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参考文献

[1] Singh J S,Gupta S R.Plant decomposition and soil respiration in terrestrial ecosystems[J].Botanical Review,1997,43:449-528.

[2] 蔡祖聪,徐华,马静.稻田生态系统CH 4 和N 2 O排放[M].合肥:中国科学技术大学出版社,2009.

[3] Bouwman A F,Boumans L J M,Batjes NH.Emissions of N 2 O and NO from fertilized fields:Summary of available measurement data[J].Global Biogeochemical Cycles,2002,16(4):1058-1070.

[4] Smith P,Martino P,Cai Z,et al.Greenhouse gas mitigation in agriculture[J].Philosophical transactions of the Royal Society of London.Biological Sciences,2008,363(1492):789-813.

[5] Lashof D A,Ahuja D.Relative contributions of greenhouse gas emissions to the global warming[J].Nature,1990(344):529-531.

[6] 章永松,柴如山.中国主要农业源温室气体排放及减排对策[J].浙江大学学报(农业与生命科学版).2012,38(1):97-107.

[7] Cai Z C,Xing G X,Shen G Y,et al.Measurements of CH 4 and N 2 O emissions from rice paddies in Fengqiu,China [J].Soil Sci Plant Nutr,1999,45(1):1-13.

[8] 李波,荣湘民,谢桂先,等.有机无机肥配施条件下稻田系统温室气体交换及综合温室效应分析[J].水土保持学报,2013,27(6):298-304.

[9] 王明星.中国稻田甲烷排放[M].北京:科学出版社,2001.

[10] Zheng X H,Wang M X,Wang Y S,et al.Mitigation options for methane,nitrous oxide and oxide emissions from agricultural ecosystem [J].Advance in Atmospheric Sciences,2000,17(1):83-92 .

[11] Zou J W,Huang Y,Jiang J Y,Zheng X H,et al.A 3-year field measurement of methane and nitrous oxide emissions from rice paddies in China:Effects of water regime,crop residue,and fertilizer application [J].Global Biogeochemical Cycles,2005,19(2):20-21.

[12] 李长生,肖向明,Frolking S,等.中国农田的温室气体排放[J].第四纪研究,2003,23(5):493-503.

[13] 牟长城,陶祥云,黄忠文,等.水稻品种对三江平原稻田温室气体排放的影响[J].东北林业大学学报,2011,39(11):89-93.

[14] 岳进,梁巍,吴杰,等.黑土稻田CH 4 和N 2 O排放及减排措施研究[J].应用生态学报,2003,14(11):2015-2018.

[15] 陈冠雄,黄国宏,王正平,等.稻田CH 4 和N 2 O的排放及养萍和施肥的影响[J].应用生态学报,1995,6(4):378-382.

[16] 侯爱新,陈冠雄,王正平,等.稻田CH 4 和N 2 O排放关系及其微生物学机理和一些影响因子[J].应用生态学报,1997,8(3):270-274 .

[17] 郑循华,王明星,王跃思,等.华东稻田N 2 O和CH 4 排放[J].大气科学,1997,21(2):231-237.

[18] Zheng X H,Wang M X,Wang Y S,et al.Characters of greenhouse gas(CH 4 、N 2 O、NO)emissions from croplands of southeast China [J].World Resource Review,1999,11(2):239-246 .

[19] Cai Z C,Xing G X,Yan XY,et al.Methane and nitrous oxide emissions fromrice paddy fields as affected by nitrogen fertilizers and water management[J].Plant and Soil,1997,196(1):7-14.

[20] Hou A X,Chen G X,Wang Z P,et al.Methane and nitrous oxide emissions from a rice field in relation to soil redox and microbiological processes [J].Soil Science Society of America Journal,2000(64):2180-2186.

[21] Kahalil.Emission oftrace gases from Chinese rice fields and biogasgeneration:CH 4 ,N 2 O,CO 2 ,chorocarbons,and hydrocarbons[J].Chemosphere,1990(20):207-213.

[22] 邹建文,焦燕,王跃思,等.稻田CH 4 、N 2 O和CO 2 排放通量分析方法研究[J].南京农业大学学报,2002,25(4):45-48.

[23] 刘红江,郭智,郑建初,等.不同栽培技术对稻季CH 4 和N 2 O排放的影响[J].生态环境学报,2015,24(6):1022-1027.

