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Goflow Technology

Goflow Technology designs and installs advanced ventilation systems for educational settings, utilizing vertical displacement ventilation to ensure superior indoor air quality. Their solutions improve student concentration and reduce absenteeism by maintaining optimal environmental conditions and significantly lowering aerosol exposure.

Sassenheim, NetherlandsFounded 202121300+ followers
Updated 3 months ago

Funding

Funding not disclosed

Funding rounds are not available yet.

Founders

Product

Problem

Poor indoor air quality in educational settings leads to health issues, reduced student concentration, and increased absenteeism. Traditional ventilation systems can be inefficient and fail to maintain optimal environmental conditions for learning.

Solution

Goflow Technology provides advanced ventilation systems engineered to create superior indoor climates for educational environments. Their solutions, including vertical displacement ventilation, ensure consistent air quality, contributing to improved student focus and reduced health-related absences. The systems are designed for high energy efficiency and long-term durability, creating healthier and more productive learning spaces. Goflow guarantees air quality in classrooms equipped with their systems, utilizing an over-engineered design philosophy for reduced wear, lower resistance, and higher operational efficiency.

Target Audience

Goflow Technology targets school boards, municipalities, architects, and consultants involved in school construction, renovation, and the improvement of indoor environmental quality.

Features

  • Vertical displacement ventilation for optimal air stratification and contaminant removal.
  • Diagonal ventilation variant for adaptable application across diverse educational spaces.
  • FourSeasons system offering year-round climate control, including heating, cooling, and air filtration.
  • Atmosphere system utilizing advanced vertical displacement for enhanced comfort and energy efficiency.
  • Systems designed with over-dimensioned components for reduced wear, lower resistance, and increased efficiency.
  • Energy efficiency rating of at least 70% better than traditional systems, with potential for further savings when paired with heat pumps.
  • Proven reduction in aerosol exposure for students, with TNO research indicating a 97% decrease.
  • Design for Disassembly and Design for Reuse principles integrated for sustainability.
  • Systems maintain CO2 levels below 700 ppm, exceeding "Frisse Scholen klasse A" standards.
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