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Manufacturing Engineer Jobs in Baton Rouge, LA (NOW HIRING)

The role of the site Chemical Engineer is to support and optimize the manufacturing processes used to produce electrical safety products, including insulating gloves and sleeves. This role is ...

Manufacturing Manager up to $190,000 Yearly Salary Join SAVARD Personnel Group - where your skills ... Ability to read engineering or fabrication drawings * Strong leadership, communication, and safety ...

Mechanical Engineer

Baton Rouge, LA · On-site

$110K - $180K/yr

About Us Safe Air Technology is a rapidly growing manufacturer of mission-critical and explosion-proof HVAC systems. We take pride in building high-quality, precision-engineered equipment--and we're ...

Coordinate with procurement, operations, engineering, and quality teams to ensure materials and ... Experience in manufacturing planning, production scheduling, or related supply chain functions ...

Quality Engineer

Walker, LA · On-site

$66K - $85K/yr

... engineered plastic chambers, synthetic aggregates, tanks, advanced wastewater treatment systems ... The majority of Infiltrator products are manufactured from recycled plastic. Founded in 1987, we ...

Quality Engineer

Walker, LA

$66K - $85K/yr

... engineered plastic chambers, synthetic aggregates, tanks, advanced wastewater treatment systems ... The majority of Infiltrator products are manufactured from recycled plastic. Founded in 1987, we ...

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Manufacturing Engineer information

See Baton Rouge, LA salary details

$45.6K

$82.2K

$115.2K

How much do manufacturing engineer jobs pay per year?

As of Jul 26, 2026, the average yearly pay for manufacturing engineer in Baton Rouge, LA is $82,209.00, according to ZipRecruiter salary data. Most workers in this role earn between $70,100.00 and $90,300.00 per year, depending on experience, location, and employer.

What engineers make $200,000 a year?

Manufacturing engineers can earn $200,000 or more annually, especially with extensive experience, advanced skills in automation and process optimization, and in senior or managerial roles. High salaries are often associated with industries like aerospace, automotive, or specialized manufacturing, and may require certifications such as Six Sigma or professional engineering licensure.

What are some common challenges a Manufacturing Engineer faces in optimizing production processes?

Manufacturing Engineers often encounter challenges such as balancing efficiency with product quality, minimizing production costs while maintaining safety standards, and implementing new technologies without disrupting existing workflows. They may also need to troubleshoot equipment malfunctions and coordinate with cross-functional teams, such as quality assurance and maintenance, to resolve issues quickly. Staying up-to-date with industry advancements and continuous improvement methodologies like Lean or Six Sigma is essential to overcoming these challenges and driving process enhancements.

What are Manufacturing Engineers?

Manufacturing Engineers are professionals who design, implement, and improve manufacturing processes in factories and production plants. They focus on increasing efficiency, reducing waste, and ensuring that products are made safely and cost-effectively. Their work often involves collaborating with other engineers, quality control teams, and production staff to optimize workflows and integrate new technologies into manufacturing systems.

What is the job of a manufacturing engineer?

A manufacturing engineer designs, develops, and improves manufacturing processes to increase efficiency, quality, and safety. They analyze production workflows, select appropriate tools and equipment, and often use CAD software to optimize operations. The role typically requires knowledge of engineering principles, problem-solving skills, and familiarity with industry standards and safety regulations.

What Is a Manufacturing Engineer?

A manufacturing engineer is a specialized engineer who improves product manufacturing processes. As a manufacturing engineer, your primary duties are to design and develop production systems and improve the tools and systems within the manufacturing process. You will use computer software such as CAD to create, modify, and test the products and manufacturing processes.

What engineering jobs pay $500,000?

Manufacturing engineers typically do not earn $500,000 annually, but senior engineering roles such as engineering managers, director-level positions, or specialized consultants in manufacturing can reach or exceed this salary level, especially with extensive experience, advanced skills, and leadership responsibilities. High compensation often involves bonuses, stock options, or profit-sharing in addition to base salary.

