WANG Aihong, LENG Pengbo, LI Xiaohai, GAO Chao, MAO Guochuan, ZHANG Dandan. Application of a comprehensive risk assessment method for occupational disease hazards of employers in occupational health classification management of wooden furniture manufacturing factories[J]. Journal of Environmental and Occupational Medicine, 2023, 40(6): 634-640, 647. DOI: 10.11836/JEOM22438
Citation: WANG Aihong, LENG Pengbo, LI Xiaohai, GAO Chao, MAO Guochuan, ZHANG Dandan. Application of a comprehensive risk assessment method for occupational disease hazards of employers in occupational health classification management of wooden furniture manufacturing factories[J]. Journal of Environmental and Occupational Medicine, 2023, 40(6): 634-640, 647. DOI: 10.11836/JEOM22438

Application of a comprehensive risk assessment method for occupational disease hazards of employers in occupational health classification management of wooden furniture manufacturing factories

  • Background The contradiction between science and operability has always existed in the model of classified occupational health supervision and management. Comprehensive risk assessment method for occupational disease hazards of employers provides risk grading and classification for occupational health management, and it's a new attempt to explore classification supervision and law enforcement.
    Objective To apply a comprehensive risk assessment method for occupational disease hazards of employers to estimate health risk level of wood furniture enterprises, discuss its advantages and disadvantages, and provide a basis for improving the classified management of occupational health.
    Methods Seven typical factories were selected in counties with highly concentrated wooden furniture manufacturing. Occupational health field investigation and testing were carried out to estimate occupational disease hazard risk level (Ⅰ, Ⅱ, and Ⅲ). A self-rated checklist was applied to score occupational health management status by interviewing employers, one by one, and to determine occupational health management status grade (A, B, and C) by the score. Thus, a comprehensive risk level (Class A, Class B, and Class C) of a specific factory was obtained from a matrix of occupational disease hazard risk level and management status grade. Risk verification was carried out based on any abnormality reported by regular occupational physical examination in past 3 years.
    Results Defects in occupational health management were identified in all 7 factories, among which 6 were grade C with key nonconformities (poor), and 1 was grade B (medium). Disqualified occupational disease hazards were found in 6 of 7 factories, and the workstation-specific disqualified rates were 26.09% (12/46) for noise, 14.71% (5/34) for wood dust (hard), and 12.50% (1/8) for xylene. Level Ⅱ (medium) of occupational disease hazard risk was estimated in 5 of 7 factories, while level Ⅲ (high) in 2 factories. All 7 factories were class C (high risk) accessed by the comprehensive risk assessment method for occupational disease hazards. The occupational health surveillance documents showed 636 batches of regular occupational physical examination were ordered by the 7 employers, and a total of 37 workers from 5 factories reported abnormalities in physical examination, among which 3 workers reported dust exposure and 34 workers reported noise exposure.
    Conclusion The comprehensive risk assessment method for occupational disease hazards of employers is not able to perform with satisfaction in occupational health classification of wooden furniture manufacturing factories yet. It is necessary to expand the pilot to improve this assessment method and develop an efficient supervision mechanism to ensure the authenticity of the data before it is popularized and applied in classified occupational health management.
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