Benzene Exposure From Selected Work Tasks on Offshore Petroleum Installations on the Norwegian Continental Shelf, 2002–2018

Author:

Ridderseth Hilde1,Daltveit Dagrun Slettebø1,Hollund Bjørg Eli1,Kirkeleit Jorunn1,Kromhout Hans2,Krüger Kirsti3,Aasbø Kari3,Bråtveit Magne1

Affiliation:

1. University of Bergen , 5020 Bergen , Norway

2. Institute for Risk Assessment Sciences, Utrecht University , 3584 CS Utrecht , The Netherlands

3. Equinor ASA , 4035 Stavanger , Norway

Abstract

Abstract Objectives Work on offshore petroleum installations may cause exposure to benzene. Benzene is a carcinogenic agent, and exposure among workers should be as low as reasonably practicable. We aimed to assess short-term (less than 60 min) benzene exposure from the most frequent work tasks on offshore installations on the Norwegian continental shelf and identify determinants of exposure. In addition, we aimed to assess the time trend in task-based benzene measurements from 2002 to 2018. Methods The study included 763 task-based measurements with a sampling duration of less than 60 min, collected on 28 offshore installations from 2002 to 2018. The measurements were categorized into 10 different tasks. Multilevel mixed-effect Tobit regression models were developed for two tasks: sampling and disassembling/assembling equipment. Benzene source, season, indoors or outdoors, design of process area, year of production start, sampling method, and work operation were considered as potential determinants for benzene exposure in the models. Results The overall geometric mean (GM) benzene exposure was 0.02 ppm (95% confidence intervals 95%(CI: 0.01–0.04). The pipeline inspection gauge (PIG) operation task was associated with the highest exposure, with a GM of 0.33 ppm, followed by work on flotation cells, disassembling/assembling, and sampling, with GMs of 0.16, 0.04, and 0.01 ppm, respectively. Significant determinants for the disassembling/assembling task were work operation (changing or recertifying valves, changing or cleaning filters, and breaking pipes) and benzene source. For sampling, the benzene source was a significant determinant. Overall, the task-based benzene exposure declined annually by 10.2% (CI 95%: −17.4 to −2.4%) from 2002 to 2018. Conclusions The PIG operation task was associated with the highest exposure out of the ten tasks, followed by work on flotation cells and when performing disassembling/assembling of equipment. The exposure was associated with the type of benzene source that was worked on. Despite the decline in task-based exposure in 2002–2018, technical measures should still be considered in order to reduce the exposure.

Funder

The Research Council

Publisher

Oxford University Press (OUP)

Subject

Public Health, Environmental and Occupational Health

Reference21 articles.

1. Personal exposure to benzene and 1,3-butadiene during petroleum refinery turnarounds and work in the oil harbour;Akerstrom;Int Arch Occup Environ Health,2016

2. Biological monitoring of benzene exposure for process operators during ordinary activity in the upstream petroleum industry;Bråtveit;Ann Occup Hyg,2007

3. Combined analysis of job and task benzene air exposures among workers at four US refinery operations;Burns;Toxicol Ind Health,2016

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