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Ambient ozone control in a photochemically active region : short-term despiking or long-term attainment?

机译:光化学活性区域中的环境臭氧控制:是短期传播还是长期获得?

摘要

China has made significant progress decreasing the ambient concentrations of most air pollutants, but ozone (O3) is an exception. O3 mixing ratios during pollution episodes are far higher than the national standard in the Pearl River Delta (PRD), thus greater evidence-based control efforts are needed for O3 attainment. By using a validated O3 modeling system and the latest regional emission inventory, this study illustrates that control strategies for short-term O3 despiking and long-term attainment in the PRD may be contradictory. VOC-focused controls are more efficient for O3 despiking in urban and industrial areas, but significant NOx emission reductions and a subsequent transition to a NOx-limited regime are required for O3 attainment. By tracking O3 changes along the entire path toward long-term attainment, this study recommends to put a greater focus on NOx emission controls region-wide. Parallel VOC reductions around the Nansha port are necessary in summertime and should be extended to the urban and industrial areas in fall with a flexibility to be strengthened on days forecasted to have elevated O3. Contingent VOC-focused controls on top of regular NOx-focused controls would lay the groundwork for striking a balance between short-term despiking and long-term attainment of O3 concentrations in the PRD.
机译:中国在降低大多数空气污染物的环境浓度方面取得了重大进展,但臭氧(O3)例外。污染事件期间的O3混合比例远高于珠江三角洲(PRD)的国家标准,因此需要更多的循证控制以实现O3的获得。通过使用经过验证的O3建模系统和最新的区域排放清单,这项研究表明,珠三角地区O3短期排放和长期实现的控制策略可能是矛盾的。以VOC为重点的控制对于城市和工业区中的O3排放更为有效,但是要获得O3,需要大量减少NOx排放并随后过渡到NOx限制制度。通过跟踪实现长期成就的整个过程中O3的变化,本研究建议更加关注整个区域的NOx排放控制。夏季有必要同时减少南沙港周围的挥发性有机化合物含量,并应在秋季将其扩展至城市和工业区,并在预计O3浓度升高的日子里加强其灵活性。在常规的以NOx为重点的控制措施之上,以挥发性有机化合物为重点的控制措施将为在珠三角地区短期排放和长期达到O3浓度之间取得平衡奠定基础。

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