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Urgent EPC Oil & Gas Jobs in Iraq 2026 – Apply Now



EPC-Oil-Gas-Engineering-Jobs-Iraq-Urgent-Requirement


The energy sector in the Middle East continues to expand at a rapid pace, with large-scale Engineering, Procurement, and Construction (EPC) projects driving critical infrastructure development across Iraq's premier onshore and offshore energy fields. As major international oil companies (IOCs) and national engineering enterprises step up production capacities across key basins—including Basra, Rumaila, West Qurna, and Majnoon—there is an immediate, high-priority demand for skilled, battle-tested engineering professionals.

The rapid expansion and modernization of Iraq’s hydrocarbon infrastructure have established the southern hub of Basra as a focal point for large-scale energy projects, driving an unprecedented surge in demand for engineering talent across major Engineering, Procurement, and Construction (EPC) contracts. As international operators, state enterprise bodies like the Basra Oil Company, and global engineering firms accelerate field development across landmark basins such as Rumaila, West Qurna, Majnoon, Bin Umar, and Sindbad, securing qualified professionals through specialized overseas recruitment channels has become essential to maintaining operational velocity and structural compliance. In this dynamic industrial landscape, candidates seeking EPC Oil and Gas jobs Iraq find extensive avenues for professional growth, particularly through established recruitment agencies like Spem Ocean recruitment, which bridges global talent pools with high-value technical placements across both onshore processing facilities and offshore marine terminals. Central to this workforce deployment are Oil field engineering vacancies Basra, where projects demand rigorous technical mastery, strict adherence to health, safety, and environmental standards, and seamless interdisciplinary coordination across civil, mechanical, electrical, structural, materials, and automation disciplines.

Among the most critical technical callings in field construction, the position of Welding Engineer EPC Iraq demands an exhaustive knowledge of metallurgy, joint geometry, heat treatment, and non-destructive testing methodologies tailored specifically to severe operating conditions. In Iraqi oil fields, pipelines and pressure vessels regularly contend with sour gas ($H_2S$) exposure, thermal cycling, and high operational pressures, requiring welding engineers to develop and validate meticulous Welding Procedure Specifications (WPS) and Procedure Qualification Records (PQR) in strict alignment with ASME Section IX, API 1104, and AWS D1.1 standards. These professionals oversee rigorous qualification protocols for field welders, manage pre-heating and interpass temperature controls, and monitor Post-Weld Heat Treatment (PWHT) parameters to prevent hydrogen-induced cracking and stress corrosion failure. Furthermore, they work closely with quality assurance and non-destructive examination specialists utilizing advanced Phased Array Ultrasonic Testing (PAUT) and Radiographic Testing (RT) to ensure that every weld seam across cross-country transmission lines, modular skid assemblies, and heavy storage vessels fulfills global safety benchmarks before commissioning.

Simultaneously, high-impact Civil Engineer Oil Gas jobs establish the structural bedrock upon which all processing plant equipment, storage infrastructure, and utility networks depend. Operating in challenging geotechnical environments characterized by sandy, saline, or expansive soils in southern Iraq, civil engineers manage extensive earthworks, cut-and-fill operations, soil compaction testing, and dynamic foundation design. They are tasked with designing and supervising the pour of reinforced concrete footings capable of supporting heavy rotating equipment, high-pressure pump skids, gas compressor trains, and massive pipe rack structures while complying with American Concrete Institute (ACI) codes and local seismic requirements. In addition to structural foundations, civil engineers oversee site drainage networks, oily water separator (OWS) channels, chemical spill retention bunds, access roads, and blast-resistant control room shelters, ensuring that site infrastructure remains resilient against seasonal flooding and extreme ambient temperatures.

To safeguard expensive steel infrastructure from aggressive desert environments and corrosive hydrocarbon streams, the role of an Anti Corrosion Specialist NACE AMPP is paramount. Operating across both subterranean pipelines and exposed processing assets, these specialists evaluate material selection, implement impressed current cathodic protection (ICCP) and sacrificial anode cathodic protection (SACP) systems, and enforce protective coating application procedures in accordance with NACE/AMPP and ISO 12944 regulations. In Iraq's high-salinity soil conditions and sour gas environments, anti-corrosion specialists execute soil resistivity surveys, monitor close-interval potential surveys (CIPS), inspect field joint coatings, and supervise thermal spray aluminum (TSA) or specialized epoxy linings inside pressure vessels. By managing chemical dosing programs—such as corrosion inhibitors, biocide treatments, and oxygen scavengers—they prevent both internal localized pitting and external galvanic degradation, dramatically extending asset lifespans and reducing operational downtime.

