河南农业科学 ›› 2024, Vol. 53 ›› Issue (8): 1-10.DOI: 10.15933/j.cnki.1004-3268.2024.08.001
黄铂轩1,2,郑苍松1,孙淼1,邵晶晶1,冯卫娜1,李鹏程1,2,3,董合林1,2
收稿日期:
2024-01-30
出版日期:
2024-08-15
发布日期:
2024-09-09
通讯作者:
李鹏程(1972-),男,湖北荆州人,副研究员,博士,主要从事棉花养分高效管理研究。E-mail:lipengchengcri@163.com
董合林(1964-),男,河南安阳人,研究员,主要从事肥料资源高效利用研究。E-mail:donghl668@sina.com
作者简介:
黄铂轩(1998-),男,广西桂林人,在读硕士研究生,研究方向:棉花养分高效利用。E-mail:1142008058@qq.com
基金资助:
HUANG Boxuan1,2,ZHENG Cangsong1,SUN Miao1,SHAO Jingjing1,FENG Weina1,LI Pengcheng1,2,3,DONG Helin1,2,3
Received:
2024-01-30
Published:
2024-08-15
Online:
2024-09-09
摘要: 氮素抑制剂具有提高作物产量和氮肥利用率、减少施氮成本和环境污染风险等优点,为现代农业绿色高效发展提供了技术途径,其主要包括硝化抑制剂和脲酶抑制剂。就硝化抑制剂和脲酶抑制剂的研发历史、作用机制及应用效果进行了归纳与总结,并对其未来的研究方向进行展望,以期为氮素抑制剂的开发与利用提供参考。
中图分类号:
黄铂轩, 郑苍松, 孙淼, 邵晶晶, 冯卫娜, 李鹏程, 董合林. 氮素抑制剂研究进展[J]. 河南农业科学, 2024, 53(8): 1-10.
HUANG Boxuan, ZHENG Cangsong, SUN Miao, SHAO Jingjing, FENG Weina, LI Pengcheng, DONG Helin. Research Progress of Nitrogen Inhibitors[J]. Journal of Henan Agricultural Sciences, 2024, 53(8): 1-10.
[1]ERISMAN J W,SUTTON M A,GALLOWAY J,et al.How a century of ammonia synthesis changed the world[J].Nature Geoscience,2008,1:636‑639. [2]任科宇.氮肥优化减施和有机肥替代下我国粮食作物的氮肥利用率[D].北京:中国农业科学院,2020. REN K Y.Nitrogen use efficiency of grain crops under optimized nitrogen application and manure substitution in china[D].Beijing:Chinese Academy of Agricultural Sciences,2020. [3]朱兆良,金继运.保障我国粮食安全的肥料问题[J].植物营养与肥料学报,2013,19(2):259‑273. ZHU Z L,JIN J Y.Fertilizer use and food security in China[J].Plant Nutrition and Fertilizer Science,2013,19(2):259‑273. [4]BOLAN N S,SAGGAR S,LUO J F,et al.Gaseous emissions of nitrogen from grazed pastures:Processes,measurements and modelling,environmental implications,and mitigation[J].Advances in Agronomy,2004:37‑120. [5]DORA M,BISWAS S,CHOUDHARY S,et al.A system‑wide interdisciplinary conceptual framework for food loss and waste mitigation strategies in the supply chain[J].Industrial Marketing Management,2021,93:492‑508. [6]田发祥,纪雄辉,官迪,等. 氮肥增效剂的研究进展[J].杂交水稻,2020,35(5):7‑13. TIAN F X,JI X H,GUAN D,et al.Advances of research on nitrogen inhibitors[J].Hybrid Rice,2020,35(5):7‑13. [7]CONRAD J P.The occurrence and origin of ureaselike activities in soils[J].Soil Science,1942,54(5):381‑389. [8]武志杰,石元亮,李东坡,等.稳定性肥料发展与展望[J].植物营养与肥料学报,2017,23(6):1614‑1621. WU Z J,SHI Y L,LI D P,et al.The development and outlook of stabilized fertilizers[J].Journal of Plant Nutrition and Fertilizer,2017,23(6):1614‑1621. [9]李思平,刘蕊,刘家欢,等.稳定性肥料产业发展创新及展望[J].现代化工,2022,42(11):1‑8. LI S P,LIU R,LIU J H,et al.Development,innovation and prospect of stable fertilizer industry[J].Modern Chemical Industry,2022,42(11):1‑8. [10]KISSEL D E,CABRERA M L.Ammonia volatilization from urea fertilizers[J].Agriculture,Ecosystems & Environment,2016,232:283‑289. [11]王小彬,BAILEY L D,GRALLT C A,等.关于几种土壤脲酶抑制剂的作用条件[J].