
Twizzlers Bonbon à La Fraise
Labels
Health
Nutrition
Label
Nutrient levels
Fat in low quantity (1%)
Saturated fat in low quantity (0.5%)
Sugars in high quantity (30%)
Salt in low quantity (0%)
Nutrition label

Nutrition facts
| Nutrition facts | As sold for 100 g / 100 ml |
|---|---|
| Energy | ~ 1,023 kJ (240 kcal) |
| FAT | 1 g |
| Saturated fat | 0.5 g |
| Carbohydrates | 56 g |
| Sugars | 30 g |
| Dietary fiber | ? |
| Proteins | 2 g |
| Salt | 0 g |
| Sodium | 0 g |
| Minerals | |
| Fruits, vegetables and legumes | ~ 0 % |
Nutrition facts (Detailed data)
| Nutrition facts | As sold for 100 g / 100 ml | As sold Per 100 g (packaging) | As sold Per 100 g (estimate) |
|---|---|---|---|
| Energy | ~ 1,023 kJ (240 kcal) | ? (240 kcal) | ? |
| FAT | 1 g | 1 g | ? |
| Saturated fat | 0.5 g | 0.5 g | ? |
| Carbohydrates | 56 g | 56 g | ? |
| Sugars | 30 g | 30 g | ? |
| Added sugars | ~ 65.18 g | ? | ~ 65.18 g |
| Dietary fiber | ? | ? | ? |
| Proteins | 2 g | 2 g | ? |
| Salt | 0 g | 0 g | ? |
| Sodium | 0 g | 0 g | ? |
| Minerals | |||
| Fruits, vegetables and legumes | ~ 0 % | ? | ~ 0 % |
Estimated Activity Time
Approximate time needed to burn the energy in 100 g / 100 ml: 1,023 kJ. Reference adult weight: 70 kg. Energy density: Moderate.
Ingredients
Ingredients image

Ingredients list
Ingredient information
Allergens
Ingredients analysis
Contains ingredients containing palm oil.
Vegan status unknown
Vegetarian status unknown
Food Processing
NOVA group
Elements that indicate the product is in NOVA group 4
How NOVA works
Additives
E129 - Allura redColour
Allura Red AC is a red azo dye that goes by several names, including FD&C Red 40. It is used as a food dye and has the E number E129. It is usually supplied as its red sodium salt, but can also be used as the calcium and potassium salts. These salts are soluble in water. In solution, its maximum absorbance lies at about 504 nm.
E202 - Potassium sorbatePreservative
Potassium sorbate (E202) is a synthetic food preservative commonly used to extend the shelf life of various food products.
It works by inhibiting the growth of molds, yeast, and some bacteria, preventing spoilage. When added to foods, it helps maintain their freshness and quality.
Some studies have shown that when combined with nitrites, potassium sorbate have genotoxic activity in vitro. However, potassium sorbate is generally recognized as safe (GRAS) by regulatory authorities.
E322 - LecithinsAntioxidantEmulsifier
Lecithins are natural compounds commonly used in the food industry as emulsifiers and stabilizers.
Extracted from sources like soybeans and eggs, lecithins consist of phospholipids that enhance the mixing of oil and water, ensuring smooth textures in various products like chocolates, dressings, and baked goods.
They do not present any known health risks.
E322i - LecithinAntioxidantEmulsifier
Lecithins are natural compounds commonly used in the food industry as emulsifiers and stabilizers.
Extracted from sources like soybeans and eggs, lecithins consist of phospholipids that enhance the mixing of oil and water, ensuring smooth textures in various products like chocolates, dressings, and baked goods.
They do not present any known health risks.
E330 - Citric acidAntioxidantSequestrant
Citric acid is a natural organic acid found in citrus fruits such as lemons, oranges, and limes.
It is widely used in the food industry as a flavor enhancer, acidulant, and preservative due to its tart and refreshing taste.
Citric acid is safe for consumption when used in moderation and is considered a generally recognized as safe (GRAS) food additive by regulatory agencies worldwide.
E422 - GlycerolHumectantThickener
Glycerol (; also called glycerine or glycerin; see spelling differences) is a simple polyol compound. It is a colorless, odorless, viscous liquid that is sweet-tasting and non-toxic. The glycerol backbone is found in all lipids known as triglycerides. It is widely used in the food industry as a sweetener and humectant and in pharmaceutical formulations. Glycerol has three hydroxyl groups that are responsible for its solubility in water and its hygroscopic nature.
E471 - Mono- and diglycerides of fatty acidsEmulsifierStabiliser
Mono- and diglycerides of fatty acids (E471), are food additives commonly used as emulsifiers in various processed foods.
