Automatic acquisition and analysis of gas generation in methane fermentation experiments. For emission measurement.
In the energy industry, it is essential to accurately grasp the amount of methane generated from biomass and manage emissions. Particularly in the expansion of renewable energy use, obtaining precise data on methane generation is crucial for efficient energy utilization and reducing environmental impact. Inaccurate data can lead to resource wastage and negative effects on the environment. Gas Endeavour3 supports both batch and continuous processes, automatically collecting gas generation data and facilitating analysis. 【Usage Scenarios】 - Measurement of methane generation in biogas plants - Monitoring of methane generation in waste treatment facilities - Research on methane fermentation processes in research institutions 【Benefits of Implementation】 - Efficient energy use through accurate data acquisition of methane generation - Implementation of data-driven improvements aimed at reducing emissions - Streamlining data collection in research and development
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**Features** - Compatible with batch and continuous processes - Automatically collects gas generation data - Corrects for the effects of temperature and pressure to calculate measurements at 0°C and 1 atmosphere - Gas volume measurement resolution: 9 ml or 2 ml - Real-time BMP analysis **Our Strengths** As experts in electronics and sensors for half a century, we support our customers' research and development. With 50 years as an importer and trading company of electronic components and sensors, we provide products tailored to our customers' needs and offer comprehensive aftercare.
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Methane, gas measurement, etc.
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As an import trading company of electronic components and sensors for 50 years, Sankyo International has always pursued and supplied products that meet our customers' needs. To ensure that our customers can use our products with confidence, we will enhance our aftercare services and continue to strive to earn even more trust from our customers.








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