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I recently received a material with rather unique properties. Is there any filtering device that can filter at 200 degrees Celsius and 0.8 MPa? The process temperature and pressure are required to be maintained at around 200 degrees Celsius and 0.8 MPa. The filtered crystals are about 2 cubic units in size, while the solution is about 8 cubic units; it would be ideal to have continuous feeding and discharging as well. Is there such a device? Which one has design experience? Thank you
We have experience; the temperature is fine, the pressure is fine, and it can also be made continuous. 13910788901
Send me a specification sheet via email at cui.can@livicfilter.com, and I will prepare a proposal and quote for you.
It would be best if you could tell us the solid content of the material and the requirements for the filter cake, so that everyone can know what type of filtration is needed.
For specific filtration liquids, the impurity content, and the required filtration precision, you need to provide these detailed filtration parameters. If you’re interested, please send the relevant parameters to my email: 836931240@qq.com, and I’ll prepare a detailed filtration plan for you!
The equipment you mentioned is produced by our company. You can send me the required parameters for the equipment via email at FBLZT2008@163.COM; I can help you select the appropriate model.
200 degrees Celsius, 0.8 MPa – continuous discharge is very simple. The temperature is not high and the pressure is not great; there is just a lot of solid material present, so it belongs to filtration and separation equipment.
The filtering medium is water, and it’s quite difficult to keep the aqueous solution from cooling down during filtration, haha
No problem at all; all that’s needed is to insulate the equipment properly, as the filtration process doesn’t cause a drop in temperature. Filters equipped with sintered mesh filters can generally meet the required precision levels.
A sintered mesh filter element is a good choice. No precision was mentioned. . . . . . .