Difference Between

Difference Between Coolant and Antifreeze

Nex Virox Team
Written byNex Virox Team
Editorial Team
Varshal Nirbhavane
Senior SEO & Organic Growth Professional · 5+ years
19 min read
Quick answer

The main difference between Coolant and Antifreeze is that coolant is the ready-to-use liquid that circulates through an engine to absorb and dissipate heat, while antifreeze is the concentrated additive that lowers the liquid's freezing point and raises its boiling point. Coolant is a mixture of antifreeze and water, while Antifreeze is the pure, undiluted chemical compound.

Key takeaways

  • Core distinction: Antifreeze is concentrated additive; coolant is the premixed antifreeze-and-water solution engines use.
  • How each works: Antifreeze lowers freezing point; coolant transfers heat away from engine components through water circulation.
  • Cost and effort: Buying concentrate costs less per gallon but requires mixing; premixed coolant costs more yet saves labor.
  • Best-fit use case: Choose antifreeze concentrate for custom climates; choose ready-to-use coolant for standard topping-off needs.
  • Common decision mistake: Never pour undiluted antifreeze into a radiator because pure concentrate actually freezes at a higher temperature.

Difference Between Coolant and Antifreeze: Comparison Table

AspectCoolantAntifreeze
DefinitionReady-to-use fluid circulating through the engine block and radiator.Concentrated chemical additive, typically ethylene glycol or propylene glycol, sold in bottles.
PurposeTransfers engine heat to the radiator for dissipation during operation.Lowers the freezing point and raises the boiling point of the water it is mixed with.
Core MechanismAbsorbs combustion heat via liquid convection and releases it through radiator fins.Alters water's freezing and boiling points through colligative properties of dissolved glycol molecules.
CompositionMixture of antifreeze concentrate and water, typically at a 50/50 ratio.Nearly pure glycol base with corrosion inhibitors and anti-foaming agents added.
Water ContentContains roughly 50% water by volume for proper heat transfer.Contains little to no water in its concentrated form.
Freeze PointProtects down to approximately -34°F at a 50/50 mix ratio.Pure concentrate freezes around 9°F, but mixed 50/50 it protects to -34°F.
Boil PointBoils near 223°F at 15 psi with a 50/50 mix.Pure concentrate boils near 387°F, but dilution lowers this significantly.
Heat TransferWater component enables rapid heat absorption from cylinder walls.Glycol alone transfers heat slower than water, requiring dilution for efficiency.
ViscosityFlows readily at cold starts due to water content.Thicker concentrate flows sluggishly at low temperatures until warmed.
Corrosion ProtectionContains inhibitors already balanced for immediate engine protection.Needs dilution with water to activate and distribute corrosion inhibitors properly.
ConcentrationSold pre-diluted and ready to pour directly into the reservoir.Requires manual mixing with distilled water before adding to the cooling system.
UsagePoured directly into the radiator or overflow tank without preparation.Must be measured and diluted to avoid engine damage from over-concentration.
Cost Per GallonTypically costs more per gallon due to pre-mixed water content.Cheaper per gallon, but requires purchasing water separately for mixing.
Storage LifeDegrades faster once opened because water promotes microbial growth.Stored concentrate lasts longer unopened, often up to five years.
Freeze Protection RangeFixed protection level based on factory mix, usually -34°F.Adjustable from 0°F to -60°F depending on the mix ratio chosen.
Boil Protection RangeFixed boiling point around 223°F under standard radiator cap pressure.Can be tuned up to 250°F with higher concentrate ratios.
Engine CompatibilityFormulated for specific vehicle makes, such as Asian or European models.Comes in universal formulas but may lack brand-specific additives.
Color CodingAppears in final mixed color, often green, orange, pink, or blue.Concentrate color is darker and more saturated before dilution.
Additive PackageIncludes silicates or organic acids already balanced for immediate use.Additives are concentrated and only reach proper levels after mixing.
Testing MethodChecked with a refractometer or test strip for freeze point and pH.Concentrate strength tested before mixing to determine dilution ratio.
Replacement IntervalTypically replaced every 30,000 to 50,000 miles depending on type.Concentrate itself does not expire, but mixed coolant does over time.
Environmental ImpactSpills are diluted and less toxic, but still harmful to pets.Pure concentrate is highly toxic and requires careful handling and disposal.
Safety HandlingLower toxicity risk due to dilution, but still avoid skin contact.Concentrated glycol poses higher poisoning risk if ingested by animals.
PackagingSold in jugs labeled with premixed ratios and vehicle fitments.Sold in concentrated bottles requiring measuring and mixing instructions.
AvailabilityFound at auto parts stores and service centers as a finished product.Available at any retailer carrying automotive chemicals as concentrate.
Example ProductPre-diluted 50/50 coolant in a one-gallon jug ready to pour.Concentrated antifreeze in a one-gallon jug requiring water addition.
Typical UsersDIY owners topping off or flushing without measuring equipment.Mechanics and enthusiasts who adjust ratios for extreme climates.
Primary LimitationCannot adjust freeze protection for severe cold without buying concentrate.Over-concentration reduces heat transfer and can cause engine overheating.
Mixing RequirementNo mixing needed; pour directly into the cooling system.Requires precise 50/50 or 70/30 ratio with distilled water.
Best-Fit ScenarioBest for routine top-offs and standard climate daily drivers.Best for customizing protection in extreme cold or high-performance builds.

