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Ozone and natural systems: understanding exposure, response, and risk

机译:臭氧和自然系统:了解暴露,反应和风险

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摘要

Research aimed at understanding the response of plants to ozone has been conducted for over four decades but little of it has addressed intact natural systems. Even so, there is sufficient scientific information at this time to support air quality standards that will protect natural terrestrial ecosystems from ozone. What is unknown is the risk associated with continued exposure of natural systems, including both above-and below-ground components, in combination with other stresses including changing temperature and precipitation, elevated carbon dioxide, pests and pathogens, invasive species, and other activities that may fragment the landscape. Research to support an assessment of the ecological risk associated with ozone as it exists, in a milieu of stresses, must include endpoints beyond those addressed in the past, primarily productivity and species composition. To estimate the risk to society of ozone impacts on natural systems, endpoints such as the integrity of soil food webs, the quantity and quality of water supplied from terrestrial ecosystems, wildlife and recreational values, and the transfer and fate of carbon, nutrients, and water within the systems must be quantified. Not only will this research provide the basis for a sound estimate of risk, but also it will improve our understanding of fundamental ecosystem processes.
机译:旨在了解植物对臭氧的反应的研究已经进行了四十多年,但几乎没有涉及完整的自然系统。即便如此,目前有足够的科学信息来支持将保护天然陆地生态系统免受臭氧污染的空气质量标准。未知的是与持续暴露于自然系统(包括地上和地下的成分)以及其他压力(包括温度和降水变化,二氧化碳含量升高,病虫和病原体,入侵物种以及其他活动)相关的风险可能会使景观破碎。支持在压力环境中评估与臭氧相关的生态风险的研究必须包括过去未涉及的终点,主要是生产力和物种组成。为了评估臭氧对自然系统的社会危害,评估的终点包括土壤食物网的完整性,陆地生态系统提供的水的数量和质量,野生动植物和娱乐价值以及碳,养分和碳的转移和命运。系统中的水必须定量。这项研究不仅将为合理评估风险提供基础,而且还将增进我们对基本生态系统过程的理解。

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