Structural integrity across the energy value chain is further guaranteed by the work of a Structural Engineer offshore onshore, whose duties bridge heavy onshore plant construction and complex offshore marine loading terminals. In onshore settings, structural engineers execute finite element analysis and structural modeling using software tools like STAAD.Pro and Tekla to design pipe racks, equipment support skids, flare stacks, and maintenance platforms capable of withstanding heavy dead loads, wind shear, and seismic activity. In offshore and coastal environments near the Arabian Gulf, their scope expands to jacket structures, topside modules, mooring dolphins, and berthing platforms, where hydrodynamic wave action, marine growth, and splash zone corrosion add layers of analytical complexity. These engineers develop detailed rigging and heavy-lift plans for crane operations, direct structural steel fabrication at assembly yards, verify bolt torquing and structural fit-ups, and coordinate spatial clearances with mechanical and piping disciplines to ensure zero interferences during field assembly.

Powering these massive energy developments requires the technical leadership of an Electrical Engineer high voltage oil gas, who manages the generation, transmission, and safe distribution of electrical energy across extensive industrial sites. These engineers oversee high-voltage (HV) and medium-voltage (MV) substations, power transformers, motor control centers (MCC), variable frequency drives (VFD), and emergency diesel generation systems that drive heavy pumps and compressors. Because crude oil processing facilities feature hazardous atmospheres containing flammable vapors, electrical engineers ensure that all equipment, junction boxes, lighting fixtures, and cable glands maintain strict compliance with ATEX and IECEx certifications for Zone 0, Zone 1, and Zone 2 hazardous areas. They execute protective relay coordination studies, short-circuit calculations, grounding and earthing grid installations, and arc-flash hazard assessments, ensuring uninterrupted power availability while mitigating electrical safety risks for field personnel.

Complementing power infrastructure is the automation brain of the modern refinery or production facility, spearheaded by the Instrumentation Communication Engineer SCADA DCS. These engineers design, configure, calibrate, and integrate sophisticated Distributed Control Systems (DCS), Emergency Shutdown Systems (ESD), Programmable Logic Controllers (PLC), and Safety Instrumented Systems (SIS) up to SIL 3 ratings under IEC 61508 and IEC 61511 standards. They oversee field instrumentation loops including smart pressure, temperature, level, and flow transmitters, automatic control valves, and toxic gas detection arrays. Furthermore, they manage field communications infrastructure involving high-speed fiber-optic backbones, SCADA telemetry for remote wellheads, Public Address and General Alarm (PAGA) networks, closed-circuit television (CCTV) security monitoring, and industrial wireless communications, providing real-time data visibility to central operating control rooms and ensuring automated shutoff protocols in the event of process upsets.

As Iraq continues to expand its production capacity, Overseas recruitment Iraq channels curated by specialized agencies like Spem Ocean recruitment serve as a vital conduit for sourcing experienced engineers who possess the resilience, adaptability, and technical precision needed for high-stakes EPC environments. Overseas engineering professionals deployed to Basra benefit from competitive compensation packages, rotational work schedules, international career exposure, and the opportunity to contribute to some of the world's most significant capital energy projects. By bringing together specialized skill sets across welding metallurgy, heavy civil foundations, advanced corrosion control, structural engineering, high-voltage electrical distribution, and digital automation, the collaborative execution of these EPC contracts drives sustainable energy development, reinforces operational safety, and plays a foundational role in shaping the modern industrial infrastructure of southern Iraq.

Spem Ocean is actively sourcing top-tier engineering talent for immediate deployment on major EPC Oil & Gas contracts in Iraq. Candidates with robust experience in complex industrial plant execution, refinery construction, cross-country pipeline infrastructure, and brownfield/greenfield facility upgrades are strongly encouraged to review the details below and apply.