These compounds consist of glycerol molecules linked to one or two fatty acid chains, which help stabilize and blend water and oil-based ingredients. E471 enhances the texture and shelf life of products like margarine, baked goods, and ice cream, ensuring a smooth and consistent texture.
It is generally considered safe for consumption within established regulatory limits.
E905 - Synthetic wax
Microcrystalline waxes are a type of wax produced by de-oiling petrolatum, as part of the petroleum refining process. In contrast to the more familiar paraffin wax which contains mostly unbranched alkanes, microcrystalline wax contains a higher percentage of isoparaffinic (branched) hydrocarbons and naphthenic hydrocarbons. It is characterized by the fineness of its crystals in contrast to the larger crystal of paraffin wax. It consists of high molecular weight saturated aliphatic hydrocarbons. It is generally darker, more viscous, denser, tackier and more elastic than paraffin waxes, and has a higher molecular weight and melting point. The elastic and adhesive characteristics of microcrystalline waxes are related to the non-straight chain components which they contain. Typical microcrystalline wax crystal structure is small and thin, making them more flexible than paraffin wax. It is commonly used in cosmetic formulations. Microcrystalline waxes when produced by wax refiners are typically produced to meet a number of ASTM specifications. These include congeal point (ASTM D938), needle penetration (D1321), color (ASTM D6045), and viscosity (ASTM D445). Microcrystalline waxes can generally be put into two categories: "laminating" grades and "hardening" grades. The laminating grades typically have a melt point of 140-175 F (60 - 80 oC) and needle penetration of 25 or above. The hardening grades will range from about 175-200 F (80 - 93 oC), and have a needle penetration of 25 or below. Color in both grades can range from brown to white, depending on the degree of processing done at the refinery level. Microcrystalline waxes are derived from the refining of the heavy distillates from lubricant oil production. This by-product must then be de-oiled at a wax refinery. Depending on the end use and desired specification, the product may then have its odor removed and color removed (which typically starts as a brown or dark yellow). This is usually done by means of a filtration method or by hydro-treating the wax material.
E905a - mineral oil
Microcrystalline waxes are a type of wax produced by de-oiling petrolatum, as part of the petroleum refining process. In contrast to the more familiar paraffin wax which contains mostly unbranched alkanes, microcrystalline wax contains a higher percentage of isoparaffinic (branched) hydrocarbons and naphthenic hydrocarbons. It is characterized by the fineness of its crystals in contrast to the larger crystal of paraffin wax. It consists of high molecular weight saturated aliphatic hydrocarbons. It is generally darker, more viscous, denser, tackier and more elastic than paraffin waxes, and has a higher molecular weight and melting point. The elastic and adhesive characteristics of microcrystalline waxes are related to the non-straight chain components which they contain. Typical microcrystalline wax crystal structure is small and thin, making them more flexible than paraffin wax. It is commonly used in cosmetic formulations. Microcrystalline waxes when produced by wax refiners are typically produced to meet a number of ASTM specifications. These include congeal point (ASTM D938), needle penetration (D1321), color (ASTM D6045), and viscosity (ASTM D445). Microcrystalline waxes can generally be put into two categories: "laminating" grades and "hardening" grades. The laminating grades typically have a melt point of 140-175 F (60 - 80 oC) and needle penetration of 25 or above. The hardening grades will range from about 175-200 F (80 - 93 oC), and have a needle penetration of 25 or below. Color in both grades can range from brown to white, depending on the degree of processing done at the refinery level. Microcrystalline waxes are derived from the refining of the heavy distillates from lubricant oil production. This by-product must then be de-oiled at a wax refinery. Depending on the end use and desired specification, the product may then have its odor removed and color removed (which typically starts as a brown or dark yellow). This is usually done by means of a filtration method or by hydro-treating the wax material.
Environment
Threatened species
Forest footprint
Data Source
Data presented on this page is sourced from the Open Food Facts database. This platform does not alter the original dataset; its purpose is solely to enhance data visualization and user accessibility.
Product added on December 12, 2017 at 6:49:28 PM UTC by kiliweb .
Last edit on March 17, 2026 at 4:40:26 AM UTC by new-nutrition-bot .
Product page also edited by acistopogm, chevalstar, danis1597, desan, foodless, kiliweb, new-nutrition-bot, openfoodfacts-contributors, yuka.V0xBTFNKc0FtZmdZbGNNeThTbUs0dWxIbDdHbVdIK1BkdEVOSVE9PQ, yuka.ZDZBd0M1b3Z2S1lQeC9JWnJ5emI0L2gyNExTRlRYaUtFdWdRSWc9PQ.