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

To thrive as a Manufacturing Engineer, you need a solid background in engineering principles, process optimization, and quality control, typically supported by a degree in mechanical, industrial, or manufacturing engineering. Familiarity with CAD software, Six Sigma or Lean Manufacturing certifications, and experience with automation systems are commonly required. Strong problem-solving, teamwork, and communication skills help you effectively collaborate and drive continuous improvement. These abilities ensure efficient production processes, cost reduction, and high product quality in a competitive manufacturing environment.

What is the difference between Manufacturing Engineer vs Mechanical Engineer?

AspectManufacturing EngineerMechanical Engineer
Required CredentialsBachelor's in Manufacturing, Industrial, or Mechanical Engineering; certifications like CMfgEBachelor's in Mechanical Engineering; Professional Engineer (PE) license often preferred
Work EnvironmentFactories, production plants, manufacturing facilitiesDesign offices, research labs, manufacturing settings
Industry UsageManufacturing, production, industrial sectorsAutomotive, aerospace, energy, product design

Manufacturing Engineers focus on optimizing production processes and workflows within manufacturing environments, while Mechanical Engineers design and analyze mechanical systems. Both roles require engineering degrees, but Manufacturing Engineers are more involved in process improvement and production efficiency, whereas Mechanical Engineers often work on product design and mechanical system development.

How much do manufacturing engineers earn?

Manufacturing engineers typically earn a median annual salary of around $70,000 to $90,000, depending on experience, location, and industry. Entry-level positions may start lower, while experienced engineers with specialized skills or certifications can earn over $100,000 annually.
What are the most commonly searched types of Manufacturing Engineer jobs in Baton Rouge, LA? The most popular types of Manufacturing Engineer jobs in Baton Rouge, LA are:
What are popular job titles related to Manufacturing Engineer jobs in Baton Rouge, LA? For Manufacturing Engineer jobs in Baton Rouge, LA, the most frequently searched job titles are:
What job categories do people searching Manufacturing Engineer jobs in Baton Rouge, LA look for? The top searched job categories for Manufacturing Engineer jobs in Baton Rouge, LA are:
What cities near Baton Rouge, LA are hiring for Manufacturing Engineer jobs? Cities near Baton Rouge, LA with the most Manufacturing Engineer job openings:
Infographic showing various Manufacturing Engineer job openings in Baton Rouge, LA as of July 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $82,209 per year, or $39.5 per hour.
Advanced Manufacturing Engineering - Baton Rouge

