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了解煤中煤岩组分和矿物质的化学性质及其在职业性肺病预防中的潜在应用。

Understanding the chemical properties of macerals and minerals in coal and its potential application for occupational lung disease prevention.

作者信息

Huang Xi, Finkelman Robert B

机构信息

Department of Environmental Medicine, New York University School of Medicine, New York 10016, USA.

出版信息

J Toxicol Environ Health B Crit Rev. 2008 Jan;11(1):45-67. doi: 10.1080/10937400701600552.

Abstract

Recent increases in oil price further strengthen the argument that coal and coal products will play an increasingly important role in fulfilling the energy needs of our society. Coal is an aggregate of heterogeneous substances composed of organic (macerals) and inorganic (minerals) materials. The objective of this review was to assess whether some chemical parameters in coal play a role in producing environmental health problems. Basic properties of coal--such as chemical forms of the organic materials, structure, compositions of minerals--vary from one coal mine region to another as well as from coals of different ranks. Most importantly, changes in chemical properties of coals due to exposure to air and humidity after mining--a dynamic process--significantly affect toxicity attributed to coal and environmental fate. Although coal is an extremely complex and heterogeneous material, the fundamental properties of coal responsible for environmental and adverse health problems are probably related to the same inducing components of coal. For instance, oxidation of pyrite (FeS2) in the coal forms iron sulfate and sulfuric acid, which produces occupational lung diseases (e.g., pneumoconiosis) and other environmental problems (e.g., acid mine drainage and acid rain). Calcite (CaCO3) contained in certain coals alters the end products of pyrite oxidation, which may make these coals less toxic to human inhalation and less hazardous to environmental pollution. Finally, knowledge gained on understanding of the chemical properties of coals is illustrated to apply for prediction of toxicity due to coal possibly before large-scale mining and prevention of occupational lung disease during mining.

摘要

近期油价的上涨进一步强化了这样一种观点,即煤炭及其制品在满足社会能源需求方面将发挥越来越重要的作用。煤是由有机物质(煤岩组分)和无机物质(矿物)组成的多种不同物质的聚集体。本综述的目的是评估煤中的某些化学参数是否在产生环境卫生问题中起作用。煤的基本性质,如有机物质的化学形态、结构、矿物组成,因煤矿区域不同以及煤的等级不同而有所差异。最重要的是,开采后煤暴露于空气和湿度中导致的化学性质变化——这是一个动态过程——会显著影响煤的毒性及其环境归宿。尽管煤是一种极其复杂且成分多样的物质,但导致环境和健康问题的煤的基本性质可能与煤中相同的诱导成分有关。例如,煤中黄铁矿(FeS₂)的氧化会形成硫酸铁和硫酸,从而导致职业性肺病(如尘肺病)和其他环境问题(如酸性矿井排水和酸雨)。某些煤中含有的方解石(CaCO₃)会改变黄铁矿氧化的最终产物,这可能使这些煤对人体吸入的毒性降低,对环境污染的危害也减小。最后,阐述了在理解煤的化学性质方面所获得的知识,以便在大规模开采前预测煤的毒性,并在开采过程中预防职业性肺病。

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