植物营养与肥料学报,1998,4(3):211‑218. WANG X B,BAILEY L D,GRALLT C A,et al.The acting conditions of some urease inhibitors in soils[J].Plant Natrition and Fertilizen Science,1998,4(3):211‑218. [12]周礼恺,武冠云,张志明,等.尿酶抑制剂氢醌在提高尿素肥效中的作用[J].土壤学报,1988,25(2):191‑198. ZHOU L K,WU G Y,ZHANG Z M,et al.Effect of urease inhibitor hydroquinone on the efficiency of urea fertilizer[J].Acta Pedologica Sinica,1988,25(2):191‑198.[13]张志明,武冠云,李荣华,等.脲酶抑制剂氢醌提高尿素肥效的研究[J].土壤通报,1987,18(5):214‑216. ZHANG Z M,WU G Y,LI R H,et al.Study on urease inhibitor hydroquinone to improve fertilizer efficiency of urea[J].Chinese Journal of Soil Science,1987,18 (5):214‑216. [14]赵晓燕,周礼恺,李荣华,等.脲酶抑制剂氢醌的环境效应评价[J].应用生态学报,1991,2(4):316‑322. ZHAO X Y,ZHOU L K,LI R H,et al.Evaluation on environmental effect of the urease inhibitor hydroquinone[J].Chinese Journal of Applied Ecology,1991,2(4):316‑322. [15]陈苇,卢婉芳.稻田脲酶抑制剂对15N-尿素去向的影响[J].核农学报,1997,11(3):25‑30. CHEN W,LU W F.Effect of urease inhibitor in paddy field on the fate of 15N‑urea[J].Journal of Nuclear Agricultural Sciences,1997,11(3):25‑30. [16]XU X K,ZHOU L K,VAN CLEEMPUT O,et al.Fate of urea‑15N in a soil‑wheat system as influenced by urease inhibitor hydroquinone and nitrification inhibitor dicyandiamide[J].Plant and Soil,2000,220 (1):261‑270. [17]李欠欠.脲酶抑制剂LIMUS对我国农田氨减排及作物产量和氮素利用的影响[D].北京:中国农业大学,2014. LI Q Q. Effect of urease inhibitor LIMUS on ammonia mitigation and crop yield and nitrogen use efficiency in different croplands of china[D].Beijing:China Agricultural University,2014. [18]LI Q Q,YANG A L,WANG Z H,et al.Effect of a new urease inhibitor on ammonia volatilization and nitrogen utilization in wheat in north and Northwest China[J].Field Crops Research,2015,175:96‑105. [19]MCCARTY G W,BREMNER J M.Inhibition of nitrification in soil by heterocyclic nitrogen compounds [J]. Biology and Fertility of Soils,1989,8(3):204‑211. [20]周礼恺,赵晓燕,李荣华,等.脲酶抑制剂氢醌对土壤尿素氮转化的影响[J].应用生态学报,1992,3(1):36‑41. ZHOU L K,ZHAO X Y,LI R H,et al.Effect of urease inhibitor hydroquinone on urea‑N transformation in soil[J].Chinese Journal of Applied Ecology,1992,3(1):36‑41. [21]陈利军,史奕,李荣华,等.脲酶抑制剂和硝化抑制剂的协同作用对尿素氮转化和N2O排放的影响[J].应用生态学报,1995,6(4):368‑372. CHEN L J,SHI Y,LI R H,et al.Synergistic effect of urease inhibitor and nitrification inhibitor on urea nitrogen transformation and N2O emission[J].Chinese Journal of Applied Ecology,1995,6(4):368‑372. [22]陈振华,陈利军,武志杰.脲酶-硝化抑制剂对减缓尿素转化产物氧化及淋溶的作用[J].应用生态学报,2005,16(2):238‑242. CHEN Z H,CHEN L J,WU Z J.Effects of urease and nitrification inhibitors on alleviating the oxidation and leaching of soil urea’s hydrolyzed product ammonium[J].Chinese Journal of Applied Ecology,2005,16(2):238‑242. [23]ZERULLA W,BARTH T,DRESSEL J,et al.3,4‑Dimethylpyrazole phosphate(DMPP) : A new nitrification inhibitor for agriculture and horticulture[J].Biology and Fertility of Soils,2001,34(2):79‑84. [24]俞巧钢,陈英旭,张秋玲,等.DMPP对菜地土壤氮素淋失的影响研究[J].