
ZHEJIANG NONGYE KEXUE ›› 2020, Vol. 61 ›› Issue (3): 577-580.DOI: 10.16178/j.issn.0528-9017.20200358
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Received:2020-01-12
Online:2020-03-11
Published:2020-03-30
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URL: http://www.zjnykx.cn/EN/10.16178/j.issn.0528-9017.20200358
| [1] IPCC.Climate change 2013: the physical science basis[M]. Cambridge: Cambridge University Press, 2013. [2] HUSSAIN S, PENG S, FAHAD S, et al.Rice management interventions to mitigate greenhouse gas emissions: a review[J]. Environmental Science and Pollution Research, 2015, 22(5):3342-3360. [3] 陈红卫,黄玲,冯露,等.生物质炭基肥对农田土壤温室气体排放年际变化的影响[J].浙江农业学报,2017,29(6):977-981. [4] PRAEG N, WAGNER A O, ILLMER P.Effects of fertilisation, temperature and water content on microbial properties and methane production and methane oxidation in subalpine soils[J]. European Journal of Soil Biology, 2014, 65:96-106. [5] VISHWAKARMA P, DUBEY S K.The effect of soil type and plant age on the population size of rhizospheric methanotrophs and their activities in tropical rice soils[J]. Journal of Basic Microbiology, 2007, 47(4):351-357. [6] YAO H,CONRAD R,WASSMANN R, et al.Effect of soil characteristics on sequential reduction and methane production in sixteen rice paddy soils from China, the Philippines, and Italy[J]. Biogeochemistry, 1999, 47(3):269-295. [7] 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. [8] LI C S, FROLKING S, HARRISS R.Modeling carbon biogeochemistry in agricultural soils[J]. Global Biogeochemical Cycles, 1994, 8(3):237-254. [9] CAI Z, SAWAMOTO T, LI C, et al.Field validation of the DNDC model for greenhouse gas emissions in East Asian cropping systems[J]. Global Biogeochemical Cycles, 2003, 17(4):1107-1116. [10] 王利华,万海波,邵小云.典型大嵩江流域稻田CH4和N2O排放的分析与控制研究[J].科技通报,2017(5):225-231. [11] 张鲜鲜,周胜,孙会峰.DNDC模型在稻田生态系统中的研究进展及应用[J].上海农业学报, 2019,35(1):114-122. [12] ZHU X, WANG X, LI Z, et al.Effects of dense planting with less basal N fertilization on rice yield, N use efficiency and greenhouse gas emissions[J]. International Journal of Agriculture & Biology, 2015, 17(6):1091-1100. [13] CONRAD R, KLOSE M, NOLL M, et al.Soil type links microbial colonization of rice roots to methane emission[J]. Global Change Biology, 2007, 14(3):657-669. [14] LU Y, FU L, LU Y, et al.Effect of temperature on the structure and activity of a methanogenic archaeal community during rice straw decomposition[J]. Soil Biology and Biochemistry, 2015, 81:17-27. [15] PEREIRA JOSÉ, FIGUEIREDO N, GOUFO P, et al.Effects of elevated temperature and atmospheric carbon dioxide concentration on the emissions of methane and nitrous oxide from Portuguese flooded rice fields[J]. Atmospheric Environment, 2013, 80:464-471. [16] YVON-DUROCHER G, ALLEN A P, BASTVIKEN D, et al.Methane fluxes show consistent temperature dependence across microbial to ecosystem scales[J]. Nature, 2014, 507(7493):488-491. [17] MOSIER A, WASSMANN R, VERCHOT L, et al.Methane and nitrogen oxide fluxes in tropical agricultural soils: sources, sinks and mechanisms[J]. Environment Development and Sustainability, 2004, 6(1/2):11-49. [18] NEUE H U, ROGER P A.Rice agriculture: factors controlling emissions[R]. Berlin: Springer-Verlag, 2000. [19] SASS R L, FISHER F M, LEWIS S T, et al.Methane emissions from rice fields: effect of soil properties[J]. Global Biogeochemical Cycles, 1994, 8(2): 135-140. [20] 冯虎元,程国栋,安黎哲.微生物介导的土壤甲烷循环及全球变化研究[J].冰川冻土, 2004, 26(4): 411-419. [21] 邹凤亮,曹凑贵,马建勇,等.基于DNDC模型模拟江汉平原稻田不同种植模式条件下温室气体排放[J].中国生态农业学报,2018,26(9):1291-1301. [22] 蒋静艳,黄耀,宗良纲.稻田土壤理化特性对CH4排放的影响[J].土壤与环境,2001(1):27-29. [23] 欧阳学军,周国逸,黄忠良,等.土壤酸化对温室气体排放影响的培育实验研究[J].中国环境科学, 2005, 25(4): 465-470. [24] 高小叶,袁世力,吕爱敏,等.DNDC模型评估苜蓿绿肥对水稻产量和温室气体排放的影响[J].草业学报,2016,25(12):14-26. [25] 付薇薇,尹力初,张蕾,等.有机物料碳和土壤有机碳对水稻土甲烷排放的影响[J].中国土壤与肥料,2016(2):14-20. [26] 焦燕,黄耀,宗良纲,等.土壤理化特性对稻田CH4排放的影响[J].环境科学,2002(5):1-7. [27] 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. [28] FENG J, CHEN C, ZHANG Y, et al.Impacts of cropping practices on yield-scaled greenhouse gas emissions from rice fields in China: a meta-analysis[J]. Agriculture, Ecosystems & Environment, 2013, 164:220-228. [29] XIE B,ZHENG X,ZHOU Z,et al.Effects of nitrogen fertilizer on CH4 emission from rice fields:multi-site field observations[J]. Plant Soil, 2010, 326(1/2):393-401. [30] JIANG Y, QIAN H, HUANG S, et al.Acclimation of methane emissions from rice paddy fields to straw addition[J]. Sci Adv,2019(5):903. |
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