From concept to commissioning, YPT delivers integrated engineering, procurement, construction, manufacturing and quality management for mineral processing projects.
Carbon, metal and mercury recovery equipment, together with reagent management systems, that convert enriched streams into saleable metal safely and efficiently.
Precious metals recovery focuses on translating ore character and mineral hosting into stable recovery routes that protect value from mine variability to metal production.
Base metals recovery is built around selectivity and concentrate quality—engineering flotation and separation to deliver marketable products under changing mineral associations.
Ferrous metals recovery targets consistent grade, sizing discipline, and moisture control by exploiting density and magnetic contrasts across variable feed domains.
Light metals recovery is chemistry-sensitive recovery where fines behavior, impurity control, and water balance stability determine the most reliable processing route.
Energy metals recovery is driven by route selection under chemistry and compliance constraints, converting reactive feeds into controlled products with stable residue and water management.
Polymetallic ores recovery manages complex mineral associations to produce clean, saleable products through engineered selectivity, product strategy, and water chemistry control.
Industrial minerals recovery is specification-led processing where purity, particle size distribution, brightness, and moisture are engineered to meet product standards consistently.
Transforming Concept into Design — Where Vision Becomes Reality
Experience Engineered — Precision Delivered
30 years of EPC experience, integrated expertise, constructability built-in, and ISO-driven document control — ensuring designs that are practical, safe, buildable, and ready for execution.
DR. CANER ORHAN YPT R&D AND PROCESS DIRECTOR
Transforming Concept into Design — Where Vision Becomes Reality.
YPT Basic Engineering
Building on System Engineering, Basic Engineering transforms the conceptual process into a structured, verifiable design framework. It integrates process, mechanical, electrical, civil, and automation into a unified package — the technical baseline for Detail Engineering, Procurement, and Construction.
Complex Design
Material Integrity
Heavy performance
Speed, flexibility
From Data to Design — Turning Logic into Layout
Basic Engineering Projects
Multi-discipline packages translating PFDs, balances, and control philosophies into design documents for scope definition, budgeting, scheduling, and early vendor engagement — bridging design and execution.
Engineering Begins with Principles
Design Criteria
Formal rules governing decisions across disciplines: process parameters (throughput, density, residence time), mechanical/material requirements, civil & structural loads (seismic/wind/soil), electrical & control standards, and HSE constraints. All criteria are verified within YPT’s QMS for consistency and traceability.
Mapping the Path of Production
Process Flow Diagrams (PFD)
PFDs illustrate all major streams and key control interfaces with tags, capacities, material data, and utility tie-ins. They are cross-checked against balances and controlled under QMS for version integrity.
3D models, elevations, and sections defining spatial configuration, maintenance envelopes, pipe corridors, crane access, and safe operations. GA is reviewed with Construction to pre-empt clashes and optimize sequencing.
Designing Machines to Serve the Process
Mechanical Equipment Projects
Equipment layouts, foundation loads, and preliminary mechanical details. Datasheets define capacity, power, materials, and connections, aligned with YPT’s manufacturing standards for reliability and serviceability.
From Flow to Function — Detailing Control and Safety
Piping & Instrumentation Projects (P&ID)
P&IDs translate process logic into piping sizes/specs, valves, instruments, loops, and interlocks, including utilities and drain/vent systems. Each P&ID is checked and released under QMS with full revision tracking.
Specifying Performance, Not Just Components
Equipment Specifications
Performance-based specs with design codes (EN/ISO/ASME/API), ITPs, vendor data requirements, and interface definitions — forming the core of Procurement bid packages and ensuring seamless integration.
Key Deliverables
Design Criteria (process/mech/civil/elec/HSE)
PFDs and Mass & Heat Balance
GA Drawings and 3D models
Mechanical Layouts & Datasheets
P&IDs
Equipment Specifications & MTOs
Project Basis of Design (QMS-controlled)
Basic Engineering — From Design to Delivery — Engineering that Connects Every Discipline.
Procurement:
datasheets, line lists, MTOs enable competitive and technically sound sourcing.
Construction:
GA and P&IDs seed IFC drawings and installation sequencing.
Quality:
ISO 9001 QMS ensures cross-discipline reviews, verification records, and traceability.