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Phd Chemical Engineer Jobs in Columbus, OH (NOW HIRING)

Bachelor's degree required in Ceramic Engineering, Materials Science, Metallurgy, Chemical Engineering, Geology (Mineralogy), or a related technical discipline; Master's or PhD preferred. * Minimum ...

PhD degree in chemistry, materials science, or polymer/chemical engineering * Background in nonwoven/paper technologies * Background in coating, adhesive, or binder development * Project management ...

PhD degree in chemistry, materials science, or polymer/chemical engineering * Background in nonwoven/paper technologies * Background in coating, adhesive, or binder development * Project management ...

PhD degree in chemistry, materials science, or polymer/chemical engineering * Background in nonwoven/paper technologies * Background in coating, adhesive, or binder development * Project management ...

... PhD with 0-2 years of experience or an equivalent combination of education and or experience in a ... Chemical, biological, radiological, nuclear, and high-yield explosives (CBRNE) sensors * Proficient ...

... PhD with 0-2 years of experience or an equivalent combination of education and or experience in a ... Chemical, biological, radiological, nuclear, and high-yield explosives (CBRNE) sensors * Proficient ...

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Phd Chemical Engineer information

See Columbus, OH salary details

$38.6K

$84.5K

$135.2K

How much do phd chemical engineer jobs pay per year?

As of May 28, 2026, the average yearly pay for phd chemical engineer in Columbus, OH is $84,503.00, according to ZipRecruiter salary data. Most workers in this role earn between $65,200.00 and $102,900.00 per year, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as a PhD Chemical Engineer, and why are they important?

To thrive as a PhD Chemical Engineer, you need advanced knowledge of chemical engineering principles, research methodology, and a doctoral degree in chemical engineering or a related field. Proficiency in simulation software (like Aspen Plus, MATLAB, or COMSOL), laboratory instrumentation, and data analysis tools is typically required. Strong problem-solving, critical thinking, and effective communication skills help you collaborate with multidisciplinary teams and disseminate research findings. These competencies are crucial for driving innovation, successfully managing complex projects, and contributing to advancements in the chemical engineering field.

What are the typical interdisciplinary collaborations a PhD Chemical Engineer can expect in industry or academia?

PhD Chemical Engineers frequently collaborate with professionals from diverse fields, such as mechanical engineers, materials scientists, biologists, and data scientists. These collaborations are essential, as many projects—like process optimization, product development, or sustainability initiatives—require expertise beyond chemical engineering. Effective teamwork is often fostered through cross-functional project meetings, joint research efforts, and shared laboratory spaces. Engaging in interdisciplinary work not only broadens your technical knowledge but also enhances your problem-solving skills and opens up new career advancement opportunities.

What does a PhD Chemical Engineer do?

A PhD Chemical Engineer conducts advanced research and develops processes involving the transformation of raw materials into useful products, often working in industries such as pharmaceuticals, energy, or materials science. They design experiments, analyze data, and solve complex problems related to chemical processes, often collaborating with multidisciplinary teams. Their work can also include teaching, publishing research, and leading innovative projects in academia or industry.

What is the difference between Phd Chemical Engineer vs Chemical Engineer?

AspectPhd Chemical EngineerChemical Engineer
Required CredentialsPhD in Chemical Engineering or related fieldBachelor's or Master's in Chemical Engineering
Work EnvironmentResearch labs, academia, R&D departmentsManufacturing plants, process design, industrial settings
Employer & Industry UsageUniversities, research institutions, advanced R&DChemical, petrochemical, pharmaceuticals, manufacturing

The main difference between a Phd Chemical Engineer and a Chemical Engineer lies in their education level and work focus. Phd Chemical Engineers typically engage in research, development, and academia, requiring a doctoral degree. Chemical Engineers usually hold a bachelor's or master's degree and work in process design, manufacturing, and industrial applications. Both roles are vital in the chemical industry but serve different purposes based on expertise and work environment.

