Optimize delayed
coking operations with the new Thermo Scientific KRILPRO. Reliable and
efficient, this advanced nuclear interface level gauge features an extremely small,
ALARA-compliant source (100 mCi.3.7 GBq AmBe 241) and a drift-free sensor to
provide unmatched precision and accuracy. It is also lightweight,
easy-to-install and service, and requires minimal maintenance to expedite
start-up and facilitate ongoing operation.
Product Detail
Rugged and compact, the Thermo Scientific KRILPRO is a highly precise, non-contacting neutron backscatter foam level/interface device that enables refiners to maximize coke drum output per cycle while significantly reducing anti-foam usage. It accurately detects foam (light, medium and heavy) as well as wet and dry coke. Engineered using our patented pulse-mode ion chamber technology platform, this advanced gauge is twice as precise as the Thermo Scientific KRIL yet uses a significantly smaller source and features a more streamlined electronics package, making it lighter weight and easier to service.
Patented pulse-mode ion chamber technology results in precision of less than 0.5% of the span
Drift-free electronics that are adverse to temperature variation ensure unmatched stability
The widest sensor temperature range of any CSAUS and ATEX approved device of its kind
Continuous self-diagnostics that provide an instant check of system integrity
Stainless steel housing for high durability and longer life
Easy-to-install with no component exceeding 45 pounds
Streamlined design allows for rapid diagnostics and servicing of the unit
Comprehensive Coker Monitoring System
Create a comprehensive coker monitoring system from the fractionation tower feed line to the coke drum by using the KRILPRO along with two other industry leading Thermo Scientific nuclear devices, the LevelPRO and the DensityPRO. Specifically engineered for coke drum operations, these devices ensure maximum process control and improved profitability. Contact us to learn more.
Additional KRILPRO Product Features
Neutron backscatter principle enables measurement through thick-walled vessels of any diameter to pinpoint process changes due to the varying levels of vapors, foams, liquids and solids within the vessel
Non-contacting measurement unaffected by temperature, pressure, viscosity, corrosives and/or abrasives
Compact detector is comprised of one large, round ion that is filled with He III gas