Preliminary Design and Construction Database for Laboratory Accidents

Author:

Zheng Xuying12ORCID,Miao Fang3,Yuan Jiaqi4,Xia Huasong4,Udomwong Piyachat1,Chakpitak Nopasit1

Affiliation:

1. International College of Digital Innovation, Chiangmai University, Chiangmai 50200, Thailand

2. School of Architecture and Civil Engineering, Chengdu University, Chengdu 610106, China

3. Big Data Research Institute, Chengdu University, Chengdu 610106, China

4. College of Computer Science, Chengdu University, Chengdu 610106, China

Abstract

With the growth of university chemistry experiment projects, the corresponding laboratory safety risks are increasing year by year for scientific research personnel, and specialized equipment. However, accident data are not stored systematically for lack of a safety platform to collect accident information, share the causes of accidents, and predict safety risks. To solve these problems, we designed a laboratory accident system to store and share related data, and predict risk levels. In this paper, the majority of chemistry laboratory accidents were manually collected by Python software (version 3.10.11) and were categorized based on their risk level. Moreover, the variable factors that generated risk were analyzed using Spsspro, which facilitates the construction of a meaningful forecasting model of laboratory safety via Stata. It is worth noting that the registered laboratory accident data in the proposed chemistry accident system were based on the data ownership safety architecture. The chemistry accident system can break through data barriers using confirmation and authorization key algorithms to trace non-tampered data sources in a timely manner when an emergency accident happens. Meanwhile, the proposed system can use our designed accident risk model to predict the risk level of any experimental project. It can also be recommended as an appropriate safety education module.

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Computer Networks and Communications,Hardware and Architecture,Signal Processing,Control and Systems Engineering

Reference34 articles.

1. An explosion accident analysis of the laboratory in the university;Chen;Process Saf. Prog.,2020

2. Thomke, S.H. (2003). Experimentation Matters: Unlocking the Potential of New Technologies for Innovation, Harvard Business Press.

3. Ponderation over the recent safety accidents of lithiumion battery energy storage stations in South Korea;Cao;Energy Storage Sci. Technol.,2020

4. Current status, challenges, and future directions of university laboratory safety in China;Bai;J. Loss Prev. Process Ind.,2022

5. A social virtual reality based construction safety education system for experiential learning;Le;J. Intell. Robot. Syst.,2015

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