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作 者:赵力兴 王琳 李天琦 高凯[1] 王红玲 柯建武 ZHAO Li-xing;WANG Lin;LI Tian-qi;GAO Kai(College of Agronomy,Inner Mongolia University for Nationalities,Tongliao 028042,China;Inner Mongolia Engineering Research Center for Forage Crop,Tongliao 028042,China;College of Pratacultural Science,Gansu Agricultural University,Lanzhou 730070,China)
机构地区:[1]内蒙古民族大学农学院,内蒙古通辽028042 [2]甘肃农业大学草业学院,甘肃兰州730070 [3]通辽市森林公园管理处,内蒙古通辽028042 [4]通辽市草原工作站,内蒙古通辽028042
出 处:《草原与草坪》2020年第5期76-82,共7页Grassland and Turf
基 金:内蒙古自治区科技储备项目(2018MDCB03);2019内蒙古自治区双一流一带一路项目(NMDGJ0018)
摘 要:为明确科尔沁沙地二龄紫花苜蓿(Medicago sativa)草地土壤养分含量及化学计量特征,以原生草地为对照,分层采集0~100 cm土壤样品,分析不同土层土壤碱解氮、有效磷、速效钾、有机碳、全氮、全磷质量分数并计算碳氮磷化学计量比。结果表明:二龄紫花苜蓿草地0~100 cm土壤碱解氮、有效磷、速效钾、有机碳、全氮、全磷质量分数分别为38.58~78.1 mg/kg、23.01~46.08 mg/kg、60.66~119.74 mg/kg、3.136~8.878 g/kg、0.253~0.953 g/kg、0.476~0.783 g/kg,均值较原生草地分别增加62.55%、-6.57%、19.68%、48.30%、100.81%、40.50%;二龄紫花苜蓿草地表层(0~10 cm)土壤碱解氮、有效磷、速效钾、有机碳、全氮、全磷质量分数分别降低53.91%、16.12%、50.09%、66.76%、70.81%、37.65%;在10~100 cm土层,二龄紫花苜蓿草地土壤养分质量分数(除有效磷外)均有所提高;二龄紫花苜蓿草地土壤C/N、C/P、N/P较低,均值分别为9.602、0.992、9.189,C、N、P元素的缺乏程度为C>N>P;土壤全氮质量分数对土壤C/N、N/P的影响最大,土壤有机碳质量分数对C/P的影响最大。The soil nutrient content and stoichiometry characteristics of 2 nd year alfalfa(Medicago sativa)pasture in Horqin sandy land were studied by using the natural grassland as the control.Soil samples in 0~100 cm soil layer were collected to measure the soil AN,AP,AK,SOC,TN and TP contents and calculate the C,N and P stoichiometry.The result showed that the ranges of soil AN,AP,AK,SOC,TN,and TP contents were 38.58~78.1 mg/kg,23.01~46.08 mg/kg,60.66~119.74 mg/kg,3.136~8.878 g/kg,0.253~0.953 g/kg and 0.476~0.783 g/kg respectively.And their average values increased by 62.55%,-6.57%,19.68%,48.3%,100.805%and 40.503%compared to the natural grassland respectively.The contents of soil AN,AP,AK,SOC,TN and TP in 0~10 cm layer reduced by 53.91%,16.12%,50.09%,66.76%,70.806%and 37.653%;In 10~100 cm layer,the soil nutrient contents(except AP)increased;The soil C/N,C/P and N/P were lower,with average values of 9.602,0.992,and 9.189,respectively,and the deficiency ranking of C,N and P was C>N>P;Soil C/N and N/P were mainly controlled by soil total nitrogen content and C/P was mainly controlled by soil organic carbon content.
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