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Radium Dual Fluid Lock Catch Can Kit — Lotus Elise/Exige 2ZZ-GE
An oil catch can is essential on any performance vehicle to protect the engine from elevated crankcase blow-by accumulated during aggressive driving. Excess oil-saturated air recirculating back into the intake stream degrades combustion efficiency, fouls intake valves, and reduces thermal efficiency in intercooled applications.
The Radium Dual Fluid Lock Catch Can Kit 20-0019-FL is designed specifically for the 2ZZ-GE equipped Lotus Elise and Exige, covering both supercharged and normally aspirated models. The kit includes a specialised mounting bracket along with all necessary hoses, fittings, and hardware for a complete bolt-on installation.
Fluid level is checked by unscrewing the anodized billet aluminium dipstick. The lower half of each catch can body unscrews for easy draining of accumulated contaminants.
Suits: Lotus Elise 2ZZ-GE, Lotus Exige 2ZZ-GE — supercharged and normally aspirated
Catch Can Specifications:
- Capacity: 6 fluid ounces each
- Height (without fittings): 5 inches
- Outside diameter: 2.45 inches
Kit Includes:
- Anodized and etched billet aluminium catch cans (x2)
- Anodized billet aluminium -AN ORB fittings
- Anodized billet aluminium barbed fittings
- Anodized 90-degree -AN hose ends
- Low-profile -AN ORB bottom plugs
- Stainless steel oil separating media
- Powder-coated laser-cut mounting bracket
- PCV-compliant rubber hoses
- OEM-style spring clamps
- Stainless steel hardware
Available Part Numbers:
- 20-0019-FL — Dual Fluid Lock Catch Can Kit, Lotus Elise/Exige 2ZZ-GE
Why Radium Engineering?
- ✅ Manufactured in the USA to motorsport-grade tolerances
- ✅ CNC-machined billet aluminium components for precision fit and long-term durability
- ✅ Trusted by tuners and race teams running high-performance Lotus builds worldwide
- ✅ Bolt-on fitment with vehicle-specific bracket — no cutting, drilling, or fabrication required
- ✅ Compatible with supercharged and NA applications; lowers hydrocarbon emissions and protects intercooler efficiency
