新型硝化抑制剂DMPP和BASF复合肥在不同作物上的应用效果
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摘要
通过大田试验研究了新型硝化抑制剂DMPP和BASF复合肥对不同作物的产量的影响,主要研究结果如下:
     在海南省当地气候、土壤条件下,DMPP能有效抑制氮肥在土壤中的硝化作用过程,使土壤中的NH_4~+-N较长时间保持较高含量,并减少NO_3~--N在土壤中的过量累积。
     氮肥中添加DMPP能够提高玉米、水稻的籽粒产量、吸氮量、氮肥利用率。其中在玉米上的试验结果表明,在150kg·hm~(-2)施氮水平下,玉米籽粒产量、吸氮量、氮肥利用率分别提高1.9-18.8%、2.2-28.4%、2.7-17.5%。在225kg·hm~(-2)施氮水平下,玉米籽粒产量、吸氮量、氮肥利用率分别提高2.4-2.5%、5.8%、1.3%。在水稻上的试验结果表明,在150kg·hm~(-2)施氮水平下,水稻籽粒产量、吸氮量、氮肥利用率分别提高0.5-25.8%、6.8-14.5%、3.9-9.1%。在南方高温、多雨地区,DMPP和氮肥配合施用的效果明显好于在北方地区的应用效果。随着施氮量的增加,DMPP和氮肥配合施用的效果表现出下降的趋势。和氮肥全部基施的处理相比,氮肥分次施用的施用方式能显著提高玉米、水稻的籽粒产量、吸氮量、氮肥利用率,特别是在施氮量较低的条件下,提高的效果更明显。
     ASN和尿素在玉米、水稻上施用时,两者之间施用效果没有显著差异。但ASN在西瓜、辣椒上施用的效果优于尿素,施用ASN的西瓜、辣椒产量、挂果数、单果重等指标都高于施用尿素的处理。
The field experiments were conducted to study the effect of the new type of nitrification inhibitor DMPP and BASF compound fertilizer on yield of different crops. The results were as follows:
    DMPP could inhibit the transformation of fertilizer N in soil effectively and kept high NH4+-N concentration in soil while reduced exsssive NO3-N accumulation in soil under the climate condition in Hainan.
    The grain yield,N uptake,N use efficiency of maize and rice was increased by applying DMPP with N fertilizer.The results of maize experiments showed that the grain yield,N uptake N use efficiency were increased 1.9-18.8%,2.2-28.4%,2.7-17.5% at N application rate of 150 kg-ha-1 respetively.but increased 2.4-2.5%,5.8%,1.3 % at N application rate of 225 kg-ha-1.The results of rice experiments showed that the grain yield,N uptake N use efficiency of rice was increased 0.5-25.8%,6.8-14.5%,3.9-9.1 5% at N application rate of 150 kg-ha-1.The effect of DMPP on maize in south area of China with high temperature and high rainfall was better than that in north area of China.The effect of DMPP with N fertilizer on maize and rice declined with N application rate.Compared with the treatment that all nitrogen fertilizer was applied as basal,the treatments with splitting application had better effect on grain yield,N uptake,N use efficiency of maize and rice, especially at lower N application rate.
    There was no significant difference between ASN and Urea on maize and rice.However,the effect of ASN on yield of capsicum and watermelon was better than that of UreaThe yield , fruit number and fruit weight of the treatments applied with ASN were higher than that of the treatments applied with Urea.