The Strategic Importance of EPC Projects in Iraq’s Energy Landscape

Engineering, Procurement, and Construction (EPC) contracts form the backbone of mega-scale upstream, midstream, and downstream infrastructure in the global oil and gas industry. Operating within Iraq’s complex operational terrain requires detailed technical precision, strict adherence to international health, safety, and environment (HSE) standards, and a deep understanding of standard engineering frameworks such as ASME, API, ISO, IEEE, NACE/AMPP, and IEC.

Professionals stepping into these roles will oversee multi-million-dollar capital project executions, managing everything from FEED (Front-End Engineering Design) validation and site construction to testing, pre-commissioning, and final handover.

Detailed Job Descriptions for Engineering Vacancies

Below is a detailed breakdown of the six engineering positions currently open for immediate hire. Each role requires extensive hands-on expertise in large-scale EPC Oil & Gas environments.

1. Welding Engineer (EPC Oil & Gas)

Position Overview

The Welding Engineer plays a crucial role in maintaining structural and pressure-containing integrity across high-pressure pipelines, pressure vessels, storage tanks, and modular processing units. In the extreme environmental conditions of Iraqi oil fields, structural welds must withstand severe cyclic stress, sour gas exposure ($H_2S$), and extreme temperature variations.

Key Responsibilities

  • Procedure Development & Approval: Draft, review, and approve Welding Procedure Specifications (WPS), Procedure Qualification Records (PQR), and Welder Performance Qualifications (WPQ) in compliance with ASME Section IX, API 1104, and AWS D1.1.

  • Non-Destructive Testing (NDT) Oversight: Supervise and evaluate NDT methods including Radiographic Testing (RT), Ultrasonic Testing (UT/PAUT), Magnetic Particle Testing (MT), and Dye Penetrant Testing (PT).

  • Metallurgical Assessment: Analyze parent metals, filler metals, and heat-affected zones (HAZ) to prevent hydrogen-induced cracking (HIC), sulfide stress cracking (SSC), and stress corrosion cracking (SCC).

  • Site Quality Assurance: Perform regular quality audits on field welding operations, monitoring pre-heating, interpass temperature control, and Post-Weld Heat Treatment (PWHT) parameters.

  • Vendor & Subcontractor Management: Audit fabricators and subcontractors to ensure strict adherence to project quality plans (PQP) and client-specific technical requirements.

Required Qualifications & Skills

  • Bachelor’s Degree in Welding Engineering, Metallurgy, or Mechanical Engineering.

  • Certified Welding Inspector (AWS-CWI, CSWIP 3.1 or 3.2) certification is essential.

  • Minimum 7–10+ years of direct experience in EPC Oil & Gas construction projects.

  • Thorough knowledge of ASME B31.3, ASME B31.4, ASME B31.8, ASME Section VIII, API 650, and API 1104.

2. Civil Engineer (EPC Infrastructure & Earthworks)

Position Overview

The Civil Engineer oversees all heavy civil works, structural foundations, site preparation, and infrastructure development necessary to support oil processing facilities, gas gathering stations, compressor stations, and heavy machinery installations.

Key Responsibilities

  • Foundation & Site Execution: Direct the construction of heavy equipment foundations, dynamic machine bases, tank pads, pipe rack foundations, and deep piling works.

  • Geotechnical & Structural Verification: Review soil investigation reports, evaluate load-bearing capacities, and manage earthworks, cut-and-fill operations, compaction testing, and slope stabilization.

  • Drainage & Containment Systems: Design and construct oily water sewers (OWS), storm drainage, chemical containment dikes, and industrial paving works.

  • Quality Control: Ensure concrete mix designs, steel rebar installations, shuttering, formwork, and curing processes adhere to ACI, BS, and Eurocode standards.

  • Project Scheduling: Coordinate site execution activities with mechanical, structural, and piping teams to eliminate inter-disciplinary schedule bottlenecks.

Required Qualifications & Skills

  • Bachelor’s Degree in Civil Engineering from a recognized institution.

  • 7+ years of experience in heavy industrial EPC projects within the Oil & Gas sector.

  • Working knowledge of structural/civil design software (STAAD.Pro, AutoCAD) and concrete testing standards.

  • Experience in soil remediation, piling, and heavy foundations in desert or challenging soil conditions.

