Abstract

The analysis of the behavior of nanoparticles in aerosols, their aerodynamic peculiarities and interaction with microparticles was made. The features of nanoparticle cumulation in the air of the working area of industrial premises during the working day, as well as during two, or three-shifts working day are studied; the features of the nanoparticles aggregation in aerosol with their subsequent degeneration into microparticles and further sedimentation are examined. The features of the transcutaneous entry of nanoparticles into a human body are considered. It was pointed out that nanoparticles of various sizes can differ in their physicochemical properties, and, correspondingly, their influence on biological systems. Therefore, it is shown that in order to establish the toxicological hazard of nanoparticles, it is necessary to establish the most sensitive system and weight concentrations of nanoparticles, as well as their most dangerous size range, i.e. it is necessary to take into account the dispersion distribution of nanoparticles. It was demonstrated that the solubility of micro- and nanoparticles can be crucial for assessing their influence on the body in case of the body transcutaneous entry or by inhalation. Possible approaches to assessing the intensity of the effect of nanoparticles on the human body are considered. New methodological approaches to assessing the effect of nanoparticles on the human body are proposed. The complexity and features of the regulation of nanoparticles in the air of the working area are described. It has been proposed to take into account the value of the “absorbed dose” while assessing the effect of aerosols containing micro- and nanoparticles.

Highlights

  • Проведён анализ особенностей поведения наночастиц в аэрозолях, а также особенностей их аэродинамики и взаимодействия с микрочастицами

  • It was pointed out that nanoparticles of various sizes can differ in their physicochemical properties, and, correspondingly, their influence on biological systems

  • It is shown that in order to establish the toxicological hazard of nanoparticles, it is necessary to establish the most sensitive system and weight concentrations of nanoparticles, as well as their most dangerous size range, i.e. it is necessary to take into account the dispersion distribution of nanoparticles

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Summary

ENVIRONMENTAL HYGIENE

Отмечены особенности кумуляции наночастиц в воздухе рабочей зоны производственных помещений в течение рабочего дня, а также в течение двух-трёхсменного рабочего дня, рассмотрены особенности процессов агрегации наночастиц в аэрозоле с последующим вырождением их в микрочастицы и дальнейшей седиментацией. Рассмотрены особенности транскутанного поступления наночастиц в организм человека. Что степень растворимости микро- и наночастиц может иметь решающее значение при оценке влияния их на организм в процессе проникновения в организм ингаляторным или транскутанным путём. Рассмотрены возможные подходы к оценке интенсивности влияния наночастиц на организм человека. Предложены новые методологические подходы к оценке влияния наночастиц на организм человека. Предложено при оценке влияния аэрозолей, содержащих в своём составе микро- и наночастицы, принимать во внимание величину поглощённой дозы. О подходах к оценке влияния наночастиц на организм человека. Поступила: 12.02.2019 Принята к печати: 25.02.2020 Опубликована: 07.07.2020

Approaches to assess the impact of nanoparticles on the human body
ГИГИЕНА ОКРУЖАЮЩЕЙ СРЕДЫ
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