Department of Engineering and Nautical Sciences, UPC-Barcelona Tech, 18 08003, Barcelona, Spain; Marine Engineering Laboratory, UPC-Barcelona Tech, Spain.
Department of Engineering and Nautical Sciences, UPC-Barcelona Tech, 18 08003, Barcelona, Spain.
J Environ Manage. 2022 May 15;310:114787. doi: 10.1016/j.jenvman.2022.114787. Epub 2022 Feb 23.
The impact of the SARS-CoV pandemic has gone well beyond health concerns, reaching the maritime industry. The study on the environmental impact of shipping industry during COVID-19 pandemic can provide useful insights to propose new management policies regarding shipping operations, both in-port and on the route. We present a case study centred in the Port of Barcelona covering a 30 nautical miles range in the period March to July 2020, during which different levels of restrictions and stringent lockdown measures were enforced. In this paper, we assess the impact of COVID-19 on maritime traffic and its related emissions in port cities using real-time Automatic Identification System (AIS) data. Interestingly, results show that the decline in maritime traffic is not correlated with a decrease in maritime emissions due to changes in vessel operation. During lockdown (March to June 2020), we observed a 27.9% reduction in the number of port calls compared to the pre-lockdown scenario, whereas pollutant emissions show a moderate decrease (1.8% for CO), no significant reduction (SO and PM) or a slight increase (1.3% for NO). This can be directly assigned to changes in vessel operation mode, i.e. vessels switched from Underway to At Anchor or Moored status, during which auxiliary engines are used at higher loads.
SARS-CoV 大流行的影响远远超出了健康问题的范畴,已经波及到了航运业。本研究旨在探讨新冠疫情期间航运业的环境影响,以期为航运运营管理提出新的政策建议,包括港口和航线。我们进行了一项以巴塞罗那港为中心的案例研究,范围覆盖 30 海里,时间为 2020 年 3 月至 7 月,在此期间实施了不同程度的限制和严格的封锁措施。在本文中,我们使用实时自动识别系统 (AIS) 数据评估新冠疫情对港口城市的海上交通及其相关排放的影响。有趣的是,结果表明,由于船舶操作的变化,海上交通的减少与海上排放的减少并不相关。在封锁期间(2020 年 3 月至 6 月),与封锁前的情况相比,港口靠泊次数减少了 27.9%,而污染物排放则呈现中度减少(CO 减少 1.8%)、无显著减少(SO 和 PM)或略有增加(NO 增加 1.3%)。这可以直接归因于船舶操作模式的变化,即在封锁期间,船舶从航行状态切换到抛锚或系泊状态,辅助发动机在更高负荷下运行。