- 北境漫步
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Sun, W.J., Huang, Y., Chen, S.T., Zou, J.W. and Zheng, X.H., 2007. Dependence of wheat and rice respiration on tissue nitrogen and the corresponding net carbon fixation efficiency under different rates of nitrogen application, Advances in Atmospheric Science, 24(1): 55u221264.
Zheng X, Zhou Z, Wang YS, Zhu J, Wang YL, Yue J, Shi Y Kobayashi K, Inubushi K, Huang Y, Han S, Xu Z, Xie B, Butterbach-Bahl K, Yang L, 2006. Nitrogen-regulated effects of free-air CO2 enrichment on methane emissions from paddy rice fields. Global Change Biology 12 (9), 1717-1732.
Xu, Z., X. Zheng, Y.S. Wang, Y.L. Wang, Y. Huang, J. Zhu, 2006. Effect of free-air atmospheric CO2 enrichment on dark respiration of rice plants (Oryza sativa L.). Agriculture, Ecosystems and Environment 115, 105-112
Yue, J., Y. Shi, X. Zheng, G. Huang, J. Zhu, 2006. The influence of free-air CO2 enrichment (FACE) on microorganism of a paddy soil in the rice-growing season. Applied Soil Ecology 35(1), 154-162.
Jiang CS, Wang YS, Zheng XH, Zhu B, Huang Y, Hao QJ. 2006. Methane and nitrous oxide emissions from three paddy rice based cultivation systems in southwest China. Advances in Atmospheric Sciences 23 (3): 415-424.
Werner C, Zheng X, Tang J, Xie B, Liu C, Kiese R, Butterbach-Bahl K, 2006. N2O, CH4 and CO2 emissions from seasonal tropical rainforests and a rubber plantation in Southwest China. Plant and Soil 289, 335-353.
Zhang LH, Song CC, Zheng XH, Wang DX, Wang YY, 2006. Effects of nitrogen on the ecosystem respiration, CH4 and N2O emissions to the atmosphere from the freshwater marshes in northeast China. Environmental Geology, DOI 10.1007/s00254-006-0485-9.
Ding, W. Y. Cai, Z. Cai, X. Zheng, 2006. Diel pattern of soil respiration in N-amended soil under maize cultivation. Atmospheric Environment 40, 3294-3305.
Huang, Y., Zhang, W, Zheng, X.H., Han, S.H. and Yu, Y.Q., 2006. Estimates of methane emissions from Chinese rice paddies by linking a model to GIS database, ACTA ECOLOGICA SINICA, 26(4):980u2212988
Jiao, Y., Huang, Y., Zong, L.G., Zheng, X.H., Sass, R.L., 2005. Effects of copper concentration on methane emission in rice soils, Chemosphere, 58(2):185—193
Zou, J.W., Huang, Y., Sun, W.J., Zheng, X.H. and Wang, Y.S., 2005. Contribution of plants to N2O emissions in soil-winter wheat ecosystem: pot and field experiments, Plant and Soil, 269:205—211
Zou, J.W., Huang, Y., Jiang, J.Y., Zheng, X.H. and Sass R.L., 2005. 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, Global Biogeochem. Cycles, 19, GB2021, doi:10.1029/2004GB002401
Zou, J.W., Huang, Y., Lu, Y.Y., Zheng, X.H. and Wang, Y.S., 2005. Direct emission factor for N2O from rice-winter wheat rotation systems in southeast China, Atmospheric Environment, 39:4755—4765
Zheng, X.H., Han, S.H., Huang, Y., Wang, Y.S. and Wang, M.X., 2004. Re-quantifying the emission factors based on field measurements and estimating the direct N2O emission from Chinese croplands, Global Biogeochemical Cycles, 18, GB2018, doi:10.1029/2003GB002167
Zhongjun Xu, Xunhua Zheng, Yuesi Wang, Shenghui Han and Yao Huang, #Jianguo Zhu, #Klaus Butterbach-Bahl, Effects of elevated CO2 and N fertilization on CH4 emissions from paddy rice fields, Global Biogeochemical Cycles, Vol.18, GB3009, doi:10.1029/2004 GB002233, 2004
Huang, Y., Zhang, W., Zheng, X.H., Li, J. and Yu, Y.Q., 2004. Modeling methane emission from rice paddies with various agricultural practices, Journal of Geophysical Research, doi:10.1029/2003JD004401)