What Is Coolant?

Coolant is a heat-transfer fluid that circulates through an engine to absorb excess heat and carry it to the radiator. It prevents overheating during operation and protects the system from corrosion. Coolant exists to regulate engine temperature within a safe, consistent range.

Definition of Coolant

Coolant is a liquid mixture, typically water combined with chemical additives or antifreeze, engineered to manage heat in internal combustion engines. It transfers thermal energy away from engine components to the radiator, where air dissipates it. Its formulation also inhibits rust, scale, and freezing in the cooling circuit.

Key Characteristics of Coolant

CharacteristicWhat It Means in Practice
High heat capacityAbsorbs large amounts of heat before its temperature rises significantly, keeping the engine stable.
Boiling point elevationRaises the boiling point above 100°C, preventing vapor lock and overheating in normal driving.
Freeze point depressionLowers the freezing point below 0°C, so the liquid stays fluid in cold climates.
Corrosion inhibitionContains chemical packages that protect metal parts like the block, heater core, and radiator.
Lubricating actionReduces wear on the water pump seal and bearing surfaces during continuous circulation.
pH bufferingMaintains a slightly alkaline level to neutralize acids formed during combustion and oxidation.
Thermal conductivityTransfers heat efficiently from hot metal surfaces into the fluid stream for dissipation.
Low viscosityFlows easily through narrow radiator tubes and engine passages, even at low temperatures.
Foam suppressionPrevents air bubbles that reduce heat transfer and cause cavitation damage to the pump.
Service intervalDegrades over time, requiring replacement every 2-5 years depending on the formulation used.

Common Examples of Coolant

  • Ethylene glycol mix – the most common base, offering excellent freeze protection and high boiling point.
  • Propylene glycol mix – less toxic than ethylene glycol, often chosen for marine or food-processing applications.
  • Hybrid Organic Acid Technology (HOAT) – combines silicate and organic acids, used widely in modern Ford and Chrysler vehicles.
  • Organic Acid Technology (OAT) – silicate-free, long-life formula used in many GM and Asian vehicles for extended drain intervals.
  • Inorganic Additive Technology (IAT) – traditional green coolant with silicates and phosphates, requiring more frequent changes.
  • Distilled water – a temporary coolant in emergencies, but it offers no corrosion or freeze protection on its own.
  • Pre-diluted 50/50 mix – ready-to-pour coolant that already contains the correct water ratio for immediate use.
  • Concentrate – undiluted coolant that must be mixed with water, giving the user control over the final ratio.
  • Heavy-duty diesel coolant – formulated with supplemental additives to handle higher heat loads and cavitation in diesel engines.
  • Electric vehicle coolant – a low-conductivity fluid used to manage battery pack and power electronics temperatures.

