Content area

Abstract

Objective: To evaluate the effects of occupational exposures to coke oven emissions (COEs) and benzo[a]pyrene (B[a]P) on the prevalence of hypertension and abnormal electrocardiogram (ECG) in coke oven workers. Methods: We included 880 coke oven workers and 710 oxygen employees in the exposed and control groups, respectively. Blood pressure (BP), ECG, blood lipid levels, and glucose levels of all subjects were measured. COE and B[a]P concentrations at the bottom, side, and top of the oven and control plants were estimated by weighing and high-performance liquid chromatography. Results: The COE concentration at the top and side was higher than that at the bottom (P < 0.05). The levels of B[a]P at the top and side significantly exceeded the limit value. Abnormal BP, ECG, the detection ratio of hypertension and left ventricular high voltage were significantly greater in the exposed group than in the control group (P < 0.05). The logistic regression analysis results revealed that age and B[a]P exposure were risk factors for hypertension in coke oven workers (P < 0.05) and both were risk factors for abnormal ECG (P < 0.05). Moreover, B[a]P exposure, age, and gender were risk factors for impaired fasting glucose in coke oven workers (P < 0.05). Conclusions: B[a]P and COE exposures are risk factors for hypertension and abnormal ECG in coke oven workers.

Details

Title
Effects of coke oven emissions and benzo[a]pyrene on blood pressure and electrocardiogram in coke oven workers
Author
Yang, Kai 1 ; Jiang, Xuejun 1 ; Cheng, Shuqun 1 ; Chen, Chengzhi 1 ; Cao, Xianqing 1 ; Tu, Baijie

 School of Public Health and Management, Research Center for Medicine and Social Development, Innovation Center for Social Risk Governance in Health, Chongqing Medical University, China 
Pages
1-7
Publication year
2017
Publication date
Jan 2017
Publisher
Oxford University Press
ISSN
13419145
e-ISSN
13489585
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
2684218882
Copyright
Copyright John Wiley & Sons, Inc. Jan 2017