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In short: To refresh your sourdough starter, start with a 15–20 minute bath (100°F / 38°C if stored in water, or 68–72°F / 20–22°C if bound). For maintenance: use a 1:1 ratio for the water method, or 1:2 if bound. Before using it in a recipe, you’ll need 2–3 refreshments at 86°F (30°C).
Sourdough Starter Refreshment (Water Method): Dosage Table
| Scenario | Starter-to-Flour Ratio | % Water on Flour (Grams) | Practical Example |
|---|---|---|---|
| Maintenance | 1 : 1 | 30% (300 g for every 1 kg of flour, at 86 °F) | 1 kg starter + 1 kg flour + 300 g water |
| Preparatory Refreshments (Before Baking) | 1 : 1.5 | 46% (690 g for every 1.5 kg of flour) | 1 kg starter + 1.5 kg flour + 690 g water |
Bound Sourdough Starter Refreshment (Legato): Dosage Table
| Scenario | Starter-to-Flour Ratio | % Water on Flour (Grams) | Practical Example |
|---|---|---|---|
| Maintenance | 1 : 2 | 46% (920 g for every 2 kg of flour, at 68–72 °F) | 1 kg starter + 2 kg flour + 920 g water |
| Preparatory Refreshments (First Refreshment) | 1 : 2 | 46% (920 g for every 2 kg of flour) | 1 kg starter + 2 kg flour + 920 g water |
| Preparatory Refreshments (2nd and 3rd Refreshments) | 1 : 1.5 | 46% (690 g for every 1.5 kg of flour) | 1 kg starter + 1.5 kg flour + 690 g water |
Feeding a sourdough starter is essential to keep it alive and provide the water and nutrients that yeasts and bacteria need to survive. When we talk about feeding, we are referring to a very simple process of mixing together sourdough starter, flour, and water.
When managing a sourdough starter, we need to distinguish between two different types of feeding:
- Maintenance feeding, which is used to keep the starter alive from day to day.
- Preparatory feedings — usually 2 or 3 — performed before using the starter in a recipe. Their main purpose is to strengthen the starter and stabilize its acidity.
This distinction is very important because, as we will see, the two types of feeding require different ratios and procedures.
How to Feed a Sourdough Starter: Daily Maintenance
To keep your starter alive, you will need to feed it regularly depending on how you store it. If you keep the starter at room temperature (19–20 °C / 66–68 °F), it should be fed every day. If you store it in the refrigerator, you can extend the interval between feedings up to 7 days.
A second factor to consider is the storage method. The starter can be stored in water or wrapped and tied. These two management methods produce starters with different characteristics — particularly in terms of acidity — and therefore require different starter-to-flour ratios.
When to Give Your Sourdough Starter a Water Bath Before Maintenance Feeding
Before a maintenance feeding, a sourdough starter water bath can be particularly useful when the dough has become too acidic or has developed a sharp, pungent aroma. The water bath helps reduce excess acidity and bring the starter back toward a more stable balance.
If you store your starter in water, soak it in warm water at 38 °C (100 °F) for approximately 15–20 minutes. If you use a tied starter, soak it in water at 20–22 °C (68–72 °F) for the same amount of time. In both cases, I recommend adding 2 g of sugar or fructose per liter of water. After the soaking period, proceed with the feeding using the appropriate ratios described below.
The Water Temperature for Feeding a Sourdough Starter
One of the most important factors when feeding a sourdough starter correctly is achieving a final dough temperature between 26 and 28 °C (79–82 °F), ideally around 26 °C (79 °F).
To achieve this, we can adjust the temperature of the water using this empirical formula from master baker Giambattista Montanari, whose work I greatly admire:
Water Temperature = (Target Dough Temperature × 4) – Room Temperature – Flour Temperature – Starter Temperature – Heat Generated by the Mixer
For a planetary mixer, for example, we can use approximately 14 °C (25 °F) as the heat generated during mixing.
To obtain a final dough temperature of 26 °C (79 °F), assuming:
- Room temperature: 20 °C (68 °F)
- Flour temperature: 18 °C (64 °F)
- Starter temperature: 19 °C (66 °F)
the required water temperature would be:
(26 × 4) – 20 – 18 – 19 – 14 = 33 °C (91 °F)
As a practical reference, you can use the following values for the heat generated by different types of mixers. If the mixer is operating at full capacity, use the higher end of the range:
- Planetary mixer: 12–16 °C (54–61 °F)
- Spiral mixer: 9–12 °C (48–54 °F)
- Diving-arm mixer: 6–9 °C (43–48 °F)
Feeding a Sourdough Starter Stored in Water
In this case, we are working with a starter characterized by lower lactic acidity — because some of it is dispersed into the water — and a higher moisture content.
