4.7 Article

Comparative occupational risk assessment to support the substitution of Substances of Very High Concern: Alternatives assessment for diarsenic trioxide in Murano artistic glass production

期刊

JOURNAL OF CLEANER PRODUCTION
卷 139, 期 -, 页码 384-395

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.jclepro.2016.08.025

关键词

Alternatives assessment; Comparative occupational risk assessment; Diarsenic trioxide; Cerium dioxide; REACH

资金

  1. Italian Ministry of the Environment and Protection of Land and Sea
  2. Ministry of Economic Development
  3. Ministry of Health
  4. Stazione Sperimentale del Vetro
  5. Chamber of Commerce of Venice

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In the framework of REACH Regulation (1907/2006/EC), the assessment of health and environmental risks posed by chemical substitutes of Substances of Very High Concern requires transparent approaches, suitable to provide all stakeholders with the information needed to select safer chemicals and minimize the potential for unintended consequences. A comparative assessment for diarsenic trioxide (As2O3) and proposed chemical alternatives (cerium dioxide CeO2 and blast furnace slag) in Murano artistic glass production was performed. The assessment followed a structured, stepwise framework including a detailed analysis of production processes, development of occupational exposure scenarios and comparative assessment of occupational health risks. Several occupational exposure models were compared and the most suitable ones (MEASE, TRAw and ART models) were applied to the selected scenarios. The study concluded that, from the perspective of occupational health risks, the use of CeO2 together with blast furnace slag represents a safer alternative to As2O3 and, given the correct implementation of Personal Protection Measures, health risks will be controlled for all production phases. The study demonstrated that, due to similar physico-chemical properties of the considered substances, toxicological factors constitutes the main driver of occupational risks, and at the same time allowed to identify critical issues in the comparative assessment procedure. The proposed approach can guide the evaluation of risks of chemical alternatives with the aim of supporting the decision-making process in the transition towards safer productions. (C) 2016 Elsevier Ltd. All rights reserved.

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