Laboratory study of PCB transport from primary sources to building materials

Author:

Liu Xiaoyu1,Guo Zhishi1,Krebs Kenneth A.1,Greenwell Dale J.1,Roache Nancy F.2,Stinson Rayford A.2,Nardin Joshua A.2,Pope Robert H.2

Affiliation:

1. U.S. Environmental Protection Agency, Office of Research and Development, National Risk Management Research Laboratory, Research Triangle Park, NC 27711, USA

2. Arcadis, US Inc., Durham, NC, USA

Abstract

The sorption of airborne polychlorinated biphenyls (PCBs) by 20 building materials and their re-emission (desorption) from concrete were investigated using two 0.053 m3 environmental chambers connected in series with a field-collected caulk in the source chamber serving as a stable source of PCBs and building materials in the test chamber. During the tests, the PCB concentrations in the outlet air of the test chamber were monitored and the building materials were removed from the test chamber at different times to determine their PCB content. Among the materials tested, a petroleum-based paint, a latex paint, and a certain type of carpet were among the strongest sinks. Solvent-free epoxy coating, certain types of flooring materials, and brick were among the weakest sinks. For a given sink material, PCB congeners with lower vapour pressures were sorbed in larger quantities. Rough estimates of the partition and diffusion coefficients were obtained by applying a sink model to the data acquired from the chamber studies. A desorption test with the concrete panels showed that re-emission is a slow process, suggesting that PCB sinks, e.g. concrete, can release PCBs into the air for a prolonged period of time (years or decades). This study could fill some of the data gaps associated with the characterization of PCB sinks in contaminated buildings.

Publisher

SAGE Publications

Subject

Public Health, Environmental and Occupational Health

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