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Cool Chemical Engineering Jobs (NOW HIRING)

Develop procedures for target loading, cool-down, hold time at 4 K, and rapid warm-up following a ... Sc. in Physics, Mechanical Engineering, Engineering Physics, or Chemical Engineering with ...

Develop procedures for target loading, cool-down, hold time at 4 K, and rapid warm-up following a ... Sc. in Physics, Mechanical Engineering, Engineering Physics, or Chemical Engineering with ...

The applications we service are pretty diverse (and cool) too - from solutions for launching ... Coordinate with Purchasing, Product Management, and Design Engineering as needed to keep ...

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Cool Chemical Engineering information

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$40K

$87.5K

$140K

How much do cool chemical engineering jobs pay per year?

As of Sep 6, 2026, the average yearly pay for cool chemical engineering 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 cool chemical engineering?

Cool Chemical Engineering refers to the field of chemical engineering that focuses on processes and technologies involving low temperatures, such as refrigeration, cryogenics, and the handling of gases and liquids at sub-ambient conditions. These engineers design and optimize systems for cooling, liquefaction, and separation of substances, which are essential in industries like food processing, pharmaceuticals, energy, and industrial gas production. They also work on improving energy efficiency and developing environmentally friendly cooling methods. A strong background in thermodynamics, heat transfer, and process engineering is essential for this specialization.

What are the key skills and qualifications needed to thrive as a chemical engineer?

To thrive as a Chemical Engineer, you need a solid foundation in chemistry, mathematics, and process engineering, typically supported by a bachelor’s degree in chemical engineering. Familiarity with simulation software like Aspen Plus or MATLAB and knowledge of industry regulations are often required, along with certifications such as Professional Engineer (PE) licensure. Strong problem-solving skills, attention to detail, and effective teamwork and communication abilities set outstanding professionals apart. These skills ensure safe, efficient, and innovative solutions to complex engineering challenges in various industries.

What are some common challenges chemical engineers face when working on process optimization projects?

Chemical engineers often encounter challenges such as balancing process efficiency with safety and environmental regulations, integrating new technologies into existing systems, and troubleshooting unexpected equipment or process issues. Collaboration with multidisciplinary teams—including mechanical engineers, safety specialists, and operators—is crucial to address these challenges effectively. Staying adaptable and proactive in communication helps ensure smooth project progression and the achievement of optimal results.

What is the difference between Cool Chemical Engineering vs Chemical Process Engineering?

AspectCool Chemical EngineeringChemical Process Engineering
CredentialsBachelor's or Master's in Chemical EngineeringBachelor's or Master's in Chemical Engineering
Work EnvironmentResearch labs, manufacturing plants, design officesIndustrial plants, manufacturing facilities, design offices
Industry UsageResearch, development, process designProcess optimization, plant operations, safety management

Cool Chemical Engineering and Chemical Process Engineering share similar educational backgrounds and work environments. However, Cool Chemical Engineering often emphasizes research and innovative design, while Chemical Process Engineering focuses more on plant operations and process optimization. Both roles are vital in the chemical industry and frequently overlap in skills and certifications.

What cool things do chemical engineers do?

Chemical engineers design and develop processes to produce chemicals, fuels, pharmaceuticals, and materials efficiently and safely. They work on innovations such as renewable energy solutions, environmental protection technologies, and advanced manufacturing methods, often using tools like process simulation software and requiring strong problem-solving skills.

What is the best job for a cool chemical engineer?

A cool chemical engineer can pursue roles in process engineering, research and development, or environmental engineering, often working in manufacturing plants, laboratories, or consulting firms. Success in these roles typically requires strong problem-solving skills, knowledge of chemical processes, and proficiency with tools like simulation software and safety protocols.
More about Cool Chemical Engineering jobs

What states have the most Cool Chemical Engineering jobs?

States with the most job openings for Cool Chemical Engineering jobs include:

What job categories do people searching Cool Chemical Engineering jobs look for?

The top searched job categories for Cool Chemical Engineering jobs are:

Infographic showing various Cool Chemical Engineering job openings in the United States as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $87,487 per year, or $42.1 per hour.

Cryogenic Systems Engineer

Fuse

San Leandro, CA • On-site

$110K - $165K/yr

Full-time

Medical, Dental, Vision, PTO

Posted 18 days ago


Job description

About Fuse

We are building one of the most potentially consequential companies of the century. Our mission is to accelerate the world's transition to fusion energy while safeguarding humankind. This is not a normal company. This is not a normal job. We are committed for the long term to win.

About the Role

Fuse is constructing Z-Star, a next-generation pulsed-power facility. Z-Star requires two deeply integrated cryogenic systems: a high-vacuum cryopumping system and a 4 K target/liner cryogenic cooling system.

As the Cryogenic Systems Engineer, you'll design, commission, operate, and maintain both systems and serve as the facility's resident expert in cryogenic and vacuum science.

Core Responsibilities

Cryopump System Design & Operations

  • Design, procure, install, and commission the multi-stage vacuum system for the Z-Star chamber, including turbomolecular roughing pumps, cryopump arrays, and associated gate valves, interlocks, and controls.

