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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
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Human health risk assessment of occupational exposure to trace metallic elements mixtures in metalworking industries in the Sfax metropolis (Tunisia) / Évaluation des impacts sanitaires des expositions professionnelles à des mélanges d’éléments traces métalliques dans la métropole de Sfax (Tunisie)

Omrane, Fatma 18 June 2018 (has links)
Les éléments trace métalliques (ETM) sont des polluants qui sont sources de préoccupations majeures à cause de leurs toxicités et de leurs propriétés cumulatives. Certains d’eux peuvent être cancérogènes. La métropole de Sfax, située au sud de la Tunisie, a été touchée par des rejets et émissions d’ETM depuis des décennies. Plusieurs études ont confirmé que la pollution métallique est principalement d’origine anthropique, liée en particulier aux activités industrielles. Cela présente un risque sur la santé des habitants, particulièrement pour ceux qui sont également exposés par leur métier dans des procédés industriels. L’objectif de cette étude est d’évaluer les risques sanitaires associés à l’exposition professionnelle dans les industries qui manipulent des ETM dans leurs processus de production, en suivant l’approche de l’évaluation des risques sanitaires. Dans ce but, cinq entreprises qui utilisent des métaux comme matière première pour produire une variété de produits métalliques, ont accepté d’adhérer à notre étude. Les métaux qui étaient explorés sont Al, Cr, Ni, Cu, Zn and Pb. Des modèles mathématiques de prédiction des expositions professionnelles aux agents chimiques ont été utilisés pour estimer les concentrations des ETM dans l’air intérieur pour 15 postes différents. Des prélèvements atmosphériques ont été effectués afin de comparer les concentrations prédites à celles mesurées, en utilisant des prélèvements individuels ou sur postes fixes. Finalement, des prélèvements urinaires ont été collectés chez 61 travailleurs afin d’évaluer le lien entre l’excrétion des ETM et les niveaux atmosphériques. Globalement, les estimations des concentrations atmosphériques avaient une bonne concordance avec les valeurs mesurées sur l’ensemble des postes de travail. Des meilleures prédictions ont été trouvées pour certaines activités, en particulier pour des processus de découpage des tôles et de soudures. Les valeurs qui correspondent au 90ème percentile de la distribution de l’exposition ont été utilisées pour le calcul du « interaction-based hazard index HIint » pour évaluer les risques associés aux mélanges d’ETM. Un excès de risque total de cancer a été aussi calculé. Les résultats ont montré des expositions élevées qui peuvent provoquer des pathologies respiratoires, avec un HIint allant jusqu’à 93,6. Les niveaux les plus élevés sont attribués à la soudure à l'arc à l'électrode enrobée et au débitage et cisaillage des tôles. Ces risques augmentent à cause de l’effet synergique qui existe entre Cr, Ni et Cu. Des risques élevés de cancer du poumon et du rein ont été encore démontrés (risque total vie entière de cancer pour les ouvriers exposés : 3.7×10-4). Ce travail montre que les modèles mathématiques peuvent prédire correctement les niveaux d’exposition des ETM dans l’air intérieur pour plusieurs processus de la métallurgie. Ce résultat est intéressant pour aider les différents acteurs pour piloter de manière efficiente les systèmes de surveillance et la réduction des expositions dans ce secteur économique. Des progrès en matière d’hygiène industrielle sont nécessaires dans ce secteur industriel pour minimiser le risque sanitaire élevé auquel sont actuellement exposés les travailleurs concernés / Trace metallic elements (TMEs) are pollutants of great concern even in trace amounts because of their toxicity and cumulative property. Some of them can be carcinogenic. The Sfax metropolis, located in the southern region of Tunisia, has been affected by releases of TMEs for decades. Several studies confirmed that this pollution is predominantly originated from anthropogenic sources, mainly from industrial activities. It represents a threat to the health of residents, particularly for those also exposed during occupational activities in industrial processes. The present study aims to assess health risks associated with occupational exposure in industries handling TMEs in their production processes, following the human health risk assessment approach. To this end, five companies using raw material containing TMEs to produce a variety of metallic products accepted to participate to the study. The metals that were investigated are Al, Cr, Ni, Cu, Zn and Pb. Mathematical models for estimating occupational exposure to chemicals were used to predict indoor air TME exposure levels in 15 different job tasks. Air monitoring was conducted in order to compare the predicted workplace air concentrations versus the direct measured ones, using both workplace-fixed monitors and personal samplers. And finally, urine samples were collected from 61 workers to assess whether TMEs excretion correlate with job exposure levels. Globally, the predicted air estimates relate well with measured concentrations over the whole set of job tasks. Better predictions were found for certain activities, in particular for steel cutting and welding processes. The values that correspond to the 90th percentile of the exposure distribution were then used in the interaction-based hazard index HIint to assess health risks associated with the mixtures of TMEs. Total cancer risk was also investigated. Results showed high exposures for metals that may elicit respiratory conditions, with a HIint reaching 93.6, the highest levels being for the shielded metal arc welding and metal shearing and slitting tasks. The risk is enhanced by a synergetic effect between Cr, Ni and Cu. High risks of lung and kidney cancers were demonstrated (the predicted life-long total cancer risk for exposed workers is 3.7×10-4). This work shows that mathematical models can be accurate in predicting TME airborne exposure levels for several processes in the metallurgic industry, a result that is of interest to help the different stakeholders to monitor efficiently exposure surveillance and abatement. Progress in industrial hygiene is needed in this industrial sector to reduce the high level of health risks currently experienced by the metalworking workers
12