Huang, Y., Zou, J.W., Zheng, X.H., Wang, Y.S. & Xu, X.K., 2004. Nitrous oxide emissions as influenced by amendment of plant residues with different C:N ratios, Soil Biology & Biochemistry, 36(6): 973-981
Jiao, Y., Huang, Y., Zong, L.G., Zheng, X.H., Sass, R.L., 2004. Effects of copper concentration on methane emission in rice soils, Chemosphere, doi:10.1016/j.chemosphere.2004.03.005
Zou, J.W., Huang, Y., Zheng, X.H, Wang, Y.S. and Chen, Y.Q., 2004. Static opaque chamber-based technique for determination of net exchange of CO2 between terrestrial ecosystem and atmosphere, Chinese Science Bulletin, 49(4):381—388
Zou, J.W., Huang, Y.,Zong, L.G., Zheng, X.H. and Wang, Y.S., 2004. Carbon dioxide, nitrous oxide and methane emissions from a rice―wheat rotation as affected by crop residue incorporation and temperature, Advances in Atmospheric Science, 21(5): 691—698
#Changsheng Li, #Arvin Mosier, #Reiner Wassmann, #Zucong Cai, Xunhua Zheng, Yao Huang, etc., 2004, Modeling greenhouse gas emissions from rice-based production systems: Sensivitity and upscaling, Global Biogeochemical Cycles, Vol. 18, GB1043, doi:101029/2003 GB002045
Zheng, X.H., Huang, Y., Wang, Y.S., Wang, M.X., 2003. Seasonal characteristics of nitric oxide emission from a typical Chinese rice-wheat rotation during the non-waterlogged period, Global Change Biology, 9:219—227
Zheng, X.H., Huang, Y., Wang, Y.S., Wang, M.X., Jin, J.S., Li, L.T., 2003. Effects of soil temperature on nitric oxide emission from a typical Chinese rice-wheat rotation during the non-waterlogged period, Global Change Biology, 9:601—611
Xu-Ri, Yuesi Wang, Xunhua Zheng, *Baomin Ji & Mingxing Wang, 2003, A comparison between measured and modeled N2O emissions from Inner Mongolian semi-arid grassland, Plant and Soil ,2003,255:513-528
Xunhua Zheng, Congbin Fu, Xingkai Xu, Xiaodong Yan, Yao Huang, Guanxiong Chen, Shenghui Han, Fei Hu,2002.The Asian Nitrogen Case Study. Ambio, 31(2), 79-87.
Huang, Y., Jiao, Y., Zong, L.G., Zheng, X.H., Sass, R.L. and Fisher, F.M., 2002. Quantitative dependence of methane emission on soil properties, Nutrient Cycling in Agroecosystems, 64(1-2): 157—167
Xingkai Xu, #Boeckx Pascal, Yuesi Wang, Yao Huang, Xunhua Zheng, Fei Hu and #Van Cleemput Oswald , 2002, Nitrous oxide and methane emissions during rice growth and through rice plants:effect of dicyandiamide and hydroquinone, Biology and Fertility of Soils, 36: 53-58
Xunhua Zheng, Mingxing Wang, Yuesi Wang, Renxing Shen, Ji Gou, Jing Li, Jisheng Jin, Laotu Li, 2000. Impacts of Soil Moisture on Nitrous Oxide Emission from Croplands: a case study on the rice-based agro-ecosystem in Southeast China. Chemosphere-Global Change Science, 2: 207-224.
Xingkai Xu, Yuesi Wang, Xunhua Zheng, et. al. 2000, Methane emission from a simulated rice field ecosystem as influenced by hydroquinone and dicyandiamide, The Science of the Total Environment, 2000,263(1-3): 243-253
Xunhua Zheng, Mingxing Wang, Yuesi Wang, Renxing Shen, Jing Li, 2000, Mitigation options on greenhouse gas (CH4, N2O, NO) emissions from croplands. Advances in Atmospheric Sciences. 17(1): 83-92.
Xunhua Zheng, Mingxing Wang, Yuesi Wang, Renxing Shen, Jing Li, J. Heyer, M. K?gge, H. Papen, Jisheng Jin and Laotu Li, 1999. Characters of greenhouse gas (N2O, NO, CH4) emissions from croplands of Southeast China. World Resource Review. 11(2): 229-246.
