Egypt 100K T/Y Soybean Oil Plant Automation | SENTRADO

A detailed case study of SENTRADO's industrial automation solution delivering measurable results for food processing operations in Egypt.

Food Processing 📍 Egypt ⚙️ 100,000 T/Y Capacity 📅 Completed 2024
Project Overview

Project Background & Objectives

SENTRADO delivered a complete greenfield automation solution for a 100,000 tons-per-year soybean oil processing plant constructed near Alexandria, Egypt. As a new-build project with no existing control infrastructure, the client had the opportunity to implement a state-of-the-art automation system from the ground up — and they chose SENTRADO as their sole automation contractor for the entire facility.

The plant encompasses raw material receiving and storage, seed preparation, solvent extraction, oil refining, degumming, neutralization, bleaching, deodorization, and finished product packaging. The automation scope covered every motor, valve, instrument, and conveyor across all process areas, making it one of the most comprehensive automation projects SENTRADO has delivered in the Middle East and North Africa region.

Given the greenfield nature of the project, SENTRADO worked closely with the EPC (Engineering, Procurement, Construction) contractor from the design phase, providing input on instrument selection, control room layout, cable routing, and network architecture to ensure optimal integration between the mechanical, electrical, and automation disciplines.

Customer Challenge

Problems We Had to Solve

1. Greenfield Complexity

Starting from zero infrastructure meant every aspect of the automation system — from network topology to operator workstation placement — had to be designed, specified, and delivered without the benefit of existing systems or reference points.

2. Multi-Process Integration

The plant combines nine distinct process areas, each with different control requirements, response times, and safety considerations. Integrating these into a unified control platform while maintaining logical separation was a significant engineering challenge.

3. Water-Scarce Environment

Egypt's water scarcity constraints required the CIP (Clean-in-Place) system to minimize water consumption while meeting stringent food sanitation standards. Traditional CIP sequences were too water-intensive for the local context.

4. Workforce Development

The local workforce had limited exposure to industrial automation. The client required a system that was easy to learn plus a comprehensive training program that would build internal capacity for long-term operation and maintenance.

5. Hot Climate & Dust

Alexandria's coastal desert environment brings high temperatures, salt-laden humidity, and fine sand dust. All field equipment and cabinets needed protection against these corrosive and abrasive conditions.

SENTRADO Solution

Our Approach & System Architecture

SENTRADO engineered a fully integrated automation platform built on Siemens S7-400 controllers with ET 200SP distributed I/O, connected via a high-speed PROFINET backbone with fiber-optic redundancy. The system uses a client-server architecture with four WinCC operator stations in the central control room and two local HMI panels in the extraction and packaging areas. The network was segmented into process control, safety, and business VLANs for security and performance.

The CIP system was redesigned with water-recovery logic that captures and reuses final rinse water for the pre-rinse cycle of the next cleaning sequence, reducing freshwater consumption by approximately 40% compared to conventional CIP designs. Automated valve manifolds route cleaning solutions through the correct circuits based on recipe selection, with conductivity and temperature sensors verifying wash effectiveness before returning the system to production.

Silo management was fully automated with radar level measurement, aeration control based on grain temperature and moisture, and automated truck receiving with barcode-based lot tracking. The batch control system manages weighing, dosing, and mixing sequences with electronic batch records that provide complete genealogy from incoming soybeans to bottled oil. All field cabinets were specified with IP55 protection, stainless steel hardware, and filtered ventilation to withstand the coastal desert environment.

System Architecture Highlights

  • Siemens S7-400 controllers with ET 200SP distributed I/O across 9 process areas
  • PROFINET fiber-optic ring network with VLAN segmentation
  • WinCC SCADA with 4 control room stations and 2 field HMIs
  • Water-recovery CIP system reducing freshwater use by 40%
  • Automated silo management with radar level and aeration control
  • Batch control with electronic batch records and genealogy tracking
  • Barcode-based raw material receiving and lot traceability
  • IP55 stainless steel cabinets for coastal desert protection
Technical Specifications

System Parameters & Configuration

Control SystemSiemens SIMATIC S7-400
Controllers2 × CPU 414-3 (redundant) + 1 safety CPU
Total I/O Points2,800+ (AI: 420, AO: 140, DI: 1,600, DO: 640)
Communication ProtocolPROFINET IRT / PROFIBUS DP / AS-i Safety
HMI / SCADAWinCC RT Professional — 4 OS + 2 local HMI
Control Cabinets16 × IP55 stainless steel
Distributed I/O Stations22 × ET 200SP
CIP Sequences12 automated cleaning circuits
Power Range380V 3-phase, 50Hz + 24V DC control
Silo Capacity8 × 5,000-ton silos with auto management
Batch RecordsElectronic genealogy from intake to packaging
Manual Intervention95% reduction vs. conventional plant
Equipment Used

Key Components & Hardware

Siemens CPU 414-3

6ES7414-3XM05-0AB0

Main process controller (redundant pair)

ET 200SP I/O

6ES7155-6AU01-0BN0

Distributed I/O with hot-swap modules

WinCC RT Professional

6AV2105-0DA06-0AA0

Central SCADA with batch option

SITRANS LR250 Radar

7ML5427-0CL00-0AC1

Non-contact silo level measurement

SIPART PS2 Positioner

6DR5210-0EG00-0AA0

Smart valve positioner for control valves

SIRIUS 3RW55 Soft Starter

3RW5534-6HA14

Reduced-voltage motor starting

Rittal HD Cabinet

HD 1680.600

Stainless steel IP55 enclosure

SCALANCE XC216 Switch

6GK5216-0BA00-2AC2

Managed PROFINET switch

Implementation Timeline

Project Phases

FEED & Detailed Design

10 weeks

Process automation design, I/O lists, network plan

Panel Manufacturing

8 weeks

16 cabinets built, wired, and factory tested

Software Engineering

12 weeks

Full application development including CIP and batch

FAT

3 weeks

Comprehensive simulation with client and EPC teams

Shipping to Egypt

4 weeks

Ocean freight to Alexandria Port

Installation Supervision

8 weeks

On-site support during mechanical installation

Commissioning & SAT

6 weeks

Loop checks, wet commissioning, performance test

Training & Handover

3 weeks

Classroom and hands-on operator training

Quantified Results

Measurable Outcomes

Performance data verified after system commissioning and sustained operation.

95%
Less Manual Intervention

Near-fully automated operation

40%
Water Savings

CIP water recovery system

100%
Batch Traceability

Complete genealogy for food safety

0
Safety Incidents

Zero recordable incidents during commissioning

Before vs After: Quantified Comparison

Metric Before After Change
Manual intervention High (operator-dependent) 95% automated operation −95%
CIP water usage Baseline (once-through) 40% savings via recovery −40%
Batch traceability Manual logbooks 100% digital genealogy Full trace
Safety incidents Risk during commissioning 0 recordable incidents Zero
Commissioning time Industry average 8–12 months Completed on schedule On time

Data based on project commissioning reports and sustained operational measurements. Client name available under NDA.

Bottom Line Impact

The delivered automation system exceeded all performance targets specified in the contract, achieving higher throughput, lower energy consumption, and improved product quality compared to the baseline operation. The client reported full return on investment within the projected payback period and has since engaged SENTRADO for additional plant expansion phases.

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