[en] INFLUENCE OF THE SOIL PHYSICAL PARAMETERS IN RISK TO HUMAN HEALTH IN AREAS CONTAMINATED BY PAHS / [pt] INFLUÊNCIA DO MEIO FÍSICO NO RISCO À SAÚDE EM ÁREAS CONTAMINADAS POR HPAS

BIANCA DE SOUZA HACON 17 May 2018 (has links)
[pt] No Brasil, os riscos à saúde humana resultantes da exposição a compostos químicos vêm sendo abordados há poucos anos. Em 2009 foi publicada a Resolução CONAMA 420 que deu início à regulamentação desta prática e em 2013 o procedimento de avaliação de riscos à saúde humana em áreas contaminadas foi normatizado através da NBR 16209. Esta dissertação apresenta um estudo de avaliação de risco à saúde humana a partir de um estudo de caso de uma área contaminada com hidrocarbonetos policíclicos aromáticos (HPAs), considerando a exposição de futuros trabalhadores da área. Diante dos resultados obtidos foi realizada uma análise de sensibilidade dos parâmetros do meio físico da área de estudo para que fosse possível determinar e recomendar quais devem ser melhor investigados em estudos de áreas contaminadas com HPAs. Os resultados de risco à saúde humana mostraram que a rota de exposição mais crítica para o estudo de caso é a inalação de vapores em ambientes fechados, devido à ocorrência de compostos de baixo peso molecular, como o naftaleno. A análise de sensibilidade mostrou que o parâmetro do meio físico que exerceu maior influência nos resultados de risco à saúde humana foi a fração de carbono orgânico (FOC). Quanto maior a FOC menor foi o risco por inalação em ambientes abertos, fechados ou contato direto com a água subterrânea. / [en] In Brazil, the risks to human health from exposure to chemical compounds have been discussed since few years ago. In 2009 federal resolution CONAMA 420 was published, starting the regulation of this practice, and in 2013 the procedure of human health risk assessment (HHRA) in contaminated areas was regulated by the Brazilian Regulatory Standard (NBR) 16209. This dissertation presents a HHRA for a case study of an area contaminated with Polycyclic Aromatic Hydrocarbons (PAHs), considering the exposure of future workers in the area. Based on the results a sensitivity analysis of the soil physical parameters of the study area was performed to determine and recommend which of the parameters should be further investigated in studies of areas contaminated with PAHs. The results of the HHRA showed that the most critical exposure pathway to case study is the inhalation of indoor air due to the occurrence of low molecular weight compounds such as naphthalene. The sensitivity analysis showed that the soil physical parameter that had greater influence on the risk results was the fraction of organic carbon (FOC). The higher the FOC the lower was the risk for inhalation in outdoor spaces, enclosed spaces or direct contact with groundwater.

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