工作区域空气中的纳米颗粒是各行业工人健康的危险因素

A. Sevalnev, L. P. Sharavara, A. Kutsak, O. Nefodov, O. A. Zemliynyi, K. I. Pisarevskyi, O. S. Shevchenko
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引用次数: 2

摘要

目的:对科学文献进行分析,总结国内外评价工作区域空气中纳米颗粒测定作为各行业工人健康危险因素的经验数据。本文对大气空气和不同行业工作区域空气中细尘和纳米粒子含量研究的文献资料进行了分析。大量研究表明,许多工业企业的排放物中都含有微尘。根据世界卫生组织对人体健康的影响程度,空气中的悬浮颗粒,特别是工作区空气中的悬浮颗粒属于优先污染物。评价大型工业城市空气中的粉尘含量特别重要,因为城市地区有大量各种来源的粉尘排放源。各种工艺过程导致细粉尘和纳米颗粒的形成,污染环境空气和工作区域的空气。提出了细粉尘和纳米颗粒对工人健康的负面影响的数据。工区空气中纳米级粉尘含量的卫生评价问题引起了人们的关注。研究结果表明,研究纳米颗粒的物理化学性质及其对人体的毒性,分析对人类的潜在风险,开发有效可靠的环境和生产环境中超细颗粒监测系统,对于告知员工所涉及的风险,减少和预防对人类的有害影响仍然具有重要意义。对工人健康的潜在负面影响决定了在这一领域进行进一步研究的必要性和机会。
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Nanoparticles in the air of the working zone as a risk factor for the health of workers of various industries
Purpose: analysis of scientific literature, summarizing data on domestic and foreign experience of assessing the determination of nanoparticles in the air of the working zone as a risk factor for the health of workers of various industries. The article analyzes the literature data on the study of the content of fine dust and nanoparticles in the atmospheric air and air of the working zone of different industries. Numerous studies indicate that fine dust is contained in the emissions of many industrial enterprises. According to the World Health Organization by level of impact on human health, suspended particles in the air and especially in the air of the working zone belong to the priority pollutants. Evaluation of the dust content in the air of large industrial cities is particularly relevant, because of a large number of sources of dust emissions of various origins in urban areas. Various technological processes contribute to the formation of fine dust and nanoparticles which pollute the ambient air and the air of the working zone. Data on the negative impact of fine dust and nanoparticles on health of workers are presented. Attention is paid to the problem of hygienic assessment of nanoscale dust content in the working zone air. The obtained results indicate that today the issues of studying the physicochemical properties of nanoparticles, their toxicity to the body, analysis of potential risks to humans, the development of an effective and reliable system for monitoring ultrafine particles in the environment and the production environment are still relevant as for informing employees about the risks involved, reducing and preventing harmful effects on humans. The potential negative effects on workers’ health determine the need and opportunity for further research in this area.
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