[24] 邹建文,黄耀.稻田CO 2 、CH 4 和N 2 O排放及其影响因素[J].环境科学学报,2003,23(6):758-764.

[25] 赵峥,岳玉波,张翼,等.不同施肥条件对稻田温室气体排放特征的影响[J].农业环境科学学报,2014,33(11):2273-2278.

[26] 金国强,徐攀峰,方文英,等.不同稻—麦栽培管理方式对稻季农田温室气体排放的影响[J].浙江农业学报,2014,26(4):1015-1020.

[27] 魏海苹,孙文娟,黄耀.中国稻田甲烷排放及其影响因素的统计分析[J].中国农业科学,2012,45(17):3531-3540.

[28] Wang Z P,Delaune R D,Masscheleyn P H,et al.Soil redox and pH effects on methane production in a flooded rice soil [J].Soil Science Society of America Journal,1993,57(2):382-385.

[29] 谢义琴,张建峰,姜慧敏,等.不同施肥措施对稻田土壤温室气体排放的影响[J].农业环境科学学报,2015,34(3):578-584.

[30] 丁维新,蔡祖聪.土壤甲烷氧化菌及水分状况对其活性的影响[J].中国生态农业学报,2003,11(1):94-97.

[31] 傅志强,黄璜,陈灿,等.稻—鸭复合系统中灌水深度对甲烷排放的影响[J].湖南农业大学学报:自然科学版,2006,32(6):632-636.

[32] 李茂柏,曹黎明,等.水稻节水灌溉技术对甲烷排放影响的研究进展[J].作物杂志,2010(6):99-102.

[33] 徐华,蔡祖聪,李小平.土壤Eh和温度对稻田甲烷排放季节变化的影响[J].农业环境保护,1999,18(4):145-149.

[34] 徐华,蔡祖聪,李小平.冬作季节土地管理对水稻土CH 4 排放季节变化的影响[J].应用生态学报,2000,11(2):215-218.

[35] 叶丹丹,谢立勇,郭李萍,等.华北平原典型农田CO 2 和N 2 O排放通量及其与土壤养分动态和施肥的关系[J].中国土壤与肥料,2011(3),15-20.

[36] 周胜,宋祥甫,颜晓元.水稻低碳生产研究进展[J].中国水稻科学,2013,27(2):213-222.

[37] 康新立,华银锋,田光明,等.土壤水分管理对甲烷和氧化亚氮排放的影响[J].中国环境管理干部学院学报,2013,23(2):43-46.

[38] 李露,周自强,潘晓健,等.不同时期施用生物炭对稻田N 2 O和CH 4 排放的影响[J].土壤学报,2015,52(4):839-848.

[39] 孙小静,侯玉兰,王东启,等.崇明岛稻麦轮作生态系统主要温室气体排放特征及影响因素分析[J].环境化学,2015,34(5):832-841.

[40] 袁伟玲,曹凑贵,程建平,等.间歇灌溉模式下稻CH 4 和N 2 O排放及温室效应评估[J].中国农业科学,2008,41(12):4294-4300.

[41] 石生伟,李玉娥,李明德,等.不同施肥处理下双季稻田CH 4 和N 2 O排放的全年观测研究[J].大气科学,2011,35(4):707-720.

[42] Lal R.Soil carbon sequestration to mitigate climate change[J].Geoderma,2004(123):1-2.

[43] 马秀梅,朱波,郑循华.冬水田休闲期温室气体排放通量的研究[J].农业环境科学学报,2005,24(6):1199-1202.

[44] 孙成权,高峰,曲建升.全球气候变化的新认识——IPCC第三次气候变化评价报告概览[J].自然杂志,2002,24(2):114-122.

[45] 丁一汇.IPCC第二次气候变化科学评估报告的主要科学成果和问题[J].地球科学进展,1997,12(2):158-163.

[46] 韩广轩,朱波,高美荣,等.中国稻田甲烷排放研究进展[J].西南农业学报,2003(16):49-54.

[47] 杨智,孙绩华,徐安伦.稻田CO 2 和CH 4 通量特征及碳平衡研究[J].云南大学学报(自然科学版),2013,35(S2):291-295.

[48] 李忠佩,林心雄,车玉萍.中国东部主要农田土壤有机碳库的平衡与趋势分析[J].土壤学报,2002,39(3):351-360.