水土保持学报,2006,20(4):40‑43. YU Q G,CHEN Y X,ZHANG Q L,et al.Effect of DMPP on inorganic nitrogen leaching loss from vegetable soil[J].Journal of Soil and Water Conservation,2006,20(4):40‑43. [25]许超,吴良欢,张立民,等.含硝化抑制剂DMPP氮肥对小白菜硝酸盐累积和营养品质的影响[J].植物营养与肥料学报,2005,11(1):137‑139. XU C,WU L H,ZHANG L M,et al.Effect of nitrogen fertilizer with nitrification inhibitor DMPP on nitrate accumulation and nutritional quality of Brassica campestris L.ssp.chinensis[J].Plant Nutrition and Fertilizing Science,2005,11(1):137‑139. [26]伍少福,吴良欢,尹一萌,等.含硝化抑制剂DMPP复合肥对日光温室芹菜生长和营养品质的影响[J].应用生态学报,2007,18(2):383‑388. WU S F,WU L H,YIN Y M,et al.Effects of DMPP‑compound fertilizer on greenhouse celery growth and nutritional quality[J].Chinese Journal of Applied Ecology,2007,18(2):383‑388. [27]孙志梅,武志杰,梁文举,等.3,5-二甲基吡唑对铵态氮硝化及作物生长的影响[J].植物营养与肥料学报,2006,12(6):869‑874. SUN Z M,WU Z J,LIANG W J,et al.Effects of different application rates of 3,5‑dimethylpyrazole on soil ammonium nitrification and crop growth[J].Plant Nutrition and Fertilizer Science,2006,12(6):869‑874. [28]孙志梅,武志杰,陈利军,等.3,5-二甲基吡唑对尿素氮转化及NO3--N淋溶的影响[J].环境科学,2007,28 (1):176‑181. SUN Z M,WU Z J,CHEN L J,et al.Effects o(f 3,5‑)dimethylpyrazole on soil urea‑N transformation and NO3-‑N leaching[J].Environmental Science,2007,28 (1):176‑181. [29]史云峰,武志杰,陈利军,等.3,5-二甲基吡唑磷酸盐(DMPZP)对土壤硝化作用的影响[J].应用生态学报,2007,18(5):1035‑1039. SHI Y F,WU Z J,CHEN L J,et al.Effects of 3,5‑dimethylpyrazole phosphate(DMPZP) on soil nitrification[J].Chinese Journal of Applied Ecology,2007,18(5):1035‑1039. [30]LI J,SHI Y,LUO J,et al.Use of nitrogen process inhibitors for reducing gaseous nitrogen losses from land‑applied farm effluents[J].Biology and Fertility of Soils,2014,50(1):133‑145. [31]SILVA A G B,SEQUEIRA C H,SERMARINI R A,et al.Urease inhibitor NBPT on ammonia volatilization and crop productivity:A meta‑analysis[J].Agronomy Journal,2017,109(1):1‑13. [32]CANTARELLA H,OTTO R,SOARES J R,et al.Agronomic efficiency of NBPT as a urease inhibitor:A review[J].Journal of Advanced Research,2018,13:19‑27. [33]MARTINS M R,SANT’ANNA S A C,ZAMAN M,et al.Strategies for the use of urease and nitrification inhibitors with urea:Impact on N2O and NH3 emissions,fertilizer‑15N recovery and maize yield in a tropical soil[J].Agriculture,Ecosystems & Environment,2017,247:54‑62. [34]李君,刘涛,褚贵新.脲酶抑制剂对石灰性土壤尿素转化及N2O排放的影响[J].农业环境科学学报,2014,33 (9):1866‑1872. LI J,LIU T,CHU G X.Responses of urea transformation dynamics and nitrous oxide to three urease inhibitors in calcareous soil[J].Journal of Agro‑Environment Science,2014,33(9):1866‑1872. [35]ZHAO Z C,WU D,BOL R,et al.Nitrification inhibitor’s effect on mitigating N2O emissions was weakened by urease inhibitor in calcareous soils[J].Atmospheric Environment,2017,166:142‑150. [36]宋志远,孙庆元.脲酶抑制剂nBPT对土壤微生物的影响[J].