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Metallurgy Process Engineer Jobs in Missouri (NOW HIRING)

Metallurgist

Viburnum, MO ยท On-site

$70 - $100/hr

Bachelor's Degree in Metallurgical Engineering or a related field. * Valid driver's license ... Basic understanding of minerals processing unit operations, i.e. Crushing, grinding, flotation ...

Metallurgist

Viburnum, MO ยท On-site

$76K - $93K/yr

Bachelor's Degree in Metallurgical Engineering or a related field. * Valid driver's license ... Basic understanding of minerals processing unit operations, i.e. Crushing, grinding, flotation ...

Metallurgist

Viburnum, MO ยท On-site

$76K - $93K/yr

Bachelor's Degree in Metallurgical Engineering or a related field. * Valid driver's license ... Basic understanding of minerals processing unit operations, i.e. Crushing, grinding, flotation ...

Tooling Engineer

Louisiana, MO ยท On-site

$65 - $90/hr

To work with Tooling Engineer / Supervisor in developing, designing, and sustaining tooling ... Develop metallurgical knowledge and understanding of tool steels for processing HASTELLOY and ...

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Metallurgy Process Engineer information

What does a metallurgy process engineer do?

A Metallurgy Process Engineer is responsible for developing, optimizing, and overseeing processes involved in the extraction, refining, and manufacturing of metals and alloys. They work to improve efficiency, quality, and safety in metallurgical operations, such as smelting, casting, and heat treatment. Metallurgy Process Engineers also troubleshoot production issues, ensure compliance with environmental and safety regulations, and collaborate with other engineers to develop new materials or processes.

What are some typical challenges faced by metallurgy process engineers in optimizing industrial processes?

Metallurgy Process Engineers often encounter challenges such as balancing cost efficiency with maintaining material quality, adapting processes to new alloys or specifications, and troubleshooting unexpected production issues like contamination or equipment wear. They must continuously monitor process parameters, analyze data, and implement improvements while collaborating closely with production teams and quality control. Staying updated with the latest technological advancements and environmental regulations is also crucial to ensure processes remain competitive and compliant.

What are the key skills and qualifications needed to thrive as a metallurgy process engineer, and why are they important?

To thrive as a Metallurgy Process Engineer, a strong background in materials science, metallurgy, and chemical engineering is essential, typically supported by a relevant bachelor's degree. Familiarity with metallurgical analysis tools, process simulation software, and industry certifications like Six Sigma are commonly required. Strong problem-solving abilities, attention to detail, and effective communication skills help professionals excel in cross-functional teams and complex manufacturing environments. These competencies are crucial for optimizing metal production processes, ensuring product quality, and driving operational efficiency.

What is the difference between Metallurgy Process Engineer vs Materials Scientist?

AspectMetallurgy Process EngineerMaterials Scientist
CredentialsBachelor's or Master's in Metallurgy, Materials Science, or related fieldBachelor's or Master's in Materials Science, Chemistry, or Physics
Work EnvironmentIndustrial settings, manufacturing plants, metal production facilitiesResearch labs, academic institutions, R&D departments
Industry UsageMetal production, mining, manufacturingResearch, development, academia

Metallurgy Process Engineers focus on optimizing metal production processes in industrial settings, while Materials Scientists primarily conduct research to develop new materials and improve existing ones. Both roles require a strong understanding of material properties but differ in their work environment and application focus.

Are metallurgy process engineers in demand?

Metallurgy process engineers are in steady demand due to their expertise in materials analysis, process optimization, and quality control in industries such as manufacturing, mining, and aerospace. Employment opportunities often require knowledge of industry-specific tools and certifications, with job growth driven by technological advancements and the need for sustainable materials processing.

What are popular job titles related to Metallurgy Process Engineer jobs in Missouri?

For Metallurgy Process Engineer jobs in Missouri, the most frequently searched job titles are:

What job categories do people searching Metallurgy Process Engineer jobs in Missouri look for?

The top searched job categories for Metallurgy Process Engineer jobs in Missouri are:

What cities in Missouri are hiring for Metallurgy Process Engineer jobs?

Cities in Missouri with the most Metallurgy Process Engineer job openings:

Infographic showing various Metallurgy Process Engineer job openings in Missouri as of August 2026, with employment types broken down into 1% As Needed, 83% Full Time, 12% Part Time, 3% Contract, and 1% Nights. Highlights an 92% Physical, 2% Hybrid, and 6% Remote job distribution.

$110 - $140/hr

Other

Medical, Dental, Vision, Retirement

Posted 2 days ago

New


Key responsibilities

  • Lead process development activities for decarbonization, efficiency improvements, and research on obtaining metallic iron.