Advantages and Limitations of Coolant

AdvantagesLimitations
Prevents engine overheating by transferring heat away from critical metal components efficiently.Requires regular replacement because additives deplete, leaving the system vulnerable to corrosion and scale.
Protects against freezing in cold climates, allowing vehicles to start and run in sub-zero temperatures.Ethylene glycol-based coolants are highly toxic to pets and wildlife if leaked or disposed of improperly.
Inhibits rust and corrosion on aluminum, iron, and copper surfaces inside the cooling system.Mixing incompatible coolant types can cause gel formation, clogging narrow passages and causing overheating.
Raises the boiling point, preventing steam pockets and maintaining consistent cooling under heavy load.Coolant degrades over time, becoming acidic and actually causing corrosion once its inhibitors are exhausted.
Lubricates the water pump seal, extending the life of a component that would otherwise fail prematurely.Incorrect water-to-coolant ratios reduce both freeze and boil protection, leaving the engine at risk.
Works across a wide temperature range, from -37°C to over 135°C in typical 50/50 mixtures.Leaks are often hard to detect early, and low coolant levels can cause catastrophic engine damage quickly.
Available in pre-diluted forms that eliminate guesswork and reduce the risk of mixing errors.Disposal is regulated as hazardous waste in many regions, requiring special handling and costs.
Compatible with modern aluminum engines when the correct formulation is selected for the vehicle.Some coolants contain silicates that can abrade water pump seals if the concentration is too high.
Prevents scale buildup that would otherwise insulate metal surfaces and reduce heat transfer efficiency.Conducts electricity, which can accelerate galvanic corrosion if the system has mixed metals and poor grounding.
Provides year-round protection, eliminating the need to drain and refill the system seasonally.Adding tap water introduces minerals that cause scale and reduce the coolant's effective service life.

What Is Antifreeze?

Antifreeze is a concentrated liquid, usually ethylene glycol or propylene glycol, that lowers the freezing point of water. It prevents engine coolant from freezing in cold weather and raises its boiling point. It exists to protect engines from temperature-related damage.

Definition of Antifreeze

Antifreeze is a chemical additive, typically glycol-based, mixed with water to create engine coolant. It modifies the thermal properties of water by depressing its freezing point and elevating its boiling point. This ensures liquid remains stable across extreme operating temperatures.

Key Characteristics of Antifreeze

CharacteristicWhat It Means in Practice
Freeze point depressionPure antifreeze freezes near -13°F, but a 50/50 mix with water drops the freezing point to -34°F.
Boiling point elevationA 50/50 mix raises the boiling point to 223°F, preventing boil-over in hot engines.
Corrosion inhibitionContains additives that form a protective film on metal surfaces, stopping rust and pitting.
Concentrated formSold undiluted, requiring the user to mix it with water before adding to a vehicle.
Color codingDyes like green, orange, or pink identify the chemical type and additive package used.
Glycol baseEthylene glycol is common; propylene glycol is less toxic and used in eco-sensitive areas.
Lubricating actionProvides light lubrication to the water pump seal, extending its operational lifespan.
Thermal stabilityResists breakdown at high temperatures, maintaining performance for 30,000 to 50,000 miles.
Chemical compatibilityMust match the vehicle's specified type, as mixing incompatible formulas causes gelling.
Seasonal protectionOffers year-round protection, not just winter safety, by also preventing summer overheating.

Common Examples of Antifreeze

  • Prestone – a widely sold ethylene glycol concentrate used in most standard gasoline vehicles.
  • Zerex G-05 – a hybrid organic acid formula designed for older Ford and Chrysler models.
  • Dex-Cool – an orange, organic acid technology coolant specified for many General Motors vehicles.
  • Peak OET – an extended-life formula that claims protection for up to 10 years or 300,000 miles.
  • Motul Inugel – a propylene glycol option marketed for racing and high-performance applications.
  • Volkswagen G12 – a pink, silicate-free antifreeze required for most modern VW and Audi cars.
  • Evans Waterless – a 100% glycol product that eliminates water entirely to prevent corrosion.
  • Honda Type 2 – a blue, phosphate-free formula engineered specifically for Honda and Acura engines.
  • Ford Motorcraft Gold – a yellow concentrate formulated for Ford vehicles using organic acid technology.
  • Star Brite – a propylene glycol antifreeze marketed for marine engines and RV water systems.

