delta including (i) CK (no fertilizer), (ii) NPK (255, 28, and 190 kg ha−1 year−1 N, P, and K mineral fertilizers, respectively), (iii) NPKC1 (NPK + 450 kg C ha−1 year−1), and (iv) NPKC2 (NPK + 900 kg C ha−1 year−1).ResultsCompared with NPK treatment, the mean weight diameter (MWD) of soil aggregates in NPKC1 and NPKC2 treatments was increased by 27.8% and 41.1%, respectively. Soil amorphous Fe oxide (Feo) content was significantly increased with organic fertilizer addition, especially in small macro-aggregates. Meanwhile, aromatic-C was primarily distributed in small macro-aggregates, which could be retained in aggregate interfaces by forming aromatic-Fe complexes with soil Feo. Furthermore, the specific C mineralization rate (SCMR) in NPKC1 treatment was lower than that in other treatments, in which the lowest SCMR was found in small macro-aggregate. Compared with NPK treatment, SOC storage in NPKC1 and NPKC2 treatments was increased by 14.4% and 20.5%, respectively, which was due to the improvement of soil structure, organo-Fe complex formation, and reduction of soil C mineralization.ConclusionsThe combined organic and mineral fertilizer application was an optimized management practice to improve the C stability and sequestration in coastal saline alkaline paddy soil.Graphical abstract
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