
Smart Building Air Quality & Environmental Intelligence


Create safer, smarter and more efficient buildings with real-time indoor air quality, environmental monitoring and intelligent cloud-based analytics.
iCE Healthy Buildings combines industrial IoT sensors, wireless connectivity, cloud monitoring and AI-assisted analytics to give building owners, facility managers and safety teams a live view of indoor environmental conditions across offices, schools, warehouses, healthcare facilities, retail sites, data centres and distributed branches.
From CO₂, particulate matter and VOCs to temperature, humidity, lighting, noise and hazardous gases, iCE provides the visibility needed to improve occupant wellbeing, support operational decisions and respond faster when conditions move outside acceptable limits.
HOW DO WE DO IT?
iCE deploys air quality and environmental sensors in strategic locations throughout your building or across multiple remote sites. Data is securely transmitted to the iCE NEO cloud platform, where users can view live readings, trends, alerts and historical performance from any web-enabled device.
The system can monitor individual rooms, shared spaces, plant rooms, warehouses, cold stores, production areas, classrooms, meeting rooms and critical environments. When predefined thresholds are exceeded, alerts can be triggered to notify the right people or activate local responses such as beacons, extraction fans or ventilation controls.
Where required, data can also be integrated into smart building systems, BMS platforms, HVAC controls or third-party dashboards.

WHY HEALTHY BUILDINGS MATTER
iCE Healthy Buildings directly influence occupant health, comfort, productivity, operational risk and energy performance. Poor indoor air quality, excessive CO₂, high humidity, airborne particles, VOCs, poor ventilation, lighting imbalance and noise can all affect how people feel, work and perform.
A modern healthy building solution provides the data needed to move from reactive maintenance to proactive building intelligence.
KEY OUTCOMES;
Occupant wellbeing
Maintain healthier indoor environments by continuously monitoring air quality, comfort and environmental conditions.
Smart building visibility
Turn distributed sensor readings into one central, real-time operational view across multiple locations.
AI-assisted insights
Use trend analysis and intelligent alerts to identify abnormal patterns, recurring issues and possible ventilation or environmental risks.
Energy and ventilation optimisation
Understand how occupancy, CO₂, temperature and humidity affect ventilation demand, HVAC performance and comfort.
Compliance and reporting support
Maintain historical records that can support internal health and safety reviews, ESG reporting, facility audits and operational planning.
SENSOR TYPES
Common sensor types: (others on request)
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Particulate Matter (Dust)
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Temperature
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Humidity
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Air Flow
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Atmospheric Pressure
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Illumination
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Carbon Dioxide
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Formaldehyde
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OZONE
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TVOC
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O2
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H2S
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CH4
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CO
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NO2
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H2
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NH3

MULI-FUNTION AIR-QUALITY SENSORS
The iCE multifunction air-sensor allows for multiple sensor types in a single, compact enclosure. Sensor requirements and types may vary depending on location, condition and/or application. Sensor types are pre-installed on order.

SINGLE EVENT TYPE SENSORS
This type of iCE sensor is available with a single sensor type each within its own protective enclosure. Multiple fixing/mounting options are available including; wall/ceiling, in-duct and outdoor mounting options

WIRELESS SENSORS
When used with the the iCE i-Sky-II LoRaWAN IoT platform one gets the freedom, flexibility and benefits of a true wireless solution. Internal, long-life battery's combined with low frequency, deep penetrating, long distance sensor range.

CENTRAL & REMOTE MONITORING
Buildings and sensors are remotely monitored over the iCE-NEO cloud monitoring platform.
This offers a real-time view of the status of all environments that are being monitored.
Alerts can be trigged based on pre-defined thresholds for prompt action.
Local triggers can be automatically actioned such as a beacon or extraction fan.

ALGORITHMS
Using algorithms from the data collected from multiple sensor types and locations, we can further enhance the accuracy and usefulness of the information available to us.

