Octane measures knock resistance, not quality or energy. The rule is simple: if your engine requires premium, use it; if it doesn't, premium buys you nothing. Here's how to tell the difference — and why the premium price gap ballooned.
| Your fuel-door / manual says | What to buy | Why |
|---|---|---|
| "Regular" / 87 octane | Regular | Premium adds nothing — the engine can't exploit it |
| "Premium recommended" | Either | Regular is safe; premium restores the last few % of rated power/MPG — rarely worth the spread |
| "Premium required" | Premium | High-compression/turbo engines; sustained regular under load risks knock damage |
| Towing / track / mountain heat | Follow "required" | Heavy load is exactly when octane margins matter |
Pump grades: regular 87 · midgrade 89 · premium 91–93 ((R+M)/2 method). Current prices on gas prices; what's actually in the fuel on the RBOB page and barrel of oil.
No. If your car is designed for regular (87 octane), premium adds no power, mileage or cleanliness — octane measures resistance to knock, not energy content, and all US grades carry EPA-mandated detergents. AAA estimates Americans waste over $2 billion a year on unneeded premium.
Modern engines detect knock and retard timing to protect themselves, so occasional regular in a premium-required car usually just costs a little power and efficiency. Sustained use under heavy load (towing, hot weather, turbo boost) risks damage in engines where premium is REQUIRED rather than merely recommended — check the fuel-door sticker and manual wording.
The spread widened from the historical ~20–30 cents to as much as 80–100 cents. Producing high-octane blendstock got costlier (refinery reformer economics, alkylate demand), premium demand from turbocharged engines grew, and retailers discovered the spread is price-insensitive — premium buyers rarely switch.
A rating of how much compression/heat a fuel tolerates before igniting spontaneously (knocking). US pumps show the (R+M)/2 average — regular 87, midgrade 89, premium 91–93. High-compression and turbocharged engines need higher octane to run their designed timing and boost; that's the entire difference.