What are popular job titles related to Phd Chemical Engineer jobs in Columbus, OH? For Phd Chemical Engineer jobs in Columbus, OH, the most frequently searched job titles are:
What job categories do people searching Phd Chemical Engineer jobs in Columbus, OH look for? The top searched job categories for Phd Chemical Engineer jobs in Columbus, OH are:
What cities near Columbus, OH are hiring for Phd Chemical Engineer jobs? Cities near Columbus, OH with the most Phd Chemical Engineer job openings:
Infographic showing various Phd Chemical Engineer job openings in Columbus, OH as of May 2026, with employment types broken down into 2% Internship, 80% Full Time, 7% Part Time, and 11% Contract. Highlights an 85% In-person, 6% Hybrid, and 9% Remote job distribution, with an average salary of $84,503 per year, or $40.6 per hour.
Research Engineer

Full-time

Medical, Dental, Vision, Life, Retirement, PTO

This job post has expired today. Applications are no longer accepted.


Job description

Research Engineer
Allied Mineral Products is a leading manufacturer of monolithic refractories worldwide, headquartered in Columbus, Ohio. We are currently seeking a Research Engineer to oversee the development and improvement of ceramic products and forming processes from early concept through production and market use. This role provides technical leadership across cross-functional teams, supporting manufacturing, product launches, and customer solutions while ensuring reliable processes, consistent quality, and strong product performance.
Key Duties and Responsibilities
  • Lead applied research and development programs for refractory ceramic products, including planning, execution, analysis, documentation, and reporting.
  • Develop, optimize, and scale refractory ceramic forming processes - particularly casting, pressing, and extrusion - from concept and laboratory to production environments.
  • Evaluate and qualify new raw materials, establishing test methods, specifications, and quality control standards for existing and new products.
  • Support new product introduction into manufacturing and the marketplace by defining process parameters and product specifications, organizing demonstrations, and creating technical presentations.
  • Serve as a technical expert and consultant, collaborating with application engineering, design engineering, manufacturing, quality, procurement, and commercial teams to solve customer challenges.
  • Provide customer and field support, including technical evaluations, troubleshooting, field trials, and performance optimization of refractory products; travel as required.
  • Develop and maintain technical documentation, application knowledge, and best practices; be proficient in the operation of laboratory and quality control equipment to support R&D and manufacturing.
  • Contribute to continuous improvement initiatives and cross-functional product development teams to enhance process capability, product consistency, and successful market deployment.
Qualifications
  • Bachelor's degree required in Ceramic Engineering, Materials Science, Metallurgy, Chemical Engineering, Geology (Mineralogy), or a related technical discipline; Master's or PhD preferred.
  • Minimum of five (5) years of relevant experience in ceramic processing, ceramic manufacturing, or refractory ceramics, including exposure to manufacturing operations or quality of finished ceramic products.
  • Strong understanding of high-temperature materials and industrial processes, such as metal extraction, metal melting and alloying, hydrocarbon production, waste-to-energy systems, or other elevated-temperature applications.
  • Experience designing refractory ceramic solutions tailored to customer needs, with an understanding of the relationship between material design, installation practices, and in-service performance preferred.
  • Demonstrated ability to analyze experimental and production data, identify trends, correlations, and anomalies, and recognize deviations from expected behavior using a practical problem-solving approach preferred.
  • Proficiency in interpreting results from advanced materials characterization techniques, including XRD, XRF, and SEM preferred.
  • Strong written and verbal communication skills, with the ability to effectively convey technical information to both technical and non-technical audiences.
  • Proficiency with Microsoft Office applications (Word, Excel, PowerPoint).
  • Demonstrated high level of integrity, professionalism, and ethical conduct.
Benefits
  • Competitive Base Pay
  • Employee Stock Ownership Plan (ESOP) retirement plan with 25% annual company contribution
  • 401K program
  • Annual Profit Sharing
  • Paid Time Off for Vacation, Sick Days, Holidays
  • Medical, Prescription Drug, Dental, and Vision programs
  • Life Insurance
  • Short-Term, and Long-Term disability