Labasics
Borosilicate Glass Filter Flask
Borosilicate Glass Filter Flask
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- Labasics filtration flask is extensively utilized in laboratory vacuum filtration applications, providing significant advantages when it comes to filtering concentrated solutions that have sluggish flow or present difficulties during the filtration process under standard atmospheric pressure
- Equipped with a 24/40 standard taper outer joint and a 9 mm hose interface
- Made of high borosilicate glass, this product features a thick-walled design that is resistant to high pressure; it is a reusable option for your needs
- Warranty: Labasics 1-year limited warranty; if received damaged, please contact us immediately; we will solve it until satisfied
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Questions & Answers
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About what inside pressure can the 5 different "Borosilicate Glass Filter Flask" and "Glass Vacuum Cold Trap, 10 mm Serrated Hose, 200 mm Length Below with 24/40 Joint" withstand?
Dear Customer,
Thank you for contacting Labasics.
The "Borosilicate Glass Filter Flasks" and the "Glass Vacuum Cold Trap, 10 mm Serrated Hose, 200 mm Length Below with 24/40 Joint" can typically withstand an internal negative pressure of approximately -0.065 MPa.
Please feel free to reach out if you need more technical specifications or have further questions.
Best regards,
Labasics Team
It allows for easy connection to vacuum sources, enhancing the filtration process.
Designed with efficiency in mind, the flask's structure promotes effective filtration, allowing researchers to achieve precise and consistent results in their experiments.
Designed with user convenience in mind, the filter flask is easy to set up, providing researchers with a hassle-free experience during filtration procedures.
The transparent glass construction enables real-time observation of the filtration process, allowing researchers to monitor and control the procedure with ease.
Resistant to a wide range of chemicals, the borosilicate glass filter flask is suitable for use with diverse solvents and reagents, enhancing its versatility in different experimental conditions.