评估戈尔诺-阿尔泰斯克燃煤锅炉排放物对人体吸入铜的可能性

Q3 Social Sciences
E. Chanchaeva, Vitaly Sergeevich Lapin, K. M. Yzhikova
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In the districts of 10 coal-fired boiler houses of the city, snow samples were taken for analysis for the content of Cu in snow water and solid snow particles. The concentration of Cu in the studied samples was determined by atomic absorption method (Kvant-2, Russia). The Mann - Whitney criterion and Spearman correlation coefficient were used for statistical analysis. \nResults: the Cu content in the hair of the examined does not depend on gender (U = 1741; p = 0.580), at the age of 4-21 years, the Cu concentration decreases (U = 29; p = 0.05). The concentration of Cu in the hair of residents of Gorno-Altaysk, compared with other regions of the world, corresponds to low values (10.0 mg / kg), hypo- (7.5 mg / kg 31.9%) is more common among the population than hyperelementosis (25 mg / kg - 5.7%). The Cu content in meltwater from all snow intakes in the areas of coal-fired boilers (0.019-0.049 mg / l) does not exceed the permissible concentration (MPC 0.1 mg / l). 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引用次数: 0

摘要

背景:使用煤炭的火电设施在排放方面排名第一。由于煤的燃烧,每年大约有2100吨铜落到地球表面。铜作为燃煤锅炉大气中固体颗粒的一部分,长期吸入人体,导致微量元素在组织中积累,形成高元素血症。目的:确定阿尔泰共和国行政中心人口头发中铜的积累水平与积雪固体颗粒中微量元素含量的关系。方法:对常住戈尔诺-阿尔泰斯克市122名居民的头发进行铜含量测定,并按照排除标准进行测定。在全市10个燃煤锅炉房小区采集雪样,分析雪水和固体雪颗粒中Cu的含量。采用原子吸收法(Kvant-2,俄罗斯)测定样品中Cu的浓度。采用Mann - Whitney标准和Spearman相关系数进行统计分析。结果:毛发中Cu含量与性别无关(U = 1741;p = 0.580), 4 ~ 21岁时Cu浓度下降(U = 29;P = 0.05)。与世界其他地区相比,戈尔诺-阿尔泰斯克居民头发中的铜浓度处于低值(10.0 mg / kg),低铜(7.5 mg / kg 31.9%)在人群中比高元素血症(25 mg / kg - 5.7%)更为常见。燃煤锅炉区所有进雪口融水中Cu含量(0.019 ~ 0.049 mg/ l)均未超过允许浓度(MPC 0.1 mg/ l), 10个样品(19.37 ~ 67.42 mg/kg)的雪固相中,只有3个样品(56.4 ~ 67.2 mg/kg)的MPC略高于允许浓度(55 mg/kg)。人群毛发中Cu的浓度与雪中固体颗粒中微量元素的含量没有相关性。结论:本研究未证实戈尔诺-阿尔泰斯克人群头发中铜浓度升高和从燃煤锅炉中吸入微量元素的假设。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ASSESSMENT OF THE PROBABILITY OF INHALED INTAKE OF COPPER INTO THE BODY OF THE POPULATION OF GORNO-ALTAYSK FROM EMISSIONS OF COAL-FIRED BOILERS
Background: Thermal power facilities using coal are in the first place in terms of emissions. From the burning of coal, about 2,100 tons/year of copper (Cu) falls to the Earth's surface annually. Prolonged inhalation intake of Cu into the human body as part of solid particles of atmospheric air from coal-fired boilers leads to accumulation of trace elements in tissues, the development of hyperelementosis. Aim: to identify the level of Cu accumulation in the hair of the population of the administrative center of the Altai Republic in relation to the content of trace elements in solid particles of snow cover. Methods: In 122 residents permanently residing in Gorno-Altaysk, the Cu content in the hair was determined in compliance with the necessary exclusion criteria. In the districts of 10 coal-fired boiler houses of the city, snow samples were taken for analysis for the content of Cu in snow water and solid snow particles. The concentration of Cu in the studied samples was determined by atomic absorption method (Kvant-2, Russia). The Mann - Whitney criterion and Spearman correlation coefficient were used for statistical analysis. Results: the Cu content in the hair of the examined does not depend on gender (U = 1741; p = 0.580), at the age of 4-21 years, the Cu concentration decreases (U = 29; p = 0.05). The concentration of Cu in the hair of residents of Gorno-Altaysk, compared with other regions of the world, corresponds to low values (10.0 mg / kg), hypo- (7.5 mg / kg 31.9%) is more common among the population than hyperelementosis (25 mg / kg - 5.7%). The Cu content in meltwater from all snow intakes in the areas of coal-fired boilers (0.019-0.049 mg / l) does not exceed the permissible concentration (MPC 0.1 mg / l). In the solid phases of snow from 10 samples (19.37-67.42 mg/kg), only three (56.4-67.2 mg/ kg) showed a slight excess of MPC (55 mg/ kg). No correlation was found between the concentration of Cu in the hair of the population and the content of trace elements in solid particles of snow. Conclusions: The assumption about the accumulation of Cu in the hair of the population of Gorno-Altaysk in elevated concentrations, inhalation intake of trace elements from coal boilers was not confirmed in this study.
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来源期刊
Ekologiya Cheloveka (Human Ecology)
Ekologiya Cheloveka (Human Ecology) Medicine-Medicine (all)
CiteScore
1.00
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