大连轻工业学院学报,2006,25(2):100‑102. SONG Z Y,SUN Q Y.Effect of urease inhibitor nBPT on soil microorganisms[J].Journal of Dalian Institute of Light Industry,2006,25(2):100‑102.[37]赵略,孙庆元,于英梅,等.脲酶抑制剂nBPT对土壤脲酶活性和脲酶产生菌的影响[J].大连轻工业学院学报,2007,26(1):24‑27. ZHAO L,SUN Q Y,YU Y M,et al. Effect of urease inhibitor nBPT on soil urease activity and urease producing microorganisms[J].Journal of Dalian Institute of Light Industry,2007,26(1):24‑27. [38]张文学,杨成春,王少先,等.脲酶抑制剂与硝化抑制剂对稻田土壤氮素转化的影响[J].中国水稻科学,2017,31(4):417‑424. ZHANG W X,YANG C C,WANG S X,et al.Effects of urease inhibitor and nitrification inhibitor on nitrogen transformation in paddy soil[J].Chinese Journal of Rice Science,2017,31(4):417‑424. [39]ENGEL R E,TOWEY B D,GRAVENS E.Degradation of the urease inhibitor NBPT as affected by soil pH[J].Soil Science Society of America Journal,2015,79 (6):1674‑1683. [40]ENGEL R E,WILLIAMS E,WALLANDER R,et al.Apparent persistence of N-(n‑butyl)thiophosphoric triamide is greater in alkaline soils[J].Soil Science Society of America Journal,2013,77(4):1424‑1429. [41]孙庆元,张雪崧,王艳红.土壤脲酶抑制剂正丁基硫代磷酰三胺的作用基团研究[J].土壤,2007,39(3):492‑495. SUN Q Y,ZHANG X S,WANG Y H.Functional groups of soil urease inhibitor nBPT[J].Soils,2007,39 (3):492‑495. [42]李晓鸣.氢醌在小麦吸收利用氮素中的作用[J].黑龙江农业科学,2002(4):4‑6. LI X M.Effect of HQ to Assimilating and utilizing N‑urea in the wheat[J].Heilongjiang Agricultural Science,2002(4):4‑6. [43]汤树德,徐凤花,隋文志,等.脲酶抑制剂氢醌对土壤脲酶活性,氨挥发和硝化的抑制动态[J].生物技术,1993,3(1):32‑37. TANG S D,XU F H,SUI W Z,et al.The restrain dynamic of urease activity and volatilization and nitrification of ammonia in soil by urease onhibitor‑hydroquinone[J].Biotechnology,1993,3(1):32‑37. [44]隽英华,陈振华,张玉兰,等.脲酶抑制剂氢醌对土壤脲酶动力学行为的调控效应[J].中国土壤与肥料,2015(4):53‑58. JUAN Y H,CHEN Z H,ZHANG Y L,et al.Regulation effects on soil urease kinetics as affected by urease inhibitor hydroquinone[J].Soil and Fertilizer Sciences in China,2015(4):53‑58.[45]串丽敏. 硝化/脲酶抑制剂对土壤氮素迁移转化及油菜生长的影响[D].保定:河北农业大学,2010. CHUAN L M.Effects of nitrification/urease inhibitor on nitrogen migration,transformation and reape growth[D].Baoding:Hebei Agricultural University,2010. [46]MARTENS D A,BREMNER J M.Effectiveness of phosphoroamides for retardation of urea hydrolysis in soils[J].Soil Science Society of America Journal,1984,48(2):302‑305. [47]BREMNER J M,CHAI H S.Effects of phosphoroamides on ammonia volatilization and nitrite accumulation in soils treated with urea[J].Biology and Fertility of Soils,1989,8(3):227‑230. [48]SCHLEGEL A J,NELSON D W,SOMMERS L E.Field evaluation of urease inhibitors for corn production[J].Agronomy Journal,1986,78(6):1007‑1012. [49]FRENEY J R,KEERTHISINGHE D G,CHAIWANAKUPT P,et al.Use of urease inhibitors to reduce ammonia loss following application of urea to flooded rice fields[J].Plant and Soil,1993,155(1):371‑373. [50]KEERTHISINGHE D G,FRENEY