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Full Time Downstream Process Development Scientist Jobs in Milwaukee, WI

Scientific Process Development: Establish and maintain robust "decoupled" molding processes (Scientific Molding) to ensure consistent part quality and cycle time optimization. * Technical ...

Scientific Process Development: Establish and maintain robust "decoupled" molding processes (Scientific Molding) to ensure consistent part quality and cycle time optimization. * Technical ...

Scientific Process Development: Establish and maintain robust "decoupled" molding processes (Scientific Molding) to ensure consistent part quality and cycle time optimization. * Technical ...

Senior Process Engineer

Mukwonago, WI ยท On-site

$102K - $132K/yr

... process development, optimization, and long-term sustainment. You will drive manufacturing ... Develop, optimize, and sustain injection molding processes using scientific molding principles to ...

Uses instrumented tooling with cavity pressure sensing such as RJG or Kistler for process development and monitoring. * Develops processes using scientific studies which include DOE studies and ...

Uses instrumented tooling with cavity pressure sensing such as RJG or Kistler for process development and monitoring. * Develops processes using scientific studies which include DOE studies and ...

Conduct robust scientific studies to quantify root causes, then implement or take appropriate ... developmental career path or technical operations. * Engage through situational awareness by ...

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Full Time Downstream Process Development Scientist information

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How much do full time downstream process development scientist jobs pay per hour?

As of Aug 10, 2026, the average hourly pay for full time downstream process development scientist in Milwaukee, WI is $38.09, according to ZipRecruiter salary data. Most workers in this role earn between $27.93 and $45.48 per hour, depending on experience, location, and employer.

What does a full time downstream process development scientist do?

A Full Time Downstream Process Development Scientist is responsible for designing, optimizing, and scaling up processes that purify biological products such as proteins, antibodies, or vaccines after they are produced in cells or microbes. This role involves developing and improving techniques like filtration, chromatography, and centrifugation to ensure high purity and yield of the final product. The scientist also conducts experiments, analyzes data, and collaborates with cross-functional teams to transfer processes from the lab to manufacturing. Their work is critical for producing safe and effective biopharmaceuticals on a large scale.

What is the difference between Full Time Downstream Process Development Scientist vs Downstream Process Engineer?

AspectFull Time Downstream Process Development Scientist
Primary FocusDesigning, optimizing, and developing downstream purification processes for biopharmaceuticals
Required CredentialsBachelor's or Master's in Biotechnology, Biochemistry, or related field; experience in process development
Work EnvironmentLaboratories, R&D settings, collaborative teams in biotech or pharma companies
Typical ResponsibilitiesProcess scale-up, method validation, troubleshooting, documentation

While both roles involve downstream bioprocessing, the Full Time Downstream Process Development Scientist focuses on process development and optimization, whereas the Downstream Process Engineer typically handles process implementation and manufacturing support. The scientist role emphasizes research and development, while the engineer role is more operational. Candidates often hold similar degrees and certifications, but their daily tasks and focus areas differ.

What are some typical challenges faced by a full time downstream process development scientist, and how can they be addressed?

Downstream Process Development Scientists often encounter challenges such as optimizing protein purification processes to achieve high yield and purity, troubleshooting unexpected impurities, and scaling up processes from laboratory to manufacturing scale. These tasks require strong problem-solving skills, meticulous attention to detail, and effective collaboration with upstream teams, analytical scientists, and manufacturing staff. Addressing these challenges involves staying current with new purification technologies, maintaining robust documentation, and participating in cross-functional meetings to ensure seamless process integration and regulatory compliance.

What are the key skills and qualifications needed to thrive as a full time downstream process development scientist, and why are they important?

To thrive as a Full Time Downstream Process Development Scientist, you need a strong background in biochemical engineering, protein purification, and analytical techniques, typically supported by a degree in biochemistry, biotechnology, or a related field. Proficiency with chromatography systems (e.g., HPLC, FPLC), filtration technologies, and knowledge of regulatory and quality systems like GMP is essential. Strong problem-solving abilities, teamwork, and effective communication skills help you collaborate with cross-functional teams and troubleshoot process challenges. These skills are crucial for developing robust purification processes that ensure product quality, regulatory compliance, and efficient production in biopharmaceutical environments.
What are the most commonly searched types of Downstream Process Development Scientist jobs in Milwaukee, WI? The most popular types of Downstream Process Development Scientist jobs in Milwaukee, WI are:
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Process Development Specialist II

United Animal Health

Franklin, WI โ€ข On-site

Full-time

Posted 27 days ago


Job description

About Us & Position Summary

Microbial Discovery Group, a vital subsidiaryof United Animal Health, is an R&D-driven product development and Bacillus fermentation company. We apply Real Science to a Trusted Process, yielding Proven Success for our partners. At MDG, we recognize the need for sustainable solutions to the world's largest problems, and we work to solve them as part of our mission to Feed, Clean, Save the World. As a member of our team, your ideas and innovations are integral to who we are. Come grow with us!
As a Process Development Specialist II, you will play a key role in advancing our fermentation technologies and translating scientific innovation into scalable solutions for our customers. You will preform laboratory-based process development activities focused on microbial fermentation using bench-scale bioreactors. Design, execute, and optimize fermentation experiments; operate and troubleshoot bioreactor systems; and analyze process data to support scale-up, robustness, and overall process performance. Collaborate cross-functionally to enable effective technology transfer and contribute to a strong safety and quality culture in the lab.

