Macher Gergely Zoltán, Torma András, Beke Dóra
Department of Applied Sustainability, Albert Kázmér Mosonmagyaróvár Faculty of Agricultural and Food Sciences, Széchenyi István University, 9026 Győr, Hungary.
Wittmann Antal Crop-, Animal- and Food Sciences Multidisciplinary Doctoral School, Albert Kázmér Mosonmagyaróvár Faculty of Agricultural and Food Sciences, Széchenyi István University, 9200 Mosonmagyaróvár, Hungary.
Int J Environ Res Public Health. 2025 Mar 26;22(4):505. doi: 10.3390/ijerph22040505.
The environmental pollution potential of asbestos products is a worldwide health issue, but their dissemination through the water-soil continuum is often an overlooked aspect. Similarly, the behavior of asbestos fibers released from the products is still not fully understood, although our knowledge is based on studies concerning their mineralogical characteristics, health effects, and waste disposal. It has been claimed and contradicted that asbestos harm is only found in air and humans. Asbestos fibers are found not only in industrial settings but also through the industrial use of asbestos cement products, which has contributed to asbestos emissions and its movement in water and soil. Asbestos fibers are diverse in their physicochemical properties, and this diversity has a significant influence on their behavior in the environment. Recent research has confirmed that asbestos can be transported by water and spread to other parts of the environment. However, the mechanisms underlying this, such as the settling of fibers, their attachment to soil particles, or their movement in groundwater, as well as the environmental and health implications, require further investigation. This paper examines the process and impact of asbestos contamination in the interconnected water, soil, and plant environmental sectors, providing a systematic review of the latest literature.
石棉产品对环境污染的潜在影响是一个全球性的健康问题,但其通过水 - 土壤连续体的扩散往往是一个被忽视的方面。同样,尽管我们的认识基于有关石棉纤维矿物学特征、健康影响及废物处置的研究,但从产品中释放出的石棉纤维的行为仍未被完全理解。有人声称石棉危害仅存在于空气和人类中,但也有相反观点。石棉纤维不仅存在于工业环境中,还通过石棉水泥产品的工业使用进入环境,这导致了石棉排放及其在水和土壤中的迁移。石棉纤维的物理化学性质多样,这种多样性对其在环境中的行为有重大影响。最近的研究证实,石棉可通过水传输并扩散到环境的其他部分。然而,其背后的机制,如纤维的沉降、它们与土壤颗粒的附着或在地下水中的移动,以及对环境和健康的影响,都需要进一步研究。本文研究了石棉在相互关联的水、土壤和植物环境领域中的污染过程及影响,对最新文献进行了系统综述。