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Chemical Engineering Bioreactor Modeling Jobs (NOW HIRING)

The position applies a chemical engineering background in nuclear applications, with particular emphasis on thermal-fluid modeling tools (e.g., ASPEN, COMSOL), high-temperature materials behavior ...

The position applies a chemical engineering background in nuclear applications, with particular emphasis on thermal-fluid modeling tools (e.g., ASPEN, COMSOL), high-temperature materials behavior ...

Chemical Engineering Intern

Houston, TX ยท On-site

$16 - $20.75/hr

... modeling across key unit operations including evaporation, impurity removal, and lithium product ... S. in Chemical Engineering, with coursework in thermodynamics, mass transfer, and reaction ...

Expertise with mathematical modeling, theoretical scaling calculations, computational fluid ... Bachelor's degree in Chemical Engineering, Bioengineering, Biological Engineering, or a related ...

Chemical Engineer

Brooklyn, NY ยท Remote

$40/hr

... of each model. In this role you will need to hold an expert level of chemistry. Other related fields include, but are not limited to: Chemistry and/or Chemical Engineering. Benefits This is a ...

Strong understanding of core chemical engineering principles, including thermodynamics, fluid flow, heat and mass transfer, reactor kinetics, and process modeling. Handson experience scaling ...

Chemical Engineer - AI Trainer

Austin, TX ยท On-site +1

$1K - $1K/wk

Manufacturing - Chemical Engineering Expert Type: Contract Compensation: $1,150-$1,450/task ... Include process flow diagrams , P&IDs , PHA/HAZOP reports , mass & energy balance models , and OSHA ...

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Chemical Engineering Bioreactor Modeling information

See salary details

$40K

$87.5K

$140K

How much do chemical engineering bioreactor modeling jobs pay per year?

As of Jun 5, 2026, the average yearly pay for chemical engineering bioreactor modeling in the United States is $87,487.00, according to ZipRecruiter salary data. Most workers in this role earn between $67,500.00 and $106,500.00 per year, depending on experience, location, and employer.

What is chemical engineering bioreactor modeling?

Chemical engineering bioreactor modeling involves using mathematical and computational techniques to simulate and analyze the behavior of bioreactors, which are vessels where biological reactions occur. This modeling helps engineers optimize conditions for microbial or cell growth, product formation, and resource utilization. It is crucial for designing efficient bioprocesses in industries like pharmaceuticals, food production, and biofuels. By predicting how variables like temperature, pH, and nutrient concentrations affect outcomes, engineers can scale up processes from the lab to industrial production safely and cost-effectively.

What are some common challenges faced by chemical engineers working in bioreactor modeling, and how can these be addressed?

Chemical engineers in bioreactor modeling often encounter challenges such as accurately predicting biological variability, scaling up laboratory models to industrial systems, and integrating multidisciplinary data from biology, chemistry, and engineering. Addressing these challenges typically involves using advanced simulation software, collaborating closely with biologists and data scientists, and staying updated on the latest computational modeling techniques. Regular team meetings and continuous learning are key to overcoming these hurdles and ensuring successful bioreactor design and optimization.

What is the difference between Chemical Engineering Bioreactor Modeling vs Chemical Process Engineering?

AspectChemical Engineering Bioreactor ModelingChemical Process Engineering
CredentialsBachelor's or Master's in Chemical Engineering, modeling skillsBachelor's or Master's in Chemical Engineering, process design expertise
Work EnvironmentResearch labs, simulation environments, biotech facilitiesIndustrial plants, manufacturing facilities, chemical plants
Industry UsageBiotech, pharmaceuticals, research institutionsPetrochemical, chemical manufacturing, energy sectors

While both roles require a background in chemical engineering, Chemical Engineering Bioreactor Modeling focuses on simulating and optimizing bioreactors used in biotech and pharmaceutical industries. Chemical Process Engineering involves designing and improving chemical production processes across various industries. The key difference lies in the specific application areas and the types of processes modeled or managed.

What are the key skills and qualifications needed to thrive as a Chemical Engineering Bioreactor Modeling specialist, and why are they important?

