Livestock and farms

Livestock and farms

Our systems can operate 100% on solar energy, with no electricity costs.

🔍 Problem

  • High electricity costs for maintaining the optimal temperature (10–15°C) during cheese ripening.
  • Presence of wet bedding, ammonia, and harmful gases in livestock barns, causing diseases and high veterinary costs.
  • Risk of mold growth and spoilage of animal feed (hay, alfalfa).
  • High consumption of firewood and electricity for heating buildings and houses in rural and mountainous areas.

Solution

Solar air heating systems – a simple, economical, and environmentally friendly solution for livestock farming. They provide continuous, free heat without fuel, emissions, or complex maintenance – ideal for farms, dairies, barns, and rural buildings.

⚙️ Key Applications in Livestock Farming

Cheese ripening (dairies and farms):
Maintaining the optimal temperature (10–15°C) and reducing humidity. Prevents mold growth and condensation, resulting in better cheese quality and consistency. Ideal for small and medium-sized producers.

Livestock barns (cattle, sheep, goats):
Reduction of humidity (drying of bedding), ammonia, and harmful gases. This leads to improved animal health, higher productivity, lower risk of infections, and significantly reduced veterinary costs.

Animal feed drying:
Drying of hay, alfalfa, and concentrated feed. Prevents mold and spoilage, ensuring better feed quality for animals.

Supplementary heating of small houses (rural and mountainous areas):
Free daytime heating during the winter period, reducing firewood and electricity consumption. Ideal for weekend houses and farmhouses.

Additional applications:
Drying of milk storage rooms, heating of workspaces and warehouses, preheating air for biogas plants, drying of organic waste/manure, and drying of equipment and tools.

📊 Economic Analysis

1. Cheese ripening (10–15°C) – Typical example:

Room size: 20–30 m² | Required heating power: ~1.5–2 kW

Conventional heating (electricity): €150–250 per month (during winter)

With a solar air heating system: Covers 60–80% of the required heat demand

Savings: €100–180 per month

Investment: €800–1,500

Payback period: 1–2 years

2. Supplementary heating of a rural house – Typical example:

House size: 40–60 m² | Firewood consumption: 4–6 m³ per year

With a solar air heating system: Reduction of consumption by 30–50%

Savings: €150–300 per year (+ additional comfort from free daytime heating)

Payback period: 2–4 years

🌟 Main Advantages

☀️ 100% free solar energy

🔧 Low maintenance

♻️ Environmentally friendly solution (zero CO₂ emissions)

📈 Fast return on investment

🐄 Improved animal health

🧀 Better product quality

Key Benefits

☀️ 100% free energy
💨 Air heating and drying
💧 Reduction of humidity and mold
🍎 Fruit and vegetable drying

Aplication

🐄 Livestock Barns and Animal Farms "Efficient reduction of ammonia and humidity for healthier animals." The continuous supply of fresh, heated air improves ventilation, significantly reduces harmful ammonia levels, and effectively prevents respiratory diseases in livestock.
` 🧀 Dairies and Cheese Ripening Rooms "Free solar heat for an ideal fermentation process." The system provides a stable microclimate and continuous humidity control, which is essential for natural, high-quality, and safe cheese ripening without electricity consumption.
` 🌾 Animal Feed Storage Facilities "Protection of animal feed from mold and premature spoilage." By maintaining a dry environment through active solar ventilation, the system effectively prevents the development of harmful mycotoxins and mold in hay, grain, and pellets, preserving their high quality.
` 🐔 Poultry Farms "Natural supplementary heating and dry bedding for maximum productivity." Solar collectors supply warm and filtered air that keeps bedding dry, reduces high winter heating costs, and provides optimal conditions for poultry growth.

How the system works

🌀 Cold Air Intake
"Room air is drawn into the collector."
Cold and humid air, which accumulates in the lower part of the room, is actively drawn into the solar collector. This process is carried out by a quiet fan that automatically activates when sensors detect sunlight, ensuring continuous air circulation.

🔆 Absorber
"Solar energy is converted into heat and warms the air."
The high-efficiency solar absorber maximizes the capture of solar radiation. As the air flows through the internal channels, it is intensively heated using 100% free energy, reaching a temperature 20°C to 40°C higher than the outdoor air temperature.

💨 Warm Air Outlet
"Filtered and heated air is returned back into the room."
Before returning to the building, the heated air passes through filters that retain dust and pollutants. The supply of this warm, clean, and dry air creates a slight positive pressure that effectively pushes stale air, excess humidity, and mold out of the space.

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A team that works for you

slika direktorot

Consultations and trainings

Zoran Trajkov, M.Sc. Eng
Manager

Стефан Трајков

Support and education

Trajkov Stefan, B.Sc

Сашко Димитров

Installation and service

electrical engineer Sashko Dimitrov

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