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首页|期刊导航|植物营养与肥料学报|应用DNDC模型分析东北黑土有机碳演变规律及其与作物产量之间的协同关系

应用DNDC模型分析东北黑土有机碳演变规律及其与作物产量之间的协同关系

贺美 王迎春 王立刚 朱平 李长生

植物营养与肥料学报2017,Vol.23Issue(1):9-19,11.
植物营养与肥料学报2017,Vol.23Issue(1):9-19,11.DOI:10.11674/zwyf.16146

应用DNDC模型分析东北黑土有机碳演变规律及其与作物产量之间的协同关系

Using DNDC model to simulate black soil organic carbon dynamics as well as its coordinate relationship with crop yield

贺美 1王迎春 1王立刚 1朱平 2李长生1

作者信息

  • 1. 中国农业科学院农业资源与农业区划研究所/农业部面源污染控制重点实验室/中国农业科学院-美国新罕布什尔大学可持续农业生态系统研究联合实验室,北京100081
  • 2. 吉林省农业科学院农业环境与资源研究所,长春130033
  • 折叠

摘要

Abstract

[Objectives] The effects of long-term fertilization on black soil organic carbon content and crop yield were researched and stimulated using the DNDC model in Northeast China,which will provide a scientific basis for the sustainable use of the arable land resources and scientific managements in the region.[Methods] Data were collected from the long-term experiments carried out in National Fertility Monitoring Net in Gongzhuling City,Jilin Province.Six of the fertilization treatments were chosen to analyze the changes in soil organic carbon (SOC) and crop yield,including:no fertilizer (CK),only chemical fertilizer application (NPK),combining chemical and low levels of organic manure (NPKM1),1.5 times of the amount of inorganic and organic fertilizer ofNPKM1 (1.5(NPK)M1),combining chemical and high amount of organic manure (NPKM2),inorganic fertilizer plus straw (NPKS),and the DNDC model was validated using these data.The model was used to imitate the variation of SOC in the coming 40 years under the six fertilization treatments.[Results] The root mean square error (RMSE) of SOC in treatment was in range of 14.98%-37.91%,those of crop yields were in range of 8.28%-11.19%,which suggested that the simulated values were consistent with the observed values,so the DNDC model was reliable for the simulation purpose in the studied area.The simulated results indicated that the SOC in CK and NPK treatments would drop by 16.67% and 11.21% respectively,and those in NPKM1,NPKM2 and 1.5(NPK)M1 treatments would be steadily increasing in the next 40 years,with the most significant growth in treatment of 1.5 (NPK)M1.The SOC contents in NPKM1,1.5 (NPK)M1 and NPKM2 will be increased by 13.65%,15.74%,15.84% from 2010 to 2050 respectively.The measured SOC content in NPKS treatment had slightly increased since the beginning of the experiment.When the nitrogen application was increased from 160 kg/hm2 to 320 kg/hm2,the SOC would simultaneously increase in magnitude of 1.00 g/kg,and the crop yields increase would drop from 44.48 kg/hm2 to 15.95 kg/hm2.[Conclusions] Analyzation of data from the measured and DNDC model simulated,combined application of straw,manure and inorganic fertilizer will be effective in increasing the content of soil organic carbon continuously,and leading to steadily increase of crop yields at the same time.When the nitrogen application rate is between 160 kg/hm2-320 kg/hm2,the crop yields will keep increasing with the increasing of soil organic carbon content,and the hoist scope of SOC in increasing crop yield would fall with the increase of nitrogen application rate.

关键词

DNDC模型/长期施肥/土壤有机碳/农田生产力

Key words

DNDC model/long-term fertilization/soil organic carbon/farmland productivity

引用本文复制引用

贺美,王迎春,王立刚,朱平,李长生..应用DNDC模型分析东北黑土有机碳演变规律及其与作物产量之间的协同关系[J].植物营养与肥料学报,2017,23(1):9-19,11.

基金项目

公益性行业(农业)科研专项(201303126-2,201303103) (农业)

国家重点研发计划项目(2016YFED101100)资助. (2016YFED101100)

植物营养与肥料学报

OA北大核心CSCDCSTPCD

1008-505X

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