Safety Workplace: The Prevention of Industrial Security Risk Factors
Abstract
:1. Introduction
Related Works
2. Materials and Methods
3. Results
4. Discussion
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
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Risk Identification | Tittle | Author | Explanation Method |
---|---|---|---|
Cumulative risk | “Implications of applying cumulative risk assessment to the workplace” [28]. | Mary Fox, Kristen Spicer et al. | Cumulative risk assessment (CRA) applied in phases: (i) Hazard identification. (ii) dose-response assessment (iii) exposure assessment. (iv) risk characterization |
“The Future of Risk Identification in a Rapidly Changing Sociotechnical Work Environment” [29]. | Joann Kirby et al. | A risk frame created using a mixed methodology of theoretical knowledge and a survey | |
“Workplace interventions for common mental disorders: a systematic meta-review” [30]. | Joyce Sadhbh, Modini Matthew, Helen Christensen et al. | Evaluate the workplace interventions that may facilitate the prevention, treatment, or rehabilitation of a worker with a diagnosis of depression or anxiety. | |
“Health problems and psychosocial work environment as predictors of long-term sickness absence in employees who visited the occupational physician and/or general practitioner in relation to work: a prospective study” [31]. | Helene Andrea, Anna Beurskens et al. | Determine the relationship between the psychosocial work environment, health problems and incident long-term sickness. | |
“A systematic review on workplace interventions to manage chronic musculoskeletal conditions” [32]. | Glykeria Skamagki, Andrew King et al. | Determine whether there are effective actions inside the workplace that reduce chronic musculoskeletal disorders. | |
“How We Prevent Prevention of Musculoskeletal Disorders in the Workplace” [33]. | Kim Tae. | Examine the knowledge about the prevention of work-related musculoskeletal pain and musculoskeletal disorders. | |
“Long-Term Sickness Absence Due to Mental Disorders Is Associated with Individual Features and Psychosocial Work Conditions” [34] | João Silvestre da Silva-Junior. | Evaluating workers on sick leave for more than 15 days as a result of disabling psychiatric illnesses. | |
Latent risk | “Workplace hazard identification and management: The case of an underground mining operation “ [35]. | Susanne Bahn. | Uses the findings from two workshops conducted with 77 employees applying research methodology. |
“Workplace Safety: A Strategy for Enterprise Risk Management” [36]. | Janet Jule. | Use leadership to increase accountability and reduce injury risks, planning to improve workplace safety by preventing injuries such as overexertion and contact with objects. | |
“A Multidimensional Approach to Modelling for Workplace Risk Assessment” [37]. | Antonis Targoutzidis et al. | Use tags for accident, human error and risk perception models. | |
“Workplace hazard identification: What do people know and how is it done?” [38]. | Maciej Serda et al. | Based on two hazard identification and hazard management training workshops to teach workers | |
“A comparative outline for quantifying risk ratings in occupational health and safety risk assessment” [39]. | Muhammet Gul. | PFAHP is used in weighting the risk parameters of 5 × 5 matrix method. | |
“Determination of the risk at workplace, assessmentAnd its rank calculation, in mining activities” [40]. | Zeqiri, KemajlKortnik, JozeMijalkovski. | Evaluate the risk in the workplace caused by a particular agent through rank through empirical formulas. | |
“Hazard Identification, Risk Assessment, and Control Measures as an Effective Tool of Occupational Health Assessment of Hazardous Process in an Iron Ore Pelletizing Industry” [41]. | B. Rout and B. Sikdar. | Identify all the possible hazards in workplaces of an iron ore pelletizing industry to make a health risk assessment. | |
“Investigating Wearable Technology for Fatigue Identification in the Workplace” [42]. | Griffiths, ChristopherBowen, JudyHinze, Annika. | Compilation of psychological data collected from wearable systems to determine how the individual performs tasks in the workplace. | |
“The Consequences Of Psychosocial Risks In The Workplace In Legal Context” [43]. | Seilerová Monika. | Determine the need for the legal regulation of mental workload and the increasing effects of its shortcomings. | |
“Musculoskeletal health in the workplace” [44]. | Joanne Crawford. | Determine the changes produced by chronic MSK conditions from 2000 and how we can help people with these conditions to recover after suffering the condition. | |