  • Design, analyze, and optimize chemical processes for combustible and hydrogen-rich gas streams, including developing thermodynamic simulations and digital twin models.

  • Review and ensure compliance of chemical conditions for thermal equipment, pressure vessels, fire systems, and gas handling in accordance with international codes and standards.


Job description

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Welcome to Nucor, where our unique culture sets us apart. Joining Nucor means becoming part of North America's largest steel and steel products manufacturer, offering unmatched career opportunities and stability. We are known for our innovative sustainability practices and are the continent's largest recycler. Our vibrant culture, built on personal connections and teamwork, empowers every team member with the freedom to innovate and contribute to our collective success. Experience a workplace where safety, efficiency, and meaningful personal connections define every day, enriching both our teammates and the communities we serve.

  • Nucor supports its teammates with top-tier benefits like Medical, Dental, Vision, and Disability Insurance, 401K and Roth accounts, Profit sharing, Pay-for-performance bonuses, Paid parental leave, Tuition reimbursement, Stock program, Scholarships and more.
Basic Job Functions:

Safety is the most important part of all jobs within Nucor; therefore, candidates must be able to demonstrate the ability to initiate, lead, and uphold safety policies, practices, procedures, and housekeeping standards at all times.

Lead process development activities for a sustainable future, decarbonization of the direct reduction process, the usage of iron oxides more efficient, research and propose new ways to obtain metallic iron. Design, analyze, and optimize efficient chemical processes for combustible and hydrogen-rich gas streams utilizing energy, kinetics, and heat transfer principles. Analyze hydrogen-rich gas systems and develop thermodynamic simulations to establish equilibrium variances for decarbonization strategies. Design and optimize HYL/Energiron direct reduction reactor, defining iron oxide throughput, reduction degrees, and metallization targets through detailed mass and energy balances. Develop digital twin models of Tenova HYL technology for Direct Reduction Iron (DRI) making processes utilizing Aspen Plus, Aspen HYSYS, and ProMax. Optimize oxygen injection lances for the partial combustion system in the transfer line, a critical control point of the Tenova HYL process. Engineer lance geometry, flow distribution, and injection dynamics to precisely regulate O delivery and drive controlled methane reforming for H and CO generation. Ensure stable partial oxidation conditions by preventing over combustion, protecting downstream equipment. Review and ensure compliance of complex chemical conditions for critical thermal equipment, pressure vessels, fire systems, and gas handling in accordance with international codes/standards ASME, TEMA, and API. Develop the complete automatic operation and control strategy for a SulFerox (iron-chelate liquid redox) HS removal unit, scavengers, filtration system, chemical dosing establishing the layout for the equipment, slurry handling circuits. Design control loops that optimize HS removal efficiency, system stability and solids management to comply with the government regulations using advanced mass transfer and thermodynamics. Lead systematic identification of process hazards and operability (HAZOP) risks associated with methane reformers, HYL reduction reactors, gas handling systems, CO/H circuits, pressure vessels, heaters, auxiliary systems, and amine systems. Optimize temperature profiles and residence times within the Tenova HYL reactor by evaluating endothermic reduction zones, carbon deposition thresholds, and sticking limit boundaries to enhance productivity, minimize natural gas consumption ratios, and ensure stable metallization performance. Lead multi-disciplinary capital projects such as process safety and equipment upgrades. Stay current with new process technologies, tools, design practices, methods, and concepts. Train and develop others. Up to 20% international and domestic travel required for meetings, trainings, and consultations with other divisions/factories.

Minimum Qualifications:

Candidate must have a Bachelor's or foreign equivalent degree in Chemical or Energy Engineering and 3 years of experience in designing, analyzing, and optimizing efficient chemical processes for combustible and hydrogen-rich gas streams utilizing energy, kinetics, and heat transfer principles. Must have experience in: Analyzing hydrogen-rich gas systems and developing thermodynamic simulations to establish equilibrium variances for decarbonization strategies. Developing digital twin models of Tenova HYL technology for Direct Reduction Iron (DRI) making processes utilizing Aspen Plus, Aspen HYSYS, and ProMax. Leading systematic identification of HAZOP risks associated with methane reformers, HYL reduction reactors, gas handling systems, CO/H circuits, pressure vessels, heaters, and auxiliary systems. Reviewing and ensuring compliance of complex chemical conditions for critical thermal equipment, pressure vessels, fire systems, and gas handling in accordance with international codes/standards ASME, TEMA, and API. Up to 20% international and domestic travel required for meetings, trainings, and consultations with other divisions/factories.

Preferred Qualifications:

Nucor is an Equal OpportunityEmployer and a drug-free workplace

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