GERMAN ENGINEERING · TURKISH HORTICULTURAL EXPERTISE · TURNKEY DELIVERY

One greenhouse. Three climate zones. Up to 80% lower energy demand.

Engineered for extreme climates and optimized for every climate. 3-Climates integrates light, heat, air, and water into one coordinated system—delivering stable yields, significantly lower energy demand, and scalable year-round production.

German EngineeringTurkish Horticultural ExpertiseTurnkey Delivery

How It Works

One system for both extremes: Retain heat in winter. Reject heat in summer.

The cross-section shows how photosynthetically active light reaches the crop zone while the thermoreflective ETFE membrane manages radiant heat. Switch between winter and summer operation.

Light and Heat Control Across the System

Layers

CROP ZONE THERMAL BUFFER ZONE TEMPERATURE-BALANCING ZONE CROP ZONE PAR 400–700 NM SOLAR INFRARED REDUCED
ETFE membrane system in the Ahlen greenhouse Emsdetten · Germany

Our ETFE membranes are welded and fabricated in Emsdetten, bringing material development, manufacturing, and system integration together at one site.

−80%
Potential reduction in heating energy demand compared with conventional greenhouse systems
Fraunhofer UMSICHT · Energy Analysis
>90%
Light transmission across the visible and plant-relevant spectrum
CAE · Spectral Measurement
30–45%
Reduction in solar infrared gain by membrane configuration
3-Climates · System Design
20+ years
ETFE membrane service life under high UV exposure
ETFE · Material Specification

The Business Challenge

Climate now determines whether a greenhouse is profitable.

Extreme solar radiation, high ambient temperatures, and rising energy prices drive up cooling, heating, and water demand. The result: volatile yields, crop stress, and operating costs that are difficult to forecast.

3-Climates addresses heat where it enters—or escapes—the greenhouse: at the ETFE membrane and within the thermally separated air zones. It limits solar heat gain, reduces heat loss, and stabilizes the crop zone with sensor-based control before energy-intensive heating or cooling has to compensate.

3-Climates greenhouse in a cold mountain climate
System Visualization
Cold Climates · Heat-Loss Control

The thermal air zones act as multi-stage insulation. ETFE energy screens limit heat loss, smooth day-night temperature swings, and reduce supplemental heating demand.

3-Climates greenhouse in a hot, arid climate
System Visualization
Hot Climates · Solar-Heat Control

The thermoreflective ETFE membranes reduce incoming solar infrared before it heats the crop zone, while photosynthetically active light remains available to the plants.

Three Innovations — One System

Three innovations. One system. A measurable difference.

System Visualization
Explainer Film — Membrane, Air Zones, and Climate Control 3-CLIMATES
The three climate zones of a 3-Climates greenhouse at a glance
The Three Climate Zones at a Glance — Heat Protection, Thermal Buffer, Crop Zone
Innovation 1

Thermoreflective ETFE Membrane

The highly transparent ETFE membrane transmits the light crops need while reducing solar infrared heat gain by 30% to 55%, depending on the thermoreflective coating configuration. Light transmission, UV transmission, and thermal performance are tailored to the climate, crop, and site.

Visualization of infrared reflection by the thermoreflective ETFE membrane System Visualization
Innovation 2

Thermodynamic Air-Zone Architecture

Multiple thermally separated air layers divide the greenhouse into a thermal buffer zone, a temperature-balancing zone, and the crop zone. Together, they insulate the structure, smooth temperature fluctuations, and protect the growing area from extreme outdoor conditions.

Thermally separated air zones and ETFE energy screens System Visualization
3D Model — Thermal Air Zones and ETFE Energy Screens
Innovation 3

Three-Zone Climate Control and Sensor Network

Sensors track temperature, humidity, CO₂, PAR, UV, and IR. Using real-time data, the three-zone climate control system coordinates energy screens, ventilation, air movement, and fogging before conditions drift out of range. A digital twin supports continuous optimization of the crop-level microclimate, energy demand, and plant development.

Every installation is engineered around local climate data, crop requirements, energy and water availability, and operational workflows. Detailed simulations and project models are provided as part of qualified project development.

  • Control Principle Sensor-Based and Predictive
  • Climate Model Digital Twin
  • Measured Variables Temperature · Humidity · CO₂ · PAR · UV · IR
  • Optimization Target Stable Microclimate with Low Energy Demand
  • Project Basis Site- and Crop-Specific Design
Greenhouse interior System Visualization

High light transmission, diffuse light distribution, and a stable microclimate create uniform growing conditions across the entire crop area.

Production · Efficiency · Scale

Predictable production. Lower operating costs. Scalable delivery.

3-Climates is not a single greenhouse component. It is an integrated production system. Climate, water, energy, crop strategy, and automation are engineered together around the site, crop, and business model.

System Performance

Year-Round Production

Stable climate conditions reduce seasonal production interruptions and create the foundation for continuous harvest and delivery programs.

System Performance

Lower Heat Gain. Lower Heat Loss.

The thermoreflective ETFE membrane and thermal air zones limit solar heat gain in summer and heat loss in winter—before active cooling or heating systems require additional energy.

