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1.
Article in English | LILACS-Express | LILACS | ID: biblio-1537068

ABSTRACT

The objective of this research was to evaluate the working and health conditions of workers in three sectors of the economy of Armenia, Colombia (tanneries, construction sites, and beauty salons) exposed to chemical and physical agents. A descriptive observational study of the working conditions and health of workers in their work environments was carried out, by visiting 10 companies per sector. The evaluation of working conditions in construction sites gave High (high risk), as well as in tanneries. Beauty salons gave an evaluation of Medium (medium risk).


El objetivo de esta investigación fue evaluar las condiciones de trabajo y salud de los trabajadores, de tres sectores de la economía de Armenia, Colombia (curtiembres, obras de construcción y salones de belleza), expuestos a agentes químicos y físicos. Se realizó un estudio observacional descriptivo de las condiciones de trabajo y salud de los trabajadores en sus entornos laborales, visitando 10 empresas por sector. La evaluación de las condiciones de trabajo en las obras de construcción dio un resultado Alto (riesgo elevado), al igual que en las curtiembres. Los salones de belleza obtuvieron una evaluación Media (riesgo medio).

2.
Risk Anal ; 39(8): 1783-1795, 2019 08.
Article in English | MEDLINE | ID: mdl-30908695

ABSTRACT

Novel materials with unique or enhanced properties relative to conventional materials are being developed at an increasing rate. These materials are often referred to as advanced materials (AdMs) and they enable technological innovations that can benefit society. Despite their benefits, however, the unique characteristics of many AdMs, including many nanomaterials, are poorly understood and may pose environmental safety and occupational health (ESOH) risks that are not readily determined by traditional risk assessment methods. To assess these risks while keeping up with the pace of development, technology developers and risk assessors frequently employ risk-screening methods that depend on a clear definition for the materials that are to be assessed (e.g., engineered nanomaterial) as well as a method for binning materials into categories for ESOH risk prioritization. The term advanced material lacks a consensus definition and associated categorization or grouping system for risk screening. In this study, we aim to establish a practitioner-driven definition for AdMs and a practitioner-validated framework for categorizing AdMs into conceptual groupings based on material characteristics. Results from multiple workshops and interviews with practitioners provide consistent differentiation between AdMs and conventional materials, offer functional nomenclature for application science, and provide utility for future ESOH risk assessment prioritization. The definition and categorization framework established here serve as a first step in determining if and when there is a need for specific ESOH and regulatory screening for an AdM as well as the type and extent of risk-related information that should be collected or generated for AdMs and AdM-enabled technologies.


Subject(s)
Environmental Health , Materials Testing , Risk Assessment , Safety
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