French Hardness to dKH Converter

French Hardness to dKH Converter

Convert French degrees of hardness into aquarium dKH, ppm as CaCO3, meq/L, blended water-change KH, and target correction equivalents.

💧Choose an aquarium preset
Enter French hardness reading
French degree input uses 1 °fH = 10 ppm as CaCO3.
Percent of current water replaced by the replacement reading.
Formula anchor: 1 French degree = 10 ppm as CaCO3, 1 dKH = 17.848 ppm as CaCO3, so dKH = French degrees × 10 / 17.848.

Converted aquarium hardness reading

dKH
5.60
from 10.0 °fH
ppm as CaCO3
100
French degree x 10
Working volume
40.0
gal / 151.4 L
Blended dKH
4.76
after water change

Breakdown

🧪Conversion factor cards
10
ppm CaCO3 per °fH
17.848
ppm CaCO3 per dKH
0.5603
dKH per °fH
1.7848
°fH per dKH
50
ppm CaCO3 per meq/L
2.801
dKH per meq/L
1 mg/L
ppm in water
3.785
liters per US gal
📘French hardness to dKH table
French hardness ppm as CaCO3 dKH meq/L equivalent
1 °fH10 ppm0.560 dKH0.200 meq/L
2 °fH20 ppm1.121 dKH0.400 meq/L
5 °fH50 ppm2.801 dKH1.000 meq/L
7 °fH70 ppm3.922 dKH1.400 meq/L
10 °fH100 ppm5.603 dKH2.000 meq/L
15 °fH150 ppm8.404 dKH3.000 meq/L
20 °fH200 ppm11.206 dKH4.000 meq/L
25 °fH250 ppm14.007 dKH5.000 meq/L
Aquarium profile reference
Profile Common dKH window French degree equivalent Calculator note
RO/DI or very soft water0-1 dKH0-1.8 °fHSmall changes are large relative moves.
Blackwater softwater0.5-2 dKH0.9-3.6 °fHUse finer rounding when readings are low.
Planted community3-6 dKH5.4-10.7 °fHCompare KH tests on the same CaCO3 basis.
General community4-8 dKH7.1-14.3 °fHModerate test-kit resolution is usually enough.
Livebearer hardwater6-12 dKH10.7-21.4 °fHBlending math helps predict water changes.
Rift lake cichlid8-16 dKH14.3-28.6 °fHHigh alkalinity benefits from cross-checking ppm.
Reef alkalinity check7-11 dKH12.5-19.6 °fHReef kits usually report dKH directly.
Koi or garden pond4.5-10 dKH8.0-17.8 °fHUse volume result for total CaCO3 equivalent.
🐠Common tank volumes and sample conversions
Tank or batch Dimensions Volume At 10 °fH
10 gallon20 x 10 x 12 in / 51 x 25 x 30 cm10 gal / 37.9 L5.60 dKH, 3,785 mg CaCO3 equivalent
20 long30 x 12 x 12 in / 76 x 30 x 30 cm20 gal / 75.7 L5.60 dKH, 7,571 mg CaCO3 equivalent
29 gallon30 x 12 x 18 in / 76 x 30 x 46 cm29 gal / 109.8 L5.60 dKH, 10,977 mg CaCO3 equivalent
40 breeder36 x 18 x 16 in / 91 x 46 x 41 cm40 gal / 151.4 L5.60 dKH, 15,142 mg CaCO3 equivalent
55 gallon48 x 13 x 21 in / 122 x 33 x 53 cm55 gal / 208.2 L5.60 dKH, 20,820 mg CaCO3 equivalent
75 gallon48 x 18 x 21 in / 122 x 46 x 53 cm75 gal / 283.9 L5.60 dKH, 28,391 mg CaCO3 equivalent
📊Water-change blend examples
Current water Replacement water Water change Blended dKH
10 °fH0 °fH25%4.20 dKH
10 °fH4 °fH25%4.76 dKH
16 °fH8 °fH30%7.62 dKH
7 °fH14 °fH20%4.71 dKH
22 °fH18 °fH40%11.43 dKH
2 °fH10 °fH10%1.57 dKH
Conversion tip: Convert French hardness and dKH through ppm as CaCO3 when mixing readings from different test kits. That keeps KH, alkalinity, and hardness labels on one basis.
Blend tip: For water changes, convert both current and replacement hardness to ppm first, weight each by its volume percent, then convert the blended ppm back to dKH.