Advanced Manufacturing Engineering - Baton Rouge

ExxonMobil

Baton Rouge, LA

$62K - $83K/yr

Other

Posted 23 days ago


ExxonMobil rating

6.0

Company rating: 6.0 out of 10

Based on 226 frontline employees who took The Breakroom Quiz

71st of 86 rated oil and gas companies


Job description

Job Group Capability
Process Engineering & Products
Job Group
Process Engineering
Job Role Description
The Manufacturing Process Engineer - Advanced is expected to apply process engineering skills, knowledge of manufacturing, and leadership skills to:
- Provide on-site manufacturing and process engineering support to one or more process units within an operating site
- Implement long-term plant improvements and help address day-to-day operating issues
- Support, coach, and advise the technical and manufacturing teams
- Help assess and manage safety risks and promote site competitiveness
- Support and sometimes lead risk management activities and major plant events
- Acquire a strong working knowledge of technology fundamentals for their assigned areas
This role is expected to effectively collaborate, interact, and communicate with partners. The Manufacturing Process Engineer - Advanced will start developing key leadership skills to facilitate the transition from an individual contributor to a technical leader
The Manufacturing Process Engineer - Advanced will assist in the development of less-experienced engineers. They sometimes act as individual contributors, but increasingly work through others, coordinating tasks and guiding teams
Job Role Responsibilities
Technical Support: Lead day-to-day plant operations in assigned areas by applying process engineering fundamentals, manufacturing knowledge, and analytical skills. Collaborate closely with technical specialists and manufacturing personnel to resolve process issues and optimize performance. Apply systematic problem-solving techniques, frequently leading investigations and complex troubleshooting activities within assigned units.
Improvement Initiatives: Identify, propose, and pursue longer-term improvement initiatives in collaboration with cross-functional asset improvement teams and applicable experts, typically focused on process safety, quality, reliability, and capacity improvements. Scope facility modifications and support commissioning and start-up activities. Identify and screen proposed changes to catalysts, feedstocks, chemicals, and operating envelopes, utilizing the Management of Change process. Contribute to site business and maintenance plans by identifying, developing, and screening improvement ideas.
Risk Assessment / Management: Participate in HAZOPs, incident investigations, and risk assessment and management activities, sometimes serving as leader for defined scopes and coordinating follow-up actions.
Performance Monitoring: Monitor unit performance metrics and support the identification and closure of gaps versus performance benchmarks, consistent with business strategies. Seek input and guidance from functional experts within ExxonMobil and, as appropriate, from external experts.
Event Planning and Support: Support the planning and execution of major plant events, such as turnarounds, plant trials, and unit start-ups and shutdowns. Often coordinate technical support activities and, when required, participate in shift coverage.
Mentoring: Provide mentorship and coaching to early career professionals and engineers within assigned areas.
Collaboration and Networking: Participate in multi-discipline teams to resolve technical challenges and contribute to internal technical networks to share and learn from others' technical knowledge.
Additional Responsibilities:
- Present and document work; continue to grow business, technology, and manufacturing understanding, particularly within assigned areas; identify opportunities to improve work processes
- Serve as a technical interface between the site and the business unit or supply chain as appropriate
Functional Skills
Gas Phase Polyethylene (GPPE) Polymerization Technology
Polypropylene (PP) Polymerization Technology
Alkylation Catalytic Process Technology
B&W Solvent Process Technology
Hydroflouric (HF) Acid Alkylation Process Technology
Sulfuric Acid Alkylation Process Technology
Fractionation & Phase Separations Technology
Steam Cracking Pyrolysis Process Technology
Olefins Co-Product Recovery (C4 & heavier) Technology
Linear Alpha Olefins Technology
Phthalic Anhydride Technology
Butyl Polymerization Technology
Rubber Slurry Finishing Technology
Solution Metallocene Devolatization Finishing Technology
Vistalon Polymerization Technology
Syngas & Hydrogen Process Technology
Light Feed Hydroprocessing Process Technology
Sour Gas Treating - Solvent Technology
Wet Treating Technology
Filtration & Coalescing Technology
Thermal Conversion Process Technology
Olefins Recovery (C2 & C3 Trains) Technology
Esterification & Alkylated Naphthalene Technology
Process Design & Optimization
Risk Assessment & Management
Facilities Concepts & Integration
Adhesion Technology
Polymers Catalyst Manufacture
Solids Handling
Aromatics Separation -Solvent Extraction & Extractive Distillation Technology
Heavy Oil Hydroprocessing Process Technology
Hydrocracking Process Technology
Fluid Bed Conversion Design
Thermal Fluid Bed Process Technology
Sulfur Recovery or Tailgas Clean-up Technology
Adsorber Separations Technology
Steam Cracking Pyrolysis Mechanical & Materials Technology
Steam Cracking Feedstocks & Yields
Higher Olefins Technology
Oxo Higher Alcohol Technology
Oxy Fluids & Neo Acids Technology
Poly Alpha Olefin Technology
Hydrocarbon Movements & Supply Chain Systems
Utilities & Sustainable Energy Integration
Process Energy & GHG Emissions
High-Performance Polyethylene (HPPE) Mechanical Technology
PE Slurry Polymerization Technology
Polyolefin Finishing Technology
Solid Products Packaging
Aromatics Catalytic Process Technology
Reforming Process Technology
Simulated Moving Bed Adsorption & Crystallization Technology
Catalytic Fluid Bed Process Technology
Sour Water Stripping Technology
Crude Distillation System Technology
Membrane Separations Technology
Moving or Cyclic or Swing Bed Catalyst Regeneration Systems
Hydrocarbon Storage Systems

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