Advantages and Limitations of Antifreeze

AdvantagesLimitations
Prevents engine block cracking by stopping water from freezing and expanding inside.Ethylene glycol is highly toxic to pets and children if ingested, even in small amounts.
Raises boiling point, allowing engines to run hotter without losing coolant to steam.Must be diluted with water; using it undiluted actually reduces heat transfer efficiency.
Contains corrosion inhibitors that protect radiator, heater core, and engine passages.Additives deplete over time, turning the fluid acidic and causing internal corrosion.
Provides year-round protection against both freezing and overheating in one product.Mixing incompatible types, like OAT with IAT, creates a thick gel that clogs the system.
Lubricates the water pump seal, reducing wear and preventing premature seal failure.Disposal is regulated as hazardous waste in most regions, requiring special handling.
Available in premixed and concentrate forms, giving users flexibility in application.Spills on concrete leave slippery, sticky residue that attracts dirt and is hard to clean.
Works across a wide temperature range, from arctic winters to desert summers.Has a finite service life, needing replacement every 2 to 5 years depending on type.
Prevents cavitation damage on cylinder liners in heavy-duty diesel engines.Some formulas contain silicates that can abrade water pump seals over extended use.
Protects aluminum components, which are common in modern engine construction.Improper disposal contaminates groundwater and poses a serious environmental hazard.
Reduces scale and deposit buildup inside the cooling system when changed regularly.Does not cool the engine by itself; it only works effectively when properly mixed with water.

Similarities Between Coolant and Antifreeze

Shared AspectHow Coolant and Antifreeze Are Alike
Core PurposeCoolant and antifreeze both regulate engine temperature by transferring heat away from critical metal components.
Primary CategoryCoolant and antifreeze are both liquid heat-transfer fluids designed specifically for internal combustion engine systems.
Base IngredientCoolant and antifreeze both rely on a base of either ethylene glycol or propylene glycol mixed with water.
Water MixtureCoolant and antifreeze both require dilution with water to achieve proper thermal conductivity and freeze protection.
Freeze ProtectionCoolant and antifreeze both lower the freezing point of the liquid to prevent engine block damage in cold climates.
Boil ProtectionCoolant and antifreeze both raise the boiling point to prevent overheating and vapor lock during high-load operation.
Corrosion InhibitionCoolant and antifreeze both contain additives that protect aluminum, iron, and copper surfaces from rust and corrosion.
Common UsersCoolant and antifreeze are both used by DIY car owners, professional mechanics, and fleet maintenance technicians.
Vehicle TypesCoolant and antifreeze both serve cars, trucks, motorcycles, tractors, and heavy-duty diesel equipment.
Application MethodCoolant and antifreeze are both poured directly into the radiator or overflow reservoir during routine service.
System ComponentCoolant and antifreeze both circulate through the radiator, water pump, heater core, and engine block passages.
Color CodingCoolant and antifreeze both come in green, orange, pink, blue, and yellow formulations for easy identification.
Replacement IntervalCoolant and antifreeze both require periodic flushing and replacement every 30,000 to 100,000 miles.
Measurement UnitsCoolant and antifreeze are both measured in liters or quarts and tested with a hydrometer or refractometer.
Concentration RatioCoolant and antifreeze both perform optimally at a 50/50 mix ratio with distilled water.
Cost RangeCoolant and antifreeze both cost roughly $10 to $30 per gallon depending on brand and formulation type.
Packaging FormatCoolant and antifreeze both ship in sealed plastic jugs, concentrated bottles, and pre-diluted containers.
Safety HandlingCoolant and antifreeze both require gloves and eye protection because both glycols are toxic if ingested.
Disposal RulesCoolant and antifreeze both must be recycled or disposed of at hazardous waste facilities to protect groundwater.
Performance TestingCoolant and antifreeze both undergo ASTM D3306 and D6210 laboratory standards for quality verification.
Temperature RangeCoolant and antifreeze both function effectively across a broad range from minus 34 degrees to 265 degrees Fahrenheit.
Failure SymptomCoolant and antifreeze both cause engine overheating when depleted, contaminated, or improperly mixed.
Leak IndicatorCoolant and antifreeze both leave visible colored puddles or sweet-smelling residue when system leaks occur.
Additive PackagesCoolant and antifreeze both include anti-foaming agents, pH stabilizers, and lubricants for water pump seals.
Compatibility LimitsCoolant and antifreeze both must match the vehicle manufacturer's specified technology to avoid gelling or sludge.
Winter ReadinessCoolant and antifreeze both need a freeze point check before winter to confirm adequate cold-weather protection.
Summer ReadinessCoolant and antifreeze both need a boil point check before summer to confirm adequate hot-weather protection.
Contamination RiskCoolant and antifreeze both degrade when exposed to oil, dirt, or hard water minerals over time.
Long-Term OutcomeCoolant and antifreeze both extend engine life by preventing thermal stress, cavitation, and electrolysis damage.
Market AvailabilityCoolant and antifreeze both are sold at auto parts stores, big-box retailers, gas stations, and online marketplaces.