Xunhua Zheng, Mingxing Wang, Yuesi Wang, Renxing Shen, Jing Li, J. Heyer, M. K?gge, H. Papen, Jisheng Jin and Laotu Li, 1998. Comparison of Manual and Automatic Methods for Measurement of Methane Emission from Rice Paddy Fields. Advances in Atmospheric Sciences, 15(4): 569-579.
Xunhua Zheng, Mingxing Wang, Yuesi Wang, Renxing Shen, Xingjian Shangguan, J. Heyer, M. K?gge, H. Papen, Jisheng Jin and Laotu Li, 1997. N2O and CH4 emission from Rice Paddies in Southeast China. Chinese Journal of Atmospheric Sciences, 21(2): 167-174.
黄耀, 张稳, 郑循华, 韩圣慧, 于永强, 2006. 基于模型和GIS技术的中国稻田甲烷排放估计, 生态学报,26(4):980u2212988
张稳,黄耀, 郑循华, 于永强,2006. 稻田甲烷排放模型研究—模型灵敏度分析,生态学报,26(5):1359u22121366
邹建文,黄耀,宗良纲,郑循华,王跃思, 2006. 稻田不同种类有机肥施用对后季麦田N2O排放的影响,环境科学, 27(7):1264u22121268
卢燕宇,黄耀, 郑循华, 2005. 农田氧化亚氮排放系数的研究,应用生态学报,16 (7) :1299—1302
刘巧辉, 黄耀, 郑循华, 2005. 基于BaPS系统的旱地土壤呼吸作用及其分量确定探讨, 环境科学学报, 25(8):1105—1111
孙文娟, 黄耀, 陈书涛, 邹建文, 郑循华, 2005. 稻麦作物呼吸作用与植株氮含量、生物量和温度的定量关系, 生态学报,25(5):1152—1158
陈书涛, 黄耀, 郑循华, 陈玉泉,2005。轮作制度对农田氧化亚氮排放的影响及驱动因子,中国农业科学,38 (10) :2053—2060
孙文娟,黄耀,陈书涛,杨兆芳,郑循华,2004. 作物生长和氮含量对土壤-作物系统CO2排放的影响,环境科学,25(3):1—6.
邹建文,黄耀,郑循华,王跃思,陈玉泉,2004. 基于静态暗箱法的陆地生态系统-大气CO2净交换估算,科学通报,49(3):258—264.
邹建文,黄耀,宗良纲,郑循华,王跃思,2003. 稻田CO2、CH4和N2O排放及其影响因素,环境科学学报,23(6):758—764.
邹建文,黄耀,宗良纲,蒋静艳,郑循华,王跃思,2003. 稻田灌溉和秸秆施用对后季麦田N2O排放的影响,中国农业科学,36(4):409—414.
郑循华,徐仲均,王跃思,韩圣慧,黄耀,蔡祖聪,朱建国,2002. 开放式空气CO2增高影响稻田-大气CO2净交换的静态暗箱法观测研究. 应用生态学报,13(10):1240-1244.
郑循华, 王明星, 王跃思, 2000. 太湖地区农田NO排放不连续测量最佳时间,环境科学, 21(1): 1-6.
郑循华, 王明星, 王跃思, 李老土, 金继生, 2000. 华东稻麦轮作系统的冬小麦田NO排放观测研究. 应用生态学报. 11(4): 577-581.
郑循华,王明星,王跃思,1999.农田NO排放的时间变异性. 环境科学. 20(2): 17-21.
郑循华, 王明星, 王跃思,沈壬兴,金继生,李老土,1998. 农田NO排放自动观测. 环境科学. 19(2): 1-5.
郑循华, 王明星, 王跃思,沈壬兴,张文,龚宴邦,1997. 温度对农田N2O产生与排放过程的影响. 环境科学. 18(5): 1-5.
郑循华, 王明星, 王跃思, 沈壬兴,龚宴邦,张文,骆冬梅,金继生,李老土,1997. 华东稻麦轮作生态系统N2O排放过程研究. 应用生态学报. 8(5): 495-499.
郑循华,王明星,王跃思,沈壬兴,龚宴邦,骆冬梅,张文,金继生,李老土,1996. 稻麦轮作生态系统中土壤湿度对N2O产生与排放的影响. 应用生态学报. 7(3): 213-219.