
Rowntrees Fruit Pastilles 4X52G
Health
Nutrition
Nutri-Score data warning
Nutrition facts
| Nutrition facts | As sold for 100 g / 100 ml |
|---|---|
| Energy | ~ 1477.6 kJ (352 kcal) |
| Fat | 0.1 g |
| Saturated fat | 0 g |
| Carbohydrates | 82.6 g |
| Sugars | 55.9 g |
| Dietary fiber | ? |
| Proteins | 4.1 g |
| Salt | 0.3 g |
| Sodium | 0.12 g |
| Fruits, vegetables and legumes | ~ 1 % |
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 | ~ 1477.6 kJ (352 kcal) | ? (352 kcal) | ? |
| Fat | 0.1 g | 0.1 g | ? |
| Saturated fat | 0 g | 0 g | ? |
| Carbohydrates | 82.6 g | 82.6 g | ? |
| Sugars | 55.9 g | 55.9 g | ? |
| Dietary fiber | ? | ? | ? |
| Proteins | 4.1 g | 4.1 g | ? |
| Salt | 0.3 g | 0.3 g | ? |
| Sodium | 0.12 g | 0.12 g | ? |
| Fruits, vegetables and legumes | ~ 1 % | ? | ~ 1 % |
Ingredients
Ingredients image

Ingredients list
Ingredient information
Added sugars
Allergens
Ingredients analysis
Palm oil content unknown
Contains non-vegan ingredients.
Unrecognized: en:less-than-4-years, en:have-limited-chewing-ability-and-could-choke-on-small-sweets, en:ountrees-fruit-pastilles-since-188t-ses-astil-stilles
Contains non-vegetarian ingredients.
Unrecognized: en:less-than-4-years, en:have-limited-chewing-ability-and-could-choke-on-small-sweets, en:ountrees-fruit-pastilles-since-188t-ses-astil-stilles
Food Processing
NOVA group
Elements that indicate the product is in NOVA group 4
How NOVA works
Additives
E100 - CurcuminColour
No additive description is available yet.
E141 - Copper complexes of chlorophylls and chlorophyllinsColour
No additive description is available yet.
E141ii - Copper complexes of chlorophyllinsColour
No additive description is available yet.
E14XX - Modified StarchEmulsifierStabiliserThickener
No additive description is available yet.
E160a - caroteneColour
β-Carotene is an organic, strongly colored red-orange pigment abundant in plants and fruits. It is a member of the carotenes, which are terpenoids (isoprenoids), synthesized biochemically from eight isoprene units and thus having 40 carbons. Among the carotenes, β-carotene is distinguished by having beta-rings at both ends of the molecule. β-Carotene is biosynthesized from geranylgeranyl pyrophosphate.β-Carotene is the most common form of carotene in plants. When used as a food coloring, it has the E number E160a. The structure was deduced by Karrer et al. in 1930. In nature, β-carotene is a precursor (inactive form) to vitamin A via the action of beta-carotene 15,15'-monooxygenase.Isolation of β-carotene from fruits abundant in carotenoids is commonly done using column chromatography. It can also be extracted from the beta-carotene rich algae, Dunaliella salina. The separation of β-carotene from the mixture of other carotenoids is based on the polarity of a compound. β-Carotene is a non-polar compound, so it is separated with a non-polar solvent such as hexane. Being highly conjugated, it is deeply colored, and as a hydrocarbon lacking functional groups, it is very lipophilic.
E160ai - Beta-caroteneColour
No additive description is available yet.
E163 - AnthocyaninsColour
Anthocyanins (also anthocyans; from Greek: ἄνθος (anthos) "flower" and κυάνεος/κυανοῦς kyaneos/kyanous "dark blue") are water-soluble vacuolar pigments that, depending on their pH, may appear red, purple, or blue. Food plants rich in anthocyanins include the blueberry, raspberry, black rice, and black soybean, among many others that are red, blue, purple, or black. Some of the colors of autumn leaves are derived from anthocyanins.Anthocyanins belong to a parent class of molecules called flavonoids synthesized via the phenylpropanoid pathway. They occur in all tissues of higher plants, including leaves, stems, roots, flowers, and fruits. Anthocyanins are derived from anthocyanidins by adding sugars. They are odorless and moderately astringent. Although approved to color foods and beverages in the European Union, anthocyanins are not approved for use as a food additive because they have not been verified as safe when used as food or supplement ingredients. There is no conclusive evidence anthocyanins have any effect on human biology or diseases.
