为探明微喷灌施肥对三七土壤氮素运移转化影响,2017—2020年在泸西县大栗树村三七种植基地设置3个灌水水平0.4FC(W1),0.6FC(W2),0.8FC(W3),4个施肥水平3.20(F1),4.80(F2),6.20(F3)和120.00 kg/ha(F4),CK为对照,共13个处理.研究微喷灌施...为探明微喷灌施肥对三七土壤氮素运移转化影响,2017—2020年在泸西县大栗树村三七种植基地设置3个灌水水平0.4FC(W1),0.6FC(W2),0.8FC(W3),4个施肥水平3.20(F1),4.80(F2),6.20(F3)和120.00 kg/ha(F4),CK为对照,共13个处理.研究微喷灌施肥条件下不同灌水及施肥对三七土壤全氮、硝态氮和铵态氮运移转化影响.结果表明:不同灌水施肥全氮质量比随时间增加先增大后减小,硝态氮质量比随时间增加先减小后增大,铵态氮质量比随时间增加逐渐减小,8月W2F3全氮质量比最大,9月W2F4硝态氮质量比最大,6月W2F4铵态氮质量比最大.全氮和铵态氮质量比随土层深度增加逐渐减小,硝态氮质量比随土层深度增加先减小后增大,全氮、硝态氮和铵态氮聚集在土层0~10 cm, W2F3土壤全氮和硝态氮质量比最大,W2F4铵态氮质量比最大.灌水量与硝态氮和铵态氮相关性具有统计学意义(P<0.01),与全氮呈负相关且相关性具有统计学意义(P<0.05),施肥量与硝态氮呈正相关且相关性具有统计学意义(P<0.01),与铵态氮相关性具有统计学意义(P<0.05).该研究明确灌溉施肥可调控酸性红壤土三七氮素运移转化特性,改善农田微生态环境,提高水氮利用效率,为有效防治病虫害提供技术支持和理论依据.展开更多
Two-factor analysis of variance and redundancy analysis were used to analyze the characte-ristics of soil organic carbon total nitrogen storage in garden land,forestland,grassland,farmland,and bare land in the Dachunh...Two-factor analysis of variance and redundancy analysis were used to analyze the characte-ristics of soil organic carbon total nitrogen storage in garden land,forestland,grassland,farmland,and bare land in the Dachunhe watershed of Jinning District,Kunming City,Yunnan Province,China.The effects of the soil organic carbon,total nitrogen stratification ratio,soil physical and chemical factors on the storage characteristics of organic carbon and total nitrogen of different land-use types were analyzed.The results show that the rates of carbon and nitrogen stratification in soil from 0-20 cm and 40-60 cm of the same land-use types differed are statistically significant(P<0.05).The organic carbon and total nitrogen stratification ratio SR1 of garden land soil are 38.5%and 25.3%,respectively,which are higher than SR^(2).The soil organic carbon and total nitrogen stratification ratio SR^(2) of different land-use types are greater than SR1.There are statistically significant differences in the SR^(2) soil organic carbon and total nitrogen stratification ratios(P<0.05).Soil organic carbon and total nitrogen storage of diffe-rent land-use types gradually decrease with increasing soil depth,with the maximum soil organic carbon and total nitrogen storage in the 0-20 cm soil layer.Soil organic carbon and total nitrogen sto-rage at the same soil depth are significantly different(P<0.05).Soil organic carbon and total nitrogen storage in the garden land are greater than those in the other land-use types.Soil organic carbon and total nitrogen storage in 0-20 cm garden land are 4.96 and 3.19 times than those in bare land,respectively;soil organic carbon and total nitrogen storage are explained by 93.66%and 1.53%in redundancy analysis RDA1 and RDA2,respectively.All physicochemical factors except Available Phosphorus and pH are statistically significance with carbon and nitrogen storage(P<0.05).Soil cationic exchange capacity,Available Phosphorus,C/N ratio,and Moisture Content are positively correlated with organic carbon and total nitrogen storage.In contrast,soil Bulk Density is negatively correlated with organic carbon storage and total nitrogen storage.Available Phosphorus,C/N ratio,and Moisture Content are the main factors promoting soil organic carbon and total nitrogen accumulation.展开更多
