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|Technology

Lead batteries store energy by means of a chemical reaction between lead, lead dioxide and sulphuric acid (liquid/gel). After a while in operation, lead sulphate crystals form on the electrodes, reducing the capacity and service life of the battery.


Batteries treated with the BEAT 100 exhibit a significantly more homegenous lead dioxide structure on the positive electrode. The advantages: the electrode works more efficiently, the charging time is reduced and both capacity and service life are considerably increased.


 
   Charged PbO2 Electrode in an
   untreated battery


 
   In Comparison, the charged PbO2
   electrode treated with BEAT100
   shows a more homegenous and
   compact structure.

 |Crystal Control Technology

- prolongs the life of lead batteries and increases their output

- can be used both for the intentional formation of new crystals and for the prevention of unwanted    crystallisation

- influences ions and charged ions in the electrolyte with electrodynamic fields

-is under continual development and is subject to intensive research in cooperation with leading European laboratories

- offers optimum solutions with products for different industrial and consumer applications.


- typical applications for CCT are transport vehicles, electric wheelchairs and scooters, boats, campers, forklift, trucks and electric automobiles.


-  Renewal of the active material in the battery

-  Promotion of the growth of fine lead dioxide crystals on positive electrodes for a more homogeneous and better functioning electrode

-  Transformation of lead sulphate crystallised on negative electrodes into lead and sulphuric acid

- Reduction in the formation of larger lead sulphate crystals