Large Farm Mushroom Growing Box
The Large Mushroom Cultivation Container (also known as a smart mushroom cabin, containerized mushroom growing cabinet, or smart edible fungus cabin) is a fully environment-controlled intelligent growing system designed for large-scale agricultural production. Adopting a containerized modular design, it integrates advanced technologies including IoT environmental monitoring, automatic temperature and humidity regulation, intelligent CO2 management, S-type circulation ventilation and remote cloud control, enabling uninterrupted high-yield mushroom cultivation 365 days a year.
Product Appearance
Containerized mushroom cultivation cabin cluster — modular arrangement, each cabin a standard 40 ft container body with a white insulated outer shell, equipped with ventilation ducts and an intelligent control panel.
Internal Structure
Cabin interior — multi-tier vertical cultivation racks with densely packed spawn bags on 6-7 tiers, complete with LED supplemental light strips, an ultrasonic misting humidification system and digital environmental sensors.
Core Parameters
| Parameter | Specification |
|---|---|
| Product Type | Fully environment-controlled intelligent containerized edible fungus cultivation cabin |
| Cabin Dimensions | Standard 40 ft container (approx. 12.2m × 2.4m × 2.9m); customization supported |
| Cultivation Method | Multi-tier vertical cultivation racks (6-7 tiers per rack) |
| Cultivation Area per Cabin | Effective cultivation area approx. 60-120 m² (converted on a vertical basis), customized on demand |
| Temperature Control Range | 10°C ~ 30°C, accuracy ±0.5°C |
| Humidity Control | 60% ~ 98% RH, accuracy ±3% |
| CO2 Management | Automatic monitoring with adjustable thresholds, linked to the fresh air system |
| Ventilation Method | S-type circulation ventilation technology for uniform air distribution |
| Humidification Method | Ultrasonic industrial misting, droplet size 5-15μm |
| Lighting System | Full-spectrum LED supplemental light strips with zoned program control |
| Control System | PLC / IoT intelligent controller, supporting manual/automatic switching |
| Remote Management | Mobile app + PC cloud platform, real-time monitoring + remote control |
| Alarm Function | SMS / app push notifications: parameter out of range, equipment fault, mains power abnormality, water supply failure alarm |
| Data Storage | Automatic backup of full-cycle cultivation parameters, with historical review and analysis |
| Annual Capacity | 8-10 crops per year per cabin; the specific yield depends on the strain |
| Applicable Strains | Shiitake, oyster mushroom, king oyster mushroom, enoki mushroom, tea tree mushroom, lion's mane mushroom, reishi and more |
| Power Consumption | Approx. 8-15kW (including cooling, heating, humidification and ventilation) |
| Reference Price | ¥100,000 ~ ¥500,000 per cabin (varies with configuration and customized area) |
Production Site Display
Daily operation and maintenance — workers in clean workwear harvesting mushrooms, with automated spray pipes and LED light strips ensuring the optimal growing environment for the mushrooms.
Technical Highlights
1. Intelligent Environmental Control System
A fully closed-loop IoT control architecture that automatically switches environmental modes according to the different growth stages of the mushrooms:
| Growth Stage | Temperature | Humidity | Light | CO2 |
|---|---|---|---|---|
| Mycelium incubation | 22-26°C | 60-70% | Darkness / low light | <5000ppm |
| Primordium induction | 16-20°C | 85-95% | 500-1000 lux | <2000ppm |
| Fruiting body growth | 15-22°C | 85-98% | 800-2000 lux | <1000ppm |
| Harvest | 14-18°C | 80-90% | 500-1000 lux | <1500ppm |
- Preset strain templates — built-in growth parameter templates for multiple strains; switch strains with one touch, with no need to set each parameter individually.
- Zoned segmented control — different cultivation racks within the same cabin can be configured with independent micro-environment parameters.
2. S-Type Circulation Ventilation Technology
Conventional straight-through ventilation easily creates a “wind channel effect”, causing localized fish-scale deformation of the mushroom caps. The S-shaped air duct design optimizes the layout of the air inlets and outlets so that air flows evenly throughout the cabin while maintaining slight positive pressure, effectively preventing contaminating fungi and insects from entering from outside.
3. Remote Monitoring and Online Service
- View high-definition video and growth images inside the cabin in real time via mobile phone or PC.
- Remotely adjust all parameters including temperature, humidity, light and ventilation.
- Remote cabin inspection and online guidance from cultivation experts, lowering the technical barrier.
- Remote diagnosis of equipment maintenance, reducing the frequency of on-site service visits.
4. Ultrasonic Industrial Misting System
- Droplet diameter of 5-15μm, long suspension time and uniform humidification.
- Upgraded moisture-proof power supply box for long-term operation in high-humidity environments.
- Adjustable misting volume to match the humidity requirements of different growth stages.
- Automatic water replenishment via a water level sensor, requiring no manual supervision.
5. Multi-Level Safety Alarm System
| Alarm Type | Trigger Condition | Notification Method |
|---|---|---|
| Parameter alarm | Temperature / humidity / CO2 outside the set range | App push + audible and visual alarm |
| Equipment alarm | Fan / compressor / humidifier failure | App push + SMS |
| Power alarm | Mains power failure / phase loss | Emergency SMS notification |
| Water alarm | Low water level in the tank / water supply failure | App push + audible and visual alarm |
6. Automatic Loading and Unloading System
Equipped with a simple automatic loading and unloading device that greatly reduces the labour cost of replacing spawn bags. A single worker can manage the daily operation and maintenance of 5-10 cabins at the same time.
7. Full-Cycle Data Traceability
The complete environmental parameters of every crop cycle are automatically archived to the cloud, forming a traceable cultivation log. The data supports multi-dimensional query and analysis by batch, strain and time period, providing a scientific basis for the continuous optimization of cultivation techniques.