Getting into the water chemistry can be tricky until you understand that various units is measuring the same thing. For example, your fish care sheet may ask for a dKH measurement while a test kit in your tap water provide a result in French degrees of hardness. Both are measures of dissolved mineral content. The units are what confuse; not the water.

Ten parts per million of calcium carbonate are equivalent to one French degree of hardness. About 17.5 parts per million is one dKH. You’re comparing two methods of weighing the same buffer. After you put in your source reading, the calculator above do the math for you. You won’t have to guess about conversion factor or coefficients. You no longer have to memorize the division factor.

Understanding Water Hardness Units

All you have to know is why there’s a difference. Older test kits were manufactured by companies in Europe where French hardness is common. The English-speaking hobbyists mostly uses dKH. Both carbonate hardness. And that means it matters when you’re talking about pH stability. They aren’t measuring something differenter. They’re just counting it differently.

A common pitfall is when people assume that “higher” must equal “harder.” Don’t forget to look at what unit are being used. Two dKH might sound small but so does 20 French degrees. Yet 20 fH is actualy equivalent to approximately eleven dKH. Not correcting for units means overcorrecting your chemistry by a factor of ten. That’s a huge mistake. It’s disastrous if your livestock is sensitive. Always convert to some common baseline before acting.

Alkalinity is a buffer that catches the punch when your bioload introduces some swing in pH. A thin cushion = soft water. A thick one = hard water. This doesn’t mean one is good and one isn’t, it just means it depends on what you’re keeping.

If you have tetras and discus, they prefer soft, acidic water. If you have Rift Lake cichlids, they prefers hard, alkaline water. Use the calculator to determine where you are in relation to that. Enter your existing number and your goal. The calculator will tell you whether you’re close enough to not worry about it or if you should of do something about it.

Theory Where this all comes together is when you mix water. In reality, very few of us ever have water that perfectly matches our goal. Tap water. Reverse osmosis water. It might be a tank that falls somewhere in between. With the blend feature, you can see what will happen after a water change.

If you lose 25% of your tank water and add water that’s softer than what you currently have, how much harder will it be? Will it drop? Yes, but it won’t crash. It will shift. And once you know what that final hardness will be, you can minimize stress on your fish from sudden changes. More stability then perfection is better.

And then there’s volume. Adding a drop of conditioner to a five gallon betta bowl makes an immediate difference. Adding that same drop to a hundred gallon reef tank barely registers. There is simply more inertia in a bigger volume of water to resist any kind of chemical change. That’s one reason why small measurement differences makes such big differences in nano tanks. Be exacting.

When you’re on a big system, you have more wiggle room. It just doesn’t scale up. Don’t get hung up on the decimal places you don’t see with your own eyes. Most drop kits are working at 1/2 steps and whole numbers. A calculation of a result to 3 decimal places is an illusion of precision. The only number to round down to is the one your eyeballs will notice. Round to the nearest value your eyes can detect. If your kit shows six dKH, treat it as six dKH. It doesn’t change anything in the biology…only in the spreadsheet. Be practical.

What are you trying to do? Keep the water consistent. Consistent doesn’t mean chemically perfect water. It means keep the water the same. Fish adjusts to what you show them. Changing too quickly is hard on them. Set a baseline with the conversions. Then keep the water there.

The creatures who live in the water don’t care if its expressed in German degrees or French degrees. All they feel is the same thing. You want to know what it’s telling you. To do that, you have to speak the same language (test kit) that it does.

French Hardness to dKH Converter

Author

  • Ronan Granger

    Hi, I am Ronan Granger, the owner of AquaJocund.com! At AquaJocund, I’m thrilled to take you on a captivating and immersive journey through the wondrous realm of aquariums and aquatic life.

Leave a Comment