Key Responsibilities

Plan, execute, and monitor microbial fermentation processes in 1-10L bioreactors, including set-up, inoculation, operation, harvest, cleaning, sterilization, and routine maintenance.

Independently troubleshoot bioreactor systems (e.g., pH, dissolved oxygen, temperature, agitation, gas flow) to maintain consistent performance and product quality.

Prepare media, buffers, and inoculum using aseptic techniques and established SOPs.

Design and execute experiments to evaluate and optimize process parameters for yield, scalability, robustness, and cost-effective raw material utilization.

Collect, analyze, and interpret in-process samples (e.g., OD, cell counts, metabolite concentrations) to monitor fermentation performance.

Utilize analytical methods, such as spectrophotometry and HPLC or similar techniques, to assess process outcomes and product quality attributes.

Interpret process data to identify trends, deviations, and process limitations (e.g., oxygen transfer, substrate inhibition, byproduct formation) and recommend actionable improvements.

Support scale-up activities by translating lab-scale results into pilot-scale recommendations, including mixing, kLa, and heat transfer considerations.

Document experimental plans, methods, data, and conclusions in a clear, timely, and compliant manner to ensure reproducibility and effective technology transfer.

Collaborate with upstream, downstream, analytical, and operations teams to align on process development strategies and timelines.

Adhere to all laboratory safety procedures, biosafety and chemical handling guidelines, and applicable internal quality standards.

Support occasional non-routine or off-shift work hours as needed to initiate, monitor, or complete critical fermentation runs.

Additional Responsibilities

Provide ad hoc experimental support, data analysis, and troubleshooting to address urgent technical questions or investigation needs.

Contribute to continuous improvement of lab operations, including updating SOPs, enhancing workflows, and implementing best practices for bioreactor operation and maintenance.

Assist with onboarding and informal mentoring of new team members on equipment operation, safety practices, and documentation standards.

Participate in cross-functional meetings and project reviews, presenting experimental results and process recommendations as needed.

Work Environment

Laboratory-based, indoors, in an environmentally controlled setting with regular exposure to biological materials and chemicals.

Requires routine use of personal protective equipment (PPE) and adherence to biosafety and chemical safety practices.

Combination of hands-on work at the bench/bioreactors and computer-based data analysis and reporting.

Requires standing for extended periods and occasional lifting or movement of equipment and supplies (up to approximately 50 lbs) following safe ergonomic practices.

Minimum Qualifications

Bachelor's degree in microbiology, biotechnology, biochemical/chemical engineering, or a related field; or equivalent practical experience in microbial fermentation.

Hands-on experience operating microbial fermentation and bench-scale bioreactor systems.

Familiarity with aseptic techniques, microbial cultivation, and standard laboratory practices.

Working understanding of microbial physiology, fermentation kinetics, and core process principles.

Experience designing and analyzing experiments; exposure to Design of Experiments (DOE) is a plus.

Proficiency with basic data analysis tools (e.g., Excel, JMP, or similar) and ability to interpret process data.

Strong attention to detail and ability to follow written protocols, SOPs, and safety procedures.

Preferred Qualifications

Experience with automated bioreactor systems (e.g., Sartorius, Applikon, Eppendorf) and associated control software/data acquisition tools.

Practical knowledge of developing and optimizing batch and fed-batch strategies, including carbon feeding, nitrogen control, and oxygen transfer management.

Experience with scale-up or tech transfer, including understanding of oxygen transfer, mixing, and feeding challenges at larger scales.

Experience working with industrial microbial strains and complex media formulations.

Awareness of downstream processing considerations and how fermentation performance affects separation, concentration, and drying processes.

Technical Skills

Operation, set-up, and troubleshooting of bench-scale bioreactors and associated control systems.

Aseptic technique, microbial cultivation, and preparation of media, buffers, and inoculum.

Use of analytical methods such as spectrophotometry and HPLC or similar technologies.

Data analysis and visualization using tools such as Excel, JMP, or comparable software.

Non-Technical Skills

Strong organizational skills with the ability to manage multiple experiments and priorities.

Effective written and verbal communication, including clear documentation of methods and results.

Ability to work both independently and collaboratively within cross-functional teams.

Adaptability, problem-solving mindset, and commitment to continuous improvement.

Licenses/Certifications

None required.

Physical & Safety Requirements

Ability to work in a laboratory environment with biological materials and chemicals while wearing appropriate PPE.

Ability to stand for extended periods and lift/move laboratory equipment and supplies (up to approximately 50 lbs) with proper technique.

Disclaimer

Adherence to all food safety procedures as per FDA regulations, including the FDA Food Safety Modernization Act (FSMA) or any other applicable federal, state, or local food safety regulations.