Country-Wide Ecological Health Assessment Methodology for Air Toxics: Bridging Gaps in Ecosystem Impact Understanding and Policy Foundations

Toxics Pub Date : 2024-01-05 DOI:10.3390/toxics12010042
Mohammad Munshed, Jesse Van Griensven Thé, Roydon Fraser, Bryan Matthews, Ali Elkamel
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Abstract

Amid the growing concerns about air toxics from pollution sources, much emphasis has been placed on their impacts on human health. However, there has been limited research conducted to assess the cumulative country-wide impact of air toxics on both terrestrial and aquatic ecosystems, as well as the complex interactions within food webs. Traditional approaches, including those of the United States Environmental Protection Agency (US EPA), lack versatility in addressing diverse emission sources and their distinct ecological repercussions. This study addresses these gaps by introducing the Ecological Health Assessment Methodology (EHAM), a novel approach that transcends traditional methods by enabling both comprehensive country-wide and detailed regional ecological risk assessments across terrestrial and aquatic ecosystems. EHAM also advances the field by developing new food-chain multipliers (magnification factors) for localized ecosystem food web models. Employing traditional ecological multimedia risk assessment of toxics’ fate and transport techniques as its foundation, this study extends US EPA methodologies to a broader range of emission sources. The quantification of risk estimation employs the quotient method, which yields an ecological screening quotient (ESQ). Utilizing Kuwait as a case study for the application of this methodology, this study’s findings for data from 2017 indicate a substantial ecological risk in Kuwait’s coastal zone, with cumulative ESQ values reaching as high as 3.12 × 103 for carnivorous shorebirds, contrasted by negligible risks in the inland and production zones, where ESQ values for all groups are consistently below 1.0. By analyzing the toxicity reference value (TRV) against the expected daily exposure of receptors to air toxics, the proposed methodology provides valuable insights into the potential ecological risks and their subsequent impacts on ecological populations. The present contribution aims to deepen the understanding of the ecological health implications of air toxics and lay the foundation for informed, ecology-driven policymaking, underscoring the need for measures to mitigate these impacts.
全国范围的空气毒素生态健康评估方法:弥合生态系统影响理解和政策基础方面的差距
随着人们对污染源产生的空气有毒物质的关注与日俱增,人们越来越重视它们对人类健康的影响。然而,在评估全国范围内空气毒素对陆地和水生生态系统的累积影响以及食物网内部复杂的相互作用方面,所开展的研究却十分有限。包括美国环境保护局(US EPA)在内的传统方法在处理各种排放源及其不同的生态影响方面缺乏多样性。本研究引入了生态健康评估方法 (EHAM),以弥补这些不足。EHAM 是一种超越传统方法的新方法,可对陆地和水生生态系统进行全面的全国性和详细的区域性生态风险评估。EHAM 还为本地化生态系统食物网模型开发了新的食物链乘数(放大系数),从而推动了该领域的发展。这项研究以传统的有毒物质归宿和迁移生态多媒体风险评估技术为基础,将美国环保局的方法扩展到更广泛的排放源。风险评估的量化采用了商数法,得出了生态筛选商数 (ESQ)。将科威特作为应用该方法的案例研究,本研究对 2017 年数据的研究结果表明,科威特沿海地区存在巨大的生态风险,肉食性海岸鸟类的累积 ESQ 值高达 3.12 × 103,而内陆和生产区的风险可以忽略不计,所有组别的 ESQ 值始终低于 1.0。通过分析毒性参考值(TRV)与受体对空气毒素的预期日暴露量,所提出的方法为了解潜在的生态风险及其对生态种群的后续影响提供了宝贵的见解。本报告旨在加深对空气有毒物质对生态健康影响的理解,并为知情的、生态学驱动的决策奠定基础,同时强调采取措施减轻这些影响的必要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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