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大颗粒活性腐殖酸肥料对苹果园土壤团聚体及有机碳的影响

[Effects of large-grained activated humic acid fertilizer on soil aggregates and organic carbon in apple orchard soil].

作者信息

Liu Yan, Tang Ya-Fu, Yang Yue-Chao, Jiang Yuan-Mao, Cheng Dong-Dong

机构信息

National Engineering Research Center for Efficient Utilization of Soil and Fertilizer Resources, College of Resources and Environment, Shandong Agricultural University, Tai'an 271018, Shandong, China.

College of Horticulture Science and Engineering, Shandong Agricultural University, Tai'an 271018, Shandong, China.

出版信息

Ying Yong Sheng Tai Xue Bao. 2022 Apr;33(4):1021-1026. doi: 10.13287/j.1001-9332.202204.012.

Abstract

The new large-grained activated humic acid fertilizer (LAF) can significantly reduce the amount of chemical fertilizer application and stable fruit yield. Understanding its impacts on soil aggregates and organic carbon is an important basis for revealing its role in driving soil structure of apple orchard. There were four LAF treatments: LAF (full fertilization, fertilization period and mass ratio (the same below), germination stage: fruit expansion stage: maturity stage=3:4:3), LAF (full fertilization, germination stage: fruit expansion stage: maturity stage=2:3:5), LAF (fertilizer application reduction by 1/4, germination stage: fruit expansion stage: maturity stage=2:3:5), LAF (fertilizer application reduction by 1/3, germination stage: fruit expansion stage: maturity stage=2:3:5); with no fertilization as control (CK). In a four-year pot experiment, we examined the composition, stabi-lity and organic carbon content of soil aggregates under different fertilization treatments. The results showed that: 1) compared with CK, each treatment of LAF increased the content of >2 mm and 2-0.25 mm aggregate by 53.4%-77.5% and 12.3%-17.0%, respectively. The application of LAF significantly increased the content of soil water stable aggregates, and such effects were positively related with application amount. The content of soil water stable aggregate was the highest in the LAF treatment. 2) There was no significant difference in aggregate content of each particle size among LAF treatments, with the proportion of aggregate content of 2-0.25 mm particle size being the highest. 3) Compared with CK, all LAF treatments significantly increased the average weight diameter (MWD) and geometric mean diameter (GMD), and reduced the fractal dimension (). LAF treatment had the highest MWD and GMD values, and had the strongest effect on the stability of soil aggregates. 4) Except for LAF treatment, the content of soil organic carbon in other LAF treatments was significantly higher than that in CK, and the content of soil organic carbon in LAF treatment was the highest. All LAF treatments increased the organic carbon content of soil aggregates with each particle size. LAF, LAF, and LAF treatments significantly increased the organic carbon of aggregates with particle size >2 mm. Particle size >2 mm had the highest contribution to the total organic carbon. The contribution rate of water stable large aggregate organic carbon to total organic carbon of LAF treatment was significantly higher than that of CK, which was all higher than 66.0%, and that of LAF treatment was the highest. In conclusion, the application of LAF enhanced the formation and stability of water stable aggregates and increased organic carbon content of aggregates in apple orchard soil, with the best performance of the full application. The application of LAF could be used as an effective measure to improve soil structure and fertility in apple orchard.

摘要

新型大颗粒活性腐殖酸肥料(LAF)可显著减少化肥施用量并稳定果实产量。了解其对土壤团聚体和有机碳的影响是揭示其在苹果园土壤结构形成中作用的重要依据。设置了4种LAF处理:LAF(全量施肥,施肥时期及质量比(下同),萌芽期∶果实膨大期∶成熟期 = 3∶4∶3)、LAF(全量施肥,萌芽期∶果实膨大期∶成熟期 = 2∶3∶5)、LAF(减量1/4施肥,萌芽期∶果实膨大期∶成熟期 = 2∶3∶5)、LAF(减量1/3施肥,萌芽期∶果实膨大期∶成熟期 = 2∶3∶5);以不施肥为对照(CK)。通过为期4年的盆栽试验,研究了不同施肥处理下土壤团聚体的组成、稳定性及有机碳含量。结果表明:1)与CK相比,各LAF处理>2 mm和2~0.25 mm团聚体含量分别增加了53.4%~77.5%和12.3%~17.0%。LAF施用显著增加了土壤水稳性团聚体含量,且该效应与施用量呈正相关。LAF处理的土壤水稳性团聚体含量最高。2)LAF各处理间各粒径团聚体含量差异不显著,其中2~0.25 mm粒径团聚体含量占比最高。3)与CK相比,所有LAF处理均显著增加了平均重量直径(MWD)和几何平均直径(GMD),降低了分形维数()。LAF处理的MWD和GMD值最高,对土壤团聚体稳定性的影响最强。4)除LAF处理外,其他LAF处理的土壤有机碳含量均显著高于CK,且LAF处理的土壤有机碳含量最高。所有LAF处理均增加了各粒径土壤团聚体的有机碳含量。LAF、LAF和LAF处理显著增加了粒径>2 mm团聚体的有机碳含量。粒径>2 mm的团聚体对总有机碳的贡献最高。LAF处理水稳性大团聚体有机碳对总有机碳的贡献率显著高于CK,均高于66.0%,且LAF处理最高。综上所述,LAF的施用增强了苹果园土壤水稳性团聚体的形成与稳定性,增加了团聚体有机碳含量,其中全量施用表现最佳。LAF的施用可作为改善苹果园土壤结构和肥力的有效措施。

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