Protect Every Drop. Empower Every Decision.
From field sensor to AI-assisted environmental assessment — the complete data intelligence pipeline.
Enter physicochemical water quality readings. AquaSentinel calculates a Water Quality Score locally using WHO guidelines, then delivers an AI-assisted environmental risk and suitability assessment.
Physicochemical parameters for analysis
Enter your readings and click Analyze to receive an AI-assisted physicochemical risk assessment.
Calculating Water Quality Score…
Sending data to Groq AI…
Analyzing physicochemical parameters…
Generating risk assessment…
The AI analysis service could not be reached. Your Water Quality Score has still been calculated locally and is shown below.
Please check your API key or try again later.
Locally calculated · WHO guidelines
pH 30% · TDS 30% · Turbidity 25% · Temp 15%
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This assessment is based solely on physicochemical parameters. Laboratory analysis is required to verify microbiological and advanced chemical safety before determining water potability.
⚠ This AI-assisted assessment supports environmental decision-making and does not constitute a certification of water safety. Always confirm with certified laboratory testing before any decisions affecting human health.
Continuous physicochemical monitoring across multiple water bodies. AI-assisted trend analysis and decision support for environmental management.
Live data fetched from Supabase. Readings updated each time a field upload is submitted.
Generating network intelligence summary…
Generating trend assessment…
Future versions of AquaSentinel will provide an interactive geospatial monitoring system combining real-time station data, historical trends, citizen reports and environmental alerts on a live map — enabling watershed-level environmental intelligence at a glance.
Beyond water monitoring — an intelligent ecosystem for environmental decision making.
Analyzing environmental conditions…
AquaSentinel bridges the gap between physicochemical water monitoring and intelligent environmental decision-making. Continuous data streams are processed through AI to deliver structured risk assessments that support field personnel, researchers, and environmental managers.
Groq AI converts raw physicochemical data into structured environmental risk reports — supporting decisions without requiring manual interpretation.
Each component — sensing, transmission, storage, analysis — operates independently and can be upgraded without rebuilding the system.
Fully off-grid power architecture means deployment in any environment — rivers, reservoirs, agricultural fields — without infrastructure dependency.
End-to-end IoT stack from sensor to cloud, enabling continuous monitoring with real-time remote visibility from any device.
Multi-node deployment support means a single AquaSentinel instance can scale to monitor entire river basins or municipal water networks.
Municipal and regional authorities can deploy AquaSentinel across public water bodies to automate compliance reporting and early pollution detection.
Factories and processing plants can monitor discharge points in real time, ensuring effluent quality meets regulatory standards before entering waterways.
Farmers gain continuous insight into irrigation water quality, enabling data-driven decisions that protect soil health and crop yields.
Universities and environmental labs can use AquaSentinel as a field data collection platform, replacing manual sampling with automated longitudinal monitoring.
Remote communities lacking laboratory infrastructure can monitor water sources continuously, receiving AI-guided physicochemical assessments to support informed decisions.
Urban water management systems can integrate AquaSentinel nodes into existing IoT infrastructure to maintain city-wide water quality dashboards.
AquaSentinel is not a sensor. It is not a dashboard. It is not an AI chatbot. It is the convergence of five engineering disciplines into a single field-deployable intelligence platform.
"AquaSentinel transforms raw environmental data into meaningful decisions that support safer water management — anywhere on Earth."