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与臭氧相关的生态问题:农业问题。

Ecological issues related to ozone: agricultural issues.

作者信息

Fuhrer Jürg, Booker Fitzgerald

机构信息

Swiss Federal Research Station for Agroecology and Agriculture (FAL), Air Pollution/Climate Group, Reckenholzstrasse 191, CH-8046, Zurich, Switzerland.

出版信息

Environ Int. 2003 Jun;29(2-3):141-54. doi: 10.1016/S0160-4120(02)00157-5.

Abstract

Research on the effects of ozone on agricultural crops and agro-ecosystems is needed for the development of regional emission reduction strategies, to underpin practical recommendations aiming to increase the sustainability of agricultural land management in a changing environment, and to secure food supply in regions with rapidly growing populations. Major limitations in current knowledge exist in several areas: (1) Modelling of ozone transfer and specifically stomatal ozone uptake under variable environmental conditions, using robust and well-validated dynamic models that can be linked to large-scale photochemical models lack coverage. (2) Processes involved in the initial reactions of ozone with extracellular and cellular components after entry through the stomata, and identification of key chemical species and their role in detoxification require additional study. (3) Scaling the effects from the level of individual cells to the whole-plant requires, for instance, a better understanding of the effects of ozone on carbon transport within the plant. (4) Implications of long-term ozone effects on community and whole-ecosystem level processes, with an emphasis on crop quality, element cycling and carbon sequestration, and biodiversity of pastures and rangelands require renewed efforts. The UNECE Convention on Long Range Trans-boundary Air Pollution shows, for example, that policy decisions may require the use of integrated assessment models. These models depend on quantitative exposure-response information to link quantitative effects at each level of organization to an effective ozone dose (i.e., the balance between the rate of ozone uptake by the foliage and the rate of ozone detoxification). In order to be effective in a policy, or technological context, results from future research must be funnelled into an appropriate knowledge transfer scheme. This requires data synthesis, up-scaling, and spatial aggregation. At the research level, interactions must be considered between the effects of ozone and factors that are either directly manipulated by man through crop management, or indirectly changed. The latter include elevated atmospheric CO(2), particulate matter, other pollutants such as nitrogen oxides, UV-B radiation, climate and associated soil moisture conditions.

摘要

为制定区域减排战略,支持旨在提高变化环境下农业土地管理可持续性的实用建议,并确保人口快速增长地区的粮食供应,有必要开展臭氧对农作物和农业生态系统影响的研究。目前的知识在几个方面存在重大局限:(1)在可变环境条件下,使用可与大规模光化学模型相链接的强大且经过充分验证的动态模型对臭氧传输尤其是气孔对臭氧的吸收进行建模,这方面的研究不足。(2)臭氧通过气孔进入后与细胞外和细胞成分的初始反应所涉及的过程,以及关键化学物质的鉴定及其在解毒中的作用,需要进一步研究。(3)将单个细胞水平的影响扩展到整株植物,例如需要更好地了解臭氧对植物体内碳运输的影响。(4)长期臭氧影响对群落和整个生态系统水平过程的影响,重点是作物质量、元素循环和碳固存,以及牧场和草原的生物多样性,需要重新做出努力。例如,联合国欧洲经济委员会《远距离越境空气污染公约》表明,政策决策可能需要使用综合评估模型。这些模型依赖于定量的暴露-反应信息,以将每个组织水平的定量影响与有效臭氧剂量(即叶片对臭氧的吸收速率与臭氧解毒速率之间的平衡)联系起来。为了在政策或技术背景下发挥作用,未来研究的结果必须纳入适当的知识转移方案。这需要数据综合、扩大规模和空间汇总。在研究层面,必须考虑臭氧的影响与人类通过作物管理直接操纵或间接改变的因素之间的相互作用。后者包括大气中二氧化碳浓度升高、颗粒物、其他污染物如氮氧化物、UV-B辐射、气候以及相关的土壤湿度条件。

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