3. Anti-Corrosion Engineer (Materials & Surface Protection)

Position Overview

Corrosion poses a massive financial and operational threat to hydrocarbon processing infrastructure. The Anti-Corrosion Engineer is responsible for evaluating, specifying, applying, and inspecting protective coating systems, cathodic protection (CP), and corrosion monitoring mechanisms across buried pipelines and above-ground storage facilities.

Key Responsibilities

  • Cathodic Protection Systems: Design, install, commission, and troubleshoot both Impressed Current Cathodic Protection (ICCP) and Sacrificial Anode Cathodic Protection (SACP) systems for pipelines and tank bottoms.

  • Protective Coating & Lining: Inspect protective coatings, thermal spray aluminum (TSA), fireproofing, and internal vessel linings in accordance with NACE/AMPP and ISO 12944 standards.

  • Corrosion Assessment & Mitigation: Monitor chemical injection systems (corrosion inhibitors, biocide dosing) and analyze corrosion coupon/probe data to mitigate internal sour gas degradation.

  • Failure Analysis: Perform root-cause failure analysis (RCFA) on corroded components, proposing long-term remedial and preventive strategies.

  • Subcontractor Audits: Audit coating yards, blast cleaning operations, and field joint coating (FJC) applications on cross-country pipelines.

Required Qualifications & Skills

  • Bachelor’s Degree in Chemical Engineering, Materials Science, Metallurgy, or Corrosion Engineering.

  • Active NACE / AMPP Corrosion Specialist, CP Level 2/3, or Protective Coating Inspector (CIP Level 2/3) certification.

  • 6–10+ years of dedicated anti-corrosion management on major upstream or midstream energy assets.

4. Structural Engineer (Offshore/Onshore Steel Structures)

Position Overview

The Structural Engineer ensures the structural integrity, safety, and load capacity of heavy steel platforms, pipe racks, equipment support modules, flare stacks, and secondary structural components across EPC project sites.

Key Responsibilities

  • Structural Analysis & Design: Perform static, dynamic, blast, seismic, and wind load analyses for steel structures using structural software suites such as STAAD.Pro or SACS.

  • Fabrication Oversight: Direct structural steel fabrication, fit-up, dimensional inspection, bolt torque verification, and structural welding.

  • Erection & Heavy Rigging Management: Plan and supervise heavy lift operations, modular structural installations, and crane lift plans for massive pipe modules and pre-assembled units (PAUs).

  • Interdisciplinary Coordination: Align structural layouts with piping isometric drawings, electrical cable trays, and instrument impulse lines to avoid spatial clashes.

  • Design Verification: Review vendor engineering drawings, structural calculations, and connection designs against AISC, BS 5950, and API RP 2A guidelines.

Required Qualifications & Skills

  • Bachelor’s Degree in Structural Engineering or Civil/Structural Engineering.

  • 7–12 years of hands-on structural engineering experience in EPC oil, gas, or petrochemical plants.

  • Proficiency in STAAD.Pro, Tekla, AutoCAD, and heavy lifting risk management frameworks.

5. Electrical Engineer (Power Distribution & High Voltage Systems)

Position Overview

The Electrical Engineer oversees power generation, sub-station distribution, motor control systems, dynamic drive networks, and hazardous area electrical installations crucial to continuous hydrocarbon extraction and processing.

Key Responsibilities

  • Power Systems Management: Manage high voltage (HV), medium voltage (MV), and low voltage (LV) switchgear, transformers, uninterruptible power supplies (UPS), and emergency diesel generators.

  • Hazardous Area Compliance: Ensure all field electrical installations comply strictly with ATEX and IECEx standards for Zone 0, Zone 1, and Zone 2 hazardous areas.

  • Substation & Distribution Cabling: Direct cable tray routing, high-voltage cable pulling, splicing, megger testing, load testing, and relay coordination studies.

  • Testing & Commissioning: Execute factory acceptance testing (FAT), site acceptance testing (SAT), and energized commissioning of electrical distribution architecture.

  • Safety Integration: Implement Lockout/Tagout (LOTO) protocols, arc-flash safety measures, and grounding/earthing and lightning protection networks across the plant layout.

Required Qualifications & Skills

  • Bachelor’s Degree in Electrical Engineering.

  • 7+ years of experience in oil & gas facility power distribution and substation engineering.