After the water bath, squeeze out the starter and mix it using the following proportions:
- 1 kg sourdough starter
- 1 kg strong W360 flour (approximately 14–15% protein)
- 300 g water at the appropriate temperature (see above)
The dough should be well developed, but it does not need to be mixed for a long time. Roll or flatten the starter to approximately 1 cm thickness and give it 3 folds to oxygenate and refine the dough structure.
Shape it into a ball and place it in a container filled with cool tap water at approximately 19 °C (66 °F). Ideally, the container should have a capacity of approximately 5 times the weight of the starter, while the amount of water should equal approximately 3 times the weight of the starter. For example, 1 kg of starter can be placed in a 5-liter container with approximately 3 liters of water.
This allows you to store the starter at room temperature between 18 and 22 °C (64–72 °F) for 24 hours.
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Feeding a Tied Sourdough Starter
If you keep your starter wrapped and tied, it will generally have higher overall acidity, particularly a greater proportion of lactic acidity and less acetic acidity.
In this case as well, the feeding can begin with a water bath at 20–22 °C (68–72 °F), with 2 g of sugar or fructose per liter of water, for approximately 15–20 minutes.
To calculate the water for the following feeding more accurately, I recommend weighing the starter before and after the water bath. This allows you to determine how much water the starter absorbed and adjust the amount of water added during the feeding accordingly.
Once the starter has been squeezed and weighed, mix it using the following ratio:
- 1 kg sourdough starter
- 2 kg strong W360 flour (approximately 14–15% protein)
- 920 g total water (46% of the flour weight), including the water absorbed during the bath. Use water at the appropriate temperature described above.
As described above, flatten the starter, give it 3 folds, and shape it into a log. Wrap it first in a food-safe plastic sheet — do not use ordinary plastic wrap because it is too thin — and then tightly roll it inside a strong cotton or linen cloth.
Finally, tie it with cord, as you would a sausage, leaving the cord slightly loose so that the starter has room to expand and tighten against the wrapping.
Once prepared, the tied starter can be kept at room temperature between 18 and 22 °C (64–72 °F) for approximately 16 hours.
Preparatory Sourdough Feedings: Ratios and Timing
Before using sourdough starter in a recipe, it should generally undergo 2 or 3 closely spaced feedings. Their purpose is to strengthen the starter by increasing the population of yeasts and lactic acid bacteria, balance its acidity, and promote the production of compounds that can contribute to the shelf life of the finished baked product when it is properly packaged.
For Italian large enriched products such as panettone, pandoro, and veneziana, it is customary to perform 3 preparatory feedings. For leaner doughs such as croissants, bread, or pizza, 2 feedings are generally sufficient.
Even for large enriched products, when time is limited it is possible to stop after the second feeding, although this may slightly reduce the keeping quality of the finished product.
The first thing to consider when starting a recipe with sourdough starter is how much starter you need to begin with so that you end up with both the correct amount for the recipe and a reasonable amount to keep for future feedings.
For this reason, I developed a simple calculator that helps you determine exactly how much starter to feed for your recipe without running out.
Use the Biancolievito Sourdough Feeding Calculator
The 3 Preparatory Feedings for Sourdough Starter Stored in Water
After several years of using the 1:0.9 feeding ratio with good results — 1 kg starter to 900 g flour — I decided to experiment with different feeding techniques. Reading several technical texts inspired me to question and further develop what I had learned over the years.
This method for preparing a starter stored in water is based on the following principles:
- A starter stored in water has lower lactic acidity because part of that acidity is dispersed into the storage water. During the 2 or 3 preparatory feedings, we therefore want to help rebalance this acidity.
- The ratio between starter and flour influences the conditions available for bacterial growth. Using too much starter and too little fresh flour can limit bacterial proliferation and lead to a less balanced starter. In Giambattista Montanari’s Omnia Fermenta, you can read that favorable biological conditions are obtained when the sourdough starter represents approximately 10–30% of the total refreshed dough. For example, with a 1:2 ratio, 100 g starter + 200 g flour + 80 g water produces 380 g of dough, of which the starter represents approximately 26% of the total.
Here is what I changed in this method:
- Between one feeding and the next, I ferment the starter outside the water, rather than keeping it in water at 24–26 °C (75–79 °F).
- I use a starter-to-flour ratio of 1:1.5 instead of 1:0.9.
- I allow the starter to rise until it reaches approximately 2.5 times its initial volume.
Let’s see how it works.