System Performance

Crop Quality and Resource Efficiency

Light, humidity, CO₂, water, and nutrients are controlled at crop level. This supports consistent product quality, lowers plant stress, and enables closed-loop water systems.

Project-Specific Design

Turnkey and Modular by Design

From site and climate analysis through engineering, construction, commissioning, and crop support, projects are delivered in clearly defined modules and expanded after successful operation.

Hot and Arid Climates

Stops solar heat before it becomes a cooling cost.

In hot climates, a large share of the cooling load comes from solar heat entering through the roof and sidewalls. 3-Climates reduces that load at the thermoreflective ETFE membrane instead of relying on mechanical systems to remove the heat after it enters.

The result is not a stand-alone cooling product, but a site-specific system combining ETFE solar-heat control, thermal buffer zones, intelligent three-zone climate control, water treatment, and crop planning.

3-Climates greenhouse concept visualization Concept Visualization

Independent Validation · Real-World Installations

Built. Measured. Independently evaluated.

Ahlen, Germany — 7,000 m² ETFE Precursor GreenhouseOriginal Footage
Ahlen · Germany — 7,000 m² ETFE Precursor Greenhouse

In 2024, a roughly 7,000 m² greenhouse with an ETFE outer membrane and transparent ETFE day screen entered operation at the Schulze Eckel commercial growing facility in Ahlen. It provides real-world operating data on light conditions, humidity stability, heating demand, and crop response.

Fraunhofer UMSICHT · Energy Analysis

Engineering studies and energy models evaluate the system’s thermal behavior. The analyses indicate substantial potential to reduce heating and cooling energy demand.

CAE · Materials and Spectral Development

Light, UV, and IR measurements are used to evaluate the optical and thermal performance of the ETFE membranes. The results guide coating and membrane configurations for different climate zones.

Geisenheim University · Crop Research

Horticultural research examines how microclimate, light availability, and humidity affect plant development, product quality, and yield.

Additional research, demonstration, and customer installations are being prepared for specific locations. New projects will be announced once planning and partnerships are confirmed.

COP30 · BelémOriginal Footage

3-Climates at COP30 in Belém

At COP30, the 3-Climates technology was presented to international delegations as an approach to climate-resilient, resource-efficient food production. Those discussions continue ahead of COP31 in Antalya.

Research and Development Partners

Fraunhofer UMSICHTEnergy Analysis and System Validation
Center for Applied Energy ResearchCoating and Spectral Development
Karlsruhe Institute of TechnologyMaterials and Infrared Research
Geisenheim UniversityCrop Performance Validation

Partner Logo Wall

Our network.

Fraunhofer UMSICHT logo
Agromini logo
Green Dome Trading W.L.L. logo
Biyofidan logo
Seralines logo
NEFA Sera Teknolojileri logo
Fidecim logo
Vermako logo
Wolfgang Block Industrie- und Gartenbau GmbH & Co. KG logo
Zero Carbon logo
ICEED Limited logo
Gör bak GmbH logo

Delivery · Operations · Scale

German engineering. Turkish horticultural expertise. Global project delivery.

3-Climates combines four decades of greenhouse and systems engineering with more than ten years of research into ETFE membranes, climate zones, and intelligent control. The result is an integrated greenhouse system engineered for each site and built to scale in modular phases.

Dolunay Gördüm

Founder & CEO

Corporate strategy, international project development, and strategic partnerships.

Wolfgang Block

Inventor & Technical Director

Technical development of the 3-Climates system and four decades of greenhouse engineering experience.

Matthias Welp

Head of Operations & Delivery

Membrane technology, manufacturing, and operational project delivery.

Muzaffer Gördüm

Head of Sales & Project Development

International sales, customer development, and project coordination.

3-Climates founding team in Emsdetten
Left to right: Dolunay Gördüm, Wolfgang Block, Matthias Welp Emsdetten — Development, Membrane Fabrication, and Technical Delivery

The core team is supported by experienced specialists in horticulture, crop production, bioponics, automation, and systems engineering, along with German research institutions and international delivery partners.

Documentation · Validation · Commercial Viability

Scientific evidence and project documentation.

Choose the resource that supports your decision: independent research reports, the complete technology catalog, or a concise project and investment overview.

Direct PDF Download

3-Climates Technology Catalog

The complete system overview: thermoreflective ETFE membrane, three climate zones, sensor network, water management, crop production, validation, and technical specifications.

Download PDF
Direct PDF Download

Fraunhofer UMSICHT — Energy Analysis

An independent assessment of system energy performance and the potential to significantly reduce heating and cooling demand compared with conventional greenhouse systems.

Download PDF
Direct PDF Download

CAE — Spectral and IR Analysis

Laboratory analysis of the thermoreflective ETFE coating, including light, UV, and IR transmission as well as its thermal properties.

Download PDF

Start a Project Conversation

Tell us where the project is planned and what you need. Reports and catalog are available directly above; use this form for site-specific documents, partnership, or financing questions.

Next Step

Site analysis. Custom system engineering. Turnkey delivery.

Headquarters and Development

3-Climates GmbH
Emsdetten, North Rhine-Westphalia
Germany

Gulf Project Development

Manama
Kingdom of Bahrain

Distribution Türkiye

Yalova
Türkiye