[49] Miyata A,Leuning R,Denmead O T,et al.Carbon dioxide and methane fluxes from an intermittently flooded paddy field[J].Agric For Meteorol,2000(102):287-303.

[50] 蔡祖聪.水分类型对土壤排放的温室气体组成和综合温室效应的影响[J].土壤学报,1999,36(4):484-488.

[51] 陈述悦,李俊,陆佩玲,等.华北平原麦田土壤呼吸特征[J].应用生态学报,2004,15(9):1552-1560.

[52] 崔玉亭,韩纯儒,卢进登.集约高产农业生态系统有机物分解及土壤呼吸动态研究[J].应用生态学报,1997,8(1):59-64.

[53] 戴万宏,王益权,黄耀,等.农田生态系统土壤CO 2 释放研究[J].西北农林科技大学学报·自然科学版,2004,32(12):1-7.

[54] 董玉红,欧阳竹,李运生,等.肥料施用及环境因子对农田土壤CO 2 和N 2 O排放的影响[J].农业环境科学学报,2005,24(5):913-918 .

[55] 娄运生,李忠佩,张桃林.不同利用方式对红壤CO 2 排放的影响[J].生态学报,2004,24(5):978-983.

[56] 林同保,王志强,宋雪雷,等.冬小麦农田二氧化碳通量及其影响因素分析[J].中国生态农业学报,2008(6):1458-1463.

[57] 苏荣瑞,刘凯文,耿一风,等.江汉平原稻田冠层CO 2 通量变化特征及其影响因素分析[J].长江流域资源与环境,2013,22(9):1214-1220.

[58] Lloyd,J.,and J.A.Taylor.On the temperature dependence of soil respiration [J].Functional Ecology,1994(8):315-323.

[59] Epron D.,Farque L.,Lueot E.,et al.soil CO 2 effiux in a beech forest:The contribution of root respiration [J].Annals of Forest-Scienee,1999(56):289-295.

[60] 邹建文.稻麦轮作生态系统温室气体(CO 2 、CH 4 和N 2 O)排放研究[D].南京:南京农业大学,2005.

[61] Holt,J.A.,Hodgan M.J.,and Lamb D..Soil respiration in the seasonally dry tropics near Townsville [J],Northern Queensland.Australian Journal of soil Research,1990(28):737-745.

[62] Fang,C.,and Moncrieff J.B..The dependence of soil CO 2 efflux on temperature [J].Soil Biology&Bilchemistry,2001(33):155-165.

[63] Ryan,M.G,Hubbard R.M.,et al.Foliar,fineroot,woodytissue and stand respiration in Pinus radiate in relation to nitrogen status [J].Tree Physiology,1996(16):333-343.

[64] Thomas,S.M.,Cook F.J.,Whitehead D.,et al.Seasonal soilsurface carbon fluxes from the root sytems of young Pinus radiate trees growing at ambient and elevated CO 2 concentration[J].Global Change Biology,2000(6):393-406.

[65] Parton,W.J.,Stewart W.B.,Cole C.V..Dynamics of carbon,nitrogen,phosphorous and sulfur in grassland soils:A model [J].Biogeochemistry,1988(5):109-132.

[66] 张宇,张海林,陈继康,等.耕作措施对华北农田CO 2 排放影响及水热关系分析[J].农业工程学报,2009,25(4):47-53.

[67] 史然,陈晓娟,沈建林,等.稻田秸秆还田的土壤增碳及温室气体排放效应和机理研究进展[J].土壤,2013,45(2):1193-1198.

[68] Silvola J,Alm J,Ahlholm U,et al.CO 2 fluxes from peat in boreal mires under varying temperature and moisture conditions [J].Journal of Ecology,1996(84):219-228.

[69] Klotz M G,Stein L Y.Nitrifier genomics and evolution of the nitrogen cycle [J].FEMS Microbiology Letters,2008,278(2):146-156 .

[70] 中华人民共和国气候变化初始国家信息通报[M].北京:中国计划出版社,2004.

[71] 刘晓雨,李志鹏,潘根兴,李恋卿.长期不同施肥下太湖地区稻田净温室效应和温室气体排放强度的变化[J].农业环境科学学报,2011,30(9):1783-1790.

[72] Xuejun L,Fusou Z.Nitrogen fertilizer induced greenhouse gas emissions in China [J].Current Opinion in Environmental Sustainability,2011,3(5):407-413.

