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Soil Quality in Relation to Agricultural Production in the North China Plain 被引量:5

Soil Quality in Relation to Agricultural Production in the North China Plain
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摘要 Sustainable agricultural production is of vital importance to food supply security. This study aimed to investigate crop yield response to spatial variability of soil quality at a county scale in the North China Plain (NCP) and subsequently derive key soil quality indicators. Soil samples were geo-referenced and taken in 2008 from both surface (0-20 cm) and subsurface (20-40 cm) layers in 132 fields throughout the Fengqiu County, located in the centre of the NCP, for subsequent soil properties' analyses. Annum crop yields were obtained from the same fields where soil samples were collected. Soil quality was evaluated based on a fuzzy set with 13 soil properties, and its spatial distributions were investigated by integrating geostatistical analysis and geographic information system (GIS) techniques. Soil quality indices were classified into five grades, and their spatial distributions were mapped within the county. The surface soil qualities were about one to two grades higher than the subsurface soil. The quality indices for surface and subsurface soils were positively associated with the annual crop yields, suggesting the importance of both. Soil organic matter, total nitrogen, available P, and available K contributed 50% of the combined weight to the soil quality index and were identified as key indicators of soil quality status in the area in terms of sustainability. Sustainable agricultural production is of vital importance to food supply security. This study aimed to investigate crop yield response to spatial variability of soil quality at a county scale in the North China Plain(NCP) and subsequently derive key soil quality indicators. Soil samples were geo-referenced and taken in 2008 from both surface(0–20 cm) and subsurface(20–40 cm) layers in132 fields throughout the Fengqiu County, located in the centre of the NCP, for subsequent soil properties' analyses. Annual crop yields were obtained from the same fields where soil samples were collected. Soil quality was evaluated based on a fuzzy set with 13 soil properties, and its spatial distributions were investigated by integrating geostatistical analysis and geographic information system(GIS) techniques. Soil quality indices were classified into five grades, and their spatial distributions were mapped within the county.The surface soil qualities were about one to two grades higher than the subsurface soil. The quality indices for surface and subsurface soils were positively associated with the annual crop yields, suggesting the importance of both. Soil organic matter, total nitrogen,available P, and available K contributed 50% of the combined weight to the soil quality index and were identified as key indicators of soil quality status in the area in terms of sustainability.
出处 《Pedosphere》 SCIE CAS CSCD 2015年第4期592-604,共13页 土壤圈(英文版)
基金 supported by the National Basic Research Program of China (No. 2011CB100506) the National Natural Science Foundation of China (No. 41271311) the National Key Technology Support Program of China (No. 2012BAD05B0203) the Knowledge Innovation Program of Chinese Academy of Sciences (No. ISSASIP1118)
关键词 crop yield geostatistical analysis key indicator spatial variability soil quality evaluation soil properties subsurfacesoil surface soil 土壤质量指标 华北平原 农业生产 地理信息系统 土壤质量指数 作物产量 表层土壤 空间分布
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  • 1Alvaro-Fuentes, J. and Paustian, K. 2011. Potential soil carbon sequestration in a semiarid Mediterranean agroecosystem under climate change: Quantifying management and climate effects. Plant Soil. 338: 261-272. 被引量:1
  • 2Armstrong, M. 1998. Basic Linear Geostatistics. Springer, New York. 被引量:1
  • 3Boardman, J. and Poesen, J. (eds.). 2006. Soil Erosion in Europe. Wiley, Chichester, UK. 被引量:1
  • 4Bot, A. and Benites, J. 2005. The Importance of Soil Organic Matter: Key to Drought-Resistant Soil and Sustained Food Production. Food and Agriculture Organization of the United Nations, Rome. 被引量:1
  • 5Bremner, J. M. and Sparks, D. L. 1996. Nitrogen-Total. In Methods of Soil Analysis. Part III. Chemical Methods. Soil Science Society of America Inc., Madison, USA. pp. 1085-1121. 被引量:1
  • 6Burgess, T. M. and Webster, R. 1980. Optimal interpolation and isarithmic mapping of soil properties: I. The semi-variogram and punctual kriging. J. Soil Sci. 31: 315-331. 被引量:1
  • 7Burgos, P., Madej6n, E., Perez-de-Mora, A. and Cabrera, F. 2006. Spatial variability of the chemical characteristics of a trace-element-contaminated soil before and after remediation. Geoderma. 130: 157-175. 被引量:1
  • 8Chiuchiarelli, I., Paolanti, M., Rivieccio, R. and Santucci, S. 2006. Soils and Landscapes of Abruzzo-Soil Map of Abruzzo Region (in Italian). Agenzia Regionale per I Servizi di Sviluppo Agricolo, Regione Abruzzo. Avezzano, Italy. 被引量:1
  • 9Commission of the European Communities (CEe). 2006a.Proposal for a Directive of the European Parliament and of the Council Establishing a Framework for the Protection of Soil and Amending Directive 2004/35/EC. Available online at http://eur-lex.europa.eu/Lexll riServ /Lex U riServ .do uri=CELEX: 52006PC0232:EN:NOT (verified on October 28, 2011). 被引量:1
  • 10Commission of the European Communities (CEC). 2006b.Thematic Strategy for Soil Protection. Communication from the Commission to the Council, the European Parliament, the European Economic and Social Committee, and the Committees of the Region-COM (2006)231 Fina!. Available online at http://ec.europa. eu/environment/soil/pdf/com_2006_023Len.pdf (verified on September 26, 2011). 被引量:1

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