Introducing our exceptional product, the QGF410 3.5 mL In-Line Flow Through Cells with Quartz Tubulation. These flow cells are designed to meet the highest standards of accuracy and reliability in your analytical processes. Let’s delve into the options and specifications of this remarkable product:
Options:
- 10mm-Flow-Cell: This option refers to the specific configuration of the flow cell with a 10 mm path length.
Specifications:
- Pathlength: The QGF410 flow cells feature a 10 mm path length, ensuring optimal light transmission and precise measurements.
- Chamber Volume: With a chamber volume of 3,500 μL, these flow cells accommodate larger sample volumes, allowing for more versatile and efficient analyses.
- Viewing Windows: Equipped with four polished windows, these flow cells offer enhanced visibility, enabling accurate and reliable observation of your samples.
- Material: Crafted from high-quality quartz, these flow cells exhibit exceptional optical properties, chemical resistance, and long-lasting durability.
- Fabrication Type: The QGF410 flow cells are molded to perfection, ensuring consistent performance and reliability in every use.
- Dimensions: The external dimensions of the flow cell are 60(35) x 12.5 x 12.5 mm, while the internal dimensions are 35 x 10 x 10 mm, providing a compact and efficient design for seamless integration into your analytical setup.
- Tubulation: The flow cells feature quartz tubulation with an outer diameter (OD) of 7 mm and an inner diameter (ID) of 5 mm, facilitating smooth sample flow and optimal connectivity.
- Wavelength Range: The material used in these flow cells, quartz, provides a wide spectral range of 200 – 2,500 nm, allowing for compatibility with various analytical techniques and applications.
The Versatile Applications of QGF410 3.5 mL In-Line Flow Through Cells with Quartz Tubulation:
The QGF410 flow cells with quartz tubulation find applications in a wide range of scientific and analytical fields. Here are some of the key areas where these flow cells excel:
- Spectrophotometry: These flow cells are ideal for spectrophotometric measurements, allowing precise analysis of the absorption and transmission of light through liquid samples. They provide accurate and reliable data for various applications, including chemical analysis, biological assays, pharmaceutical research, and environmental monitoring.
- Chromatography: The QGF410 flow cells are commonly used in chromatographic systems for the detection and quantification of compounds. Their robust construction and compatibility with organic and corrosive chemicals make them suitable for high-performance liquid chromatography (HPLC), ion chromatography (IC), and other chromatographic techniques.
- Flow Analysis: With their in-line design and excellent chemical resistance, these flow cells are well-suited for continuous flow analysis systems. They enable real-time monitoring of chemical reactions, kinetics studies, and process control in industries such as pharmaceuticals, food and beverage, and water quality analysis.
- Cell Counting: The QGF410 flow cells, with their precise path length and multiple viewing windows, are used in cell counting applications. They allow accurate determination of cell concentrations and viability using optical methods such as absorbance or fluorescence measurements.
- Biotechnology and Life Sciences: These flow cells play a crucial role in various biotechnological and life science applications. They are utilized in DNA and protein analysis, enzyme kinetics, cell culture monitoring, and other molecular biology techniques.
- Research and Development: The QGF410 flow cells are highly valued in research and development laboratories for their versatility and reliability. They provide scientists and researchers with valuable tool for studying chemical reactions, characterizing biomolecules, and advancing scientific knowledge across diverse disciplines.
By incorporating the QGF410 3.5 mL In-Line Flow Through Cells with Quartz Tubulation into your laboratory or analytical setup, you gain access to a versatile and robust solution that enhances the accuracy, efficiency, and reproducibility of your experiments and analyses. Experience the exceptional performance of these flow cells and unlock new possibilities in your scientific pursuits.
Customization Options: At Aireka Scientific, we understand the importance of tailored solutions. That’s why we offer customization options to meet the unique specifications and requirements of our customers. Whether you need a different path length, chamber volume, window configuration, or any other parameter, we can work closely with you to create a customized solution that precisely matches your analytical needs.
In conclusion, the QGF410 3.5 mL In-Line Flow Through Cells with Quartz Tubulation are meticulously designed to deliver exceptional performance in your analytical endeavors. With their superior quartz construction, multiple viewing windows, and customization options, these flow cells offer unparalleled accuracy, durability, and versatility. Upgrade your analytical setup with the QGF410 flow cells and experience the utmost precision and reliability in your scientific pursuits.
