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MobyFly | Zero-Emission Hydrofoil Boats

MobyFly designs zero-emission hydrofoil boats that utilize advanced hydrofoil technology to transport passengers at speeds exceeding 70 km/h while consuming up to 95% less energy than traditional diesel ferries. This solution addresses the environmental impact of waterborne transport by eliminating waves and pollution, making it a sustainable alternative for mass transit.

Bo, SwitzerlandFounded 2020143K+ followers
Updated 20 months ago

Funding

Funding not disclosed

TW
Funding rounds are not available yet.

Founders

Product

Problem

Traditional diesel ferries consume significant amounts of energy and produce substantial pollution, contributing to environmental damage and climate change. The operation of these ferries also generates waves that can erode shorelines and disrupt marine ecosystems.

Solution

MobyFly designs and delivers zero-emission hydrofoil boats that provide a sustainable alternative for waterborne passenger transport. By utilizing advanced hydrofoil technology, these boats lift above the water's surface, reducing drag and enabling speeds exceeding 70 km/h. This design significantly reduces energy consumption by up to 95% compared to conventional diesel ferries, while also eliminating waves and pollution. MobyFly offers a cost-efficient mass transit solution that benefits operators, municipalities, and passengers by leveraging existing waterways as a natural infrastructure.

Target Audience

The primary target audience includes ferry operators, municipalities, and transportation authorities seeking sustainable and cost-effective waterborne transportation solutions.

Features

  • Advanced hydrofoil technology for reduced drag and increased speed
  • Zero-emission propulsion system for environmentally friendly operation
  • Energy consumption up to 95% less than traditional diesel ferries
  • Wave-free operation to minimize shoreline erosion and protect marine ecosystems
  • Passenger capacity suitable for mass transit applications
This profile is AI-generated and may contain inaccuracies.