引文
Jenkinson D.S..1982.全球氮素进展.土壤学进展,(3):12-18
    Sahraw K.L..1987.硝化抑制剂对植物化学组成的影响.土壤学进展,15(6):40-45
    白红英,韩建刚,赵一萍.2002.不同土层土壤理化生性状与反硝化酶活性、N_2O排放通量的相关性研究.农业环境保护,21(3):193-196
    边秀举,巨晓棠,刘学军,张福锁,李晓林.1999.尿素在草甸褐土中分解转化特征及影响因素的研究.河北农业大学学报,22(4):23-26
    陈利军,史奕,李荣华,胡连生,周礼恺.1995.脲酶抑制剂和硝化抑制剂的协同作用对尿素氮转化和N_2O排放的影响.应用生态学报,6(4):368-372
    陈利军,武志杰,姜勇,周礼恺.2002.与氮有关的土壤酶活性对抑制剂施用的响应.应用生态学报.13(9):1109-1103
    陈世伟,陈国良.1996.施肥方法对改善肥料氮素运移及肥效的影响.水土保持研究.3(1):179-184
    陈振德,陈建美,何金明,蔡葵,王佩圣,陈雪辉.2001.施肥对油菜硝酸盐含量的影响.山东农业科学,(4):9-11
    崔洪波,张志明,张成刚,毕庶春.1997.长效碳酸氢铵缓效机理与环境效应研究.应用生态学报,8(3):279-282
    丁洪,蔡贵信,王跃思,陈德立.2001.华北平原几种主要类型土壤的硝化及反硝化活性.农业环境保护,20(6):390-393
    杜欣,张泰.1998.长效碳铵的研究与应用.辽宁化工,27(4):208-211
    范晓晖,朱兆良.2002.旱地土壤中的硝化-反硝化作用.土壤通报,33(5):385-391
    范晓晖,朱兆良.2002.我国几种农田土壤硝化势的研究.土壤通报,33(2):124-125
    冯元琦.1993.碳铵出路之我见.化肥工业,(5):9-10
    傅涛,倪九派,魏朝富,谢德体.2001.双氰胺在四川3种主要土壤上的硝化抑制作用.土壤与环境,10(3):210-213
    胡勤海,傅如松.1991.双氰胺对蔬菜硝酸盐积累抑制作用的研究.环境污染与防治,13(1):6-8
    黄斌,陈冠雄.2000.长效碳酸氢铵对土壤硝化-反硝化过程和NO与N_2O排放的影响.应用生态学报,11(1):73-77
    黄益宗,冯宗炜,张福珠.2000.农田氮损失及其阻控对策研究.中国科学院研究生学报,17(2):
    
    49-58
    黄益宗,冯宗炜,王效科,张福珠.2002.硝化抑制剂在农业上的研究进展.土壤通报,33(4):310-315
    巨晓棠,刘学军,张福锁.2002.尿素与DCD和有机物料配施条件下氮素的转化与去向.中国农业科学,35(2):181-186
    柯连科夫.Д.А.主编.尹崇仁,邱忠祥,朱理徽,王德清译.1983.氮肥的农业化学.农业出版社,北京.283-294
    李贵桐,李保国,黄元仿,陈德立.较高浓度乙炔对秸秆还田土壤硝化作用的抑制.中国农业大学学报,7(3):57-62
    李辉信,胡锋,郭和生,蔡贵信,范晓晖.2001.添加碳源、磷和石灰对红壤氮素矿化和硝化作用的影响.33(3):135-141
    李辉信,胡锋,刘满强,蔡贵信,范晓晖.2000.红壤氮素的矿化和硝化作用特征.土壤,32(4):194-197
    李良谟,潘应华,周秀如,伍期途,李振高.1987.太湖地区主要类型土壤的硝化作用与影响因素.土壤,19(6):289-293
    李良谟.1986.我国土壤硝化反硝化作用研究概况与展望.见:我国土壤氮素研究工作的现状与展望.中国土壤学会土壤农业化学专业委员会、土壤微生物和生物化学委员会主编.科学出版社,北京.68-81
    李庆逵,朱兆良,于天仁主编.1998.中国农业可持续发展中的肥料问题.江西科学技术出版社,南昌.3-5
    李世清,李凤民.2000.石灰性土壤剖面氮素的矿化和硝化作用.兰州大学学报:自然科学版.36(1):98-104
    李永梅,杜彩琼,林春苗,王小红.2003.铵态氮肥施入土壤中的转化.云南农业大学学报.18(1):26-29
    梁光商主编.1983.水稻生态学.农业出版社,北京.291-296
    林葆,李家康.1989.我国化肥肥效及其提高途径.土壤学报,26(3):273-279
    旅大市轻化工研究所主编.1979.氮肥增效剂.化学工业出版社,北京.7-89
    罗时石,张浩,葛才林,龚荐,马飞.1995.温度及施氮量对土壤中硝酸盐形成的动力学研究.核农学报,9(增刊):1-6
    孟盈,甘建民,郑征,沙丽清.2003.热带雨林及在其下种植砂仁的土壤中氮素矿化和硝化的对比研究.农业环境科学学报,22(1):21-24
    秦浩然,马魁英.1989.浅谈硝化细菌及其在自然界的意义.生物学通报,(12):16-18
    
    
    任仁.2000.温室气体CH_4的人为源及其对减排的技术措施.环境导报,(4):42-43
    商照聪,高子勤.1999.双氰胺对碳酸氢铵在土壤中氮素转化的影响.应用生态学报,10(2):182-185
    舒冬妮,齐鑫山,阚建军.1992.双氰胺抑制蔬菜硝酸盐的试验研究.农业环境保护,11(4):176-178