FIRST FEEDING – Starter Stored in Water
Begin with a 15–20 minute water bath at 38 °C (100 °F), adding 2 g of sugar or fructose per liter of water. After the bath, squeeze out the starter and feed it as follows:
- 1 kg starter, squeezed after the previous storage period
- 1.5 kg flour (W380, approximately 14–15% protein)
- 690 g warm water at the appropriate temperature (see above)
Mix until you obtain a firm, compact dough. Flatten it to approximately 1 cm thickness and give it 3 folds before shaping it into a tight ball.
Shape the starter tightly, score the surface to allow it to expand, and place it in a large container. Cover it with a cloth and ferment at 30 °C (86 °F) for approximately 3 hours and 30 minutes, until it reaches approximately 2.5 times its initial volume.
For greater accuracy, I recommend making a small test sample with a portion of the dough and marking its initial level so you can monitor the rise precisely.
The fermentation period needs to be long enough for the microbial population to develop. It is important to perform the second feeding when the starter has reached the peak of its development. In general, a well-performing starter will take approximately 3 hours and 30 minutes at 30 °C (86 °F).
SECOND FEEDING – Starter Stored in Water
- 1 kg starter from the previous feeding
- 1.5 kg flour (W380, approximately 14–15% protein)
- 690 g warm water at the appropriate temperature (see above)
Once again, mix the dough, give it 3 folds, shape it into a tight ball, score the surface, and allow it to rise to approximately 2.5 times its initial volume at 30 °C (86 °F). The fermentation time should again be approximately 3 hours and 30 minutes.
THIRD FEEDING – Starter Stored in Water
- 1 kg starter from the previous feeding
- 1.5 kg flour (W380, approximately 14–15% protein)
- 690 g warm water at the appropriate temperature (see above)
Mix the starter and give it another 3 folds. At this point, set aside the portion of starter you intend to keep and weigh the amount needed for your recipe.
- Starter for the recipe: shape it into a tight ball, score the surface, and allow it to rise once again to approximately 2.5 times its initial volume at 30 °C (86 °F) in about 3 hours and 30 minutes. At this point, the starter is ready to use.
- Starter to be stored: immerse it in cool water at approximately 19 °C (66 °F) and leave it at room temperature, around 19–20 °C (66–68 °F), for 24 hours until the next feeding.
The 3 Preparatory Feedings for a Tied Sourdough Starter
For a tied starter, begin with a water bath at 20–22 °C (68–72 °F), adding 2 g of sugar or fructose per liter of water, for approximately 15–20 minutes.
As explained above, weigh the starter before and after the bath so that you know how much water it has absorbed.
FIRST FEEDING – Tied Sourdough Starter
- 1 kg sourdough starter
- 2 kg flour (W380, approximately 14–15% protein)
- 920 g total warm water at the appropriate temperature, including the water absorbed during the bath
Mix the starter, flatten it to approximately 1 cm thickness, and give it 3 folds. Shape it into a tight ball, score the surface with a cross, place it in a container, and ferment for approximately 3 hours and 30 minutes at 30 °C (86 °F), until it reaches approximately 2.5 times its initial volume.
SECOND FEEDING – Tied Sourdough Starter
Follow the same procedure described above, but use the following proportions:
- 1 kg sourdough starter
- 1.5 kg flour (W380, approximately 14–15% protein)
- 690 g warm water at the appropriate temperature (see above)
THIRD FEEDING – Tied Sourdough Starter
Follow the same procedure as for the second feeding, using the following ratio:
- 1 kg sourdough starter
- 1.5 kg flour (W380, approximately 14–15% protein)
- 690 g warm water at the appropriate temperature (see above)
Once mixed, weigh out the starter needed for your recipe and allow it to rise until it reaches approximately 2.5 times its initial volume in 3 hours and 30 minutes at 30 °C (86 °F).
Wrap the remaining starter in a food-safe plastic sheet and then in a cotton cloth, tie it with cord, and store it at room temperature at approximately 19–20 °C (66–68 °F) for 16 hours.
Want to Learn More About Sourdough Starter?
CHECK IT OUT HOW TO feed your sourdough starter at home [eng sub]
YOUR QUESTIONS ABOUT SOURDOUGH STARTER
There is always a part of the previous dough discarded (such as the crust). However, I suggest not to use these parts, especially during the first weeks of preparation, because they can contain bacteria not tolerated by our body.
This is not the case for the refreshments made when the Sourdough is ready and mature. Here the waste parts can be dried first in the air and then in an oven at 100°C (212°F) for about 40/60 minutes and finally pulverized in a mixer.
The resulting powder can be added to the bread and pizza doughs (about 10gr/kg of flour) to enhance the acidic note.
