Literature DB >> 24752632

Nanoparticle emissions from traditional pottery manufacturing.

Aristeidis Voliotis1, Spyros Bezantakos, Maria Giamarelou, Marco Valenti, Prashant Kumar, George Biskos.   

Abstract

Traditional pottery manufacturing involves firing of the ceramics in kilns, a process that leads to high concentrations of airborne particles that are harmful to human health. In order to assess the associated exposure levels and the involved risks, here, for the first time, we investigate the size, the concentration and the elemental composition of the particles emitted during the different stages of the ceramic firing process. Number size distributions of the emitted particles, having diameters in the range from 10 nm to 20 μm, were measured in a traditional small-sized pottery studio using a Scanning Mobility Particle Sizer (SMPS) and an Optical Particle Counter (OPC). The measurements showed dominance of the nanoparticle mode (i.e., particles smaller than 100 nm) when the kiln reached temperatures above 600 °C. The mean size of the particles ranged from 30 to 70 nm and their peak number concentration was 6.5 × 10(5) cm(-3) during the first stage of the firing process where the ceramics were unpainted and unglazed. During the second stage of the firing process, where the ceramics were painted and glazed, the mean particle size ranged from 15 to 40 nm and their number concentration peaked at 1.2 × 10(6) cm(-3). Elemental analysis of individual particles collected during the two firing stages and studied by Energy-Dispersive X-ray (EDX) spectroscopy showed that the emitted nanoparticles contain significant amounts of lead. These findings provide new information for understanding the health impacts of traditional pottery manufacturing, and underline the need for adopting adequate measures to control nanoparticle emissions at the source.

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Year:  2014        PMID: 24752632     DOI: 10.1039/c3em00709j

Source DB:  PubMed          Journal:  Environ Sci Process Impacts        ISSN: 2050-7887            Impact factor:   4.238


  2 in total

1.  Exposure to airborne particles and volatile organic compounds from polyurethane molding, spray painting, lacquering, and gluing in a workshop.

Authors:  Bjarke Mølgaard; Anna-Kaisa Viitanen; Anneli Kangas; Marika Huhtiniemi; Søren Thor Larsen; Esa Vanhala; Tareq Hussein; Brandon E Boor; Kaarle Hämeri; Antti Joonas Koivisto
Journal:  Int J Environ Res Public Health       Date:  2015-04-02       Impact factor: 3.390

2.  Real-Time Measurements and Characterization of Airborne Particulate Matter from a Primary Silicon Carbide Production Plant.

Authors:  Rikke Bramming Jørgensen; Ida Teresia Kero
Journal:  Int J Environ Res Public Health       Date:  2017-12-20       Impact factor: 3.390

  2 in total

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