Hybrid Marine Intelligent Container-Type Plant Factory
Hybrid Marine Intelligent Container-Type Plant Factory
Hybrid Marine Intelligent Container-Type Plant Factory
Hybrid Marine Intelligent Container-Type Plant Factory
Hybrid Marine Intelligent Container-Type Plant Factory
Hybrid Marine Intelligent Container-Type Plant Factory
Hybrid Marine Intelligent Container-Type Plant Factory
Hybrid Marine Intelligent Container-Type Plant Factory
Hybrid Marine Intelligent Container-Type Plant Factory
Hybrid Marine Intelligent Container-Type Plant Factory
Hybrid Marine Intelligent Container-Type Plant Factory
Hybrid Marine Intelligent Container-Type Plant Factory
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Product Introduction

Hybrid Marine Intelligent Container-Type Plant Factory

(Container-based Vegetable-Mushroom Symbiosis Cultivation System)

Product Introduction

This world-first hybrid marine intelligent container-type soilless cultivation system is specially engineered for harsh marine and offshore operating environments.
It features an innovative vegetable-mushroom symbiotic ecological concept. Mushrooms release carbon dioxide during growth, while leafy vegetables consume CO₂, creating an internal closed-loop gas circulation. This significantly reduces energy consumption caused by frequent ventilation inside sealed enclosures.
The complete unit is housed within a standard shipping-container shell, with full marine anti-corrosion treatment and built-in anchoring & anti-shake reinforcement structures. It withstands ship rolling, pitching, mechanical vibration and heavy salt-fog conditions at sea. Once connected to freshwater and power supplies, the system runs fully automatically, producing pesticide-free fresh vegetables and mushrooms year-round for long-voyage vessels, offshore platforms and remote off-grid locations.

Core Key Features

  1. Unique vegetable-mushroom symbiotic closed-loop ecosystem
    Physically separated dual-chamber layout for vegetables and mushrooms. CO₂ generated from mushroom cultivation is recycled for vegetable growth. It lowers ventilation load and overall power draw and achieves balanced carbon-oxygen circulation inside the container unit.
  2. Marine-hardened all-in-one container-integrated unit
    Standard shipping-container outer housing with full anti-corrosion finishing. Built-in anchoring and anti-shake reinforcement to endure heavy rolling, pitching and offshore vibration. Delivered as one complete lift-able module; extensive cabin reconstruction is not required.
  3. Fully-autonomous intelligent environmental control system
    Real-time monitoring and automatic adjustment for temperature, humidity, light intensity, CO₂ level and nutrient-solution parameters. Supports local touch-screen operation plus remote APP-based monitoring. Pre-programmed growth profiles for multiple crop varieties; the system gives timed reminders for sowing, transplanting and harvesting workflows.
  4. Outstanding energy-saving performance
    Average daily power consumption ≤ 30 kWh. Energy consumption per kilogram of harvested crops is below 6 kWh. Optional photovoltaic energy-storage add-on enables near-zero-carbon operation. Daily freshwater consumption is around 120 L with high-efficiency nutrient-solution recirculation.

Typical Application Scenarios

  1. New-build ocean-going & special-purpose vessels
    Polar research ships, survey vessels and large newly-constructed merchant ships. Allocate dedicated deck space for container installation during ship construction to secure reliable long-term fresh-food supply for crews.
  2. Off-shore oil & gas platforms
    Works for fixed and floating offshore platforms, solving the challenge of infresh resupply of fresh vegetables and mushrooms for offshore personnel.
  3. Remote island outposts and off-grid land-based sites
    Island civilian / work stations, remote off-grid camps where fresh-produce logistics are expensive and difficult.
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