About the role
SpaceX was founded under the belief that a future where humanity is out exploring the stars is fundamentally more exciting than one where we are not. Today SpaceX is actively developing the technologies to make this possible, with the ultimate goal of enabling human life on Mars.
LEAD PROCESS SAFETY ENGINEER
The SpaceX Bastrop Environmental Health & Safety team is seeking a highly driven engineer to establish process safety parameters across a variety of cutting-edge technologies and manufacturing processes. A successful engineer in this role will thrive in a fast-paced collaborative environment, establishing themselves as a process safety SME with key stakeholders.
RESPONSIBILITIES
Conduct Process Hazard Analyses (PHAs) of advanced chemical systems and recommend controls to manage risks as low as reasonably practicable
Evaluate equipment overpressure/overtemperature scenarios and reaction hazards
Perform/oversee Factory Acceptance Testing (FAT), Site Acceptance Testing (SAT), as well as risk assessments and hazard analyses on complex process equipment
Implement and field validate safety-critical instruments and interlocks during Pre-Startup Safety Reviews (PSSRs)
Implement a Process Safety Management (PSM) program and ensure compliance with all pillars of PSM
BASIC QUALIFICATIONS
Bachelor’s degree in process safety or chemical engineering
5+ years’ experience with design and commissioning chemical systems
PREFERRED SKILLS AND EXPERIENCE
Master’s degree in chemical engineering
Ability to read and interpret P&IDs, equipment datasheets, instrumentation diagrams, etc.
Experience with reviewing safety control circuits and calculating safety performance levels
Experience with design and commissioning of process systems for hydrofluoric acid, strong acids and bases, pyrophoric and flammable gases
Advanced understanding of industry codes, standards, and practices such as ASME, NFPA, ANSI, IBC/IFC, RAGAGEP, etc.
Knowledge of quality tools such as lean manufacturing principles, statistical process control, root cause analysis and corrective action, process failure mode and effects analysis (PFMEA), control plans, and various problem-solving approaches
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