Lindaui C W, Alford D P, Bollich P K, et al. Inhibition of methane evolution by calcium sulfate
[2]
IPCC 2007:The Physical Science Basis, Contribution of Working Group I to the Fourth Assessment Report of the Intergovernmental Panel on Climate Change[M]//Solomon S, Qin D, Manning M, et al(Eds.), Cambridge University Press, Cambridge, United Kingdom and New York, NY, USA. 2007.
[3]
IPCC. Climate Change 2007(AR4)[EB/OL].[2014-7-23]. http://www. ipcc. ch/publications and data/publications and data reports. shtml#1
[4]
蔡祖聪, 徐 华, 马 静. 稻田生态系统CH4和N2O排放[M]. 合肥:中国科学技术大学出版社, 2009:1-8. CAI Zu-cong, XU Hua, MA Jing. CH4 and N2O emission in paddy field ecosystem[M]. Hefei:Press of University of Science & Technology of China, 2009:1-8.
[5]
The State of Greenhouse Gases in the Atmosphere Based on Global Observations through 2012. WMO Greenhouse Gas Bulletin[EB/OL].[2014-7-23]. http://www. wmo. int/pages/prog/arep/gaw/ghg/GHGbulletin. html.
[6]
Guo J P, Zhou C D. Greenhouse gas emissions and mitigation measures in Chinese agroecosystems[J]. Agricultural and Forest Meteorology, 2007, 142(2-4):270-277.
[7]
Chen H, Zhu Q A, Peng C H, et al. Methane emissions from rice paddies natural wetlands, and lakes in China:Synthesis and new estimate[J]. Global Change Biology, 2013, 19(1):19-32.
[8]
Wang Y Y, Zhu B, Wang Y Q, et al. N2O emission from paddy field under different rice planting modes[J]. Wuhan University Journal of Natural Sciences, 2006, 11(4):989-996.
[9]
Yao Z S, Zheng X H, Dong H B, et al. A 3-year record of N2O and CH4 emissions from a sandy loam paddy during rice seasons as affected by different nitrogen application rates[J]. Agriculture, Ecosystems and Environment, 2012, 152:1-9.
[10]
Wang J Y, Jia J X, Xiong Z Q, et al. Water regime-nitrogen fertilizer-straw incorporation interaction:Field study on nitrous oxide emissions from a rice agroecosystem in Nanjing, China[J]. Agriculture, Ecosystems and Environment, 2011, 141(3-4):437-446.
[11]
Zhang A F, Cui L Q, Pan G X, et al. Effect of biochar amendment on yield and methane and nitrous oxide emissions from a rice paddy from Tai Lake plain, China[J]. Agriculture, Ecosystems and Environment, 2010, 139(4):469-475.
[12]
Zheng X H, Wang M X, Wang Y S, et al. Impacts of soil moisture on nitrous oxide emission from croplands:A case study on the rice-based agro-ecosystem in southeast China[J]. Chemosphere Global Change Science, 2000, 2(2):207-224.
[13]
Burger M, Venterea T R. Effects of nitrogen fertilizer types on nitrous oxide emissions[M]. Understanding Greenhouse Gas Emissions from Agricultural Management, 2011, Chapter 11:179-202.
[14]
丁 洪, 王跃思, 秦胜金, 等. 控释肥对土壤氮素反硝化损失和N2O排放的影响[J]. 农业环境科学学报, 2010, 29(5):1015-1019. DING Hong, WANG Yue-si, QIN Sheng-jin, et al. Effects of controlled release fertilizers on nitrogen loss by denitrification and N2O emission[J]. Journal of Agro-Environment Science, 2010, 29(5):1015-1019.
[15]
周 鹏, 李玉娥, 刘利民, 等. 施肥处理和环境因素对华北平原春玉米田N2O排放的影响: 以山西晋中为例[J]. 中国农业气象, 2011, 32(2):179-184. ZHOU Peng, LI Yu-e, LIU Li-min, et al. Effects of fertilization and environment factors on N2O emission in spring corn field in North China plain:A case study of Jinzhong in Shanxi Province[J]. Chinese Journal of Agrometeorology, 2011, 32(2):179-184.
[16]
Shang Q Y, Yang X X, Gao C M, et al. Net annual global warming potential and greenhouse gas intensity in Chinese double rice-cropping systems:A 3-year field measurement in long-term fertilizer experiments[J]. Global Change Biology, 2011, 17(6):2196-2210.
