
Prime Process Engineering
Innovative Engineering. Efficient Use.



Prime Process Engineering
Prime Process Engineering delivers advanced chemical process engineering and technology solutions, specializing in evaporation, crystallization, recovery, and refined chemical production—supporting efficient, safe, and sustainable chemical plants from concept through commissioning.



Process Design & Chemical Engineering
We deliver advanced process design and chemical engineering solutions, developing efficient, reliable, and customized systems tailored to specific chemical production requirements.
Evaporation & Crystallization Technologies
We specialize in evaporation and crystallization systems, including MVR, TVR, solid crystallization, and recrystallization technologies optimized for energy efficiency and precision.
Recovery & Resource Optimization Plants
We specialize in evaporation and crystallization systems, including MVR, TVR, solid crystallization, and recrystallization technologies optimized for energy efficiency and precision.
Refined Salt & Inorganic Chemical Production
We provide complete process solutions for refined salt and inorganic chemicals such as sodium sulfate, sodium bicarbonate, copper sulfate, and iron sulfate.
Detailed Engineering & Technical Documentation
We prepare comprehensive basic and detailed engineering packages, including PFDs, P&IDs, layouts, specifications, and technical documentation ready for EPC execution.
Plant Installation & Commissioning Support
We support plant installation, integration, testing, and commissioning, ensuring smooth startup, operational stability, and long-term reliable performance validation.
Quality Assurance, Safety & Process Integrity
We embed quality assurance, process safety, and risk management throughout engineering and execution, ensuring full regulatory compliance with international standards.
Innovation & Sustainable Process Solutions
We integrate innovative technologies and sustainable process concepts to reduce energy use, emissions, and environmental impact while maximizing operational efficiency.