[73] 李成芳,寇志奎,张枝盛,等.秸秆还田对免耕稻田温室气体排放及土壤有机碳固定的影响[J].农业环境科学学报,2011,30(11):2362-2367.

[74] Yang S S,Chang E H.Effect of fertilizer application on methane emission/production in the paddy soils of Taiwan [J].Biology and Fertility of Soils,1997,25(3):245-251.

[75] 王斌,李玉娥,万运帆,等.控释肥和添加剂对双季稻温室气体排放影响和减排评价[J].中国农业科学,2014,47(2):314-323.

[76] 马静,徐华,蔡祖聪.施肥对稻田甲烷排放的影响[J].土壤,2010,42(2):153-163.

[77] 纪钦阳,张璟钰,王维奇.施肥量对福州平原稻田CH 4 和N 2 O通量的影响[J].亚热带农业研究,2015,11(7):246-253.

[78] Ma J,Li X L,Xu H,et al.Effects of nitrogen fertilizer and wheat straw application on CH 4 and N 2 O emissions from a paddy rice field [J].Australian Journal of Soil Research,2007,45(5):359-367.

[79] 熊效振,沈壬兴,王明星,等.太湖流域单季稻的甲烷排放研究[J].大气科学,1999,23(1):9-18.

[80] 王玲,谢德体,刘海隆,等.稻田温度与甲烷排放通量关系的研究[J].中国农业生态学报,2003,11(4):29-31.

[81] 曹金留,任立涛,汪国好,等.爽水性稻田甲烷排放特点[J].农业环境保护,2000,19(1):10-14.

[82] 孔宪旺,刘英烈,熊正琴,等.湖南地区不同集约化栽培模式下双季稻稻田CH 4 和N 2 O的排放规律[J].环境科学学报,2013,33(9):2612-2618.

[83] 耿春伟,傅志强.稻田水肥组合模式的CH 4 和N 2 O排放特征及其差异比较[J].作物研究,2012,26(7):9-13.

[84] Adhya T K,Pattnaik P,Satpathy S N,et al.Influence of phosphorus application on methane emission and production in flooded paddy soils[J].Soil Biology Biochemistry,1998,30(2):177-181.

[85] 刘芳,李天安,樊小林.控释肥和覆草旱种对晚稻稻田CH 4 和N 2 O排放的影响[J].西北农林科技大学学报(自然科学版),2015,43(10):1-10.

[86] 马义虎,顾道健,刘立军,等.玉米秸秆源有机肥对水稻产量与温室气体排放的影响[J].中国水稻科学,2013,27(5):520-528.

[87] 刘金剑,吴萍萍,谢小立.长期不同施肥制度下湖南红壤晚稻田CH 4 的排放[J].2008,28(6):2878-2886.

[88] 吕琴,闵航,陈中云.长期定位试验对水稻田土壤甲烷氧化活性和甲烷排放通量的影响[J].植物营养与肥料学报,2004,10(6):608-612 .

[89] 章宪,马永跃,王维奇.外源硫酸盐添加对福州平原稻田甲烷与氧化亚氮排放的影响[J].福建师范大学学报(自然科学版),2014,30(4):111-117.

[90] 秦晓波,李玉娥,刘克樱,等.不同施肥处理稻田甲烷和氧化亚氮排放特征[J].农业工程学报,2006,22(7):143-148.

[91] Kazuyuki I,Hotaka S,Shouji N,et al.Effect of aquatic weeds on methane emission from submerged paddy soil[J].American Journal of Botany,2001,88(6):975-979.

[92] Wan Y F,Lin E D.The influence of tillage on CH 4 and CO 2 emission flux in winter fallow cropland[J].Chinese Journal of Agro meteorology,2004,25(3):8-10.

[93] 于亚军.施氮稻田温室气体排放的环境效益评价[J].北方环境,2012,24(1):38-40.

[94] 袁红朝,吴昊,葛体达,等.长期施肥对稻田土壤细菌、古菌多样性和群落结构的影响[J].应用生态学报,2015,26(6):1807-1813 .

[95] Ding Weixin,Meng Lei,Yin Yunfeng.CO 2 emission in an intensively cultivated loam as affected by long-term application of organic manure and nitrogen fertilizer[J].Soil Biology & Biochemistry,2007(39):669-679.

