Light bulb We are launching Phase A – Olympus Greenport SA and actively acquiring land!

Phase A – Olympus Greenport SA

Greenport Project Launches in Fast Pace with Phase A

Olympus Greenport SA

Revolutionizing Sustainable Food Production and Local Community Development


1.37 billion EUR

Investment

3,100

Local Jobs

400 Ha

Greenhouses

35,000 m2

Logistics Center

200 MW

Cogeneration

100 MWp

Solar


Olympus Greenport SA Produce

Tomatoes

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Peppers

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Premium Tomatoes

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Aubergines

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Lettuce

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Strawberries

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Podcast

Listen to the podcast, diving deep into Phase A of Olympus Greenport SA, analysing the concept, the technology and the benefits.

Olympus Greenport SA Modules

High-Efficiency Greenhouse Complex (400 Ha)

Automated microclimate controls, IoT sensor arrays, and AI-driven fertigation.

Deploys automated microclimate controls, IoT sensor arrays, and AI-driven fertigation systems to maximize crop yield, resource efficiency, and output consistency.

Automated Logistics & Distribution Center (35,000 m²)

Autonomous mobile robotics, predictive inventory, and low-emission fleet infrastructure.

Incorporates autonomous mobile robotics (AMRs), predictive inventory management, and low-emission fleet infrastructure to streamline distribution and minimize transport latency.

Net-Zero Energy Microgrid

Hydrogen, natural gas CHP, solar PV, geothermal, and dynamic storage.

Integrates a multi-source generation matrix—combining hydrogen, natural gas CHP, solar PV, geothermal, and dynamic thermal/electrical storage—managed via intelligent load-balancing software to mitigate energy market volatility.

Olympus Greenport SA Synopsis

The Olympus Greenport project is a landmark investment exceeding €1.37 billion designed to establish a high-yield, climate-resilient agricultural ecosystem. Executed with a focus on regional integration, this initial phase aims to drive sustainable economic performance while optimizing supply chain efficiencies.

Operational Highlights & Infrastructure

Socioeconomic & Strategic Returns

This capital investment establishes a scalable benchmark for corporate sustainability, offering a balance between operational efficiency, long-term asset value, and environmental governance.

The Intelligent High-Yield Cultivation System

AI Driven Cultivation, Production and Business operations

AI-Optimized Cultivation

AI-optimized cultivation control room

Predictive Climate Controls

Predictive climate controls

Intelligent Energy Management

Greenhouse cooling and climate systems

The Intelligent High-Yield Cultivation System represents an advanced agricultural production platform engineered to deliver sustainable, high-volume crop yields while mitigating supply chain and climate-related operational risks. By embedding artificial intelligence into everyday operational controls, the platform optimizes input efficiency, maintains product quality standards, and achieves net-zero operational performance.

Core System Pillars

  • AI-Optimized Cultivation: Implements autonomous digital management models alongside real-time IoT sensor arrays to continuously fine-tune fertigation, nutrient delivery, and crop management strategies.
  • Predictive Climate Controls: Utilizes machine-learning algorithms to analyze environmental data, enabling real-time microclimate adjustments that protect output consistency from external weather volatility.
  • Intelligent Energy Management: Integrates dynamic heating, cooling, and power routing software to minimize energy overhead, reduce peak-demand costs, and support a carbon-neutral footprint.

Strategic Business Value

  • Supply Continuity: Safeguards production volumes against environmental shocks, providing commercial partners with reliable, year-round inventory.
  • Quality Assurance & Compliance: Maintains closed-loop cultivation protocols to meet strict health, safety, and regulatory compliance targets with minimal reliance on chemical interventions.
  • ESG Performance: Directs resources toward high-density production while lowering overall Scope 1 and Scope 2 operational emissions.

35,000 m2 Intelligent Logistics & Fulfillment Hub

Intelligent and Efficient High Throughput Logistics Hub

Predictive Inventory & Logistics Routing

Packing and fulfillment facility

Robotic Process Automation & Material Handling

Pallet crate conveyor

Resilient Energy Infrastructure

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Olympus Greenport's logistics center integrates advanced industrial automation, robotics, and predictive analytics to drive high-throughput fulfillment, optimize inventory management, and eliminate operational error.

Key Components:

  • Robotic Process Automation & Material Handling: Deploys Autonomous Mobile Robots (AMRs) and automated sorting systems to accelerate processing speed, maximize floor space efficiency, and scale material throughput.
  • Predictive Inventory & Logistics Routing: Leverages AI-driven analytics to optimize warehouse slotting and route fulfillment flows based on real-time demand forecasting and stock-keeping requirements.
  • Resilient Energy Infrastructure Integration: Utilizes an automated energy routing system to deliver uninterrupted, low-carbon power to cold-storage and robotic fulfillment infrastructure.

The 200 MW Intelligent Power Complex

Highly Efficient, Carbon Free, Energy Production, Storage and Management

Adaptive Dual-Fuel CHP (200 MW)

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Predictive AI Energy Management

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Co-Located Solar & Energy Storage

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The 200 MW Intelligent Power Complex represents a high-capacity energy infrastructure designed to optimize power, heating, and cooling distribution across the Greenport development and external grid network. By integrating multi-fuel generation assets with AI-driven energy management, the platform drives operational cost efficiencies, enhances grid resilience, and supports a structured decarbonization strategy.

Core Infrastructure & Asset Matrix

  • Adaptive Dual-Fuel CHP Systems (200 MW): Deploys high-efficiency Combined Heat and Power (CHP) units engineered to run on Natural Gas (NG) with seamless green hydrogen (H2) blending capabilities, lowering carbon intensity without sacrificing baseload stability.
  • Co-Located Solar & Energy Storage: Combines solar PV infrastructure with utility-scale thermal and electrical storage assets to capture surplus generation, mitigate peak-load surcharges, and balance intra-day demand spikes.
  • Predictive AI Energy Management System: Serves as the central operational hub, utilizing machine-learning algorithms to model real-time demand, automate load balancing, and optimize energy transactions across facilities and the external grid.

Strategic & Economic Value

  • Cost Optimization & Energy Arbitrage: Employs dynamic software controls to manage peak shaving, self-consumption, and grid exports, lowering net energy expenditure across all operational assets.
  • Business Continuity & Supply Resilience: Insulates high-value cultivation and logistics infrastructure from external grid failure through localized generation and rapid microgrid islanding capability.
  • Scope 1 & 2 Emissions Reduction: Supports corporate ESG mandates by capturing high-temperature waste heat for greenhouse climate control and systematically increasing green hydrogen fuel ratios.