Category: TDLAS

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Biogas and syngas may both be combustible process gases, but their compositions, origins, contaminants, and monitoring goals are different. Choosing

Industry Update In 2026, a carbon capture and mineralisation project at a cement plant in Fujairah, UAE, moved toward continuous

Carbon capture is creating a new role for Continuous Emission Monitoring Systems (CEMS). Traditionally, CEMS have focused on measuring pollutants

Hydrogen chloride (HCl) monitoring in waste-to-energy plants is challenging because hot, wet, dusty flue gas can affect sampling, response time,

Coal gasification produces a complex gas mixture whose composition can change with operating conditions. For plants that need reliable CH₄

Ammonia production depends on tight control of gas composition from reforming through synthesis. Unstable gas composition can reduce ammonia yield,

High dust, extreme temperatures, unstable combustion, and tight emission limits make cement kiln gas difficult to measure. Without reliable gas

Hydrogen production may appear straightforward: generate hydrogen, separate it, purify it, and deliver it to the next process. In practice,

Unstable fuel gas and combustion conditions can waste fuel in gas-fired power plants, increase CO, and reduce turbine performance. A process

Unstable syngas composition and difficult sampling can undermine valuable gasification experiments. An online syngas analyzer provides continuous gas data for

HF emissions fluctuate rapidly in waste incineration plants, while high moisture and corrosive flue gas make accurate monitoring difficult. A

Industrial processes are becoming increasingly complex, and accurate gas measurement has become essential for maintaining safety, improving efficiency, and meeting

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