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Zeolites have several industrial applications, especially in waste water treatment.
Previous work in this area was achievable only using zeolites.
Zeolites are also known for their ability to absorb and lose water without any effect on its crystal structure.
Synthetic zeolites hold some key advantages over their natural analogs.
Conventional open pit mining techniques are used to mine natural zeolites.
Erionite was also reported to be a minor component in some commercial zeolites.
Then they created these zeolites in the lab.
It is associated with other zeolites such as stilbite and heulandite.
Zeolites are also used in the management of leaks of radioactive materials.
Thus, the use of aluminium trichloride in some applications is being displaced by zeolites.
Therefore, the pores in many zeolites are not cylindrical.
Activated carbon and zeolites are also frequently added to aquarium filters.
At lower pH, zeolites with high silica content are favored.
The replacement of sodium triphosphate by zeolites offers some relief to this problem.
Clays, zeolites, and other natural material have a high capacity for cation exchange.
Sodium aluminate solutions are intermediates in the production of zeolites.
Two that are often used to make water more pure are activated carbon and zeolites.
Equally important are the mineral properties of zeolites.
Zeolites can be used as solar thermal collectors and for adsorption refrigeration.
Such zeolites are used in cracking and hydrocracking catalysts.
It seems that molecular recognition effects are limited in zeolites by the rigid zeolite structure.
New materials, sythetic zeolites, etc. to obtain higher performance.
Minerals in this series include zeolites, albite, and quartz.
The zeolites are largely of this origin.
The Texas team has strung five of these molecules together, embedding them in a matrix made from minerals called zeolites.