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Catalyst Chemistry Jobs in Michigan (NOW HIRING)

Catalyst Chemistry information

What is catalyst chemistry?

Catalyst chemistry is the branch of chemistry that focuses on the study and application of catalysts—substances that increase the rate of chemical reactions without being consumed in the process. This field explores how catalysts work, how they can be designed or improved, and their roles in industrial processes, environmental protection, and energy production. Catalyst chemistry is essential in developing efficient manufacturing processes for chemicals, fuels, and pharmaceuticals, and it plays a vital role in sustainable and green chemistry initiatives.

What are the key skills and qualifications needed to thrive as a catalyst chemist?

To thrive as a Catalyst Chemist, you need a strong background in chemistry, particularly in catalysis, reaction mechanisms, and analytical techniques, usually supported by an advanced degree in chemistry or chemical engineering. Familiarity with laboratory instrumentation such as gas chromatography, spectroscopy, and computational modeling software is essential, and certifications in lab safety or specialized analytical methods can be valuable. Strong problem-solving abilities, attention to detail, and effective teamwork and communication skills set exceptional candidates apart. These skills and qualifications are crucial for designing efficient catalysts, ensuring accurate experimental results, and collaborating on innovative solutions in research and industry.

What are some common challenges faced by chemists working in catalyst chemistry, and how can they be addressed?

Chemists in catalyst chemistry often encounter challenges such as optimizing catalyst performance, scaling up reactions from the lab to industrial settings, and ensuring reproducibility of results. These tasks require a strong understanding of both theoretical and practical aspects of catalysis, as well as close collaboration with chemical engineers and process development teams. Addressing these challenges often involves staying current with the latest research, leveraging advanced analytical techniques, and participating in interdisciplinary problem-solving sessions to develop innovative and efficient catalytic processes.

What is the difference between Catalyst Chemistry vs Chemical Engineering?

AspectCatalyst ChemistryChemical Engineering
Required CredentialsBachelor's or Master's in Chemistry, Chemical Engineering, or related fields; specialization in catalysis often preferredBachelor's or Master's in Chemical Engineering; focus on process design and optimization
Work EnvironmentResearch labs, R&D departments, industrial laboratoriesManufacturing plants, process design facilities, industrial settings
Industry UsageDeveloping and testing catalysts, research, and developmentDesigning chemical processes, plant operations, and process optimization

While Catalyst Chemistry focuses on developing and understanding catalysts at a molecular level, Chemical Engineering involves designing and managing chemical processes and plants. Both roles require strong chemistry knowledge, but Catalyst Chemists are more research-oriented, whereas Chemical Engineers focus on process implementation and scale-up.

What does a catalyst do in chemistry?

A catalyst in chemistry is a substance that speeds up a chemical reaction without being consumed in the process. Catalyst chemists often work with reaction mechanisms, laboratory equipment, and analytical tools to develop and optimize catalytic processes for industrial applications.

What are popular job titles related to Catalyst Chemistry jobs in Michigan?

For Catalyst Chemistry jobs in Michigan, the most frequently searched job titles are:

What cities in Michigan are hiring for Catalyst Chemistry jobs?

Cities in Michigan with the most Catalyst Chemistry job openings:

System Engineer Calibration

Megan soft Inc

Dearborn, MI • On-site

Contractor

Re-posted 7 days ago


Job description

HI,
Job Title: Systems Engineer Calibration (Gasoline ICE/HEV/PHEV)
Location: Dearborn, MI
 
Note: Only W2
 
Job Description:
As an Advanced Emissions Systems Engineer, you will lead the concept definition, design, and integration of cutting-edge emissions systems for gasoline-powered Internal Combustion Engines (ICE), Hybrid (HEV), and Plug-in Hybrid (PHEV) applications. Your primary focus will be developing hardware and software strategies to achieve the stringent regulatory standards, including SULEV20, SULEV15, and SULEV10. You will serve as a technical lead, balancing cross-functional trade-offs between mechanical, electrical, and chemical domains to deliver an optimized, durable propulsion system.
 