  • Expertise in IEEE, IEC, NEC, and ATEX regulatory standards.

6. Instrumentation & Communication Engineer

Position Overview

Modern hydrocarbon facilities rely heavily on automated process control systems and high-speed communication networks. The Instrumentation & Communication Engineer is responsible for designing, integrating, and maintaining process automation, safety shutdown systems, remote telecommunication, and telemetry infrastructure.

Key Responsibilities

  • Control Systems Integration: Oversee the installation, loop testing, calibration, and commissioning of Distributed Control Systems (DCS), Emergency Shutdown Systems (ESD), and Programmable Logic Controllers (PLC).

  • Field Instrumentation: Manage control valves, pressure safety valves (PSVs), flow meters, transmitter loops, level gauges, and toxic/flammable gas detection systems.

  • Telecom & SCADA Networks: Supervise field telecommunications including fiber optic backbones, public address/general alarm (PAGA) systems, CCTV networks, industrial Wi-Fi, and VHF/UHF radio communication systems.

  • Safety Instrumented Systems (SIS): Ensure control logic safety integrity levels (SIL 1 to SIL 3) meet IEC 61508 and IEC 61511 guidelines.

  • Vendor Interface & Documentation: Review Cause & Effect diagrams, Instrument Loop Diagrams, Hook-up drawings, and P&ID diagrams.

Required Qualifications & Skills

  • Bachelor’s Degree in Instrumentation & Control Engineering, Electronics, or Telecommunications Engineering.

  • 7+ years of EPC Oil & Gas project experience focused on process automation, telecommunications, and field instrumentation.

  • Strong familiarity with Emerson DeltaV, Honeywell Experion, Yokogawa Centum VP, or Schneider Triconex systems.

Summary of Core Requirements & Qualifications

PositionMinimum EducationKey CertificationsTechnical Standards Focus
Welding EngineerB.E. / B.Tech (Welding/Metallurgy)AWS-CWI, CSWIP 3.1/3.2ASME IX, API 1104, AWS D1.1
Civil EngineerB.E. / B.Tech (Civil)Professional Engineer (PE) / CharterACI, BS, Eurocode, Geotechnical
Anti-Corrosion EngineerB.E. / B.Tech (Chemical/Materials)NACE / AMPP CIP / CP Level 2/3NACE / AMPP, ISO 12944
Structural EngineerB.E. / B.Tech (Structural/Civil)STAAD.Pro / SACS CertifiedAISC, API RP 2A, Eurocode 3
Electrical EngineerB.E. / B.Tech (Electrical)ATEX / IECEx Hazardous AreaIEEE, IEC, ATEX, NFPA 70
Instrumentation/CommsB.E. / B.Tech (Instr./Electronics)SIL / IEC 61508 / Vendor CertsIEC 61511, ISA, Fiber/SCADA

Why Work in Iraq’s EPC Energy Sector?

Securing a position on an EPC project in Iraq offers distinct career advantages for ambitious engineering professionals:

  1. High Commercial Value & Competitive Packages: Positions feature tax-free expatriate salary packages, comprehensive rotational schedules, site allowances, paid travel, accommodation, and medical insurance.

  2. Career Advancement on Mega Projects: Working on world-scale facilities (such as Basra Gas Company assets, West Qurna fields, or pipeline networks) elevates your professional standing across the global energy market.

  3. Cross-Disciplinary Exposure: EPC contracts expose engineers to end-to-end project execution life cycles, from initial technical queries down to system turnover.

Application Guidelines: How to Apply

Candidates who meet the specified criteria and are ready for deployment on EPC Oil & Gas projects in Iraq should submit their applications immediately.

Submission Guidelines:

  • CV Format: Microsoft Word Format (.doc or .docx) only.

  • Required Enclosures: Attach copies of engineering degree certificates, technical certifications (AWS, CSWIP, NACE, etc.), work experience certificates, and passport details.

  • Email Subject Line: Please state the exact role you are applying for (e.g., Application for Welding Engineer - EPC Iraq).

Direct Contact Email:

Send your updated CV and complete document package directly to:

naushad@spemocean.com

Ensure your resume highlights relevant EPC project achievements, specific codes/standards used, and past oil & gas employer details for priority consideration.

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