J R.Inhibition of urease activity in flooded soils:Effect of thiophosphorictriamides and phosphorictriamides[J].Soil Biology and Biochemistry,1994,26(11) :1527‑1533. [51]BREMNER J M,KROGMEIER M J.Evidence that the adverse effect of urea fertilizer on seed germination in soil is due to ammonia formed through hydrolysis of urea by soil urease[J].Proceedings of the National Academy of Sciences of the United States of America,1989,86(21):8185‑8188. [52]TOMAR J S,KIRBY P C,MACKENZIE A F.Field evaluation of the effects of a urease inhibitor and crop residues on urea hydrolysis,ammonia volatilization and yield of corn[J].Canadian Journal of Soil Science,1985,65(4):777‑787. [53]隽英华,陈利军,武志杰,等.苯基磷酰二胺对土壤脲酶的抑制作用动力学研究[J].浙江大学学报(农业与生命科学版),2008,34(4):431‑438. JUAN Y H,CHEN L J,WU Z J,et al.Kinetics of soil urease affected by phenyl phosphorodiamidate[J].Journal of Zhejiang University(Agriculture and Life Sciences),2008,34(4):431‑438. [54]NORTON J,OUYANG Y.Controls and adaptive management of nitrification in agricultural soils[J].Frontiers in Microbiology,2019,10:1931. [55]RUSER R,SCHULZ R.The effect of nitrification inhibitors on the nitrous oxide(N2O) release from agricultural soils:A review[J].Journal of Plant Nutrition and Soil Science,2015,178(2):171‑188. [56]刘发波,马笑,张芬,等.硝化抑制剂对我国蔬菜生产产量、氮肥利用率和氧化亚氮减排效应的影响:Meta 分析[J].环境科学,2022,43(11):5140‑5148. LIU F B,MA X,ZHANG F,et al.Impact of nitrification inhibitors on vegetable production yield,nitrogen fertilizer use efficiency and nitrous oxide emission reduction in China:Meta analysis[J].Environmental Science,2022,43(11):5140‑5148. [57]ABALOS D,JEFFERY S,SANZ‑COBENA A,et al.Meta‑analysis of the effect of urease and nitrification inhibitors on crop productivity and nitrogen use efficiency[J].Agriculture,Ecosystems & Environment,2014,189:136‑144. [58]MENÉNDEZ S,BARRENA I,SETIEN I,et al.Efficiency of nitrification inhibitor DMPP to reduce nitrous oxide emissions under different temperature and moisture conditions[J].Soil Biology and Biochemistry,2012,53:82‑89. [59]刘建涛,许靖,孙志梅,等.氮素调控剂对不同类型土壤氮素转化的影响[J].应用生态学报,2014,25(10):2901‑2906.LIU J T,XU J,SUN Z M,et al.Effects of different nitrogen regulators on nitrogen transformation in different soil types[J].Chinese Journal of Applied Ecology,2014,25(10):2901‑2906. [60]张妹婷,石美,梁东丽,等.不同硝化抑制剂对尿素转化的影响[J].西北农林科技大学学报(自然科学版),2011,39(2):178‑184. ZHANG M T,SHI M,LIANG D L,et al.Effects of different nitrification inhibitors on urea transformation[J].Journal of Northwest A & F University(Natural Science Edition),2011,39(2):178‑184. [61]QIAO C L,LIU L L,HU S J,et al.How inhibiting nitrification affects nitrogen cycle and reduces environmental impacts of anthropogenic nitrogen input[J].Global Change Biology,2015,21(3):1249‑1257. [62]石美,梁东丽,满楠,等.不同浓度DMPP和DCD对石灰性土壤中氮素转化的影响[J].