The impact of coal mine dust characteristics on pathways to respiratory harm: investigating the pneumoconiotic potency of coals

危害 煤尘 效力 煤矿开采 环境科学 采矿工程 废物管理 环境化学 环境卫生 化学 工程类 政治学 医学 法学 体外 生物化学
作者
Conchita Kamanzi,Megan Becker,Muazzam Jacobs,Petr Konečný,Johanna von Holdt,Jennifer L. Broadhurst
出处
期刊:Environmental Geochemistry and Health [Springer Nature]
卷期号:45 (10): 7363-7388 被引量:13
标识
DOI:10.1007/s10653-023-01583-y
摘要

Abstract Exposure to dust from the mining environment has historically resulted in epidemic levels of mortality and morbidity from pneumoconiotic diseases such as silicosis, coal workers’ pneumoconiosis (CWP), and asbestosis. Studies have shown that CWP remains a critical issue at collieries across the globe, with some countries facing resurgent patterns of the disease and additional pathologies from long-term exposure. Compliance measures to reduce dust exposure rely primarily on the assumption that all “fine” particles are equally toxic irrespective of source or chemical composition. For several ore types, but more specifically coal, such an assumption is not practical due to the complex and highly variable nature of the material. Additionally, several studies have identified possible mechanisms of pathogenesis from the minerals and deleterious metals in coal. The purpose of this review was to provide a reassessment of the perspectives and strategies used to evaluate the pneumoconiotic potency of coal mine dust. Emphasis is on the physicochemical characteristics of coal mine dust such as mineralogy/mineral chemistry, particle shape, size, specific surface area, and free surface area—all of which have been highlighted as contributing factors to the expression of pro-inflammatory responses in the lung. The review also highlights the potential opportunity for more holistic risk characterisation strategies for coal mine dust, which consider the mineralogical and physicochemical aspects of the dust as variables relevant to the current proposed mechanisms for CWP pathogenesis.

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