Coolant or Antifreeze: Which Should You Choose?

For most vehicle owners, the deciding variable is convenience versus cost control. Coolant is pre-mixed and pour-ready, while antifreeze is concentrated and requires dilution. Choose based on whether you prioritize zero-measurement simplicity or maximum value per gallon for routine top-offs.

When to Use Coolant

Choose Coolant when you need immediate, error-proof protection for a daily driver. It is ideal for quick top-offs without measuring, topping up a reservoir after a minor leak, or for novice DIYers who want to avoid dilution mistakes. It also suits mixed fleets where using one jug prevents cross-contamination errors.

When to Use Antifreeze

Choose Antifreeze when you manage multiple vehicles or perform full system flushes. It is more economical for large-volume jobs because you buy concentrate and mix with distilled water. It is also the right pick for custom cooling setups requiring a specific water-to-additive ratio, or when storage space is limited since one bottle makes two gallons.

Common Misconceptions About Coolant and Antifreeze

Common MythThe Reality
Coolant and antifreeze are completely different liquids for different jobs.Antifreeze is the concentrated chemical; coolant is the mixture of antifreeze and water that actually circulates in your engine.
You can pour pure antifreeze into the radiator for maximum protection.Pure antifreeze transfers heat poorly; coolant with a 50/50 antifreeze-water ratio provides superior boiling and freezing protection.
Antifreeze only matters during winter to stop the engine from freezing.Antifreeze raises the coolant boiling point in summer too, preventing overheating and protecting against corrosion year-round.
Water works just as well as coolant in a hot climate.Plain water lacks corrosion inhibitors and lubricants, so coolant prevents rust, scale buildup, and water pump wear in any climate.
All antifreeze types are identical, so any brand will work fine.Coolant comes in IAT, OAT, and HOAT formulations; using the wrong type can degrade seals and cause sludge in your cooling system.
Green coolant is universally compatible with every vehicle on the road.Green IAT coolant is traditional, but many modern cars require OAT or HOAT coolant with different additives for aluminum engines.
You should replace coolant only when the engine overheats or fails.Coolant degrades over time, losing corrosion protection; replacing it at the manufacturer's interval prevents costly engine damage.
Mixing different colored coolants is harmless and saves you money.Mixing coolant types can cause chemical reactions that form gel, clog passages, and lead to overheating and premature water pump failure.
Antifreeze is a single chemical compound that never changes.Antifreeze is typically ethylene glycol or propylene glycol, but additive packages vary significantly between manufacturers and vehicle specifications.
Coolant level checks are unnecessary because the system is sealed.Coolant slowly evaporates and leaks past seals; checking the reservoir monthly prevents low-level damage and expensive head gasket repairs.
Dex-Cool coolant lasts forever and never needs changing.Dex-Cool is long-life OAT coolant, but it still requires replacement every five years or 150,000 miles to prevent acidic contamination.
Using tap water to mix coolant is fine for most vehicles.Tap water contains minerals that cause scale deposits; distilled water prevents corrosion and maintains proper coolant chemistry in the system.
Coolant and radiator fluid are two separate products you need to buy.Radiator fluid is just another name for coolant; both refer to the antifreeze-water mixture that flows through your engine's cooling system.
You can safely use coolant in a car that requires only water.While coolant works universally, some racing or heavy-duty applications specify water only, but street vehicles always benefit from coolant's corrosion protection.
Antifreeze smell means your coolant is old and needs replacement.A sweet smell usually indicates a coolant leak from a hose, gasket, or heater core, which requires repair, not just a fluid change.
Diluting antifreeze with extra water makes it cool your engine better.Too much water lowers the boiling point and reduces corrosion protection; coolant works best at the manufacturer's recommended concentration ratio.
Coolant color determines quality, so darker colors are stronger.Coolant color is just a dye for identification; quality depends on the additive chemistry, not the shade, so check the specification label instead.
Ethylene glycol antifreeze and propylene glycol antifreeze are exactly the same.Propylene glycol is less toxic and safer for pets, but ethylene glycol offers slightly better heat transfer; both require proper dilution with water.
You never need coolant if your car uses air cooling instead.Air-cooled engines still use some coolant in oil coolers or auxiliary systems, but most modern vehicles rely entirely on liquid coolant circulation.
Adding antifreeze directly to a hot engine is the fastest fix.Adding cold coolant to a hot engine risks cracking the block; always let the engine cool before opening the radiator cap or adding coolant.
Coolant leaks are harmless because the system holds plenty of fluid.Even small coolant leaks allow air into the system, causing hot spots, overheating, and potential engine damage if left unaddressed over time.
Antifreeze concentrate is ready to use straight from the bottle.Concentrated antifreeze must be mixed with water, typically 50/50, because undiluted antifreeze freezes at a higher temperature than the mixture.
Flushing coolant with plain water completely cleans the entire system.A proper coolant flush uses chemical cleaners to remove scale and rust; plain water alone leaves deposits that reduce cooling efficiency and heater performance.
Coolant type only matters for the engine, not for the heater.Coolant flows through the heater core, so the correct coolant type prevents corrosion and blockages that cause weak cabin heat output.
You can check coolant quality just by looking at its color in the reservoir.Coolant can look fine but test acidic or depleted; use test strips or a refractometer to measure freeze point and additive levels accurately.
Old antifreeze can be poured down the drain safely after dilution.Ethylene glycol antifreeze is toxic and hazardous; used coolant must be recycled or disposed of at a facility, never poured into drains or soil.
Coolant level should be filled to the very top of the reservoir.Coolant expands when hot; filling to the full line only prevents overflow and pressure buildup that can damage hoses and the radiator cap.
Hybrid vehicles use special coolant that is incompatible with regular cars.Hybrids often use standard OAT or HOAT coolant, but some require low-conductivity coolant for electric components; always check the owner's manual.
Coolant never expires if the car sits unused in a garage.Coolant degrades over time even without driving; oxidation and additive depletion occur, so replace coolant based on age, not just mileage.
Antifreeze prevents corrosion, so coolant never needs rust inhibitors added.Antifreeze contains corrosion inhibitors, but they deplete with use; coolant replacement restores these additives, so never add extra chemicals separately.

