:Effects of Long-term K Fertilizer Application on the Crop Yield and K Distribution of Soil Aggregates in a Paddy-Upland Rotation System论文

:Effects of Long-term K Fertilizer Application on the Crop Yield and K Distribution of Soil Aggregates in a Paddy-Upland Rotation System论文

本文主要研究内容

作者(2019)在《Effects of Long-term K Fertilizer Application on the Crop Yield and K Distribution of Soil Aggregates in a Paddy-Upland Rotation System》一文中研究指出:[Objective]A long-term paddy-upland experiment was conducted to evaluate the effects of the recommended amount of potassium( K)fertilizer on crop yield,distribution of soil aggregate,and soil available K content. It was mainly to ascertain the distribution of K in the soil aggregate components in the paddy-upland rotation system,and then to provide theoretical basis for soil structure improvement,K pool management,and reasonable application of K fertilizer. [Method]There were 2 treatments selected,namely,NP(-K) treatment and NPK( + K) treatment in this study. Then the effects of K fertilizer application on the yield,available K content,and aggregate distribution in the middle rice-winter rape rotation system were analyzed. [Result]The results showed that the output of the crop rotation was affected by the year and fertilization. Compared with NP(-K),the average yield increases of rice and winter rape after application of K fertilizer were 0.51 and 0.33 t/hm2,with the increments of 7.5%and 14. 1% respectively. The long-term application of K fertilizer( 7 a) had no significant effects on the distribution of soil aggregates but could significantly increase the water-soluble K content and available K content at depths of 20-30 and 30-40 cm,and available K content of aggregates in each particle size. In addition,the balance of available K at the 10-20 and 30-40 cm of soil layers was the most significant through calculation of surplus-deficit value of available K in agglomerates of different soil layers. [Conclusion]Compared with the initial available K content in the farmland in 2011,the current K fertilizer application could lead to that farmland K content continues to decline. Therefore,we should pay attention to straw returned and supplement of organic K fertilizer,to maintain crop rotation system’s productivity and soil K balance.

Abstract

[Objective]A long-term paddy-upland experiment was conducted to evaluate the effects of the recommended amount of potassium( K)fertilizer on crop yield,distribution of soil aggregate,and soil available K content. It was mainly to ascertain the distribution of K in the soil aggregate components in the paddy-upland rotation system,and then to provide theoretical basis for soil structure improvement,K pool management,and reasonable application of K fertilizer. [Method]There were 2 treatments selected,namely,NP(-K) treatment and NPK( + K) treatment in this study. Then the effects of K fertilizer application on the yield,available K content,and aggregate distribution in the middle rice-winter rape rotation system were analyzed. [Result]The results showed that the output of the crop rotation was affected by the year and fertilization. Compared with NP(-K),the average yield increases of rice and winter rape after application of K fertilizer were 0.51 and 0.33 t/hm2,with the increments of 7.5%and 14. 1% respectively. The long-term application of K fertilizer( 7 a) had no significant effects on the distribution of soil aggregates but could significantly increase the water-soluble K content and available K content at depths of 20-30 and 30-40 cm,and available K content of aggregates in each particle size. In addition,the balance of available K at the 10-20 and 30-40 cm of soil layers was the most significant through calculation of surplus-deficit value of available K in agglomerates of different soil layers. [Conclusion]Compared with the initial available K content in the farmland in 2011,the current K fertilizer application could lead to that farmland K content continues to decline. Therefore,we should pay attention to straw returned and supplement of organic K fertilizer,to maintain crop rotation system’s productivity and soil K balance.

论文参考文献

  • [1].Impacts of chemical fertilizer reduction and organic amendments supplementation on soil nutrient, enzyme activity and heavy metal content[J]. NING Chuan-chuan,GAO Peng-dong,WANG Bing-qing,LIN Wei-peng,JIANG Ni-hao,CAI Kun-zheng.  Journal of Integrative Agriculture.2017(08)
  • [2].Global assessment of nitrogen fertilizer:The SCOPE/IGBP Nitrogen Fertilizer Rapid Assessment Project[J]. Arvin R.Mosier,J.Keith Syers,John R.Freney.  Science in China(Series C:Life Sciences).2005(S2)
  • [3].Distribution of Crystal Organic Fertilizer-N in Soil-plant System[J]. LIU Yi-xin, HAN Yi-wang, WANG Yan-ting, HONG Li-fang XU Xi-min,TANG Shen, LIN Guan-ya and LIU Wu-ding(Department of Environmental Science , Institute of Earth and Space , University of Science and Technology of China , Hefei 230026 , P. R . China ; Department of Tobacco Science , University of Science and Technology of China , Hefei 230052 , P. R . China ; Department of Science , Technology and Education of Tobacco Monopoly Administration of China , Beijing 100052 , P. R . China ; Institute of Soil and Fertilizer , Yunnan Academy of Agricultural science , Kunmin 650231 , P. R . China ; Sanmin Tobacco Branch Company of Fujians , Sanmin 365010 , P. R . China ; Yongzhou Tobacco Branch Company of Hunan , Yongzhou 425000 , P. R . China ; Sinan Tobacco Company of Guizhou , Sinan 565100 , P. R . China ; Department of Resources , Environment and Agrochemistry , Huazhong Agricultural University, Wuhan 430070 , P.R.China).  Agricultural Sciences in China.2002(09)
  • [4].Advances in Studies of Biological Nitrogen Saving Technology for Wheat[J]. Liya NIU,Liang YU,Wei WANG,Weiwei WANG,Jing FU,Fengzhi WANG,Songshan ZHAO.  Asian Agricultural Research.2018(02)
  • [5].Study on the Influence of Sowing Rate,Water and Fertilizer Coupling on Water Use Efficiency of Fodder Millet[J]. Hanzhang ZHOU,Huan LIU,Xinjian ZHOU,Zhimin WEI,Shuhong YUAN,Shenglin HOU,Xueyan XIA.  Asian Agricultural Research.2016(10)
  • [6].Effects of single basal application of coated compound fertilizer on yield and nitrogen use efficiency in double-cropped rice[J]. Jiana Chen,Fangbo Cao,Hairong Xiong,Min Huang,Yingbin Zou,Yuanfu Xiong.  The Crop Journal.2017(03)
  • [7].Effects of Different Nitrogen Fertilizer Treatments on Soil Enzymatic Activities in Mulberry Gardens[J]. Yan ZENG,Jinsheng HUANG,Liuqiang ZHOU,Meifu HUANG,Rulin XIE,Hongwei TAN.  Agricultural Biotechnology.2014(05)
  • [8].Evaluation of a model recommended for N fertilizer application in irrigated rice[J]. ZHENG Zhiming, YAN Lijiao, and WANG Zhaoqian, Agro-ecology Inst, ZheJiang Agri Univ, Hangzhou 310029, China.  Chinese Rice Research Newsletter.1997(03)
  • [9].Grain quality response to Phosphorus and Zinc fertilizer in rice genotype[J]. CHEN Lijuan FAN Xingming Rice Res Inst, Yunnan Agri Vniv, Kunming 650201; Food Crop Inst, Yunnan A-cad of Agri Sci, Kunming 650205, China..  Chinese Rice Research Newsletter.1997(03)
  • [10].Effects of yield and resistances on rice by application of Si-fertilizer[J]. YE Chun and CHEN Hongjin,Dinvision of Soil and Fertilizer,Zhejiang Agri Bureau,Hangzhou 310004,China.  Chinese Rice Research Newsletter.1995(03)
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