4.7 Article

Long-term soil nutrient dynamics comparison under smallholding land and farmland policy in northeast of China

期刊

SCIENCE OF THE TOTAL ENVIRONMENT
卷 450, 期 -, 页码 129-139

出版社

ELSEVIER
DOI: 10.1016/j.scitotenv.2013.02.016

关键词

Nutrient dynamics; Nitrogen; Phosphorus; State-owned farm; Smallholder; Agricultural land

资金

  1. National Natural Science Foundation of China [41001317, 40930740]
  2. Supporting Program of the Twelfth Five-year Plan for Sci 82 Tech Research of China [2012BAD15B05]
  3. New Teacher Fund for Doctor Station, Ministry of Education [20100003120030]

向作者/读者索取更多资源

There are two kinds of land policies, the smallholding land policy (SLP) and the farmland policy (FLP) in China. The farmland nutrient dynamics under the two land policies were analysed with the soil system budget method. The averaged nitrogen (N) input of the SLP and the FLP over sixteen years increased about 23.9% and 33.3%, respectively and the phosphorus (P) input climbed about 39.1% and 42.3%, respectively. The statistical analysis showed that the land policies had significant impacts on N and P input from fertilizer and manure, but did not obviously affect the N input from seeds and biological N fixation. The efficiency percentage of N of the SLP and the FLP climbed about 54.5% and 59.4%, respectively, and the P efficiency improved by 52.7% and 82.6%, respectively. About the nutrient output, the F-test analysis indicated that the land polices had remarkable impacts on N output by crop uptake, ammonia volatilisation, denitrification, leaching and runoff, and P output by uptake, runoff, and leach. The balance showed that the absolute loss of N from land deceased about 43.6% and 46.0%, respectively, in the SLP and the FLP, and P discharge reduced about 34.2% and 75.2%, respectively. The F-test analysis of N and P efficiency and balance of between two polices both indicated that the FLP had significant impact on nutrient dynamic. With the Mitscherlich model, the correlations between nutrient input and crop uptake, usage efficiency and loss were analysed and showed that was a threshold value for the optimal nutrient input with the highest efficiency rate. For the optimal nutrient efficiency, the space for extra P addition was bigger than the N input. The FLP have more advantage than the SIP on the crop yield, nutrient efficiency and environmental discharge. (C) 2013 Elsevier B.V. All rights reserved.

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