Catalysts
Crenox A-K-1
- a fine particulate titanium dioxide with anatase structure and a specific surface of approx. 90 m2/g
- corresponds in its technical data and processing characteristics to the requirements for the manufacture of various catalysts
- stands out through its low content of impurities such as e.g. iron, sodium and potassium
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Crenox 8602
- an ultra fine titanium dioxide with anatase structure and a specific surface of approx.. 350 m2/g
- corresponds in its technical data and processing characteristics to the requirements for the manufacture of various catalysts
- stands out through its low content of impurities such as e.g. iron, sodium and potassium
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Crenox A-DW-1
- a fine particulate titanium dioxide with anatase structure
- provides a high degree of thermal stability through its defined content of tungsten oxide of 10 percent
- corresponds in its technical data and processing characteristics to the requirements for the manufacture of catalysts, particularly nitrogen oxide reduction catalysts (DeNOx)
- stands out through its low content of impurities such as e.g. iron, sodium and potassium
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Crenox 8630
- a fine particulate titanium dioxide with anatase structure
- provides a high degree of thermal stability through its defined content of tungsten oxide of 5 percent
- corresponds in its technical data and processing characteristics to the requirements for the manufacture of catalysts, particularly nitrogen oxide reduction catalysts (DeNOx)
- stands out through its low content of impurities such as e.g. iron, sodium and potassium
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Crenox 8631
- a fine particulate titanium dioxide with anatase structure
- provides a high degree of thermal stability through its defined content of tungsten oxide of 7 percent
- corresponds in its technical data and processing characteristics to the requirements for the manufacture of catalysts, particularly nitrogen oxide reduction catalysts (DeNOx)
- stands out through its low content of impurities such as e.g. iron, sodium and potassium
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Crenox 8640
- a fine particulate titanium dioxide with anatase structure and a defined content of tungsten oxide and silicium oxide
- corresponds in its technical data and processing characteristics to the requirements for the manufacture of catalysts and environmental catalysts, particularly nitrogen oxide reduction catalysts (DeNOx)
- particularly suited for SCR catalysts in automotive applications due to its high thermal stability
- stands out through its low content of impurities such as e.g. iron, sodium and potassium
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