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秸秆还田结合施用微生物菌剂对土壤团聚体及相关养分的影响

[Effects of straw-returning combined with application of microbial inoculants on soil aggregates and related nutrients].

作者信息

Pei Ya-Nan, Lyu Wei-Guang, Guo Tao, Bai Na-Ling, Li Shuang-Xi, Zhang Juan-Qin, Zhang Hai-Yun, Zhang Han-Lin

机构信息

Eco-environmental Protection Research Institute, Shanghai Academy of Agricultural Sciences, Shanghai 201403, China.

Key Laboratory of Low-carbon Green Agriculture in Southeastern China, Ministry of Agriculture and Rural Affairs, Shanghai 201403, China.

出版信息

Ying Yong Sheng Tai Xue Bao. 2023 Dec;34(12):3357-3363. doi: 10.13287/j.1001-9332.202312.018.

Abstract

We analyzed the particle size distribution of soil aggregates in 0-20 and 20-40 cm soil layers of rice-wheat rotation field based on a field plot test with two treatments, conventional straw returning (CK) and straw returning with the addition of straw decomposition promoting microbial inoculants (IT). We evaluated the water stability indices of soil aggregates (the number of soil water stable large aggregates , the average weight diameter MWD, and the geometric average diameter GMD), and measured the contents of soil organic carbon (SOC), total nitrogen (TN), and total phosphorus (TP) in the soil aggregates of <0.053, 0.053-0.25, 0.25-1, >1 mm. The results showed that: 1) The number of aggregates <0.053, 0.053-0.25, >0.25 mm in the 0-20 and 20-40 cm soil layers under IT decreased by 10.0% and 6.8%, increased by 3.0% and 5.7%, and 17.9% and 26.1% compared with CK, respectively. IT effectively increased , MWD, and GMD by 26.4%, 20.0%, 18.2% and 18.2%, 10.5%, 10.0% in 0-20 and 20-40 cm soil, respectively. 2) Compared to CK, the TP content of 0.25-1 mm aggregates in 0-20 and 20-40 cm soil under IT was significantly increased by 40.3% and 37.5%, respectively, without difference in TN and SOC contents. There was no significant difference in nutrient contents of the other aggregates between the treatments. The contents of SOC and TN in large aggregates (>0.25 mm) were higher than those in silty aggregates (<0.053 mm). Compared to CK, the cumulative contribution rates of SOC, TN and TP of <0.053 mm aggregates under IT were decreased in two soil layers. There was no significant difference in the nutrient cumulative contribution rates of 0.053-0.25 mm aggregates between treatments. The cumulative contribution rates of SOC, TN, and TP of large aggregates (>0.25 mm) under IT were 32.1%, 19.6%, 52.8% and 22.8%, 11.8%, 42.9% higher than those under CK in 0-20 and 20-40 cm soils, respectively. 3) The number of <0.053 mm aggregates was significantly negatively correlated with SOC and TP contents, while that of 0.053-0.25 mm aggregates was negatively correlated with nutrient content. The number of large aggregates (>0.25 mm) were significantly positively correlated with SOC, TN, and TP contents. In conclusion, straw returning with microbial-inoculant addition could promote the formation of soil macroaggregates (>0.25 mm), and improve the water stability of soil aggregates, increasing nutrient contents in soil macroaggregates, with the nutrients transferring from silty aggregates to macroaggregates.

摘要

基于田间小区试验,设置常规秸秆还田(CK)和添加秸秆分解促进微生物菌剂的秸秆还田(IT)两个处理,分析了稻麦轮作田0-20 cm和20-40 cm土层土壤团聚体的粒径分布。评估了土壤团聚体的水稳定性指标(土壤水稳性大团聚体数量、平均重量直径MWD和几何平均直径GMD),并测定了<0.053、0.053-0.25、0.25-1、>1 mm土壤团聚体中土壤有机碳(SOC)、全氮(TN)和全磷(TP)的含量。结果表明:1)与CK相比,IT处理下0-20 cm和20-40 cm土层中<0.053、0.053-0.25、>0.25 mm的团聚体数量分别减少了10.0%和6.8%,增加了3.0%和5.7%,以及17.9%和26.1%。IT处理分别使0-20 cm和20-40 cm土层的MWD和GMD有效增加了26.4%、20.0%、18.2%和18.2%、10.5%、10.0%。2)与CK相比,IT处理下0-20 cm和20-40 cm土层中0.25-1 mm团聚体的TP含量分别显著增加了40.3%和37.5%,TN和SOC含量无差异。各处理间其他团聚体的养分含量无显著差异。大团聚体(>0.25 mm)中SOC和TN的含量高于粉粒团聚体(<0.053 mm)。与CK相比,IT处理下<0.053 mm团聚体在两个土层中SOC、TN和TP的累积贡献率均降低。各处理间0.053-0.25 mm团聚体的养分累积贡献率无显著差异。IT处理下0-20 cm和20-40 cm土层中>0.25 mm大团聚体的SOC、TN和TP累积贡献率分别比CK处理高32.1%、19.6%、52.8%和22.8%、11.8%、42.9%。3)<0.053 mm团聚体数量与SOC和TP含量显著负相关,而0.053-0.25 mm团聚体数量与养分含量负相关。大团聚体(>0.25 mm)数量与SOC、TN和TP含量显著正相关。综上所述,添加微生物菌剂的秸秆还田能够促进土壤大团聚体(>0.25 mm)的形成,提高土壤团聚体的水稳定性,增加土壤大团聚体中的养分含量,使养分从粉粒团聚体向大团聚体转移。

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