设施土壤溶解性有机质含量和质量对不同碳组分有机肥的响应
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1.江苏省农业科学院农业资源与环境研究所;2.国家农业环境六合观测实验站;3.江苏大学环境与安全工程学院

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国家重点研发计划项目 (2023YFD1702200)、国家自然科学基金项目 (41807047)


Response of Dissolved Organic Matter Content and Quality in Greenhouse Soils to the Application of Organic Fertilizers with Various Carbon Components
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1.Institute of Agricultural Resources and Environment, Jiangsu Academy of Agricultural Sciences;2.National Agricultural Experimental Station for Agricultural Environment, Luhe;3.School of the Environment and Safety Engineering, Jiangsu University

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National Key Research and Development Program of China (No. 2023YFD1702200), and the National Natural Science Foundation of China (41807047)

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    摘要:

    溶解性有机质(DOM)是土壤碳库中最活跃的功能组分,施用有机肥是设施土壤固碳培肥的有效措施。然而,关于设施土壤DOM含量和质量对有机肥的响应尚不清楚,阻碍了设施土壤活性碳库调控机理认知与有机肥精准施用技术的发展。利用田间试验,设置不施肥(CK)、单施化肥(F)以及3种不同碳组分特征有机肥替代30%化肥氮(秸秆有机肥FMs、鸡粪有机肥FMc、菇渣有机肥FMm)处理,探究设施菜地土壤表层和亚表层溶解性有机碳(DOC)、溶解性有机氮(DON)含量的响应,结合三维荧光光谱技术和平行因子分析方法,分析土壤DOM的荧光光谱特征参数与组分构成。结果表明,与CK相比,F处理对表层和亚表层土壤DOC含量均没有显著影响;仅显著增加了亚表层土壤DON的含量,增幅达到1.22倍。与F处理相比,活性碳组分含量最高的FMc处理显著提高表层土壤DOC和DON含量,增幅分别为44.2%和78.1%;但是FMs和FMm处理表层土壤仅DON含量显著增加。与CK相比,施用化肥和有机肥显著降低表层和亚表层土壤DOC/DON比值,且表层土壤DOM腐殖化系数(HIX)显著提高1.06倍~2.07倍,并在FMc处理达到最高;亚表层土壤DOM的荧光光谱特征参数对施肥均没有显著响应。DOC、DON含量与分子量较小的富里酸类组分显著负相关,而与分子量较大的胡敏酸、芳香类腐殖质组分显著正相关。综上所述,施用活性碳组分含量高的鸡粪有机肥,能够更有效地增加表层土壤DOC和DON的含量,提高表层土壤DOM腐殖化程度,增加亚表层土壤DOM抗分解组分比例,对于实现设施菜地全耕层土壤活性碳库的含量和质量“双提升”更有裨益。

    Abstract:

    【Objective】Dissolved organic matter (DOM) is the most active functional component in the soil carbon pool, and the application of organic fertilizer is an effective measure for carbon sequestration and soil fertility improvement in greenhouse soils. However, the response of DOM content and quality in greenhouse soils to organic fertilizer is still unclear, which hinders the elucidation of the regulation mechanisms of the active carbon pool in greenhouse soils and the development of precise application technologies for organic fertilizers.【Method】This study was conducted in situ and five treatments were included: no fertilization as control (CK), chemical fertilizer only (F), and three organic fertilizers with different carbon components replacing 30% of chemical N fertilizer (composted straw replacing 30% of chemical N, FMs; chicken manure replacing 30% of chemical N fertilizer, FMc; and spent mushroom replacing 30% of chemical N fertilizer, FMm). The content of dissolved organic carbon (DOC) and dissolved organic nitrogen (DON) were studied in the surface and subsurface layers of greenhouse soils under vegetable cultivation. Combined with three-dimensional fluorescence spectroscopy technology and parallel factor analysis method, the fluorescence spectral characteristic parameters and chemical composition of DOM in soil were analyzed.【Result】Compared with CK, the F treatment had no significant effect on the DOC content in both the surface and subsurface soil; it only significantly increased the DON content in the subsurface soil, with an increase of 1.22-folds. The results showed that compared with F, the FMc organic fertilizer with the highest content of labile carbon components significantly increased the DOC and DON content by 44.2% and 78.1%, respectively, in the surface soil. However, only the DON content in the surface soil significantly increased under the FMs and FMm treatments. Compared with CK, the application of chemical and organic fertilizers significantly reduced the DOC/DON ratio in the surface and subsurface soils, and the humification index (HIX) of DOM in the surface soil significantly increased by 1.06 to 2.07-folds, reaching the highest in the FMc treatment. Also, the fluorescence spectral characteristics of DOM in the subsurface soil did not significantly respond to fertilization. In addition, the content of DOC and DON were significantly negatively correlated with fulvic acid-like components with low molecular weight, while significantly positively correlated with humic acid and aromatic components with high molecular weight.【Conclusion】In summary, the application of chicken manure rich in labile carbon components can more effectively increase the content of DOC and DON and the humification degree of DOM in the surface soil, and increase the proportion of refractory components of DOM in the subsurface soil. Thus, it is more beneficial to apply chicken manure to achieve the "double improvement" of the content and quality of labile carbon pools in the entire tillage layer of greenhouse soils under vegetable cultivation.

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徐烨红,巴雯雯,王炫清,陆超,罗佳,马艳.设施土壤溶解性有机质含量和质量对不同碳组分有机肥的响应[J].土壤学报,DOI:10.11766/trxb202411190446,[待发表]
Xu Yehong, Ba Wenwen, Wang Xuanqing, Lu Chao, Luo Jia, Ma Yan. Response of Dissolved Organic Matter Content and Quality in Greenhouse Soils to the Application of Organic Fertilizers with Various Carbon Components[J]. Acta Pedologica Sinica, DOI:10.11766/trxb202411190446,[In Press]

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  • 收稿日期:2024-11-19
  • 最后修改日期:2025-02-19
  • 录用日期:2025-03-31
  • 在线发布日期: 2025-05-20
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