    王百群,余存祖,戴鸣均,彭琳.1994.水分淋洗下土壤个各形态氮在剖面中的分布与移动.水土保持研究,1(5):6-11
    夏建国,李廷轩,王应贵,邓良基.1999.不同浓度双氰胺对土壤铵态氮变化的影响.四川农业大学学报,17(4):444-447
    谢建昌.1998.世界肥料使用的现状与前景.植物营养与肥料学报,4(4):321-330
    邢光熹,颜晓元.2000.中国农田N_2O排放的分析估算与减缓对策.农村生态环境,16(4):1-6
    徐卫红,王正银,刘飞.2001.不同土壤与施肥对莴笋硝酸盐和营养品质效应.西南农业大学学报,23(6):553-556
    徐星凯,周礼恺,Oswald V.C..2000.脲酶抑制剂/硝化抑制剂对土壤中尿素氮转化及形态分布的影响.土壤学报,37(3):339-345
    徐星凯,周礼恺,Oswald V.C..2001.脲酶抑制剂/硝化抑制剂对植稻土壤中尿素N行为的影响.生态学报,21(10):1682-1686
    徐亚同主编.1989.废水生物处理的运行和管理.华东师范大学出版社,上海.151-184
    薛继澄,毕德义,李家金,殷永娴,吴志行.1994.保护地栽培蔬菜生理障碍的土壤因子与对策.土壤肥料,(1):4-9
    殷永娴,刘鸿雁.1996.设施栽培下土壤中硝化、反硝化作用的研究.生态学报,16(3):246-250
    俞慎,李振高.1999.稻田生态系统生物硝化-反硝化作用与氮素损失.应用生态学报,10(5):630-634
    张夫道.1998.氮素营养研究中的几个热点问题.植物营养肥料学报,4(4):331-338
    张俊侠,孙德平,司友斌.2001.设施土壤栽培的障碍因子研究.安徽农学通报,7(4):52-53
    张绍林,朱兆良,许银华.1989.黄泛区潮土-冬小麦系统中尿素的转化和肥料氮去向.核农学报,3(1):9-15
    张树兰,杨学云,吕殿青,同延安.2000.几种土壤剖面的硝化作用及其动力学特征.土壤学报,37(3):372-379
    张树兰,杨学云,吕殿青,同延安.2002.温度、水分及不同氮源对土壤硝化作用的影响.生态学报,
    
    22(12):2147-2153
    赵广才,张保明,王崇义.1998.应用~(15)N研究小麦各部位氮素分配利用及施肥效应.作物学报,24(6):856-858
    赵劲松.1998.3(5)-甲基吡唑—氮肥硝化抑制剂.化工进展,(3):57-59
    郑平,冯孝善.1999.硝化作用的生化原理.微生物学通报,1999,26(3):215-217
    郑兴耘,温贤芳,陈清,潘家荣.1995.施氮量和温度对土壤硝态氮形成动力学的影响.核农学报,9(增刊):49-57
    中华人民共和国农业部主编.1998.’97中国农业统计资料.中国农业出版社,北京.26-27
    周礼恺,徐星凯,陈利军,李荣华.1999.氢醌和双氰胺对种稻土壤N_2O和CH_4排放的影响.应用生态学报,10(2):189-192
    朱建国.1995.硝态氮污染危害与研究展望.土壤学报,32(增刊):62-69
    朱兆华,王德汉,廖宗文,游植麟.2000.氨氧化木质素作为硝化抑制剂的研究.土壤与环境,9(2):132-134
    朱兆良,文启孝主编.1992.中国土壤氮素.江苏科学技术出版社,南京.94-123
    朱兆良.2000.农田中氮肥的损失与对策.土壤与环境,9(1):1-6
    庄舜尧,孙秀廷.1997.肥料氮在蔬菜地中的去向与平衡.土壤,(2):80-83
    Amerger A.. 1989. Research on dicyandiamide as a nitrification inhibition and future outlook. Commu. Soil Sci. Plant Anal., 20(19&20): 1933-1955
    Aulakh M. S., J. W. Doran, A. R. Mosier. 1992. Soil denitrification significance,measurement and effect of manegement. Advances in Soil Science, 18(1): 1-57
    Azam F., G. Benckiser, C. Müller, J. C. G. Ottow. 2001. Release,movement and recovery of 3,4-dimethylpyrazole phosphate(DMPP),ammonium,and nitrate from stabilized nitrogen fertilizer granules in a silty clay soil under laboratory conditions. Biology Fertility of Soils, 34:118-125
    Barth G., S. V. Tucher, U. Schmidhalter. 2001. Influence of soil parameters on the new nitrifycation inhibitor. Biology Fertility of Soils, 34: 98-102.