[17]
高志岭, 陈新平, 张福锁, 等. 农田土壤N2O排放的连续自动测定方法[J]. 植物营养与肥料学报, 2005, 11(1):64-70. GAO Zhi-ling, CHEN Xin-ping, ZHANG Fu-suo, et al. Continuous-automatic method for measuring N2O emission from agricultural soil[J]. Plant Nutrition and Fertilizer Science, 2005, 11(1):64-70?愼摢摲椾瑛椱漷湝?瑋潨?晬汩潬漠摍攠摉?爠楐捨敹孳?嵣??倠污慮湤琠?慨湥摭?卣潡楬氠????????????㈠??㈠????????扴物?孩??嵲?卦潯湲朠??????婮桧愠湴杨??????坳慩湯杮?奯?夠??敳瑥?慵汳???浴楲獯獧楥潮渠?潰晥??佥?獛畒扝?㈠??獴畨戠??????獃畯扮????獳甠扯??慓湯摩?丠?獣畩扥????猠畓扯?佬?晓牯潬浵?晩牯敮獳栠睦慯瑲攠牡?浃慨牡獮桧?楮湧?乗潯牲瑬桤攬愠獂瑲?潳晢??桥椬渠慁孵?嵴???潩畡爬渠愲氰?漰昺??渵瘭椱爹漸渮洼敢湲琾慛氱??愠湍慩杫敫浥敬湳瑥????が??????????????????执牥?嬠??嵮??慥湭獥敮湴????呲桥敤?散晥映敮捩瑴獲?潵晳?汯慸湩摤?甠獥敭??瑳敩浯灮敳爠慩瑮甠牴敨?愠湕搮?睓慛瑍敝爮?汕敮癤敥汲?晴污畮捤瑩畮慧琠楇潲湥獥?潨湯?瑳桥攠?敡浳椠獅獭楩潳湳?潯普?渠楦瑲牯潭甠獁?潲硩楣摵敬?乵?獡畬戠????獧略扭?佮???捣慨牡扰潴湥?搠椸漺砱椳搵攭??伷?猼畢扲????獝甠扃???慡湬摤?洠敓琬栠慒湩敯????獯甠才????獲畯扮???晓爬漠浥?漠牡杬愮渠楉捭?獡潣楴氠?捦漠牢敩獯?楨湡??捡数汰慬湩摣孡?嵩??删整祯欠橡愠癍楥此??啥湲楲癡敮牥獡楮琠祷?潥晡??捣敲汯慰渠摯??即捯桩潬漠汭?潣晲??湩条楬渠敡散牴楩湶杩?慹渠摡?乤愠瑧畲牥慥汮?卯捵楳敥渠捧敡???ぬふ???扛牊?嬮㈠?嵨?奭慯湳?奨?偲??匠栲愰???儠?‵?愹漩????攴琭?愴氷???汢畲砾敛猲‰潝映????獥畲戠????獲畡扵??愠湈搠?丬?獓畣扨????獬略扲?体?映牥潴洠?獬漮椠汌?畮湫摩敮牧?慎?瑳牵潢瀾椲挼愯汳?獢放慏猠潥湭慩汳?物慯楮湳?晦潲牯敭猠瑢?楯湣?塡楲猭桡畭慥湮杤扥慤渠湳慯??匠潴畯琠桴睨敥猠瑳??桵楣湴慵孲?崠???漠畦牵湮慣汴?潯普??湦瘠楴牨潥渠济攭湣瑹慣汬?卮捧椠敭湩捣敲獯???ぬ?????ふ?????お??㈠???ernational Society for Microbial Ecology, 2014, 8(3):660-674.
[18]
Cimélio B, Falberni de S C, Gabriel M P, et al. Yield-scaled greenhouse gas emissions from flood irrigated rice under long-term conventional tillage and no-till systems in a Humid subtropical climate[J]. Field Crops Research, 2014, 162:60-69.
[19]
蔡延江, 丁维新, 项 剑. 农田土壤N2O和NO排放的影响因素及其作用机制[J]. 土壤, 2012, 44(6):881-887. CAI Yan-jiang, DING Wei-xin, XIANG Jian. Factors controlling N2O and NO emissions from agricultural soils and their influencing mechanisms:A review[J]. Soil, 2012, 44(6):881-887.
[20]
邹建文, 黄 耀, 宗良纲, 等. 不同种类有机肥施用对稻田CH4和N2O排放的综合影响[J]. 环境科学, 2003, 24(3):7-12. ZOU Jian-wen, HUANG Yao, ZONG Liang-gang, et al. Integrated effect of incorporation with differrent organic manures on CH4 and N2O emissions from rice paddy[J]. Environmental Science, 2003, 24(3):7-12.
[21]
李道西. 农田水管理下的稻田甲烷排放研究进展[J]. 灌溉排水学报, 2010, 29(1):133-135. LI Dao-xi. Variations of methane emission of paddy fields under farmland water management[J]. Journal of Irrigation and Drainage, 2010, 29(1):133-135