“Need for a new workplace safety and health (WSH) strategy for the fourth Industrial Revolution” [45]. | Gabriel Chia et al. | To promote a total Worker Health responsive approach in the face of rapid technological advancements | |
“Exposure to Environmental and Occupational Particulate Air Pollution as a Potential Contributor to Neurodegeneration and Diabetes: A Systematic Review of Epidemiological Research” [46]. | Eirini Dimakakou et al. | Identify the link and mechanisms associated with particulate exposure and disease pathogenesis. | |
“Artificial Intelligence-enabled Wearable Medical Devices, Clinical and Diagnostic Decision Support Systems, and Internet of Things-based Healthcare Applications in COVID-19 Prevention, Screening, and Treatment” [47]. | Barnes Robin, Zvarikova, Katarina. | Use machine learning algorithms to optimize diagnostic swiftness and precision to identify the most vulnerable individuals |
LEADING RISK FACTORS RELATED TO MUSCULOSKELETAL DISORDERS | |||
---|---|---|---|
Classification/Code | Cause | Effect | Example |
RP1 | Application of big efforts | Critical overloading | Carrying, pushing or pulling, lifting heavy objects |
RP2 and RE1 | Moving weighty loads during long periods of time. | Degenerative diseases particularly in the lumbar spine | Manual materials manipulation |
RM1 and RP3 | Repeated movements during handling of objects | Fatigue and Overload in specific muscles | Assembly work, check-out work, a long time typing |
RE3 | Working in unergonomic posture | Overload of skeletal and muscular system | Working with the trunk, or hands or arms heavily bent or twisted |
RE4 | Load by static muscular | Long-lasting muscular activity [keeping the static position] and possible overload in specific muscles | Working in a limited space |
RE5 | Muscular inactivity | Decrease in functional capacity of tendons, muscles and bones | Long-term sitting work with short muscular demands |
RM1 RE6 | Monotonous repetitive movement | Unspecific complaints in the extremities | Repeated activity the same muscles with pauses without relaxation |
RM2 | Constant vibration | Dysfunction of nerves, reduced blood flow, degenerative disorders, and psychological disorders caused by stress | Manipulating a machine with annoying vibration or using vibrating hand tools. |
RE7 | Physical environmental aspects: light, sounds, temperature, etc. | Damage to the sensory organs of the worker, diseases in the sensory nervous system, and psychological disorders caused by stress. | Work with improperly light, noisy environment, uncomfortable temperature, etc. |
RCH1 | Exposure to chemicals products or factors in the workplace. | Burn, injury or permanent illness. | Direct contact with a specific chemical product can produce injury or illness. |
RPS1 | Physical and social outcomes such as work-related stress, burnout or depression. | Stress, Depression. | Poor communication between manager and workers |
Identified Risk | Number of Appearances | Cited Research |
---|---|---|
Mechanical risk | 7 | [30,31,32,34,37,39,40] |
Physical risk | 13 | [27,28,31,32,34,35,36,38,40,41,43,45,46] |
Chemical risk | 3 | [34,38,40] |
Ergonomic risk | 18 | [27,28,29,30,31,32,33,35,36,38,39,40,41,42,43,44,45,46] |
Psychosocial risk | 3 | [30,33,42] |
INJURY/ILLNESS POSSIBLE CAUSES | ||||
---|---|---|---|---|
Injury or illness | Cuts, abrasions, amputations, and punctures on human body | Stress on muscles and ligaments. Numbness, or poor circulation in hands and arms. | Eye injuries | Broken bones and bruises |
Probable cause | When hand tools are designed to cut or move metal and wood it can cut easily the body parts | Repetitive activity, in the same posture, using the same tool during the labor period. | Material waste flying as chips of wood or metal cause often momently or permanent blindness | Strokes or slips during the worker is holding a tool |
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Erazo-Chamorro, V.C.; Arciniega-Rocha, R.P.; Rudolf, N.; Tibor, B.; Gyula, S. Safety Workplace: The Prevention of Industrial Security Risk Factors. Appl. Sci. 2022, 12, 10726. https://doi.org/10.3390/app122110726
Erazo-Chamorro VC, Arciniega-Rocha RP, Rudolf N, Tibor B, Gyula S. Safety Workplace: The Prevention of Industrial Security Risk Factors. Applied Sciences. 2022; 12(21):10726. https://doi.org/10.3390/app122110726
Chicago/Turabian StyleErazo-Chamorro, Vanessa C., Ricardo P. Arciniega-Rocha, Nagy Rudolf, Babos Tibor, and Szabo Gyula. 2022. "Safety Workplace: The Prevention of Industrial Security Risk Factors" Applied Sciences 12, no. 21: 10726. https://doi.org/10.3390/app122110726
APA StyleErazo-Chamorro, V. C., Arciniega-Rocha, R. P., Rudolf, N., Tibor, B., & Gyula, S. (2022). Safety Workplace: The Prevention of Industrial Security Risk Factors. Applied Sciences, 12(21), 10726. https://doi.org/10.3390/app122110726