文摘为探明微喷灌施肥对三七土壤氮素运移转化影响,2017—2020年在泸西县大栗树村三七种植基地设置3个灌水水平0.4FC(W1),0.6FC(W2),0.8FC(W3),4个施肥水平3.20(F1),4.80(F2),6.20(F3)和120.00 kg/ha(F4),CK为对照,共13个处理.研究微喷灌施肥条件下不同灌水及施肥对三七土壤全氮、硝态氮和铵态氮运移转化影响.结果表明:不同灌水施肥全氮质量比随时间增加先增大后减小,硝态氮质量比随时间增加先减小后增大,铵态氮质量比随时间增加逐渐减小,8月W2F3全氮质量比最大,9月W2F4硝态氮质量比最大,6月W2F4铵态氮质量比最大.全氮和铵态氮质量比随土层深度增加逐渐减小,硝态氮质量比随土层深度增加先减小后增大,全氮、硝态氮和铵态氮聚集在土层0~10 cm, W2F3土壤全氮和硝态氮质量比最大,W2F4铵态氮质量比最大.灌水量与硝态氮和铵态氮相关性具有统计学意义(P<0.01),与全氮呈负相关且相关性具有统计学意义(P<0.05),施肥量与硝态氮呈正相关且相关性具有统计学意义(P<0.01),与铵态氮相关性具有统计学意义(P<0.05).该研究明确灌溉施肥可调控酸性红壤土三七氮素运移转化特性,改善农田微生态环境,提高水氮利用效率,为有效防治病虫害提供技术支持和理论依据.
基金Natural Science Foundation of China(51979134,51779113)Yunnan Provincial Education Department Scientific Research Fund Project(2021J0164)+4 种基金Open Fund Project of Yunnan Provincial Key Laboratory of Highland Wetland Protection and Restoration and Ecological Services(202105AG070002)Provincial Innovation Team on Environmental Pollution and Food Safety and Human Health,Southwest Forestry University(2005AE160017)A Study of Terrestrial Animal Habitats in Li Ziping National Nature Reserve,Sichuan Province(2021ZD0125)The Construction Project of Key Disciplines with Advantages and Characteristics(Ecology)in Yunnan UniversitiesResearch Project of Key Laboratory of Soil Erosion and Control in Yunnan University。
文摘Two-factor analysis of variance and redundancy analysis were used to analyze the characte-ristics of soil organic carbon total nitrogen storage in garden land,forestland,grassland,farmland,and bare land in the Dachunhe watershed of Jinning District,Kunming City,Yunnan Province,China.The effects of the soil organic carbon,total nitrogen stratification ratio,soil physical and chemical factors on the storage characteristics of organic carbon and total nitrogen of different land-use types were analyzed.The results show that the rates of carbon and nitrogen stratification in soil from 0-20 cm and 40-60 cm of the same land-use types differed are statistically significant(P<0.05).The organic carbon and total nitrogen stratification ratio SR1 of garden land soil are 38.5%and 25.3%,respectively,which are higher than SR^(2).The soil organic carbon and total nitrogen stratification ratio SR^(2) of different land-use types are greater than SR1.There are statistically significant differences in the SR^(2) soil organic carbon and total nitrogen stratification ratios(P<0.05).Soil organic carbon and total nitrogen storage of diffe-rent land-use types gradually decrease with increasing soil depth,with the maximum soil organic carbon and total nitrogen storage in the 0-20 cm soil layer.Soil organic carbon and total nitrogen sto-rage at the same soil depth are significantly different(P<0.05).Soil organic carbon and total nitrogen storage in the garden land are greater than those in the other land-use types.Soil organic carbon and total nitrogen storage in 0-20 cm garden land are 4.96 and 3.19 times than those in bare land,respectively;soil organic carbon and total nitrogen storage are explained by 93.66%and 1.53%in redundancy analysis RDA1 and RDA2,respectively.All physicochemical factors except Available Phosphorus and pH are statistically significance with carbon and nitrogen storage(P<0.05).Soil cationic exchange capacity,Available Phosphorus,C/N ratio,and Moisture Content are positively correlated with organic carbon and total nitrogen storage.In contrast,soil Bulk Density is negatively correlated with organic carbon storage and total nitrogen storage.Available Phosphorus,C/N ratio,and Moisture Content are the main factors promoting soil organic carbon and total nitrogen accumulation.