Product category:
Plant Design and Construction
News Release from: Koch Knight | Subject: KRYPTOKNIGHT
Edited by the Processingtalk Editorial
Team on 25 January 2008
Inert ceramic balls for processing and
refining
KryptoKnight inert ceramic balls are introduced by Koch Knight for catalyst beds in chemical processing, ethanol refining and oil, gas and petrochemical refining
Engineered for maximum durability, KryptoKnight inert ceramic balls are reliable, economical support media for applications including ammonia plant shift converters, methanol production, and desiccant dryer and refinery applications The Koch Knight line of KryptoKnight inert ceramic balls are designed to provide unparalleled chemical stability and mechanical strength, ensuring that the catalytic process is not disrupted
This article was originally published on Processingtalk on 20 Nov 2006 at 8.00am (UK)
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Equally effective in vapour or liquid, high or low temperatures, KryptoKnight resists thermal shock and spalling.
KryptoKnight inert ceramic balls are available in three unique types to meet the demands of any application:.
* KryptoKnight A: 99% alumina support media, designed for processes where steam may typically cause leaching for silica from the alternative aluminosilicate media.
High alumina media also yields improved performance when addressing polymerisation.
* KryptoKnight H: a premium aluminosilicate support media with a 23 percent alumina content, an ideal formula for tough fixed-bed conditions such as hydrotreating and isomerisation.
* KryptoKnight M: an economical aluminosilicate ceramic media, comprising all the properties necessary for support media in molecular sieve and desiccant dryer applications.
The entire line of KryptoKnight inert ceramic balls is supported by the engineering expertise and experience of Koch Knight.
For more information on the chemical analysis, crush strength, sizes and typical properties of the KryptoKnight line, please contact Koch Knight direct.
Koch Knight is a leading innovator in corrosion proof materials and environmental heat transfer equipment.
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