Effect of the low sulphur regulations of maritime fuels on ambient air quality: a case study in the Bosphorus strait

IF 3 4区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES International Journal of Environmental Science and Technology Pub Date : 2024-07-26 DOI:10.1007/s13762-024-05901-4
A. Ekmekçioğlu, U. B. Çelebi, K. Ünlügençoğlu, S. L. Kuzu
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Abstract

The maritime transportation sector poses a significant environmental risk due to its reliance on fossil fuels and its proximity to coastal areas. To address this issue, the International Maritime Organization, authorized by the IPCC, is responsible for reducing and preventing ship-borne emissions. The International Maritime Organization regularly updates emission prevention measures through annual MEPC meetings, particularly under the MARPOL 73/78 Convention, to adapt to changing conditions. In this study, we utilized a bottom-up approach to calculate the emissions of NOX, SO2, CO, and PM10 emitted by ships transiting through the Istanbul Bosphorus from 2014 to 2021. We employed the AERMOD air quality dispersion model to generate SO2 spatial distribution maps, focusing on the year 2014 with the highest pollutant release. The obtained results were compared with measurements from air quality monitoring stations, allowing us to evaluate the contribution of maritime SO2 emissions to overall Bosphorus pollution. Furthermore, we also examined the impact of low sulfur fuel usage after the sulphur was reduced from 3.5 to 0.5% by mass, in accordance with the regulations put into effect by IMO in 2020.

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海运燃料低硫法规对环境空气质量的影响:博斯普鲁斯海峡案例研究
由于依赖化石燃料且靠近沿海地区,海运业对环境构成了重大风险。为解决这一问题,国际海事组织在政府间气候变化专门委员会的授权下,负责减少和防止船舶排放。国际海事组织通过 MEPC 年度会议定期更新排放预防措施,特别是根据《73/78 防污公约》,以适应不断变化的条件。在本研究中,我们采用自下而上的方法,计算了 2014 年至 2021 年途经伊斯坦布尔博斯普鲁斯海峡的船舶排放的 NOX、SO2、CO 和 PM10。我们采用 AERMOD 空气质量扩散模型生成二氧化硫空间分布图,重点关注污染物排放量最高的 2014 年。我们将获得的结果与空气质量监测站的测量结果进行了比较,从而评估了海上二氧化硫排放对博斯普鲁斯海峡总体污染的影响。此外,我们还研究了根据国际海事组织 2020 年生效的规定,将低硫燃料的硫含量从 3.5%降至 0.5%后的影响。
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来源期刊
CiteScore
5.60
自引率
6.50%
发文量
806
审稿时长
10.8 months
期刊介绍: International Journal of Environmental Science and Technology (IJEST) is an international scholarly refereed research journal which aims to promote the theory and practice of environmental science and technology, innovation, engineering and management. A broad outline of the journal''s scope includes: peer reviewed original research articles, case and technical reports, reviews and analyses papers, short communications and notes to the editor, in interdisciplinary information on the practice and status of research in environmental science and technology, both natural and man made. The main aspects of research areas include, but are not exclusive to; environmental chemistry and biology, environments pollution control and abatement technology, transport and fate of pollutants in the environment, concentrations and dispersion of wastes in air, water, and soil, point and non-point sources pollution, heavy metals and organic compounds in the environment, atmospheric pollutants and trace gases, solid and hazardous waste management; soil biodegradation and bioremediation of contaminated sites; environmental impact assessment, industrial ecology, ecological and human risk assessment; improved energy management and auditing efficiency and environmental standards and criteria.
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