[96] Chen Yi,Wu Chunyan,Shui Jianguo,et al.Emission and fixation of CO 2 from soil system as influenced by long-term application of organic manure in paddy soils [J].Agricultural Sciences in China,2006,5(6):456-461.

[97] 国家环保部,国家统计局,国家农业部.第一次全国污染源普查公报[J].人民日报,2010(16):1-7.

[98] 李静,李晶瑜.中国粮食生产的化肥利用效率及决定因素研究[J].农业现代化研究,2011,32(5):565-568.

[99] Kahrl F,Li Y,Su Y,et al.Greenhouse gas emissions from nitrogen fertilizer use in China[J].Environmental Science&Policy,2010,13(8):688-694.

[100] Wang J,Xiong Z,Yan X.Fertilizer-induced emission factors and background emissions of N 2 O from vegetable fields in China [J].Atmos Environ,2011(45):6923-6929.

[101] 石生伟,李玉娥.不同氮、磷肥用量下双季稻田的CH 4 和N 2 O排放[J].环境科学,2011,32(7):1989-1996.

[102] Zou J W,Huang Y,Lu Y Y,et al.Direct emission factor for N 2 O from rice-winter wheat rotation systems in southeast China [J].Atmospheric Environment,2005(39):4755-4765.

[103] 陈佳广.秸秆还田对北方稻田甲烷排放的影响研究[J].农业科技与装备,2015,(6):8-10.

[104] 王效科,李长生,欧阳志云.温室气体排放与中国粮食生产[J].生态环境,2003,12(4):379-383.

[105] 张鲜鲜,殷杉,朱鹏华.上海崇明岛不同施肥条件下的稻田温室气体排放格局[J].上海交通大学学报(农业科学版),2013,31(2):34-39.

[106] 刘玉学,王耀锋,吕豪豪,等.生物质炭化还田对稻田温室气体排放及土壤理化性质的影响[J].应用生态学报,2013,24(8):2166-2172.

[107] Yagi K,Minami K.Effect of organic matter application on methane emission from some Japanese paddy fields [J].Soil Science and Plant Nutrition,1990,36(4):599-610.

[108] 顾道健,薛朋,陈希婕,等.秸秆还田对水稻生长发育和稻田温室气体排放的影响[J].中国稻米,2014,20(3):1-5.

[109] 张斌,刘晓雨,潘根兴,等.施用生物质炭后稻田土壤性质、水稻产量和痕量温室气体排放的变化[J].中国农业科学,2012,45(23):4844-4853.

[110] 闵航,陈美慈.水稻田的甲烷释放及其生物学机理[J].土壤学报,1993,30(2):125-130.

[111] Kazunori Minamikawa,Naoki Sakai,Kazuyuki Yagi.Methane emission from paddy fields and its mitigation options on a field scale[J].Microbes Environ,2006,21(3),135-147.

[112] 王成己,潘根兴,田有国.保护性耕作下农田表土有机碳含量变化特征分析——基于中国农业生态系统长期试验资料[J].农业环境科学学报,2009,28(12):2464-2475.

[113] 吴乐知,蔡祖聪.基于长期试验资料对中国农田表土有机碳含量变化的估算[J].生态环境,2007,16(6):1768-1774.

[114] 郑聚锋,张平究,潘根兴,等.长期不同施肥下水稻土甲烷氧化能力及甲烷氧化菌多样性的变化[J].生态学报,2008,28(10):4864-4872.

[115] 彭华,纪雄辉,吴家梅,等.双季稻田不同种植模式对CH 4 和N 2 O排放的影响研究[J].生态环境学报,2015,24(2):190-195.

[116] Xie Baohua et al.Modeling Methane Emissions from Paddy Rice Fields under Elevated Atmospheric Carbon Dioxide Conditions[J]. ADVANCES IN ATMOSPHERIC SCIENCES,2010,27(1):100-114 .

[117] Sang Yoon Kim,et al.Contribution of winter cover crop amendments on global warming potential in rice paddy soil during cultivation[J].Plant Soil,2013,366:273-286.

[118] 展茗,曹凑贵.复合稻田生态系统温室气体交换及其综合增温潜势[J].2008,28(11):5461-5468.

[119] 杨建昌,王志琴,朱庆森.不同土壤水分状况下氮素营养对水稻产量的影响及其生理机制的研究[J].中国农业科学,1996,28(4):58-65.

