Occupation · SOC 17-2041
Chemical Engineers
Design chemical plant equipment and devise processes for manufacturing chemicals and products, such as gasoline, synthetic rubber, plastics, detergents, cement, paper, and pulp, by applying principles and technology of chemistry, physics, and engineering.
Median wage
$121,860
$78,520–$182,150
Projected growth
+2.3%
Slower than average
Annual openings
60
per year
Employed (US)
20,330
Job Zone 4
Typical preparation
Considerable preparation
Stackable credential programs
200 mapped
Core skills
ScienceComplex Problem SolvingCritical ThinkingSystems AnalysisReading ComprehensionMathematicsJudgment and Decision MakingSystems EvaluationActive LearningSpeakingOperations AnalysisActive ListeningWritingMonitoringOperations MonitoringTroubleshootingTime ManagementSocial PerceptivenessPersuasionNegotiationInstructingCoordinationService OrientationQuality Control AnalysisLearning StrategiesTechnology DesignManagement of Personnel ResourcesManagement of Material ResourcesManagement of Financial ResourcesProgrammingOperation and ControlEquipment SelectionRepairingInstallationEquipment Maintenance
Knowledge areas
Engineering and TechnologyMathematicsChemistryPhysicsProduction and ProcessingDesignEnglish LanguageComputers and ElectronicsPublic Safety and SecurityMechanicalLaw and GovernmentEconomics and AccountingAdministration and ManagementBuilding and ConstructionBiologyEducation and TrainingCustomer and Personal ServiceSales and MarketingPersonnel and Human ResourcesCommunications and MediaAdministrativeTransportationFood ProductionGeographyTelecommunicationsForeign LanguagePsychologyMedicine and DentistryHistory and ArcheologyTherapy and CounselingSociology and AnthropologyPhilosophy and TheologyFine Arts
Technology & tools
Absorption process simulation softwareApplied Flow Technology AFT ArrowApplied Flow Technology AFT FathomAspenTech aspenONEAutodesk AutoCADCC++CD-adapco STAR-CADCerebro CerebroMixChemicaLogic SteamTabChempute Software ChemDrawChempute Software E-NotebookChempute Software Engineer's Aide SINETChempute Software EstProChempute Software SuperPro DesignerChempute Software VisiMixChemstations CHEMCADComputer aided design CAD softwareComputer aided design and drafting CADD softwareComputer aided manufacturing CAM softwareControl Station ENGINEERDassault Systemes CATIADassault Systemes SolidWorksDesktop publishing softwareEPCON International CHEMPRO Engineering SuiteEPCON International SYSTEM 7 Process ExplorerEPCON International SiNETG&P Engineering Software EngVertG&P Engineering Software PhysPropsG&P Engineering Software PipeDropGE Fanuc Proficy Machine EditionLaboratory information management system LIMSMadison Technical Software Chempak PlusMadison Technical Software EnviropakMadison Technical Software SteampakMicrosoft AccessMicrosoft ExcelMicrosoft ExchangeMicrosoft Office softwareMicrosoft PowerPoint
Representative tasks
Processing InformationAnalyzing Data or InformationGetting InformationWorking with ComputersMaking Decisions and Solving ProblemsUpdating and Using Relevant KnowledgeCommunicating with Supervisors, Peers, or SubordinatesMonitoring Processes, Materials, or SurroundingsDocumenting/Recording InformationThinking CreativelyEvaluating Information to Determine Compliance with StandardsIdentifying Objects, Actions, and EventsEstimating the Quantifiable Characteristics of Products, Events, or InformationOrganizing, Planning, and Prioritizing WorkInterpreting the Meaning of Information for OthersDeveloping and Building TeamsProviding Consultation and Advice to OthersInspecting Equipment, Structures, or MaterialsEstablishing and Maintaining Interpersonal RelationshipsCoordinating the Work and Activities of OthersDrafting, Laying Out, and Specifying Technical Devices, Parts, and EquipmentDeveloping Objectives and StrategiesTraining and Teaching OthersScheduling Work and ActivitiesJudging the Qualities of Objects, Services, or PeopleGuiding, Directing, and Motivating SubordinatesSelling or Influencing OthersCoaching and Developing OthersCommunicating with People Outside the OrganizationResolving Conflicts and Negotiating with OthersMonitoring and Controlling ResourcesControlling Machines and ProcessesPerforming Administrative ActivitiesStaffing Organizational UnitsAssisting and Caring for OthersRepairing and Maintaining Electronic EquipmentRepairing and Maintaining Mechanical EquipmentPerforming for or Working Directly with the PublicOperating Vehicles, Mechanized Devices, or EquipmentPerforming General Physical Activities
Competency framework
Skill expectations by proficiency level.