  • Define cryopump sizing, placement, and regeneration schedules to meet target base pressure and shot-repetition-rate requirements.

  • Develop and maintain vacuum protocols including chamber venting, backfilling with inert gas, and controlled pump-down procedures compatible with shot operations.

  • Monitor and trend vacuum performance; diagnose and resolve outgassing sources, virtual leaks, and pump degradation.

4 K Target Cryogenic System

  • Design and commission the liquid helium cryostat and cryogenic delivery system for liner/target cooling, including vacuum-jacketed transfer lines, LHe reservoir management, and temperature-control instrumentation.

  • Develop procedures for target loading, cool-down, hold time at 4 K, and rapid warm-up following a shot.

  • Characterize and minimize cryogenic heat loads from radiation, conduction, and parasitic pathways to maintain stable 4 K conditions through the target preparation window.

Cryogenic Infrastructure Management

  • Manage liquid helium and liquid nitrogen supply, storage dewars, and transfer operations on-site, including logistics, safety, and vendor relationships.

  • Maintain all cryogenic hardware: cryopumps, compressors, cold heads (Gifford-McMahon or Pulse Tube), transfer lines, pressure-relief systems, and monitoring instrumentation.

  • Develop and implement a preventive-maintenance program for all cryogenic and vacuum equipment aligned with the facility shot schedule.

  • Train facility operations staff on cryogenic safety procedures and emergency response.

Diagnostics & Instrumentation

  • Specify, install, and maintain cryogenic instrumentation: Cernox or PT-100 temperature sensors at multiple stages, capacitance manometers, ionization gauges, residual gas analyzers (RGA), and pressure transducers.

  • Integrate cryogenic-system monitoring into the facility control and interlock system.

Safety & Compliance

  • Author and enforce cryogenic safety procedures, including ODH assessments, pressure-vessel requirements, LHe handling, and cold-burn precautions, in compliance with applicable U.S. codes.

  • Perform pressure-vessel and cryostat inspection and documentation per applicable ASME/CSA standards.

Minimum Qualifications
  • B.Sc. or M.Sc. in Physics, Mechanical Engineering, Engineering Physics, or Chemical Engineering with demonstrated cryogenics specialization.

  • 2+ years of hands-on experience designing, operating, or maintaining cryogenic systems at liquid-helium temperatures (4 K) in a research or industrial facility.

  • Proficiency with cryopump systems including sizing, installation, and regeneration cycles.

  • Strong working knowledge of vacuum science and technology: pumping speed, conductance, outgassing, leak detection using He mass spectrometry, residual gas analysis, and pressure measurement.

  • Experience designing or operating liquid-helium dewars, cryostats, and VJ transfer lines.

  • Familiarity with cryogenic instrumentation including thermometry, pressure, flow, and liquid-level measurement from 4 K to 300 K.

Preferred Qualifications
  • Experience with fusion energy, pulsed power, or particle-accelerator cryogenic systems, particularly high-voltage-isolated cryogenic assemblies.

  • Familiarity with MagLIF-type target cryostats or ICF cryogenic target-preparation systems.

  • Experience with Gifford-McMahon (GM) or Pulse Tube (PT) cryocoolers for closed-cycle refrigeration.

  • Knowledge of cryogenic safety standards including ASME Section VIII, CGA G-5.4, ODH analysis procedures, and pressure-relief system design.

  • Experience with large vacuum-chamber systems (>10 m³) in a pulsed or repetitive-shot experimental facility.

  • Proficiency in thermal modeling and simulation using ANSYS, COMSOL, or equivalent tools.

What We Value
  • Give a shit. Build things you're proud of.

  • Take responsibility. If something is broken and you can fix it, fix it. See things through.

  • Move fast. Make decisions, learn quickly, and keep moving forward.

  • Think bigger. Simplify relentlessly. Don't default to the safe answer.

  • Disagree and commit. The best idea wins. Once a decision is made, we move.

  • Desire to win. This is hard. Expect intensity. We are here to win.

  • Plan B is to make Plan A work.

Benefits
  • Medical, dental, and vision coverage.

  • Relocation assistance for roles that require it.

  • Flexible time off. Take what you need, no accrual tracking.

  • 2 weeks of paid time off built into the end of each year, subject to team and business needs.

  • Supportive leave of absence policies.

  • Paid leave for new parents.

ITAR Requirements

To conform to U.S. Government technology export regulations, including the International Traffic in Arms Regulations (ITAR), you must be a U.S. citizen, lawful permanent resident of the U.S., protected individual as defined by 8 U.S.C. 1324b(a)(3), or eligible to obtain the required authorizations from the U.S. Department of State.

Equal Opportunity

Fuse is an Equal Opportunity Employer; employment with Fuse is governed on the basis of merit, competence, and qualifications and will not be influenced by race, color, religion, gender, national origin/ethnicity, veteran status, disability status, age, ancestry, immigration status, sexual orientation, gender identity, marital status, mental or physical disability, or any other legally protected status.

Compensation Range: $110K - $165K