[120] 王绍华,曹卫星,丁艳峰,等.水氮互作对水稻氮吸收与利用的影响[J].中国农业科学,2004,37(4):497-501.

[121] Behera S.K.,Panda R.K..Effect of fertilization and irrigation schedule on water and fertilizer solute transport for wheat crop in a sub humid sub tropical region [J].Agriculture,Ecosystems and Environment,2009,130(3/4):141-155.

[122] 蔡延江,丁维新,项剑.土壤N 2 O和NO产生机制研究进展[J].土壤(Soils),2012,44(5):712-718.

[123] Akira M,Ray L,Owen T D,et al.Carbon dioxide and methane fluxes from an intermittently flooded paddy field[J].Agricultural and Forest Meteorology,2000(102):287-303.

[124] 谭雪明,黄山,熊超,等.不同栽培模式对稻田甲烷和氧化亚氮排放的影响[J].江苏农业科学,2013,41(12):341-344.

[125] Guo J P,Zhou Ch D.Greenhouse gas emissions and mitigation measures in Chinese agroecosystems[J].Agricultural and Forest Meteorology,2007,142:270-277.

[126] 彭世彰,侯会静,徐俊增,等.稻田CH 4 和N 2 O综合排放对控制灌溉的响应[J].农业工程学报,2012,28(13):121-126.

[127] 薛建福,濮超,张冉,等.农作措施对中国稻田氧化亚氮排放影响的研究进展[J].农业工程学报,2015,31(11):1-9.

[128] 董文军,来永才,孟英,等.稻田生态系统温室气体排放影响因素的研究进展[J].黑龙江农业科学,2015(5):145-148.

[129] 卢燕宇,黄耀,郑循华.农田氧化亚氮排放系数的研究[J].应用生态学报,2005,16(7):1299-1302.

[130] 王孟雪,张忠学.适宜节水灌溉模式抑制寒地稻田N 2 O排放增加水稻产量[J].农业工程学报,2015,32(15):72-79.

[131] 李长生.生物地球化学的概念与方法——DNDC模型的发展[J].第四纪研究,2001,21(2):89-99.

[132] Liu S,Reiners W A,Keller M.Simulation of nitrous oxide and nitric oxide emissions from a primary forest in the Costa Rican Atlantic Zone [J].Environ Modell Softw,2000(15):727-743.

[133] Parton W J,Ojma D S,Cole C V et al.Ageneral model for soil organic matter dtnamics:sensitivity to litter chemistry,texture and management [J].Soil Sci Am,1994(39):147-167.

[134] Parton W J,Holland E A,Del Grosso S J.Generalized model for NO X and N 2 O emissions from soils [J].J Geophys Res,2001(106):17403-17419.

[135] Grant R F,Pattery E.Modeling variability in N 2 O emissions from fertilized agricultural fields [J].Soils,Biol Biochem,2003(35):225-243 .

[136] 王效科,李长生.中国农业土壤N 2 O排放量估算[J].环境科学学报,2000,20(4):483-488.

[137] 李虎,邱建军,高春雨,等.基于DNDC模型的环渤海典型小流域农田氮素淋失潜力估算[J].农业工程学报,2012,28(13):127-134 .

[138] Cai Z,Sawamoto T,Li C,et al.Field validation of the DNDC model for greenhouse gas emission in East Asia cropping systems[J].Global Biogeochem Cycles,2003,17(4):1107.

[139] Zheng X,Han S,Huang Y,et al.Requantifying the emission factors based on field measurements and estimating the direct N 2 O emission from Chinese croplands [J].Global Biogeochem Cycles,2004(18):2018.

[140] Li C,Moisier A,Wassmann R,et al.Modeling greenhouse gas emissions from rice based production sytems [J].Global Biogeochem Cycles,2004,18:1043.

[141] Li C,Frolking S,Xiao X,et al.Modeling impacts of farming management alternatives on CO 2 ,CH 4 and N 2 O emissions:A case study for water mangement of rice agriculture of China [J].Global Biogeochem Cycles,2005(19):3010.

[142] Freibauer A,Kaltschmett M.Nitrous oxide emissions from agricultural mineral soils in Europe controls and models[J].Biogeochemistry,2003,63(1):93-115. lnG7O9bz9U62ZR8z62dQ1Y22/YrwldPvXl1ayfpPDcED8l1I9Wk37YfMpKKnL8Jh

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