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Effect of gases and particulate matter from electricity generation process on the radial growth of teak plantations surrounding Mae?Moh power plant, Lampang province

机译:发电过程中的气体和颗粒物对南邦湄茂发电厂周边柚木种植园径向生长的影响

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The objectives of this study were to investigate radial growth patterns and influences of polluting gases and particulate matter on the radial growth of teak plantations surrounding the Mae Moh Power Plant. Twenty-four 32-year-old teak trees were selected from Mae Jang and Mae Moh plantations, which were 5?km and 15?km from the Mae Moe power plant, respectively. Forty-eight sample cores were collected from the 24 trees (two cores per tree). The growth patterns of all the cores were analyzed following the standard methods of dendrochronology. The relationships between the growth pattern and the amounts of sulfur dioxide, nitrogen dioxide, carbon monoxide and particulate matter were measured as average daily rates and then analyzed. The study showed that the best-fit model for the relationship between the radial current annual increment at breast height (CAIdbh) and time (Y) was an exponential equation. The fitted equations were: CAIdbh?=?10.657e(?0.031Y) for Mae Moh plantation and CAIdbh?=?12.518e(?0.032Y) for Mae Jang plantation. The coefficient of determination for the fitted equations was 0.410 and 0.423 for the Mae Moh and Mae Jang plantations, respectively. Moreover, carbon monoxide (CO) and sulfur dioxide (SO2) had a statistically significant effect on radial teak growth (RT) in the Mae Jang plantation, with a coefficient of determination of 0.69 (RTmj?=?0.571?+?0.429(CO)???0.023(SO2)).
机译:这项研究的目的是调查湄茂发电厂周围柚木种植园的径向生长方式以及污染气体和颗粒物对柚木种植园径向生长的影响。从Mae Jang和Mae Moh种植园中选择了24棵32岁的柚木树,它们分别距Mae Moe发电厂5公里和15公里。从24棵树中收集了48个样品核心(每棵树两个核心)。按照树轮年代学的标准方法分析了所有核心的生长方式。测定生长方式与二氧化硫,二氧化氮,一氧化碳和颗粒物的量之间的关系作为平均日速率,然后进行分析。研究表明,乳房高度当前径向年增量(CAIdbh)与时间(Y)之间关系的最佳拟合模型是一个指数方程。拟合方程为:Mae Moh种植园的CAIdbh≥10.657e(?0.031Y),Mae Jang种植园的CAIdbh≥?12.518e(?0.032Y)。 Mae Moh和Mae Jang人工林的拟合方程的确定系数分别为0.410和0.423。此外,一氧化碳(CO)和二氧化硫(SO2)对湄江种植园的径向柚木生长(RT)具有统计学意义,测定系数为0.69(RTmj?=?0.571?+?0.429(CO )0.023(SO2))。

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