中国农业科学,2012,45(22):4635‑4642. SHI M,LIANG D L,MAN N,et al.Effects of different application rates of DMPP and DCD on nitrogen transformation in calcareous soil[J].Scientia Agricultura Sinica,2012,45(22):4635‑4642. [63]BYRNE M P,TOBIN J T,FORRESTAL P J,et al.Urease and nitrification inhibitors—As mitigation tools for greenhouse gas emissions in sustainable dairy systems:A review[J].Sustainability,2020,12(15):6018. [64]张妹婷.石灰性土壤中不同硝化抑制剂的抑制效果及其机理探讨[D].杨凌:西北农林科技大学,2010. ZHANG M T.The study of inhibitory effect and mechanism of different nitrification inhibitors in calcareous soil[D].Yangling:Northwest A & F University,2010. [65]WILCOCK R,ELLIOTT S,HUDSON N,et al.Climate change mitigation for agriculture:Water quality benefits and costs[J].Water Science and Technology,2008,58(11):2093‑2099. [66]LAN T,HAN Y,ROELCKE M,et al.Effects of the nitrification inhibitor dicyandiamide(DCD) on gross ntransformation rates and mitigating N2O emission in paddy soils[J].Soil Biology and Biochemistry,2013,67:174‑182. [67]MCGEOUGH K L,WATSON C J,MÜLLER C,et al.Evidence that the efficacy of the nitrification inhibitor dicyandiamide(DCD)is affected by soil properties in UK soils[J].Soil Biology and Biochemistry,2016,94:222‑232. [68]SINGH J,KUNHIKRISHNAN A,BOLAN N S,et al.Impact of urease inhibitor on ammonia and nitrous oxide emissions from temperate pasture soil cores receiving urea fertilizer and cattle urine[J].The Science of the Total Environment,2013,465:56‑63. [69]杨剑波.硝化抑制剂DMPP对氮素转化的影响及其作用机理研究[D].南京:南京农业大学,2012. YANG J B.The study of inhibitory effect and mechanism of nitrification inhibitor DMPP[D].Nanjing:Nanjing Agricultural University,2012. [70]KLEINEIDAM K,KOŠMRLJ K,KUBLIK S,et al.Influence of the nitrification inhibitor 3,4‑dimethylpyrazole phosphate(DMPP) on ammonia‑oxidizing bacteria and archaea in rhizosphere and bulk soil[J].Chemosphere,2011,84(1):182‑186. [71]LI H,LIANG X Q,CHEN Y X,et al.Effect of nitrification inhibitor DMPP on nitrogen leaching,nitrifying organisms,and enzyme activities in a rice‑oilseed rape cropping system[J].Journal of Environmental Sciences(China) ,2008,20(2) :149‑155. [72]KEIBLINGER K M,ZEHETNER F,MENTLER A,et al.Biochar application increases sorption of nitrification inhibitor 3,4‑dimethylpyrazole phosphate in soil[J].Environmental Science and Pollution Research,2018,25(11):1173‑11177. [73]CHAVES B,OPOKU A,DE NEVE S,et al.Influence of DCD and DMPP on soil N dynamics after incorporation of vegetable crop residues[J].Biology and Fertility of Soils,2006,43(1):62‑68.
[74]陆玉芳,施卫明.生物硝化抑制剂的研究进展及其农业应用前景[J].土壤学报,2021,58(3):545‑557.
[75]张忠庆,高强.硝化抑制剂2-氯-6-三氯甲基吡啶在农业中应用研究进展及其影响因素[J].中国土壤与肥料,2022(4):249‑258.
[76]武志杰,史云峰,陈利军.硝化抑制作用机理研究进展[J].土壤通报,2008,39(4):962‑970.
[77]王雪薇,刘涛,褚贵新. 三种硝化抑制剂抑制土壤硝化作用比较及用量研究[J].植物营养与肥料学报,2017,23(1):54‑61.
[78]韩丽君,薛张逸,谢昊,等.干湿交替灌溉与硝化抑制剂对水稻产量及土壤性状的影响[J].作物杂志,2022 (2):222‑229.
