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An Approach to Balancing the Positive and Negative Effects of Elevated Nitrogen Oxides in the Lower Atmosphere on Terrestrial Plants

机译:平衡大气下部大气中氮氧化物升高对植物的正负影响的方法

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摘要

Elevated NOx in the lower atmosphere has three major effects on terrestrial plants. On the one hand, it causes an increase in surface ozone concentration. This reduces plant growth rate. On the other hand, elevated NOx causes an increase in the flux of oxidized N compounds from the atmosphere to the land surface. This plays a dual role in the life of terrestrial plants. Additional N in soils stimulates plant growth (N-fertilization effect), whereas soil acidification may negatively affect plants. A simple empirical model for calculating the overall effect of anthropogenic increase in NOx level has been developed. The model is based on experimental “cause-response” data presented in world scientific literature. Calculations showed that at the large scale, among the above-mentioned changes, elevated O3 plays a major and negative role in plant life. Its negative effect on plants is partly compensated by N fertilization in unmanaged ecosystems. Such compensation appears to be negligible in agricultural lands. There are vast territories in Euro-Asia — for instance, a territory of Russia — in which acid atmospheric deposition has no significant effect on terrestrial plants.
机译:较低大气层中NOx含量升高对陆生植物有三大影响。一方面,这导致表面臭氧浓度的增加。这降低了植物的生长速度。另一方面,NOx升高会导致氧化N化合物从大气到地面的通量增加。这在陆地植物的生命中起着双重作用。土壤中额外的氮会刺激植物生长(氮肥效应),而土壤酸化可能会对植物产生负面影响。已经开发出一种简单的经验模型,用于计算人为增加的NOx水平的总体影响。该模型基于世界科学文献中提供的实验性“原因-响应”数据。计算表明,在上述变化中,高水平的O3在植物生命中起主要和负面作用。在不受管理的生态系统中,氮肥对植物的负面影响部分得到了补偿。在农业用地中,这种补偿似乎微不足道。欧亚大陆有广阔的领土,例如俄罗斯领土,其中酸性大气沉积对陆生植物没有重大影响。

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