Gas Leak Detection
Advanced airborne solutions for methane and emissions monitoring across any environment.
Synergy Aviation offers multiple gas detection technologies to meet the varied needs of infrastructure operators, regulators, and environmental programs. Our systems are designed to detect and map methane and other gas emissions with high accuracy, combining advanced sensing methods with geo-referenced reporting for immediate action.
Boreal Laser GLD
High-Precision Gas Detection with Real-Time Anomaly Mapping
The Boreal Laser Gas Leak Detection System is an aircraft-mounted solution that pairs a laser-based gas analysis probe with proprietary GPS tracking, delivering real-time detection of gas anomalies from the air. Using Tunable Diode Laser Absorption Spectroscopy (TDLAS), this system offers exceptional sensitivity and reliability in detecting methane (CH₄), carbon dioxide (CO₂), and ammonia (NH₃) across a wide range of concentrations—from 0.5 to 3,000 ppm.

Key features:
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Methane spikes labeled and geo-referenced
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Field-wide methane mapping (+2 ppm)
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Online portal for viewing and managing anomaly reports
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HD visual inspection integration for contextual reporting
Available on: Rotary Wing and UAV platforms
This solution is ideal for pipeline surveillance, facility inspections, and fugitive emissions surveys, providing both broad-area coverage and pinpoint accuracy.
Falcon XL
Cost-Effective Fixed Wing Methane Detection
The Falcon XL system is a fixed-wing gas detection platform designed to provide reliable, cost-efficient methane monitoring in large-scale aerial surveys. Using Tunable Diode Laser Absorption Spectrometry (TDLAS), Falcon XL detects methane down to 20 ppm, making it a strong alternative where traditional helicopter or UAV deployments may not be practical.

Key features:
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Fixed-wing deployment for larger coverage areas
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Methane detection sensitivity to 20 ppm
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Integrated HD visual inspection
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Optimized for long-range, low-cost operations
Available on: Fixed Wing platforms
Falcon XL is ideal for operators looking for efficient methane detection over long distances, particularly in linear infrastructure monitoring and remote-area pipeline assessments.