[79]李小娅,高红兵,张权峰,等.脲酶抑制剂尿素在冬小麦上的应用效果研究[J].现代农业科技,2017(11):12‑13.
[80]金何玉,张明超,陈光蕾,等.硝化抑制剂对糯玉米产量和氮肥利用率的影响[J].华北农学报,2020,35 (5):171‑177.
[81]万年鑫,黄强,郑顺林,等.硝化/脲酶抑制剂对秋马铃薯植株及土壤氮素利用的影响[J].中国土壤与肥料,2021(1):83‑89.
[82]段文静,马彤彤,张永江,等.氮肥中不同硝化抑制剂DCD添加比例对棉花生长发育及产量的影响[J].植物营养与肥料学报,2020,26(11):2095‑2106. [83]REN B Z,ZHANG J W,DONG S T,et al.Nitrapyrin improves grain yield and nitrogen use efficiency of summer maize waterlogged in the field[J].Agronomy Journal,2017,109(1):185‑192. [84]CARRASCO I,VILLAR J M.Field evaluation of DMPP as a nitrification inhibitor in the area irrigated by the Canal d’Urgell(Northeast Spain)[M]//Plant nutrition.Dordrecht:Springer Netherlands,2001:764‑765.
[85]刘欢,陈苗苗,孙志梅,等.氮肥调控对小麦/玉米产量、氮素利用及农田氮素平衡的影响[J].华北农学报,2016,31(1):232‑238.
[86]魏珊珊,王艳群,李迎春,等.不同氮肥喷涂吡啶对夏玉米田氮素利用及土壤N2O排放的影响[J].应用生态学报,2016,27(4):1163‑1168. [87]RAZA S,CHEN Z J,AHMED M,et al.Dicyandiamide application improved nitrogen use efficiency and decreased nitrogen losses in wheat‑maize crop rotation in Loess Plateau[J].Archives of Agronomy and Soil Science,2019,65(4):450‑464. [88]LIU C,WANG K,ZHENG X.Effects of nitrification inhibitors(DCD and DMPP)on nitrous oxide emission,crop yield and nitrogen uptake in a wheat‑maize cropping system[J].Biogeosciences,2013,10(4):2427‑2437.
[89]李淑贤,鲍锦辉,姜兰,等.缓释氮肥配施脲酶抑制剂对棉花光合特征的影响[J].中国棉花,2021,48(10):1‑7.
[90]王莉,BOWATTE S,侯扶江.生物硝化抑制剂(BNI)在提高农业生产系统中氮利用率方面的研究进展[J].草业科学,2020,37(3):592‑601.
[91]彭玉净,田玉华,尹斌.添加脲酶抑制剂NBPT对麦秆还田稻田氨挥发的影响[J].中国生态农业学报,2012,20(1):19‑23.
[92]邢卫,陈利军,陈振华,等.NBPT与DMPP不同剂量组合对尿素氮转化的影响[J].土壤通报,2008,39(4):896‑899.
[93]聂彦霞,李东坡,李莉,等.NBPT/DMPP对白浆土中尿素态氮转化调控效果研究[J].土壤,2012,44(6):947‑952.
[94]串丽敏,安志装,杜连凤,等.脲酶/硝化抑制剂对壤质潮土氮素淋溶影响的模拟研究[J].中国农业科学,2011,44(19):4007‑4014.
[95]俞巧钢,陈英旭.DMPP对稻田田面水氮素转化及流失潜能的影响[J].中国环境科学,2010,30(9):1274‑1280.
[96]王改玲,郝明德,陈德立.硝化抑制剂和通气调节对土壤N2O排放的影响[J].植物营养与肥料学报,2006,12 (1):32‑36.
[97]李香兰,马静,徐华,等.DCD不同施用时间对水稻生长期CH4和N2O排放的影响[J].生态学报,2008,28 (8):3675‑3681. [98]XIA L L,LAM S K,CHEN D L,et al.Can knowledge‑based N management produce more staple grain with lower greenhouse gas emission and reactive nitrogen pollution?A meta‑analysis[J].Global Change Biology,2017,23(5):1917‑1925. |
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