Conclusion

Difference Between Coolant and Antifreeze is simple: antifreeze is the concentrated additive, while coolant is the ready-to-use mixture of antifreeze and water. Choose coolant for direct topping off, but pick antifreeze when you need to mix your own solution for specific climate protection.

FAQs on Difference Between Coolant and Antifreeze

What is the difference between coolant and antifreeze?
Antifreeze is the concentrated liquid, usually ethylene glycol or propylene glycol, that lowers the freezing point, while coolant is the ready-to-use mixture of antifreeze and water that circulates through your engine.
Is coolant the same thing as antifreeze?
No, coolant is not the same as antifreeze because antifreeze is the pure concentrate that must be diluted with water, whereas coolant is the premixed 50/50 solution already prepared for direct use in your vehicle.
Which is better for your car, coolant or antifreeze?
Neither is better because both serve essential roles, but you should use premixed coolant for convenience and safety, while concentrated antifreeze offers more control over the mixture ratio for extreme climates.
Is antifreeze more expensive than coolant?
Yes, antifreeze is typically more expensive per gallon than premixed coolant because it contains a higher concentration of active glycol, though you must factor in the cost of water to dilute it properly.
Is it dangerous to handle coolant or antifreeze?
Yes, both are dangerous because antifreeze contains toxic ethylene glycol that is sweet-tasting and lethal to pets and children, while used coolant can contain heavy metals like lead from engine wear.
Can you mix different colors of coolant and antifreeze?
No, you cannot mix different colors because each color indicates a distinct chemistry, such as Organic Acid Technology or Inorganic Acid Technology, and mixing them can cause chemical reactions that form damaging sludge.
What is the most common mistake people make with coolant and antifreeze?
The most common mistake is adding pure antifreeze without water, which actually raises the freezing point and reduces heat transfer, leading to potential overheating and inadequate freeze protection.
Can you use water instead of coolant in an emergency?
Yes, you can temporarily use plain water in an emergency because it transfers heat effectively, but it offers no freeze protection and lacks corrosion inhibitors, so you must replace it with proper coolant immediately.
When should you replace the coolant in your car?
You should replace the coolant every 30,000 to 50,000 miles or every 2 to 5 years, depending on the type of antifreeze used, because the additives degrade over time and lose their protective properties.
Can I switch from antifreeze to coolant or vice versa?
Yes, you can switch between concentrated antifreeze and premixed coolant as long as you use the same chemical type and color, but you must thoroughly flush the system first to remove any incompatible old fluid.