E270 - Lactic acid
LACTIC ACID is an organic compound with the formula CH3CH(OH)CO2H. In the form of its conjugate base called lactate (this is thus different and kept as a separate ingredient). Lactic acid is chiral, consisting of two optical isomers. One is known as L-(+)-lactic acid or (S)-lactic acid and the other, its mirror image, is D-(−)-lactic acid or (R)-lactic acid in food the L-variant is used
E296 - Malic acid
MALIC ACID is an organic compound with the molecular formula C4H6O5. Malic acid has two stereoisomeric forms (L- and D-enantiomers), though only the L-isomer exists naturally.
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.
E331 - Sodium citratesEmulsifierSequestrantStabiliser
DISODIUM CITRATE, more properly, disodium hydrogen citrate, is an acid salt of citric acid with the chemical formula Na2C6H6O7. It is used as an antioxidant in food and to improve the effects of other antioxidants. It is also used as an acidity regulator and sequestrant. Typical products include gelatin, jam, sweets, ice cream, carbonated beverages, milk powder, wine, and processed cheeses.
E331iii - Trisodium citrate
No additive description is available yet.
E414 - Acacia gumCarrierEmulsifierStabiliserThickener
Gum arabic, also known as acacia gum, arabic gum, gum acacia, acacia, Senegal gum and Indian gum, and by other names, is a natural gum consisting of the hardened sap of various species of the acacia tree. Originally, gum arabic was collected from Acacia nilotica which was called the "gum arabic tree"; in the present day, gum arabic is collected from acacia species, predominantly Acacia senegal and Vachellia (Acacia) seyal; the term "gum arabic" does not indicate a particular botanical source. In a few cases so‐called "gum arabic" may not even have been collected from Acacia species, but may originate from Combretum, Albizia or some other genus. Producers harvest the gum commercially from wild trees, mostly in Sudan (80%) and throughout the Sahel, from Senegal to Somalia—though it is historically cultivated in Arabia and West Asia. Gum arabic is a complex mixture of glycoproteins and polysaccharides. It is the original source of the sugars arabinose and ribose, both of which were first discovered and isolated from it, and are named after it. Gum arabic is soluble in water. It is edible, and used primarily in the food industry as a stabilizer, with EU E number E414. Gum arabic is a key ingredient in traditional lithography and is used in printing, paint production, glue, cosmetics and various industrial applications, including viscosity control in inks and in textile industries, though less expensive materials compete with it for many of these roles. While gum arabic is now produced throughout the African Sahel, it is still harvested and used in the Middle East.
E428 - Gelatine
No additive description is available yet.
Environment
Green-Score, origins bonus, and transportation impact are shown for Worldwide .
Green Score
Overall grade
About Green-Score
Current scope
Green-Score availability
Bonuses and maluses
Declared origins
Packaging impact
Packaging
Packaging impact
Data precision
Transportation
Declared origins
Forest footprint
Forest footprint
Deforestation risk details
Data Source
Product data comes from Open Food Facts. Food Benchmark also adds translations, category comparisons and explanatory calculations.
The database is licensed under ODbL 1.0, individual contents under DbCL 1.0, and product photos under CC BY-SA 3.0.
Product added on November 7, 2018 at 12:25:55 PM UTC by kiliweb .
Last edit on March 17, 2026 at 11:24:59 AM UTC by new-nutrition-bot .
Product page also edited by charlesnepote, inf, kiliweb, new-nutrition-bot, openfoodfacts-contributors, yuka.UVlBQlRhRmJwLzQyd00wQndSN2Myb05SOWJDS1RFbXhMT0ErSUE9PQ.