Main Materials for Greenhouse Construction in China
1.
Framework Materials
2.
· Steel: Commonly used galvanized steel pipes, which have good strength and corrosion resistance.
· Aluminum Alloy: Lightweight and corrosion-resistant, suitable for small greenhouses.
3.
Covering Materials
4.
· Glass: Good light transmission, suitable for high-end greenhouses, but more expensive.
· Plastic Film: Such as polyethylene (PE) film, economical and practical, often used for greenhouses.
· Polycarbonate Panels: Impact-resistant and good thermal insulation, suitable for greenhouse roofs.
5.
Insulation Materials
6.
· Foam Boards: Used for the walls and floor of the greenhouse, providing good insulation.
· Wool or Other Natural Materials: Used for thermal insulation.
7.
Ventilation and Irrigation Systems
8.
· Fans and Exhaust Windows: Used for air circulation and temperature control.
· Drip Irrigation Systems: Efficient water management, reducing water waste.
9.
Ground Materials
10.
· Concrete: Used for greenhouse foundations, providing stability.
· Paving Stones or Gravel: Used for drainage and aesthetics.
11.
Additional Facilities
12.
· Shade Nets: Used to control sunlight exposure and protect plants.
· Heating Systems: Provide temperature regulation during cold seasons.
The selection of these materials usually depends on the type of greenhouse, climatic conditions, and budget.
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• Greenhouse acreage has expanded by ~1,000 ha in the last five years; vegetable output doubled to 1.1 Mt in 2021 and is projected to reach 1.6 Mt by 2025. • Cucumber: 830 kt (95 % self-sufficiency, surplus for export).
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A turnkey, fully-controllable greenhouse engineered for large-scale, high-value crops (flowers, herbs, leafy greens, berries and medicinal plants) in Thailand’s tropical monsoon climate. By combining 100 % automated blackout with soil-less hydroponics, growers can schedule 3–5 harvests per year regardless of external weather or photoperiod.
A turnkey greenhouse is more than four walls of glass or film—it is a fully-integrated, plug-and-play production facility that arrives on site ready to grow crops the same week it is commissioned. In 2025, the smartest turnkey projects combine structural engineering, IoT sensing, AI control, renewable energy and robotics into one cohesive package. The result is a new generation of “smart greenhouses” that deliver predictable yields, ultra-low resource use and data-driven crop optimization from day one.
Hydroponic systems have become an essential technology in modern greenhouse cultivation. Instead of using traditional soil, plants are grown in nutrient-rich water solutions or inert substrates such as rockwool, perlite, or cocopeat. This method provides precise control over water, nutrients, and oxygen, resulting in faster growth and higher yields.
Hydroponics, the method of growing plants without soil by using mineral nutrient solutions in a water solvent, finds its most efficient and productive application within the controlled environment of a greenhouse. This powerful combination represents the forefront of modern, sustainable agriculture.
When preparing to build a high-end smart greenhouse, we usually ask our clients the following: 1. Project Purpose – What crops will be grown (vegetables, flowers, fruits, seedlings, or research)? 2. Greenhouse Size – What is the required length, width, and height?