Cooking is science and tradition

Cooking is all about science. In this blog our chef Peter Coucquyt will give you insights in the chemistry going on in the kitchen...

maandag 29 november 2010

Hydrocolloids in the kitchen

What are food hydrocolloids and what can we do with it in the kitchen?
Hydrocolloids or gums are waters dispersable products producing gels or viscous liquids.
There exist 2 different types of hydrocolloids: thickeners and gelling agents
Hydrocolloids disperse or “dissolve” in water. A hydrocolloid in solution can be compared with a strand where molecules of water are bound to. 
In a thickened product, these strands with bound water are moving separately and freely, which results in a product with fluid properties. In a gelled product, the strands are bound to eachother and form three dimensional network, in which the water molecules are kept. This product does not have fluid properties and is more like a solid.
In addition to their primary purpose of thickening and/or gelling, they often have secondary functions, such as emulsifier, whipping agent,… .
Gelatine for example produces a gel when cooled down. We can also use gelatine as an emulsifier (a gelatine based gel mixed with some oil gives a mayonnaise-like structure), a whipping agent (a whipped mixture with gelatine gives a marshmallow-like structure) or clarification agent (a stock lightly gelled with gelatine, frozen and defrosted gives a consommé).
In following examples the students made some dishes using different hydrocolloids.
Deconstruction of a crab cocktail: tomato paper, marshmallow of tomato, flexible gel of ketchup filled with crab mayonnaise, grapefruit fluid gel
Cod – aubergine/miso gnocchi – pork dashi – lemon zest
Deconstruction of a classic Foret Noir: chocolate flan, cherry crème, cherry crumble, cherry croquant, pâte de fruit of cream and Kirsh
Forest: chocolate/hazelnut espuma, chocolate powder, hazelnut powder, lemon merinque, pistachio/hazelnut sponge cake, cep ice cream, puffed quinoa
Deconstruction of a classic “Hutespot”: Brussels sprout sponge cake, pickled carrots, mustard sphere, leek mayonnaise, potato espuma, turnip, puffed pork fat, onion foam

dinsdag 19 oktober 2010

Influence of type of sugar on color of cookie

The reaction of Maillard is a reaction between a sugar and a protein. The sugar should be a reducing sugar, meaning that the sugar has to have the possibility to react with an amino acid (protein). Examples of reducing sugars are fructose and glucose. Saccharose or sucrose is not a reducing sugar. How comes?


As you see in the picture, glucose and fructose can react with a protein while sucrose should split first in glucose and fructose by heat or acid, which takes more time.
So, in the kitchen we can influence the color of a cookie by using a more reducing sugar or a less reducing sugar. The darker you want the cookie to be, the more reducing the sugar has to be. 
Fructose is more reducing than glucose followed by maltose, lactose and sucrose.

As you can see in the picture below, honey (contains fructose) and fructose itself provides a more darker cookie although it is based on the same recipe and baking time.


donderdag 16 september 2010

Our kitchen-lab

At our office in Bruges we have a kitchen and a lab, which is of course used by our chefs and scientists, but chefs interested in testing new equipment are also welcome...