emerging
Standard safety procedures — apply and follow under direct supervision when working near active chemical reactions in a production facility.Process monitoring data — collect and record from instrumentation systems under engineer guidance during routine manufacturing runs.Chemical process variables — identify and document temperature, pressure, density, and specific gravity readings during supervised laboratory or pilot-plant tests.Technical literature and process specifications — read and summarize to support senior engineers evaluating manufacturing compliance requirements.Equipment layout diagrams — interpret and assist in drafting using CAD software under the direction of a lead engineer.Production cost data — gather and compile into preliminary progress reports for review by project managers.Laboratory experiments — conduct defined test protocols and record results to support process development research under supervision.Analytical or scientific software — operate under guidance to analyze process data and generate basic performance reports.Chemical engineering principles — apply foundational knowledge of thermodynamics and reaction kinetics to assist in routine process calculations.Potential process problems — recognize and escalate observed anomalies in chemical manufacturing operations to supervising engineers.
developing
Chemical manufacturing process issues — troubleshoot using systematic diagnostic methods with limited oversight in an operating plant environment.Process performance data — monitor and analyze trends from control systems to identify deviations and recommend corrective actions.Safety and environmental compliance — evaluate equipment and process conditions against applicable regulations and flag areas requiring remediation.Equipment layout plans — develop and refine using CAD software to optimize workflow and space utilization in a process facility.Production cost estimates — prepare and update progress reports by integrating operational data and presenting findings to management.Process variable control — perform multi-stage performance tests on temperature, pressure, and specific gravity to validate process stability.Improved manufacturing methods — research and propose process modifications based on literature review and experimental results.Industrial control software — configure and use to monitor automated process systems and adjust set points within established parameters.Cross-functional technical findings — communicate clearly in written reports and oral presentations to operations and project teams.Risk factors in process changes — assess using deductive reasoning to anticipate downstream impacts before implementing modifications.
proficient
Complex chemical manufacturing process failures — troubleshoot autonomously across full production scope, identifying root causes and implementing lasting corrective solutions.Comprehensive process optimization studies — conduct by integrating data analytics, systems analysis, and engineering judgment to maximize yield and efficiency.Safety procedure frameworks — develop and validate for high-hazard operations, ensuring regulatory compliance and worker protection across an entire plant site.Novel chemical manufacturing processes — design and develop through applied research, scaling laboratory findings to pilot and commercial production.Full equipment layout and process flow designs — engineer and plan using CAD and CAM software to meet production capacity and safety targets.Detailed production cost analyses and forecasts — prepare independently by modeling process economics and presenting strategic recommendations to senior management.Multi-variable process performance — evaluate across temperature, density, pressure, and gravity parameters throughout all production stages to maintain tight process control.Environmental and safety regulatory requirements — interpret and integrate proactively into process designs and operational procedures to ensure ongoing compliance.Emerging chemical engineering technologies — evaluate through active learning and experimental investigation to assess applicability to current production challenges.Cross-disciplinary project teams — coordinate technical direction by synthesizing engineering, chemistry, and operational perspectives to deliver process improvements on schedule.
advanced
Organization-wide chemical process safety strategy — establish and champion policies and standards that govern engineering practice across multiple facilities.Innovation roadmaps for chemical manufacturing — lead development by directing research programs that identify and commercialize next-generation process technologies.Enterprise-level process optimization initiatives — drive by applying systems evaluation frameworks to improve performance, cost, and sustainability across the entire production portfolio.Capital equipment investment decisions — guide by conducting rigorous operations analysis and presenting authoritative economic justifications to executive leadership.Engineering talent pipelines — build and mentor by designing structured development programs that advance emerging and developing chemical engineers to full competency.Regulatory and environmental compliance posture — define and oversee at organizational scale, representing the company before regulatory bodies and industry standards committees.Complex, high-consequence process failures — resolve at principal level by synthesizing multidisciplinary expertise and leading cross-functional incident investigation teams.Strategic production cost and capacity models — develop and own by integrating financial analysis software outputs with long-range business planning assumptions for executive decision-making.Industry-wide engineering knowledge — advance by publishing research, presenting at technical conferences, and contributing to professional standards development in chemical engineering.Organizational risk culture — shape by embedding cautiousness, attention to detail, and achievement orientation into engineering governance structures and performance expectations.
Also known as
33 alternate job titles map to this occupation.
Absorption and Adsorption EngineerBlending CoordinatorChemical Design Process EngineerChemical EngineerChemical Process EngineerChemical Research EngineerChemical Test EngineerControl Systems EngineerControls EngineerDevelopment EngineerEngineerEngineering ScientistExplosives EngineerFuel EngineerGas Combustion EngineerLubricating EngineerOxidation EngineerPharmaceutical Process EngineerPlant EngineerPlastics EngineerPolymerization EngineerProcess Application EngineerProcess Control EngineerProcess Design Chemical EngineerProcess Development EngineerProcess EngineerProcess Improvement EngineerProject EngineerRefinery Process EngineerResearch Chemical EngineerScientistWeapons DesignerWeapons Engineer