Spatial variability of soil nutrients and sitespecific nutrient management in the P.R. China

文献类型: 外文期刊

第一作者: Jin, JY

作者: Jin, JY;Jiang, C

作者机构:

关键词: site specific nutrient management;spatial variability;precision agriculture

期刊名称:COMPUTERS AND ELECTRONICS IN AGRICULTURE ( 影响因子:5.565; 五年影响因子:5.494 )

ISSN: 0168-1699

年卷期: 2002 年 36 卷 2-3 期

页码:

收录情况: SCI

摘要: Preliminary studies on the spatial variability in available nutrient content in agricultural fields under both large scale and small scale operation in China were conducted, and the different technical approaches to realize site specific nutrient management developed. Results indicated that significant spatial variability of all essential plant nutrient exist in different operating systems and at various scales. Under small scale operation within the family responsibility system, in which each farmer's family is assigned to operate one or several small field plots with the field size normally less than one hectare, the large spatial variability of soil nutrients was mainly attributed to the fertilizer history of individual farmers, diversity of crop types and varieties used in relatively small scale field management. Significant correlation was found between crop yields and available soil nutrient levels at the corresponding sites in the field. Based on the understanding of the nature of spatial variability of soil nutrient availability in China, and with the purpose of increasing profitability and sustainability of crop production, a site-specific soil nutrient management strategy is proposed. Related techniques and agricultural services are discussed, including soil testing and fertilizer recommendation, farmers' plot specific or regional specific fertilization approaches and related services at national and regional levels. (C) 2002 Elsevier Science B.V. All rights reserved.

分类号:

  • 相关文献

[1]THE SPATIAL PATTERN CHARACTERISTICS OF SOIL NUTRIENTS AT THE FIELD SCALE. Yang, Yujian,Zhu, Jianhua,Tong, Xueqin,Wang, Dianchang. 2009

[2]Estimating Winter Wheat Leaf Area Index From Ground and Hyperspectral Observations Using Vegetation Indices. Xie, Qiaoyun,Huang, Wenjiang,Zhang, Bing,Dong, Yingying,Xie, Qiaoyun,Chen, Pengfei,Song, Xiaoyu,Pascucci, Simone,Pignatti, Stefano,Laneve, Giovanni. 2016

[3]Recognition algorithm for plant leaves based on adaptive supervised locally linear embedding. Qing, Yan,Dong, Liang,Zhang Dongyan,Zhang Dongyan,Xu, Wang. 2013

[4]Hyperspectral Technologies for Assessing Seed Germination and Trifloxysulfuron-methyl Response in Amaranthus palmeri (Palmer Amaranth). Matzrafi, Maor,Zait, Yotam,Rubin, Baruch,Herrmann, Ittai,Karnieli, Arnon,Nansen, Christian,Nansen, Christian,Ignat, Timea,Siso, Dana,Eizenberg, Hanan,Herrmann, Ittai. 2017

[5]Development of intelligent equipments for precision agriculture. Zhang, Xiaochao,Hu, Xiaoan,Mao, Wenhua. 2008

[6]Precise technology of soil sampling for large-scale farm - A case study in Haifeng Farm of Shanghai City. Wei Yichang,Bai Youlu,Jin Jiyun,Yao Zheng,Xu Sixin,Luo Guoan,Li Run,Lin Changhua. 2006

[7]A DSP-based Control System for Precision Variable Rate Fertilization. Tang, Xiuying,Chen, Yizhe,Peng, Yankun,Xu, Yang,Yang, Weilong,Wang, Wei,Wang, Xiu. 2013

[8]Application Feasibility Analysis of Precision Agriculture in Equipment for Controlled Traffic Farming System: A Review. Lu, Caiyun,Meng, Zhijun,Wang, Xiu,Wu, Guangwei,Gao, Nana,Dong, Jianjun,Lu, Caiyun,Meng, Zhijun,Wang, Xiu,Wu, Guangwei,Gao, Nana,Dong, Jianjun,Lu, Caiyun,Meng, Zhijun,Wang, Xiu,Wu, Guangwei,Gao, Nana,Dong, Jianjun,Lu, Caiyun,Meng, Zhijun,Wang, Xiu,Wu, Guangwei,Gao, Nana,Dong, Jianjun,Lu, Caiyun. 2016

[9]Comparison and Analysis of Data Upscaling Schemes for Predicting Crop Leaf Area Index. Dong, Yingying,Feng, Haikuan,Wang, Jihua,Li, Cunjun,Yang, Guijun,Huang, Wenjiang,Dong, Yingying,Wang, Jihua. 2012

[10]Integration of large scale fertilizing models with GIS using minimum unit. Tianhong, L,Yanxin, S,An, X.

[11]Edge-biased distributions of insects. A review. Nguyen, Hoang Danh Derrick,Nansen, Christian,Nansen, Christian. 2018

[12]Research on the Development of Agricultural Mechanical Automation in Mechanical Engineering. Yang, Hong Wei,Zhang, Li Ying. 2014

[13]DIAGNOSTIC MODEL FOR WHEAT LEAF CONDITIONS USING IMAGE FEATURES AND A SUPPORT VECTOR MACHINE. Du, K.,Sun, Z.,Li, Y.,Zheng, F.,Chu, J.,Su, Y.. 2016

[14]Design of Wireless Multi-media Sensor Network for Precision Agriculture. Yin Shouyi,Liu Leibo,Zhou Renyan,Wei Shaojun,Yin Shouyi,Liu Leibo,Zhou Renyan,Wei Shaojun,Sun Zhongfu. 2013

[15]EFFECT OF AIR-ASSISTED SPRAY APPLICATION RATE ON SPRAY DROPLET DEPOSITION DISTRIBUTION ON FRUIT TREE CANOPIES. Qiu, W.,Sun, C.,Ding, W.,Feng, X.,Lv, X..

[16]Spatial Variability of Soil Chemical Properties in the Reclaiming Marine Foreland to Yellow Sea of China. Wei Yi-chang,Zhang Fang,Zhang Li-ping,Liu Xiao-qiang,Wei Yi-chang,Bai You-lu,Jin Ji-yun. 2009

[17]SPATIAL VARIABILITY OF WINTER WHEAT GROWTH BASED ON THE INDIVIDUAL INDEX AND THE POPULATION INDEX. Cui, Bei,Song, Xiaoyu,Feng, Meichen. 2014

[18]Study on the rational sampling numbers of soil moisture monitoring for cotton. Li, Yan,Lei, XiaoYun,Zheng, GuoYu. 2012

[19]Spatial scaling effects on variability of soil organic matter and total nitrogen in suburban Beijing. Hu, Kelin,Huang, Feng,Li, Baoguo,Wang, Shuying,Li, Hong,Li, Hong. 2014

[20]An in situ method to measure the longitudinal and transverse dispersion coefficients of solute transport in soil. Zhang, Xiaoxian,Qi, Xuebin,Zhou, Xinguo,Pang, Hongbin.

作者其他论文 更多>>