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The Construction And Application Evaluation Of Safety Management System For Tobacco Industry Laboratory

Posted on:2019-03-09Degree:MasterType:Thesis
Country:ChinaCandidate:L X ZhangFull Text:PDF
GTID:2371330542994271Subject:Safety science and engineering
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Under the new circumstances,the scale of laboratories continues to expand,and the mobility of personnel continues to increase,making it increasingly difficult to manage and control laboratory safety.Recalling the history of tobacco science and technology development in China,scientific and technological innovation is an important experience in achieving outstanding achievements.As the core sector of tobacco industry technological innovation,the research on safety management of tobacco laboratories lags behind the pace of safety management of industrial and commercial enterprises,and its safety management is only based on experience and reference to other industry management methods,there is no set of standard and standardized safety management systems that meet the tobacco industry.The author visited and investigated the tobacco industry laboratories and consulted senior experts,based on the "2-4" model of behavior safety,WSR methodology,and safety system science principles as the theoretical basis for building a tobacco laboratory safety management system.National and industry standards were used as a design basis for safety management system.The safety management system was established covering 7 categories,50 sub-categories and 226 sub-items,which involved basic laboratories management,Laboratory safety technology,information management system,emergency management,occupational health management,laboratory environmental protection and evaluation of the seven major.In accordance with the national system preparation and review standards,industry experts were invited to open seminars to improve the safety management system through expert review of information,on-site questions,and exchange of opinions.It put forward a set of pair analysis(SPA)application effect evaluation model based on the five yuan connection number to verify the effectiveness of the safety management system,and predicted the development trend of the system by calculating the number of connections of the five-element contact number.According to the content of the safety management system,the application evaluation index system was constructed,and the improved fuzzy analytical hierarchy process(FAHP)was used to reasonably evaluate the evaluation indicators.The empirical study verified the effectiveness of the safety management system and the feasibility of the evaluation method.Judging from the evaluation results,the empirically selected laboratory belongs to the safety management first-level standardization,with good safety production conditions and a relatively complete safety management program,and the safety condition was stable.The application of the safety management system had been rated as excellent,which showed that Set Pair Analysis(SPA)model can evaluate the safety operation status of an industry laboratory based on the indicators of the safety management system established in this paper,and SPA accurately reflected the objective facts.This not only verified that the safety management system has a certain level of safety standardization,but also verified the feasibility of the SPA method.The trend forecasting analysis showed,the result of the set pair trend analysis is that the safety development status of the laboratory is at the first level of the strong potential area,and the partial connection number of the SPA subsidiary function is 0.49,which is greater than 0.Both of them are consistent with the prediction results.It showed that the laboratory safety status reflected by the safety management system had a good development trend,which was also in line with the actual practice of laboratory safety operations.
Keywords/Search Tags:Tobacco Laboratories, Application Evaluation, Behavior Safety "2-4" Model, Set Pair Analysis (SPA), Fuzzy Analytic Hierarchy Process (FAHP), Safety Management System
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