Marella H Schammel, Samantha J Gold, Daniel L McCurry
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引用次数: 0
摘要
频繁而严重的野火导致灭火产品(长期阻燃剂、增水剂和 A 级泡沫)在美国西部的应用增加。虽然用于野火的灭火产品必须获得美国林务局的批准,但其部分配方属于商业机密。野火发生后,野地与城市交界处土壤和地表水中的金属含量有所增加,但主要原因是灰烬沉积或附近城市地区的人为影响。在这项研究中,对几种灭火产品(其中一些由美国林务局批准,另一些在市场上供消费者使用)中的金属浓度进行了量化,以评估这些产品是否会导致火灾后环境中观察到的金属浓度增加。长期阻燃剂所含的有毒金属(V、Cr、Mn、Cu、As、Cd、Sb、Ba、Tl 和 Pb)浓度比饮用水监管限值高出 4-2,880 倍,当释放到环境中时,可能会超过某些水生毒性阈值。增水剂和 A 类泡沫中含有一些金属,但浓度低于阻燃剂。根据这些浓度和阻燃剂应用记录,我们估计在 2009 年至 2021 年期间,美国的阻燃剂应用向环境中排放了约 380,000 千克有毒金属。
Frequent and severe wildfires have led to increased application of fire suppression products (long-term fire retardants, water enhancers, and Class A foams) in the American West. While fire suppressing products used on wildfires must be approved by the U.S. Forest Service, portions of their formulations are trade secrets. Increased metals content in soils and surface waters at the wildland-urban interface has been observed after wildfires but has primarily been attributed to ash deposition or anthropogenic impact from nearby urban areas. In this study, metal concentrations in several fire suppression products (some approved by the U.S. Forest Service, and some marketed for consumer use) were quantified to evaluate whether these products could contribute to increased metal concentrations observed in the environment postfire. Long-term fire retardants contained concentrations of toxic metals (V, Cr, Mn, Cu, As, Cd, Sb, Ba, Tl, and Pb) 4-2,880 times greater than drinking water regulatory limits, and potentially greater than some aquatic toxicity thresholds when released into the environment. Water enhancers and Class A foams contained some metals, but at lower concentrations than fire retardants. Based on these concentrations and retardant application records, we estimate fire retardant application in the U.S. contributed approximately 380,000 kg of toxic metals to the environment between 2009 and 2021.
期刊介绍:
Environmental Science & Technology Letters serves as an international forum for brief communications on experimental or theoretical results of exceptional timeliness in all aspects of environmental science, both pure and applied. Published as soon as accepted, these communications are summarized in monthly issues. Additionally, the journal features short reviews on emerging topics in environmental science and technology.