What’s the use of flow cells?
Flow cells have a wide range of applications in scientific and laboratory settings due to their unique design and functionality. Here are some key uses of flow cells:
- Spectrophotometry: Flow cells are commonly employed in spectrophotometry, where they enable the measurement of absorbance or transmittance of light through a sample. By passing the sample through the flow cell, researchers can obtain valuable information about the composition, concentration, and properties of the sample.
- Chemical Analysis: Flow cells are instrumental in various chemical analysis techniques, such as liquid chromatography and flow injection analysis. These techniques involve the continuous flow of a sample through the flow cell, allowing for real-time monitoring and detection of analytes.
- Biological Research: Flow cells find extensive use in biological research, particularly in applications such as cell counting, cell culture monitoring, and enzyme kinetics. The controlled flow of biological samples through the flow cell enables researchers to study cellular processes, perform viability assessments, and analyze enzymatic reactions.
- Flow Cytometry: Flow cells are integral components of flow cytometers, powerful instruments used for cell analysis and sorting. In flow cytometry, cells suspended in a fluid are passed through the flow cell one at a time, allowing for the characterization and sorting of cells based on their physical and biochemical properties.
- Microfluidics: Flow cells play a crucial role in microfluidic systems, which manipulate small volumes of fluids for various applications. Microfluidic flow cells enable precise control of fluid flow, mixing, and reactions, making them valuable tools in fields such as drug discovery, genomics, and diagnostics.
- Environmental Monitoring: Flow cells are utilized in environmental monitoring systems to analyze water quality, detect pollutants, and assess the health of ecosystems. By continuously flowing water samples through flow cells, researchers can monitor parameters such as dissolved oxygen, nutrient levels, and pollutant concentrations.
The use of flow cells offers several advantages, including:
- Real-time Monitoring: Flow cells facilitate continuous and real-time monitoring of samples, enabling researchers to capture dynamic changes and obtain immediate results.
- Sample Conservation: Flow cells require only small sample volumes, making them suitable for applications where sample conservation is crucial, such as precious or limited sample scenarios.
- Repeatability and Precision: Flow cells provide consistent and repeatable measurements, ensuring reliable and accurate data acquisition.
- Flexibility and Customization: Flow cells come in various sizes, pathlengths, and designs, allowing for customization to suit specific experimental requirements.
In summary, flow cells are versatile tools that enable the controlled flow of samples, facilitating a wide range of scientific analyses, measurements, and experiments. Their applications span across disciplines such as chemistry, biology, biotechnology, environmental science, and more, making them indispensable in research and laboratory settings.
0 | 1 | 2 | 3 | ||
---|---|---|---|---|---|
*Molded | *Fused | *Bonded / Glued | |||
UV vis ( 190- 2500 nm) | Yes | Yes | Yes | ||
Transmission Matched | Yes | Yes | Yes | ||
Transmission > 80% | Yes | Yes | Yes | ||
Resistant to Acids and Bases (except hydrofluoric acid) | Yes | Yes | No | ||
Resistant to Organic Solvents | Yes | Yes | No | ||
Usable upto 500°C (932°F) | Yes | Yes | No | ||
Usable upto 1200°C (2192°F) | Yes | No | No | ||
0 Variations Reading | On Request | No | No | ||
Fabrication | Molded | Assembled with Quartz Powder | Assembled with Glue | ||
Adhesives | No | No | Yes | ||
Storage | Short Term Storage | Clean After Use | Clean After Use | ||
Available Material | ES Quartz Material | ||||
Note | Molded and fused cuvettes and cells are assembled by direct fusion without the use of adhesives throughout the production process. This guarantees resistance against corrosive chemicals and high temperature. Each quartz cuvette and cell has excellent transmission from 190nm to 2500nm. |
To the best of our knowledge, the information provided here is accurate. However, Aireka Scientific assumes no liability for the accuracy of this page. The values provided are typical at the time of manufacture and may vary over time and from batch to batch. All products are for laboratory and research and development use only, and may not be used for any other purpose including health care, pharmaceuticals, cosmetics, food, or commercial applications.
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