Influence of the DMPP (3,4-dimethyl pyrazole phosphate) on nitrogen transformation and leaching in multi-layer soil columns

文献类型: 外文期刊

第一作者: Yu, Qiao-Gang

作者: Yu, Qiao-Gang;Chen, Ying-Xu;Ye, Xue-Zhu;Tian, Guang-Ming;Zhang, Zhi-Jian

作者机构:

关键词: 3,4-Dimethyl pyrazole phosphate;nitrate pollution;nitrification inhibitor;soil solution;urea

期刊名称:CHEMOSPHERE ( 影响因子:7.086; 五年影响因子:6.956 )

ISSN: 0045-6535

年卷期: 2007 年 69 卷 5 期

页码:

收录情况: SCI

摘要: The application of nitrogen fertilizers leads to various ecological problems such as nitrate leaching. The use of nitrification inhibitors as nitrate leaching retardants is a proposal that has been suggested for inclusion in regulations in many countries. In this study, using a multi-layer soil column device, the influence of new nitrification inhibitor DMPP (3,4-dimethyl pyrazole phosphate) was studied for understanding the nitrogen vertical transformation and lowering the nitrate leaching at different soil profile depths. The results indicated that, within 60 d of experiment, the regular urea added 1.0% DMPP can effectively inhibit the ammonium oxidation in the soil, and improve the ammonium concentration in soil solution over the 20 cm depths of soil profile, while decline the concentrations of nitrate and nitrite. No obvious difference was found on ammonium concentrations in soil solution collected from deep profile under 20 cm depths between regular urea and the urea added 1.0% DMPP. There was also no significant difference for the nitrate, ammonium and nitrite concentrations in the soil solution under 40 cm depths of soil profile with the increasing nitrogen application level, among the treatments of urea added 1.0% DMPP within 60 d. It is proposed that DMPP could be used as an effective nitrification inhibitor in some region to control ammonium oxidation and decline the ion-nitrogen leaching, minimizing the shallow groundwater pollution risk and being beneficial for the ecological environment. (C) 2007 Elsevier Ltd. All rights reserved.

分类号:

  • 相关文献

[1]Influences of nitrification inhibitor 3,4-dimethyl pyrazole phosphate on nitrogen and soil salt-ion leaching. Yu Qiaogang,Ye Xuezhu,Yu Qiaogang,Chen Yingxu,Zhang Zhijian,Tian Guangming.

[2]Evaluation of nitrification inhibitor 3,4-dimethyl pyrazole phosphate on nitrogen leaching in undisturbed soil columns. Yu, Qiaogang,Chen, Yingxu,Ye, Xuezhu,Zhang, Qiuling,Zhang, Zhijian,Tian, Ping.

[3]Nitrogen release dynamics and transformation of slow release fertiliser products and their effects on tea yield and quality. Han, Wen-Yan,Ma, Li-Feng,Shi, Yuan-Zhi,Ruan, Jian-Yun,Kemmitt, Sarah J.. 2008

[4]Nitrate pollution of groundwater in northern China. Zhang, WL,Tian, ZX,Zhang, N,Li, XQ. 1996

[5]The influence of soil solution properties on phytotoxicity of soil soluble copper in a wide range of soils. Zhang, Xiaoqing,Wei, Dongpu,Li, Bo,Ma, Yibing,Wang, Xuedong,Huang, Zhanbin. 2013

[6]The impact of nitrogen amendment and crop growth on dissolved organic carbon in soil solution. Wang Xiao-guo,Li Chang-sheng,Luo Yong,Hua Ke-ke,Zhou Ming-hua. 2016

[7]Effects of long-term nitrogen application on soil acidification and solution chemistry of a tea plantation in China. Yang, Xiang-de,Ni, Kang,Shi, Yuan-zhi,Yi, Xiao-yun,Zhang, Qun-feng,Fang, Li,Ma, Li-feng,Ruan, Jianyun,Yang, Xiang-de. 2018

[8]The importance of soil solution chemistry to nickel toxicity on barley root elongation. Zhang, Xiaoqing,Huang, Zhanbin,Wei, Dongpu,Li, Bo,Ma, Yibing. 2013

[9]Leaching impacts Ni toxicity differently among soils but increases its predictability according to nitrification assay. Li, Xiaofang,Cui, Haojie,Li, Xiaofang,Huang, Yizong,Cui, Haojie,Ma, Yibing,Sun, Jinwei.

[10]Evaluations of the DMPP on organic and inorganic nitrogen mineralization and plant heavy metals absorption. Yu Qiaogang,Ma Junwei,Sun Wanchun,Zou Ping,Lin Hui,Fu Jianrong,Fu Changhuan. 2018

[11]Modifying nitrogen fertilizer practices can reduce greenhouse gas emissions from a Chinese double rice cropping system. Wang, Bin,Li, Yu'e,Wan, Yunfan,Qin, Xiaobo,Gao, Qingzhu,Liu, Shuo,Li, Jianling,Wang, Bin.

[12]Effects of novel nitrification and urease inhibitors (DCD/TZ and 2-NPT) on N2O emissions from surface applied urea: An incubation study. Ni, Kang,Ni, Kang,Kage, Henning,Pacholski, Andreas,Pacholski, Andreas. 2018

[13]Combination of modified nitrogen fertilizers and water saving irrigation can reduce greenhouse gas emissions and increase rice yield. Li, Jianling,Li, Yu'e,Wan, Yunfan,Wang, Bin,Waqas, Muhammad Ahmed,Qin, Xiaobo,Gao, Qingzhu,Wilkes, Andreas,Cai, Weiwei,Guo, Chen,Zhou, Shouhua,Su, Rongsui. 2018

[14]Multiple-year nitrous oxide emissions from a greenhouse vegetable field in China: Effects of nitrogen management. Zhang, Jing,Li, Hu,Wang, Yingchun,Wang, Ligang,Deng, Jia. 2018

[15]Effects of combined application of organic and inorganic fertilizers plus nitrification inhibitor DMPP on nitrogen runoff loss in vegetable soils. Yu, Qiaogang,Ma, Junwei,Zou, Ping,Lin, Hui,Sun, Wanchun,Yin, Jianzhen,Fu, Jianrong.

[16]Reducing nitrogen leaching in a subtropical vegetable system. Zhang, Baige,Cao, Jian,Zhang, Changyuan,Song, Zhao,Zhang, Baige,Zhang, Fusuo,Chen, Xinping,Li, Qiang.

[17]Urea- and nitrapyrin-affected N2O emission is coupled mainly with ammonia oxidizing bacteria growth in microcosms of three typical Chinese arable soils. Cui, Peiyuan,Fan, Fenliang,Yin, Chang,Li, Zhaojun,Song, Alin,Liang, Yongchao,Wan, Yunfan,Liang, Yongchao.

[18]Denitrification losses and N2O emissions from nitrogen fertilizer applied to a vegetable field. Cao, B,He, FY,Xu, QM,Yin, B,Cai, GX. 2006

[19]Copper and zinc amounts and distribution in soil as influenced by application of animal manure in east-central Saskatchewan. Qian, P,Schoenau, JJ,Wu, T,Mooleki, SP. 2003

[20]Determination of Urea in Milk and Milk Products by In-line Dialysis-Flow Injection-Spectrophotometry. Zhao Li-Jing,Yan Jie,Ma Dong-Sheng,Xiao Jing-Ze,Zhao Ping,Fan Zhi-Ying. 2011

作者其他论文 更多>>