After the 3rd, you can let the quantity used for the recipe rise again for 3 1/2 hours at 30°C (86°F). The Sourdough’s remaining part has to be soaked in cold water and left at room temperature 24 hours. The next day, you can decide whether to refresh it again (in this case, you keep it at room temperature) or store it in the fridge and refresh it every 5-7 day
If you want to make bread, pizza, and sweet doughs that are not too fat (such as croissants), you can make 2 refreshments. In case you want to prepare a cake such as Italian Panettone or Pandoro, I suggest you make 3 refreshments before using the starter in your recipe. How to Refresh Sourdough
For daily refreshments starter ratio to flour is 1:1 (1kg of starter to 1kg of flour).
However, in the 2-3 preparatory refreshments, the ratio is 1:09 (1kg of yeast and 900gr of flour).
The ideal proportion is for the water to be about 3 times the amount of Sourdough: 1kg of yeast should be soaked in 3 liters of water.
The best solution is to use an indicator. For this, take a portion of Sourdough, put it into a graduated jag, and mark the dough’s initial volume. Then let it rise in the same environment as the soaked starter. When the volume triples, then also the Sourdough is ready

















66 thoughts on “Come rinfrescare il lievito madre: tabella dosi e bagnetto”
S.O.S Lievito -> Eccessiva Acidità Lattica -> “Una volta pronto, strizzate il lievito e rinfrescatelo con un rapporto lievito:farina pari a 1:1.2 (1kg di lievito e 1.1kg di farina), idratandolo al 30% (300gr di acqua su 1kg di lievito) con acqua fresca a 22°C – 24°C.”
Ciao! Il testo sopra mostra la relazione tra il lievito e la farina di 1.2 ma la quantità presentata va da 1Kg a 1.1Kg. Giusto? Non dovrebbe essere da 1Kg a 1.2Kg?
Sempre nello stesso testo, la quantità di acqua indicata è correlata in questo caso al lievito? Perché normalmente l’acqua usa come riferimento la quantità di farina utilizzata, quindi ero in dubbio.
Ci scusiamo per il disagio e grazie per il tuo ottimo lavoro!
Ciao Fabio,
grazie mille della tua segnalazione.
Ti confermo che il quantitativo corretto di farina è 1.2kg e che la quantità di acqua in totale è 400gr.
Quando si rinfresca il lievito con un quantitativo di farina superiore al quantitativo stesso di lievito, bisogna idratare la quantità di farina che copre il lievito madre al 30% e al 50% la restante farina.
Ad esempio se rinfresco 1kg di lievito con 1.2kg di farina, idraterò al 30% la farina che corrisponde al peso del lievito (1kg di farina e 300gr di acqua) e al 50% la farina rimanente (1.2kg di farina -1kg = 200gr che idraterò che 100gr di acqua). In totale userò 300gr + 100gr = 400gr di acqua!
A presto!
Ciao! Capisco che la misurazione del pH non mi fornisce informazioni complete (rapporto acetico e lattico). Ma mi serve identificare un lievito debole e troppo forte, giusto? Ho già un pHmetro per semisolidi e quindi mi piacerebbe esplorare il più possibile.
Un altro problema, quando faccio un bagnetto freddo a 19 ° C (aggiusto l’acido lattico in eccesso), e dopo 20 minuti il lievito rimanere sul fondo, proprio come fa con il bagno a 38 ° C, posso concludere che il lievito è molto forte e deve essere aggiustato ? O a causa della temperatura più bassa non dovrei usare questo parametro nella mia analisi?
Il tuo blog è eccellente! Mi aiuta molto!
Sono brasiliano e ho usato il traduttore per porre la domanda, quindi mi scuso per gli errori.
Ciao Fabio,
tudo bom?
Purtroppo il Ph-metro non ti aiuta, ma a mio avviso crea molta confusione.
Visto che hai già questo strumento, usalo pure per capire globalmente se il tuo lievito à un ph “corretto” prima di usare il lievito negli impasti (dovrebbe stare intorno a 4 -4.4)
Nel caso del bagnetto freddo che usi per limitare la formazione di acido lattico, non puoi usare questo momento per “testare” in quanto tempo il lievito viene a galla, perché l’acqua è fredda!
Il modo migliore è sicuramente quello di assaggiare e annusare il lievito per capire se va tutto bene!
Ti link qui un articolo in cui ti aiuto a capire possibili problemi del tuo lievito:
QUICK FIXES FOR ACIDIC SOURDOUGH STARTER
Ps. Eu amo o Brasil 🙂
A presto!
Ciao!
Per fare un grande lievitato, anche mantenendo il lievito in acqua bisogna portarlo alla farina del lievitato? Se si, come fare senza sbilanciarlo? Grazie!
Ciao Gabriele,
temo di non aver capito la tua domanda! 😉