Refining

Refining

AIPEC provides engineering, design, and fabrication support for petroleum refining facilities, with particular strength in additive systems, storage tankage, and process equipment that keeps a refinery running safely and efficiently. Our team applies the same High Value Engineering approach across refining work that we bring to every industry: solutions that are cost-effective, resilient, and built for real-world operating conditions, not just technically sound on paper.

Refining clients operate in a high-consequence environment, where a piping or storage system that is not properly engineered can lead to costly downtime or safety incidents. AIPEC's pipe stress analysis, relief system studies, and mechanical integrity programs are built specifically to prevent that, backed by a reliability team largely made up of former process plant professionals who understand refinery operations from firsthand experience.

Experience Includes
  • API additive and storage tank engineering, design, and fabrication.
  • Pipe stress analysis and PRV/PSV relief system studies for refinery piping.
  • Mechanical integrity and API-510/570/653 inspection support.
  • Lube oil processing and related process engineering support.
Example Projects
  • Refinery Additive Storage Tank Engineering, design, and fabrication of an API additive storage tank. TIC: $6,500,000.
  • Lube Oil Processing Engineering Support Engineering support delivered for a lube oil processing project.
Discuss A Refining Project
Chemical Processing

Chemical Processing

AIPEC delivers full EPC support for chemical processing facilities, from early feasibility and design through construction and commissioning. Chemical processing projects often involve specialized handling requirements, whether that is blending equipment, storage systems, or process piping designed around specific chemical properties, and our team designs around those constraints rather than treating every project as generic industrial work.

Because chemical facilities frequently operate under strict process safety requirements, our Process Hazard Analysis (PHA) and Value Improvement Practices are applied throughout the design phase, catching risk early rather than discovering it during construction or, worse, during operation.

Experience Includes
  • Chemical blending facility engineering, procurement, and construction.
  • Storage silo and tankage engineering for chemical facilities.
  • Mechanical, electrical, and instrumentation (E&I) construction works.
  • Process safety management and PHA facilitation.
Example Projects
  • Ethylene Oxide Blending Facility EPC delivery for an ethylene oxide blending facility. TIC: $19,200,000.
  • Chemical Facility Construction, Phase 1 & 2 Mechanical, electrical, and instrumentation construction across Phase 1 and Phase 2. TIC: $32,000,000.
  • Primer Silo Facility Engineering and construction support for a primer silo facility.
Discuss A Chemical Project
Oil & LPG Terminals

Oil & LPG Terminals

AIPEC has delivered engineering, procurement, and construction across LPG and bulk liquid storage terminals, including one of our largest project engagements to date. Terminal work demands close attention to tankage design, pipe stress and relief system engineering, and phased construction sequencing, since these facilities often need to remain partially operational throughout expansion or upgrade work.

Our terminal experience spans both greenfield storage and distribution facility construction and brownfield expansions of existing terminals, giving us practical familiarity with the sequencing and safety considerations unique to working around live hydrocarbon storage infrastructure.

Experience Includes
  • LPG storage and distribution facility engineering and construction.
  • Bulk liquid storage terminal expansion.
  • Tankage design, feasibility studies, and cost estimating.
  • Pipe stress analysis and relief system engineering for terminal piping.
Example Projects
  • LPG Terminal EPC Delivery Engineering, procurement, and construction. TIC: $100,000,000.
  • LPG Storage & Distribution Facility Engineering, procurement, and construction. TIC: $16,000,000.
  • Bulk Liquid Storage Terminal Expansion Engineering and construction support for a bulk liquid storage terminal expansion.
Discuss A Terminal Project
Midstream

Midstream

AIPEC supports midstream infrastructure, the transportation, storage, and initial processing of crude oil and natural gas between extraction and refining. This includes storage terminals, pipeline systems, and distribution facilities that move product safely and efficiently from the wellhead to the next stage of the supply chain.

Our midstream work draws directly on core capabilities we apply across every project: tankage and terminal design, pipe stress analysis and relief system engineering, and full EPC delivery for storage and distribution infrastructure, backed by the same reliability engineering discipline behind everything else we build.

