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广州地区稻田甲烷排放及中国稻田甲烷排放的空间变化
引用本文:沈壬兴,卢巨祥.广州地区稻田甲烷排放及中国稻田甲烷排放的空间变化[J].地球科学进展,1995,10(4):387-392.
作者姓名:沈壬兴  卢巨祥
作者单位:中国科学院大气物理研究所,国家环保局华南环境科学研究所
摘    要:1993年在广州地区采用中国科学院大气物理研究所研制的自动采集和分析系统测量了稻田甲烷的排放率,首次获得了占我国20-25%左右水稻收获面积的华南地区稻田甲烷排放特征值。从而宏观地使我国五个主要水稻生态区的甲烷排放率都有了实测资料。稻田甲烷排放率的季节变化主要与气温及灌溉水状态的变化的较大关系,日变化规律以下午出现极大为主。本实验田的甲烷排放率低。

关 键 词:稻田  甲烷  排放率  施肥  耕作制度  空间变化

METHANE EMISSION FROM RICE FIELDS IN GUANGZHOU REGION AND THE SPATIAL VARIATION OF METHANE EMISSION IN CHINA
Shen Renxing,Shangguan Xingjian,Wang Mingxing,Wang Yuesi,Zhang Wen.METHANE EMISSION FROM RICE FIELDS IN GUANGZHOU REGION AND THE SPATIAL VARIATION OF METHANE EMISSION IN CHINA[J].Advance in Earth Sciences,1995,10(4):387-392.
Authors:Shen Renxing  Shangguan Xingjian  Wang Mingxing  Wang Yuesi  Zhang Wen
Institution:1.Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing  100029; 2.South China Institute for Environmental Sciences, NEPA, Guangzhou  510655
Abstract:Methane emission rate was measured in 1993 using an automatic measuring system built by the Institute of Atmospheric Physics, Chinese Academy of Sciences. Methane emission factor is preliminary available for rice fields in South China region, which takes about 20% of the total rice harvesting area in China. Then the methane emission factors are already available in all the five major rice culture regions in China. The seasonal variation of methane emission rate depends mainly on the variation of air temperature and flooding condition. The afternoon peak mode is dominant for diurnal variation. The methane emission rate form this experiment field is rather low, which may mainly due to the unique cultivation system in Guangzhou that rice fields are normally kept free during winter time and in the gap between early and late rice growing season. The low dosage or even without organic manure may be another important reason. In our experiment the water flooding condition was kept normal as in the local region so that the methane emission factor can represent more properly the real emission value from actual rice paddy fields. Annual mean temperature and soil organic matter are not the factors to explain the spatial variation of methane emission rate from rice fields. The seasonal average of methane emission rate was 0.5±0.6 mg/m2?h. According to the available date set for methane emission rate from various rice fields in China, and relevant area of rice cultivation, total methane emission in Chinese rice paddies can be estimated 11.1(10.2~12.8) ×1012 g/a.
Keywords:Rice fields  Methane emission rate  Fertilization  Cultivation system  Water management  
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