To excel in Chemical Engineering Bioreactor Modeling, a solid background in chemical engineering principles, transport phenomena, and mathematics is required, often supported by an advanced degree in chemical or biochemical engineering. Familiarity with process simulation software such as MATLAB, COMSOL Multiphysics, or Aspen Plus, as well as experience with bioprocess modeling techniques, is crucial. Analytical thinking, problem-solving, and effective communication are essential soft skills for interpreting data and collaborating with multidisciplinary teams. These competencies are vital to optimize bioreactor performance, drive innovation, and ensure efficient scale-up of bioprocesses.
Infographic showing various Chemical Engineering Bioreactor Modeling job openings in the United States as of May 2026, with employment types broken down into 75% Full Time, and 25% Part Time. Highlights an 74% In-person, 13% Hybrid, and 13% Remote job distribution, with an average salary of $87,487 per year, or $42.1 per hour.
Electromechanical Controls Engineer (Bioreactor / Organ-on-Bench Systems)

Electromechanical Controls Engineer (Bioreactor / Organ-on-Bench Systems)

Intellectt INC

Blue Ash, OH โ€ข On-site

Contractor

Posted 12 days ago


Job description

Job Title:ย Electromechanical Controls Engineer (Bioreactor / Organ-on-Bench Systems)

Location: Blue Ash, OH

Work Arrangement: Fully On-Site

Duration: 6-Month Contract (Contract-to-Hire)
ย 

Position Summary
We are seeking a highly technical Electromechanical Controls Engineer to support a laboratory expansion focused on proprietary bioreactor and organ-on-bench systems. This role functions as a core engineering contributor, partnering closely with senior technical leadership to design, build, and optimize advanced electromechanical platforms that sustain living tissue or organ systems under tightly controlled benchtop conditions.

The position blends hands-on system integration with advanced control systems engineering, requiring expertise in closed-loop feedback systems, instrumentation, and real-time control software.

Key Responsibilities

  1. Design, develop, and support electromechanical systems used in maintaining controlled biological environments for tissue and organ systems.
  2. Develop and implement closed-loop control algorithms to regulate parameters such as temperature, pressure, pH, oxygen, and nutrient delivery.
  3. Integrate sensors, actuators, motors, controllers, wiring, and measurement systems into fully functional and validated platforms.
  4. Develop, maintain, and optimize control software, with a strong preference for LabVIEW; MATLAB or equivalent tools are advantageous.
  5. Conduct system testing, calibration, and validation to ensure performance meets defined specifications and control setpoints.
  6. Troubleshoot and resolve issues across hardware, software, and integrated system levels.
  7. Collaborate with cross-functional teams including R&D, systems engineering, and biomedical researchers to support next-generation non-animal testing platforms.
  8. Document system architecture, control strategies, and validation results in accordance with engineering and quality standards.

Required Qualifications

  1. Strong background in electromechanical engineering with emphasis on control systems, instrumentation, and measurement technologies.
  2. Hands-on experience with feedback control systems, PID tuning, and setpoint regulation in dynamic environments.
  3. Experience working with sensors and instrumentation in biological, chemical, or physiological systems.
  4. Proven experience in system integration, testing, and validation of complex electromechanical platforms.
  5. Proficiency in LabVIEW (preferred) or similar control system programming environments; MATLAB experience is a plus.

Education Requirements

  • PhD in Mechanical Engineering, Electrical Engineering, Biomedical Engineering, or a related field
    OR
  • Masterโ€™s degree with substantial hands-on experience in electromechanical controls and system development

Preferred / Nice-to-Have Experience

  1. Experience with bioreactors, organ-on-chip, or organ-support systems.
  2. Background in artificial heart systems, cardiac devices, or advanced medical instrumentation.
  3. Exposure to smart control systems or advanced automation platforms.
  4. Academic or industry research experience with published work in control systems or related domains.

Not Required

  • 3D CAD modeling (e.g., AutoCAD, SolidWorks)
  • Tissue engineering or cell culture experience
  • Clinical or patient-facing background

Interview Process

  • Initial virtual interview followed by an on-site, hands-on technical assessment
  • Travel support available for qualified candidates
  • Opportunity for full-time conversion based on performance and business needs