Bow Ties in Process Safety and Environmental Management

Bow Ties in Process Safety and Environmental Management

Current Trends and Future Perspectives

Gautam, Sneha; Shu, Chi-Min; Gollakota, Anjani Ravi Kiran

Taylor & Francis Ltd

12/2021

315

Dura

Inglês

9780367690885

15 a 20 dias

793

Descrição não disponível.
1. Bow Ties of Process Safety and Environmental Impact Transition from Theory to Practice.2. Fire and Explosion Hazards of Liquid Mixtures. 3. Bow-Tie Analysis of Underground Coal-Fire Hazards and Mining Activities Using Hybrid Data: A Case Study of Wuda Coalfield in Inner Mongolia, China. 4. Technologies to Inhibit Coal Fires. 5. Micro-Scale Piloting Test for Coal and Gas Outburst Prevention by Liquid Carbon Dioxide Injection and In-Situ Experiment. 6. Fighting Fires in the Coal Mining Industry. 7. Application of Safety Triad in Process Safety. 8. Forensic Analysis of Some Types of Industrial Explosions. 9. Risk ASsessment of Hydrogen Fueling Stations. 10. Comparative Assessment and Validation of USEPA Air Quality Modelling Techniques Using Pre-Post Point-source Observations Near a Coal-Based Thermal Power Plant. 11. Spatiotemporal Dispersion of Particles in the Vicinity of an Opencast Mine in India. 12. An Overview to Quantitative Risk Assessment Methodologies. 13. Understanding Spatio-Temporal Variability of Groundwater Level Changes in India Using Hydrogeological and GIS Techniques. 14. Electrocoagulation Influencing Parameters Investigation on Reactive Dyes in Textile Wastewater: A Simple Optimization Method. 15. Evaluation of Historic Trends on Hydro-Meterological Variables in the Cauvery Basin, India. 16. Valuation of Environmental Externalities: A Tool for Sustainability. 17. Exploring Human-Elephant Conflicts and Mitigation Measures in and Around Rohingya Camps in Cox's Bazar, Bangladesh. 18. Transmission Mechanisms of Bioaerosols: An Unseen Threat to Human Health.
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Coal Seams;Bow Tie Analysis;Emergency;Bow Tie Diagram;Risk Assessment;Dust Explosions;Mining;Hydrogen Fueling Stations;Dust Explosion;AERMOD Model;Carcinogens;Nuclear Magnetic Resonance;Thermal Power Plants;Bow Tie Approach;Hazards;Dye Bath Effluent;Explosion Limit;QRA;HAZID Study;EC Process;Host Community Members;Groundwater Depletion;Pm Concentration;Maximum Pressure Rise Rate;Color Removal Efficiency;Coal Pores;Working Face;Swat Simulation;Coal Oxidation Process;Maximum Explosion Pressure;Hydrogen Production System;Cod Removal