东巴勒斯坦俄亥俄州火车事故对降水的广泛影响

IF 5.8 2区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES Environmental Research Letters Pub Date : 2024-06-18 DOI:10.1088/1748-9326/ad52ac
David A Gay, Katelan Blaydes, James J Schauer and Martin Shafer
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引用次数: 0

摘要

2023 年 2 月 3 日,俄亥俄州东巴勒斯坦发生诺福克南方公司列车脱轨事故。事故和随后的火灾导致大量有害化合物在多日内排放到环境大气中。我们利用国家大气沉积计划(NADP)例行收集的降水化学测量数据来估算事故造成的空间范围和沉积的化合物。我们的测量结果显示,从美国中西部到东北部,可能还有加拿大,甚至最南端的北卡罗来纳州(16 个州的部分地区,140 万平方公里)都受到了巨大的影响。观测结果表明,氯化物浓度达到了预期的高水平,但 pH 值(碱性)也出乎意料地偏高,碱阳离子含量也异常升高,超过了历史记录的第 99 百分位数。这些结果与气象条件和大气轨迹一致,并非由于高度集中的低量降水样本或野火所致。NADP 网络的稳健测量结果清楚地表明,火灾的影响在规模和范围上都大于最初的预测,这很可能是由于火灾本身产生的上浮将污染物夹带到大气中。对事故和由此引发的火灾进行更详细的评估,可以进一步完善大气浓度、干湿沉降的全面影响,以及更具体的空间影响范围。
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Widespread impacts to precipitation of the East Palestine Ohio train accident
On 3 February 2023, a Norfolk Southern train derailment occurred in East Palestine, Ohio. The accident and subsequent fire resulted in the emissions of large amounts of hazardous compounds to the ambient atmosphere over many days. We used precipitation chemistry measurements routinely collected by the National Atmospheric Deposition Program (NADP) to estimate the spatial extent and chemical compounds deposited as a result of the accident. Our measurements revealed a large areal impact from the Midwest through the Northeast and likely Canada, and perhaps as far south as North Carolina (portions of 16 states, 1.4 million km2). Observations showed the expected high chloride concentrations, but also unexpectedly high pH (basic) and exceptionally elevated levels of base cations exceeding 99th percentiles versus the historic record. These results were consistent with the meteorological conditions and atmospheric trajectories, and were not due to highly-concentrated low volume precipitation samples or wildfires. The robust measurements of the NADP network clearly show that the impacts of the fire were larger in scale and scope than the initial predictions, and likely due to the uplift from the fire itself entraining pollutants into the atmosphere. A more detailed evaluation of the accident and resulting fire could further refine the full impact of the atmospheric concentrations, dry and wet deposition, and the more specific extent of the spatial impact.
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来源期刊
Environmental Research Letters
Environmental Research Letters 环境科学-环境科学
CiteScore
11.90
自引率
4.50%
发文量
763
审稿时长
4.3 months
期刊介绍: Environmental Research Letters (ERL) is a high-impact, open-access journal intended to be the meeting place of the research and policy communities concerned with environmental change and management. The journal''s coverage reflects the increasingly interdisciplinary nature of environmental science, recognizing the wide-ranging contributions to the development of methods, tools and evaluation strategies relevant to the field. Submissions from across all components of the Earth system, i.e. land, atmosphere, cryosphere, biosphere and hydrosphere, and exchanges between these components are welcome.
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