Dalgona coffee explained: The science behind why instant coffee foams (2024)

Joanie Tian, Chemistry editor

Dalgona coffee seems to have become a become a social media star during the COVID-19 restrictions. Photo by Bhupendra Singh, CC0, via Pexel

Canadians are stuck at home to limit the spread of COVID-19, and more and more of us are spending our time worshiping the gods of social media and following TikTok recipes. In these extraordinary times, Dalgona coffee has become a social media star. For those of you who don’t follow as many food bloggers as I do, this is a drink made by vigorously whipping or shaking together equal portions of water, sugar, and instant coffee and floating the resulting foam on some milk (hot or cold – your choice).

Dalgona coffee is named after the South Korean street candy dalgona because it has a similar taste, colour, and texture, although there isn’t actually any dalgona candy in Dalgona coffee. Other cultures have their own variations on the drink, such as Greece’s frappé and India’s beaten coffee.

The first time I saw a recipe for Dalgona coffee, I was surprised that such simple ingredients could form a solid foam because you don’t use any dairy products (such as cream) or egg whites. Then I realized I didn’t understand why those things could be whipped into foam either. I did some Googling, but the explanations I found for Dalgona coffee’s foam were too vague to provide a satisfactory answer and didn’t make sense to me. I developed a minor dalgona foam obsession. I wanted to understand, down to the microscopic level, why some things produce better (longer-lasting) foam than others.

My attempt at making Dalgona coffee didn’t turn out as Insta-worthy as I had hoped. Photo by Joanie Tian.

Because the only ingredients are instant coffee, sugar, and water, the most obvious clue I had in solving the mystery of Dalgona coffee was that it required instant coffee because sugar and water on their own do not foam. I also found that certain brands of instant coffee, particularly the cheaper ones, foam up better than certain, often more expensive, ones. Then I found out that there are two types of instant coffee: spray-dried and freeze-dried.

Instant coffee is made by brewing and then dehydrating coffee. There are two dehydration processes. Spray-drying coffee involves spraying the coffee into hot and dry air which evaporates the water, leaving dried coffee particles. This method is more efficient and cost-effective than freeze-drying coffee, which involves deep-freezing concentrated coffee and then putting it through a low-pressure tube so that the frozen water in the coffee granules undergoes sublimation (i.e., it vaporizes). Freeze-drying coffee preserves more of the aromatic compounds and oils in the original coffee, which makes for a better-tasting end product.

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As it turns out, the lack of oils in spray-dried coffee is why it foams up better than freeze-dried or regularly brewed coffee. And that is why cheaper brands of instant coffee tend to make better Dalgona coffee than expensive ones, since spray-dried coffee is cheaper than freeze-dried coffee.

Naturally, the next thing I wanted to know was why coffee oils prevent the coffee from foaming, and I found that the answer applies to making meringues as well.

Water molecules are polar. This means that they have a positively charged side (the side with the hydrogen atoms) and a negatively charged side (with an oxygen atom). In non-polar molecules, like oils, the electric charges aren’t separated like that. Polar molecules interact well with other polar molecules and non-polar molecules interact well with other non-polar molecules, but polar and non-polar molecules can’t interact much with each other. That’s why some substances dissolve better in water, some dissolve better in oil, and water and oil don’t mix with or dissolve in each other.

Amphiphilic molecules are molecules with polar areas and non-polar areas, allowing them to interact with both polar and non-polar substances. This means that they can interact with both water and oil. Many proteins, which are long, folded chains of amino acids, are amphiphilic, although they are often folded so that their hydrophobic (non-polar) parts are tucked inwards and their hydrophilic (polar) parts face outwards to interact with their polar environment.

The most basic meringue can be made by beating together sugar and egg whites, which are around 90 per cent water and 10 per cent protein. When proteins denature, they unfold and lose the ability to function. This can happen in a variety of ways. They can be denatured by physical force, such as the vigorous whipping involved in making a meringue, and by being exposed to air, which happens when air is whipped into the meringues.

So how do egg whites turn into this? Whipping them enough will do it. Image source: Pikrepo, CC0

The denaturing of the proteins reveals their hydrophobic parts. These face the air in air bubbles, while the hydrophilic parts face the water surrounding the bubble. The denatured proteins bond to each other to form a structure that stabilizes the air pockets into foam.

Oils, which exist in egg yolk, can destabilize this balance by interrupting the structure formed by the proteins around the bubble. This weakens the walls of the bubble, making it more likely to pop. Brewed coffee contains proteins and other amphiphilic compounds. It also contains oils, which is why it’s much harder to make Dalgona coffee out of regular coffee or whip up meringues with oily equipment, although both are possible.

The final component worth mentioning in Dalgona coffee is the sugar. Water is denser than air, so gravity will always be pulling the bubbles’ watery walls downwards while the air in the bubbles wants to rise above the water. The sugar increases the viscosity of the water so that it drains more slowly and increases the stability of the bubble walls, making the foam last longer. But Dalgona coffee, like meringues, can be made without sugar. The coffee foam will just be darker and collapse faster than the sugary version.

I hope that understanding the mechanisms behind making Dalgona coffee inspires you to experiment with it and that you become more curious about the science behind other everyday reactions that we take for granted.

