Description
The Waters ChromScope v1.5 CO2 Extraction Units are cutting-edge instruments designed for supercritical fluid extraction in analytical and research applications. These units provide a reliable and precise solution for extracting target compounds from various matrices, ensuring high-quality results. The ChromScope v1.5 features a robust and corrosion-resistant construction, typically made from stainless steel, ensuring durability and longevity. It operates with the precise control of pressure and temperature, enabling supercritical fluid extraction. This unit offers a range of extraction vessel sizes to accommodate different sample volumes. It’s capable of reaching high pressures and temperatures required for efficient extraction. These extraction units are engineered for ease of use and accurate compound extraction. They feature a user-friendly interface for straightforward operation and precise parameter control. The ChromScope v1.5’s high-pressure capability ensures efficient supercritical fluid extraction, while the vessel’s design minimizes the risk of sample loss or cross-contamination, enhancing the integrity of extraction processes. ChromScope v1.5 CO2 Extraction Units often incorporate connectivity options, including USB and RS-232 interfaces, for data transfer and remote control. These features facilitate data management and automated extraction processes, ensuring compliance with industry standards and regulatory requirements. The unit’s compatibility with data management systems and control software further enhances efficiency and reproducibility in analytical applications. In summary, the Waters ChromScope v1.5 CO2 Extraction Units are essential instruments for supercritical fluid extraction in analytical and research laboratories. Their technical specifications, functional attributes, and connectivity options make them invaluable tools for achieving accurate and efficient compound extraction. With their durable construction, user-friendly design, and high-pressure capabilities, these units significantly enhance the precision and reliability of extraction processes in various laboratory settings.https://www.waters.com/webassets/cms/support/docs/716004367ra.pdf
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