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Analysis of temperature effects on seasonal and interannual variation in CH4 emission from rice-planted pots.

机译:温度对插秧稻田CH4排放季节和年际变化的影响分析。

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摘要

Rice (Oryza sativa L.) paddies are one of the major sources of atmospheric methane (CH4), a greenhouse gas. To elucidate the quantitative relationship between CH4 emission from rice paddies and temperature, 6 years data of CH4 emission from pot experiments were analysed in terms of the sum of effective temperature ( Sigma (T-15); T is the daily mean air temperature ( degrees C)). The base temperature of 15 degrees C was adopted as the 0 degrees C physiological temperature for methanogens. Significant positive correlations between total CH4 emission throughout the rice growth period and Sigma (T-15) were observed for pots with rice straw (RS) application at a rate of 6 g kg-1 soil, which corresponds to 6 t ha-1 (r=0.830***), and those without RS application (r=0.818***). It was confirmed that temperature is a major factor affecting the interannual variation in CH4 emission. For the 1993 and 1995 data sets that include seven and four levels of RS application, the relationship between seasonal CH4 emission and RS application rate could be expressed using linear functions (r=0.988***, 0.996***), the slopes of which were similar to each other. Based on these findings, we confirmed that the dependence of seasonal CH4 emission on both temperature and RS application rate can be described by a single linear equation.
机译:稻田(Oryza sativa L.)是大气中甲烷(CH4)的主要来源之一。为了阐明稻田CH4排放与温度之间的定量关系,根据有效温度之和(Sigma(T-15); T是日平均气温(度) C))。产甲烷菌的0℃生理温度采用15℃的基本温度。在施用稻草(RS)的盆中,土壤量为6 g kg-1,相当于6 t ha-1( r = 0.830 ***),以及未使用RS的用户(r = 0.818 ***)。确认温度是影响CH4排放量年际变化的主要因素。对于1993年和1995年包括RS施用的七个和四个级别的数据集,季节性CH4排放与RS施用率之间的关系可以使用线性函数(r = 0.988 ***,0.996 ***),斜率来表示。彼此相似。基于这些发现,我们确认季节性CH4排放对温度和RS施用率的依赖性可以用一个线性方程式描述。

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