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Ozone Level Assessment on the Boukornine National Park (Tunisia) using Plant Biomonitoring: Influence of Altitudinal Parameter and Meteorological Conditions

机译:Boukornine国家公园(突尼斯)臭氧水平的植物生物监测:海拔参数和气象条件的影响

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The variations of tropospheric ozone levels was assessed for the first time in the Boukornine National Park (N.E. Tunisia) by detection of leaf injury development on Nicotiana tabacum “Bel-W3” exposed to environmental conditions during summer 2004. Two cultivars of tobacco (Nicotiana tabacum), Bel-W3 (sensitive) and Bel-B (resistant to ozone), were used for this biomonitoring study. These cultivars were dispersed in 24 different biostations, according to a square grid mesh, every 2 weeks. Four successive cultures were utilized to follow the ozone levels inside the park during the summer exposure period. Levels of ozone may vary in time and space depending on the local environmental and meteorological conditions. The results showed a positive correlation between ozone concentration and foliar injury index (FII; r = 0.958; p < 0.05). A significant positive correlation was observed between the FII of Bel-W3 tobacco plant and AOT40 (accumulated over the threshold of 40 ppb). The altitude appeared to be the most important variable explaining the variation of ozone pollution with the highest correlation coefficient (r = 0.964; p < 0.0001). The altitude was followed by topography for the prediction of ozone concentration levels. Maximal temperature was also an important factor in addition to the others in determining the FII and was negatively correlated with the FII (r = −0.979; p < 0.05). Average ambient ozone levels were positively linked to plant leaf damage. The ozone profile characterizing the study area was primarily influenced by wind direction and speed in relation to intercontinental transport, in addition to the local influence of motor vehicles traffic flow in the Tunis region.
机译:通过在2004年夏季暴露于环境条件下的烟草“ Bel-W3”上检测到叶片损伤的发展情况,首次在对布科宁国家公园(突尼斯新南威尔士州)中评估了对流层臭氧水平的变化。两个烟草品种(Nicotiana tabacum) ),Bel-W3(敏感)和Bel-B(耐臭氧)被用于这项生物监测研究。根据方格网,每两个星期将这些品种分散在24个不同的生物站中。在夏季暴露期间,采用了四次连续培养来跟踪公园内的臭氧水平。臭氧水平可能会在时间和空间上变化,具体取决于当地的环境和气象条件。结果表明,臭氧浓度与叶片伤害指数呈正相关(FII; r = 0.958; p <0.05)。在Bel-W3烟草植物的FII和AOT40(累积超过40 ppb的阈值)之间观察到显着正相关。海拔似乎是解释臭氧污染变化的最重要变量,具有最高的相关系数(r = 0.964; p <0.0001)。海拔之后是地形图,用于预测臭氧浓度水平。除了确定FII以外,最高温度也是一个重要因素,并且与FII呈负相关(r = -0.979; p <0.05)。平均环境臭氧水平与植物叶片损伤呈正相关。除突尼斯地区机动车辆流量的局部影响外,表征研究区特征的臭氧分布主要受到与洲际交通有关的风向和风速的影响。

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