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首页> 外文期刊>Experimental agriculture >EFFECTS OF 30 YEARS REPEATED FERTILIZER APPLICATIONS ON SOIL PROPERTIES, MICROBES AND CROP YIELDS IN RICE-WHEAT CROPPING SYSTEMS
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EFFECTS OF 30 YEARS REPEATED FERTILIZER APPLICATIONS ON SOIL PROPERTIES, MICROBES AND CROP YIELDS IN RICE-WHEAT CROPPING SYSTEMS

机译:30年重复施肥对稻麦种植系统土壤性状,微生物和作物产量的影响。

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Long-term fertilization experiment has been conducted since 1981 to study the effect of soil management practices on soil fertility, soil carbon and nitrogen sequestration, soil culturable microbe counts and crop yields at the Nanhu Experimental Station in the Hubei Academy of Agricultural Sciences (situated in the middle reach of the Yangtze River and the rice-wheat cropping system). The experiment was designed with the following eight treatments: (1) unfertilized treatment: Control; (2) inorganic nitrogen fertilizer treatment: N; (3) inorganic nitrogen plus inorganic phosphorus fertilizer treatment: NP; (4) inorganic nitrogen, inorganic phosphorus plus inorganic potassium fertilizer treatment: NPK; (5) pig dung compost (manure) treatment: M; (6) inorganic nitrogen fertilizer plus manure: NM; (7) inorganic nitrogen, inorganic phosphorus fertilizer plus manure treatment: NPM and (8) inorganic nitrogen, inorganic phosphorus, inorganic potassium fertilizer plus manure treatment: NPKM. The results showed that long-term application of organic manure in combination with inorganic fertilizer significantly (p 0.05) increased soil organic C concentrations compared with the corresponding inorganic fertilizers alone. Soil organic C contents were significantly (p 0.05) increased in balanced application of NPK fertilizers in comparison to unbalanced application of fertilizers. After 30 years of experiment, soil organic C and total N sequestration rate averagely were 0.48 t ha(-1) year(-1) and 28.3 kg ha(-1) year(-1) in the fertilized treatments respectively; nevertheless, it were 0.27 t ha(-1) year(-1) and 9.7 kg ha(-1) year(-1) in the unfertilized treatment. Application of organic fertilizer in combination with inorganic fertilizer significantly (p 0.05) increased culturable microbial counts compared with the corresponding inorganic fertilizers alone. The balanced application of NPK fertilizers significantly (p 0.05) increased culturable microbial counts compared with unbalanced application of fertilizers. The average grain yield of wheat and rice was significantly (p 0.05) higher in organic manure combined with inorganic fertilizer treatment than in inorganic fertilizer alone and unfertilized control. Therefore, long-term application of organic manure combined with inorganic fertilizer and balanced application of NPK fertilizers could increase soil organic C and total N sequestration, culturable microbial counts and crop grain yields.
机译:自1981年以来就进行了长期施肥试验,以研究土壤管理措施对土壤肥力,土壤碳和氮固存,土壤可培养微生物数以及作物产量的影响(位于湖北省农业科学院南湖实验站)长江中游和稻麦种植系统)。实验设计了以下八种处理方法:(1)未受精处理:对照; (2)无机氮肥处理:N; (3)无机氮加无机磷肥处理:NP; (4)无机氮,无机磷加无机钾肥处理:NPK; (5)猪粪堆肥(粪肥)处理:M; (6)无机氮肥加肥料:NM; (7)无机氮,无机磷肥加粪肥处理:NPM和(8)无机氮,无机磷,无机钾肥加粪肥处理:NPKM。结果表明,与单独使用相应的无机肥料相比,长期使用有机肥与无机肥料的组合显着提高了土壤有机碳含量(p <0.05)。与不平衡施用氮磷钾肥料相比,氮磷钾肥料的平衡施用显着增加了土壤有机碳含量(p <0.05)。经过30年的试验,施肥处理中土壤有机碳和总固氮率分别为0.48 t ha(-1)年(-1)和28.3 kg ha(-1)年(-1)。但是,在未受精处理中分别为0.27 t ha(-1)年(-1)和9.7 kg ha(-1)年(-1)。与单独使用相应的无机肥料相比,将有机肥料与无机肥料结合使用可显着提高(p <0.05)的可培养微生物数量。与不均​​衡施用氮磷钾肥料相比,均衡施用氮磷钾肥料显着(p <0.05)可培养微生物数量增加。有机肥料与无机肥料一起处理的小麦和水稻的平均谷物产量显着(p <0.05)比单独使用无机肥料和未施肥的对照高。因此,长期施用有机肥和无机肥料以及平衡施用氮磷钾肥料可以增加土壤有机碳和总氮的吸收,可培养的微生物数量和农作物的产量。

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