Skills Required:
Chemical Engineering, Quality Control, Electrical Engineering, System Integration, Project Management, Mechanical Engineering
1. Chemical Engineering – Ability to understand and communicate with team regarding exhaust gas chemical reactions
2. Quality Control – Statistical methods for data analysis
3. Electrical Engineering – Ability to understand electrical systems and needs for various engine control devices. Understanding of power distribution dn architecture, including 48v system concepts
4. System Integration – Higer level understanding of vehicle control system and electrical systems and ability to consider balances and tradeoffs for system level attributes and balancing the needs to for the entire vehicle in the context of emissions control
5. Project Management – Manage multiyear projects for vehicle system design and testing including managing parts procurement, test resource management and timing, and regular status reporting to management
6. Mechanical Engineering - Understanding of how vehicle engine and powertrain's function, from conventional ICE to various hybrid configurations.
 
Skills Preferred:
Performance Testing, Regulatory Affairs, Ford powertrain, Quality Control, Analytical Chemistry, Leadership, Data Modeling, Environmental Compliance, Project Planning, MATLAB modeling
1. Performance Testing – Conduct vehicle level, engine only, and powertrain testing to investigate, develop, and demonstrate emissions compliance with varied aftertreatment systems
2. Regulatory Affairs – Understanding of current emissions regulations, and familiarity with regulations, and ability to understand and adapt to emerging regulations
3. Ford powertrain – Understanding of current Ford powertrain offerings and various hybrid configurations from MHT, to PowerSplit to full EREV. Ability to adapt control strategy and calibration to different operating conditions of each powertrain configuration.
4. Quality Control
5. Analytical Chemistry – Understanding of chemical reactions in relation to aftertreatment echaust gas, NOx, HCs, CO, Sulfur, O2, etc.
6. Leadership – Self-motivated, able to develop a project from concept phase through development through to report out and conclusion phase.
7. Data Modeling – Experience with data analysis techniques and ability to model trends from large data sets. Use or create models to predict vehicle and emissions attribute performance during experiment definition phases
8. Environmental Compliance – Understanding of current and proposed future emissions regulations
9. Project Planning – Manage multiyear projects for vehicle system design and testing including managing parts procurement, test resource management and timing, and regular status reporting to management 10. MATLAB modeling - Matlab or equivalent (Python etc) to process large data sets and predict performance of engine and aftertreatment components
 
Experience Required:
• Bachelor’s degree in Mechanical Engineering, Chemical Engineering, Electrical Engineering, or a related Systems Engineering field.
• 5+ years of experience in propulsion or emissions system design and integration.
• 3+ years of experience with Systems Engineering principles and quality tools (e.g., DFMEA, Boundary Diagrams, P-Diagrams).
• 1+ years of project management experience
 
Experience Preferred:
• Master’s degree or PhD in Engineering.
• Strong project management skills with the ability to coordinate complex technical workstreams.
• Direct experience with emissions regulations, compliance and testing.
• In-depth understanding of HEV/PHEV powertrain architectures and their specific impact on emissions (e.g., cold-start management, thermal transients).
• Experience leading cross-functional technical trade-offs in a high-volume production environment.
• Cross-domain familiarity with engine controls, mechanical packaging, and catalyst chemistry.
• Demonstrated experience with 1D modeling tools and methodology. (e.g., GT-Suite, MATLAB/Simulink)
 
Additional Information :
• System Design & Integration: Lead the definition and design of new emissions concepts, integrating hardware, controls, and packaging across the engine, transmission, generator, and aftertreatment systems.
• Cross-Functional Leadership: Coordinate subsystems and lead technical trade-off discussions across different engineering domains to achieve an optimized system-level solution.
• Project Management: Drive project milestones and workstream coordination using the Global Technical Development System (GTDS) to ensure timely delivery of project goals.
• Quality & Systems Engineering: Develop and maintain core systems engineering and quality documentation, including Boundary Diagrams, P-Diagrams, and Design Failure Mode and Effects Analysis (DFMEA).
• Requirements Management: Define attribute targets and cascade system/subsystem requirements, functions, and use cases to ensure compliance throughout the vehicle's full useful life.
 
Thanks & Regards,
Sr. Recruiter
Megan Soft, Inc.
17177 N. Laurel Park Dr; Suite #337 Livonia, MI -48152
Ph: 248-313-4099
msthakur@megansoft.com 
www.megansoft.com