    Bremner J. M. and G. W. Mccarty. 1986. Inhibition of nitrification in soil. In: International Society Science of Soil Science. Trans 13th Inter Congr Soil Sci. ed.. International Society Science of Soil Science, Amsterdam. 251-252
    Crutzen P. J.. 1974. Estimates of possible variation in total ozone due to nature causes and human actit. Amibio, 3:201-210
    
    
    Davies D.M.and P.J.Williams.1995. The effect of the nitrification inhibitor Dicyandiamide on nitrate leaching and ammonia volatilization: A U.K.nitrate sensitive areas perspective.Journal of Environmental Management.45: 263-272
    Fettweis U., W.Mittelstaedt, C.Schimansky, F.Fuhr.2001. Lysimeter experiments on the translocation of the carbon-14-labelled nitrification inhibitor 3,4-dimethylpyrazole phosphate(DMPP) in a gleyic cambisol.Biology Fertility of Soils, 34: 126-130
    Groffman P.M..1995. A conceptual assessment of the importance of denitrification as a source of soil nitrogen loss in tropical agroecosystems.Fert.Res., 42: 139-148
    Hyman M.R, A.J.Daniel.1992. 14C2H2-and 14CO2-labeling studies of the de Novo synthesis of polypeptides by Nitrosomonas europaea during recovery from acetylene and light inactivation of ammonia monooxygenase.The Journal of Biological Chemistry, 267(3) : 1534-1545
    Lagrid M., O.C.Bockman, O.Kaarstad.ed..1999. Agriculture,Fertilizers and the Environment.CABI Press, New York.143
    Linzmeier W., R.Gutser,U.Schmidhalter.2001. Nitrous oxide emission soil and from nitrogen-15-labeled fertilizer with the new nitrification inhibitor 3,4-dimethylpyrazole phosphate(DMPP).Biology Fertility of Soils, 34: 85-97
    Mahendrappa M.K., R.L Smith,A.T.Christiansen.1966. Nitrifing organisms affected by climate region in western United States.Soil Sci.Soc.Am.Proc.30(1) : 60-62
    Malhi S.S.and W.M.Mcgill.1982. Nitrification in three Albert soils: effect of temperature,moisture and substrates concentration.Soil Biol.Biochem., 14(4) :393-399
    Masagni J.H.J.and R.S.Helms.1989. Effect of nitrogen rate, nitrogen timing,and nitrification inhibitors on grain sorghum production in Arkansas.Common in Soil Sci.Plant Anal., 20(19&20) : 2117-2136
    McCarty G.W..1999. Modes of action of nitrification inhibitors.Biology Fertility of Soils, 29: 1-9
    McTaggart I.P., H.Clayton, J.Parker, L.Swan, K.A.Smith.1997. Nitrous oxide emission from grassland and spring barley,following N fertiliser application with and without nitrification inhibitors.Biology Fertility of Soils, 25: 261-268
    Mosier A.R.and J.M.Duxbury.1985. Nitrous oxide emission from agncfield:Assessment and mitigation.Plant and Soil, 87(2) : 250-260
    Muller C., R.J.Stevens, R.J.Laughlin, F.Azam, J.C.G.Ottow.2002. The nitrification inhibitor DMPP had no effect on denitrifying enzyme activity.Soil Biol.Biochem.34(11) : 1825-1827
    Munro P.E..1996. Inhibition of nitrifers by grass root extracts.J.Appl.Ecol., 33(3) : 231-238
    Pasda G, R.Hahndel, W.Zerulla.2001. Effect of fertilizers with the new nitrification inhibitor DMPP
    
    (3,4-dimethylpyrazole phosphate) on yield and quality of agricultural and horticultural crops.Biology Fertility of Soils, 34: 85-97
    Serna M.D., F.Legaz, M.Primo.1994. Efficacy of dicyandiamide as a soil nitrification inhibitor in citrus production.Soil Sci.Soc.Am.J., 58(6) : 1817-1824
    Serna M.D., J.Banuls, A.Quinoes, Primo-Millo, F.Legaz.2000. Evaluation of 3,4-dimethylpyrazole phosphate as a nitrification inhibitor in a Citrus-cultivated soil.Biology Fertility of Soils, 32: 41-46
    Weiske A., G.Benckiser, T.Herbert, J.C.G Ottow, 2001. Influence of the new nitrification inhibitor 3,4-dimethylpyrazole phosphate(DMPP) in comparison to dicyandimide(DCD) on nitrous oxide emissions.carbon dioxide fluxes and methane oxidation during 3 years of repeated application in field experiments.Biology Fertility of Soils, 34: 109-117
    Zerulla W., T.Barth, J .Dressel, K.Erhardt, K.H.V.Loncquenghien, G.Pasda, M.Radle, A.H.Wissemeier.2001. 3,4-dimethylpyrazole phosphate(DMPP)-a new nitrification inhibitor for agricultural and horticulture.Biology Fertility of Soils, 34: 79-84

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