Skip to main content
LS

Luna Scientific

Develops fully automated aquaponic systems that integrate fish and plant production in a symbiotic environment, using IoT and AI to optimize growth conditions and resource use. These systems consume 90% less water, require 20 times less land, and eliminate the need for artificial fertilizers, reducing production costs while increasing yield and sustainability.

Kalodzishchy, PolandFounded 202215200+ followers
Updated 4 months ago

Funding

Funding not disclosed

Funding rounds are not available yet.

Founders

Product

Problem

Traditional farming methods often require significant water consumption, extensive land use, and artificial fertilizers, leading to environmental concerns and high production costs. Limited access to resources like water and space further restricts food production, especially in urban areas and regions with harsh climates.

Solution

Luna Scientific develops automated aquaponic and hydroponic systems that integrate plant and fish production in a symbiotic, resource-efficient environment. These systems leverage IoT and AI to optimize growing conditions, minimize water usage by up to 90%, and reduce land requirements by up to 20 times compared to conventional agriculture. By eliminating the need for artificial fertilizers and enabling precise environmental control, Luna Scientific's solutions lower production costs and promote sustainable food production in urban settings and areas with limited resources. The company's systems offer live monitoring and automated adjustments of key parameters, ensuring optimal plant growth and reducing the need for manual intervention.

Target Audience

Luna Scientific's primary customers include urban farmers, restaurants, schools, research institutions, and individuals seeking sustainable and efficient food production solutions in limited spaces or resource-constrained environments.

Features

  • Fully automated hydroponic and aquaponic systems for efficient plant and fish production
  • IoT sensors for real-time monitoring of temperature, humidity, pH levels, and nutrient concentrations
  • AI-powered algorithms to optimize growing conditions and resource utilization
  • Vertical design to maximize space utilization, ideal for urban farming and limited spaces
  • Closed-loop system that reduces water consumption by up to 90% compared to traditional methods
  • Elimination of artificial fertilizers through natural nutrient cycling in aquaponic systems
  • Remote monitoring and control capabilities for convenient management and quick issue resolution
  • Easy maintainability with automated cleaning and sterilization processes to minimize disease and pest risks
This profile is AI-generated and may contain inaccuracies.