Experience Includes
  • Storage terminal design, engineering, and construction.
  • Pipeline and piping system design, including pipe stress analysis.
  • Distribution facility engineering and construction management.
  • Feasibility studies and cost estimating for terminal expansions.
Example Projects
  • LPG Terminal EPC Delivery Full engineering, procurement, and construction for a large-scale LPG storage terminal.
    TIC: $100,000,000.
  • LPG Storage & Distribution Facility Engineering, procurement, and construction for an LPG storage and distribution facility.
    TIC: $16,000,000.
Discuss A Midstream Project
Power Generation

Power Generation

AIPEC supports power generation clients with engineering, procurement, and construction management across plant construction and upgrade projects. Power facilities depend on precise coordination between mechanical, electrical, and instrumentation disciplines, and our team is structured to manage that coordination directly rather than treating each discipline as a separate, disconnected workstream.

Whether the work involves new construction packages or upgrades to existing infrastructure, AIPEC's construction management approach keeps schedule and safety at the center of execution, backed by the same reliability engineering and mechanical integrity disciplines we apply across every industry we serve.

Experience Includes
  • Power generation facility construction packages.
  • Mechanical, electrical, and instrumentation coordination.
  • Construction management for plant upgrades and new builds.
  • Reliability and mechanical integrity support for power assets.
Example Projects
  • Power Generation Construction Construction package delivered as part of a power generation facility project.
  • Power Generation Facility Construction support delivered for a power generation facility project.
Discuss A Power Project
Data Centers

Data Centers

AIPEC supports data center clients with the same engineering discipline we bring to industrial process facilities: power reliability, mechanical systems, and construction management, applied to an environment where uptime is the top priority. Data centers do not tolerate unplanned downtime, and our approach to electrical and mechanical integrity reflects that from the earliest stages of design.

Our capabilities extend naturally into this sector through the same core disciplines that support our process and power generation work: electrical and instrumentation design, mechanical and HVAC systems engineering, and construction management focused on reliability from day one.

Experience Includes
  • Electrical and instrumentation design for critical power systems.
  • Mechanical and HVAC systems engineering for high-reliability environments.
  • Construction management with uptime and reliability as the top priority.
  • Reliability and mechanical integrity programs adapted for data center infrastructure.
Discuss A Data Center Project
Water Treatment

Water Treatment

AIPEC provides engineering, design, and construction support for industrial and hazardous wastewater treatment facilities, an area where our project history runs particularly deep. This work sits at the intersection of process engineering and environmental compliance: treatment systems have to perform reliably while meeting strict discharge and safety requirements, and our team designs with both in mind from the start.

Our water treatment work spans a range of client types, from industrial process water and hazardous waste treatment to wastewater systems supporting pharmaceutical manufacturing, each with its own specific treatment and compliance requirements that AIPEC engineers around directly rather than applying a one-size-fits-all approach.

Experience Includes
  • Industrial and hazardous wastewater treatment plant design.
  • Full EPC delivery from design through construction and commissioning.
  • Wastewater systems for pharmaceutical and industrial manufacturing clients.
  • Environmental compliance-driven process design.
Example Projects
  • Industrial Wastewater Treatment Plant Engineering, design, and construction. TIC: $9,600,000.
  • Hazardous Wastewater Treatment Plant Engineering, design, and construction of a hazardous wastewater treatment plant. TIC: $8,000,000.
  • Waste Treatment Facility Construction services for a waste treatment facility. TIC: $6,400,000.
  • Pharmaceutical Wastewater Treatment Plant Engineering, procurement, and construction for a pharmaceutical client.
Discuss A Water Treatment Project
Desalination

Desalination

AIPEC supports desalination and water intake projects across a wide range of source water types, including seawater, brackish water, and industrial water reuse, each requiring its own treatment approach and pretreatment design. Our scope spans the full range of infrastructure involved, from raw water intake and reservoir control systems through reverse osmosis pretreatment, product water delivery, and concentrate management.

Our desalination work has included chemical dosing systems such as hydrated lime storage, feed, and saturation, alongside water intake and reservoir control equipment including gates, screens, and dewatering systems, integrated with the electrical, controls, and SCADA systems that tie the whole facility together.

Experience Includes
  • Raw water intake and reservoir control systems, including gates and screens.
  • Chemical dosing systems, including hydrated lime storage, feed, and saturation.
  • RO and pretreatment process design, including mass balance and dosing basis.
  • Treatment design for seawater, brackish water, and industrial water reuse sources.
  • Product water storage, pumping, and distribution.
  • Concentrate and brine management, including permitted disposal routing.
  • Electrical, controls, and SCADA integration.
Example Projects
  • Municipal Desalination & Water Intake Facility Design basis development through detailed engineering, covering intake, treatment, and product water delivery systems.
Discuss A Desalination Project

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