~30~

Related

Dalgona coffee explained: The science behind why instant coffee foams (2024)

FAQs

Dalgona coffee explained: The science behind why instant coffee foams? ›

Popular Mechanics explains the dalgona mix has a similar composition of proteins, fiber, and minerals, and a very small amount of fat (especially when using spray-dried instant coffee and its lack of oils), which allows it to foam up; further, dalgona's sugar acts as a glue that holds the foam together, keeping the mix ...

Why does Dalgona Coffee foam? ›

Terry Mabbett notes that spray-dried instant coffee's “low-coffee oil content” is what makes it so ideal for foam. While freeze-dried coffee may be more aromatic, the coffee oils present “can quickly stimulate and speed up the collapse of the foaming process.”

Why is instant coffee so foamy? ›

While the carbon dioxide formed during roasting is responsible for crema formation in espresso, gasification is the established foaming approach in instant coffee. The protein-like fractions and polysaccharides extracted from roasted coffee promote foamability and foam stability, respectively.

What is the chemical reaction in Dalgona Coffee? ›

The denaturing of the proteins reveals their hydrophobic parts. These face the air in air bubbles, while the hydrophilic parts face the water surrounding the bubble. The denatured proteins bond to each other to form a structure that stabilizes the air pockets into foam.

What is the science behind instant coffee? ›

Dried leaves are extracted with hot water to give an extract containing 3–5% solids. This extract is concentrated by vacuum evaporator. The volatile aroma compounds which flash off in the early stages of evaporation are condensed and added back to the concentrate prior to drying.

What is the purpose of foam in coffee? ›

Coffee foam, also known as crema, plays a crucial role in indicating the quality of coffee. It serves as a trap for the coffee's aroma, enhancing the overall sensory experience.

Why does coffee foam when blended? ›

As the coffee and other ingredients are vigorously mixed, air is incorporated into the mixture, leading to the formation of a frothy foam. These bubbles serve as the foundation of the luxurious texture in whipped coffee, providing a light and velvety mouthfeel.

Why isn't my Dalgona coffee whip? ›

One of the most common problems encountered when making Dalgona Coffee is using the wrong ratio of ingredients. If the proportion of instant coffee, sugar, and hot water is not balanced, it can result in the mixture failing to whip to the desired fluffy consistency.

What is the foaming agent in instant coffee? ›

The mixture is used with a hot coffee beverage--freshly brewed or prepared from instant coffee--to form a foamed head thereon. The formulation consists of a sugar, sodium bicarbonate, a releasing agent having at least two-components, and a hydrating agent.

What is special about Dalgona coffee? ›

Dalgona coffee is a whipped, frothy iced coffee drink made with instant coffee, sugar, water, and milk. Also known as whipped coffee, frothy coffee, or fluffy coffee, dalgona coffee has two distinct layers made from whipped coffee cream sitting on top of iced milk. It's crazy fun and easy to make at home, too!

Is Dalgona coffee bad for you? ›

While Dalgona coffee is a delicious treat, it is essential to be mindful of its potential health risks, including high sugar and calorie content that may contribute to digestive issues and disrupt sleep patterns, leading to insomnia.

What is the Dalgona coffee formula? ›

In a mixing bowl, combine equal parts of instant coffee, sugar, and hot water. Whisk vigorously until the mixture transforms into a thick, velvety foam. It's crucial to maintain a consistent whisking motion to achieve the perfect texture. Next, fill a glass with cold or warm milk, depending on your preference.

Why does Dalgona coffee taste bad? ›

Maybe the amount of sugar you've added is just not enough, so try adding more sugar or use less coffee. Also, if you're using dark roast instant coffee - most instant coffees are dark roasted and strong, it can make your coffee really bitter.

What is a major problem with instant coffee solutions? ›

The major problem with these 'instant coffee' solutions is that they are invariably short-lived. If we stubbornly refuse to give up this search for quick solutions, all we do is end up on the wrong track.

Why is instant coffee so gross? ›

Instant is brewed into a thick liquid and then converted into a powder by freeze-drying or spray-drying the concentrated brewed coffee. As a result, there is generally a chalky consistency and somewhat sour taste connected to instant coffee.

Why do Greeks drink instant coffee? ›

Dritsas' employee, Dimitris Vakondios, was looking for a way to have his usual instant coffee during his break but could not find any hot water, so, he mixed the coffee with cold water and ice cubes in a shaker. This improvised experiment established the frappé which quickly grew in popularity in Greece.

Why is my dalgona not fluffy? ›

One of the most common problems encountered when making Dalgona Coffee is using the wrong ratio of ingredients. If the proportion of instant coffee, sugar, and hot water is not balanced, it can result in the mixture failing to whip to the desired fluffy consistency.

What causes foamy crema? ›

The espresso crema is comprised of microbubbles of CO2 gas that are suspended in water. The bubbles attach to the natural oils and fats present in coffee, then rise to the top of the beverage. The end result is a recognizable “Guinness” effect.

How long does Dalgona Coffee foam last? ›

HOW TO STORE DALGONA WHIPPED COFFEE. Whipped coffee will remain fluffy for quite a few hours in the refrigerator. If you've made too much or you'd like to make a big batch of whipped coffee to save time in the morning: refrigerate in an airtight container for up to 1 week.

How to stabilize Dalgona Coffee? ›

Sugar. You need 2 Tablespoons sugar to make dalgona coffee. The sugar in the recipe helps stabilize the foam and whip it up to its utmost fluffiest state.

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