Combustion method (improved Dumas method) nitrogen (protein) analysis device FP828
CHN828,FP828,FP828P
Adopting the latest advanced technology using the "combustion method (improved Dumas method)" according to the Food Labeling Act! It enables rapid and accurate analysis of nitrogen and protein in food.
The FP828 nitrogen/protein analysis device (Improved Dumas Method) utilizes the latest hardware and software technology to enhance the performance and reliability of the equipment. It allows for rapid and accurate analysis of nitrogen/protein in food. The device employs the combustion method, enabling nitrogen measurement in just 2.8 minutes. The sample weight can be up to 1g. For more details, please contact us or download the catalog.
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**Main Features** ○ High-throughput analysis with minimal downtime - The FP828 achieves a cycle time of 2.8 minutes - Extends reagent lifespan, allowing for continuous analysis of 4,000 samples with reducing copper - The 30-sample auto-loader can be optionally expanded to accommodate up to 120 samples ○ Versatile and durable design suitable for a wide range of applications - The quartz combustion tube, with a maximum temperature of 1050°C, completely combusts macro samples in an oxygen flow - The porous large crucible facilitates the combustion of macro samples and reduces maintenance frequency - The thermal conductivity detector is compatible with both helium and argon carrier gases, allowing for switching without hardware replacement ○ Low running costs - The combustion tube does not require filling reagents such as oxidants - A thermoelectric cooler removes moisture without using reagents - Sampling a constant amount of measurement gas from the ballast tank keeps the consumption of reagents like reducing copper consistent and minimal ◆◆ We offer a lineup of CHN828, FP828, and FP828P. ◆◆ ● For more details, please contact us or download the catalog.
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Company information
LECO Corporation in the United States has been meeting the expectations of the development of materials and quality control analysis in various industrial products since 1936. In particular, in the field of carbon, sulfur, oxygen, nitrogen, and hydrogen analysis in metallic materials, it holds an overwhelming market share and can provide analytical values that ensure sufficient reliability for global transactions. Additionally, the application of these analytical techniques has been recognized in various fields, such as elemental analysis of organic substances and nutritional component analysis in food, as convenient, safe, and more accurate methods. Furthermore, in the field of mass spectrometry, as a pioneer of time-of-flight mass spectrometry (TOF-MS), it has contributed to the accumulation of data that serves as a foothold for cutting-edge research in Europe and the United States. Moving forward, we will continue to strive to contribute to the development of new technologies, productivity, and quality improvement in various fields based on accurate analytical results.