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Crush Peach Strawberry Dent - 25 g

Crush Peach Strawberry Dent - 25 g

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Streckkod: 7041111135291 (EAN / EAN-13)

Kvantitet: 25 g

Förpackning: Papper

Varumärken: Crush

Kategorier: Snacks, Söta snacks, Konfekt

Butiker: Willys

Länder där såld: Sverige

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Ingredienser

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    19 ingredienser


    sötningsmedel (xylitol 39%, maltitol, sorbitol, steviolglykosider), stabiliseringsmedel (arabisk gummi), vann, surhetsregulerende midler (E330, E296), aroma, färgämnen (E120, E160a), ytbehandlingsmedel (kokosolje, glyserol, E901).
    Spår: Nötter

Food processing

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    Ultra processed foods


    Elements that indicate the product is in the 4 - Ultra bearbetade livsmedel och drycker group:

    • Tillsats: E120 - Karmin
    • Tillsats: E160a - Karoten
    • Tillsats: E414 - Gummi arabicum
    • Tillsats: E420 - Sorbitol
    • Tillsats: E901 - Bivax vitt och gult
    • Tillsats: E960 - Steviolglykosider
    • Tillsats: E965 - Maltitol
    • Ingrediens: Färg
    • Ingrediens: Ytbehandlingsmedel
    • Ingrediens: Sötningsmedel

    Food products are classified into 4 groups according to their degree of processing:

    1. Obearbetade eller minimalt bearbetade livsmedel
    2. Bearbetade kulinariska ingredienser
    3. Halvfabrikat
    4. Ultra processed foods

    The determination of the group is based on the category of the product and on the ingredients it contains.

    Learn more about the NOVA classification

Tillsatser

  • E120 - Karmin


    Carminic acid: Carminic acid -C22H20O13- is a red glucosidal hydroxyanthrapurin that occurs naturally in some scale insects, such as the cochineal, Armenian cochineal, and Polish cochineal. The insects produce the acid as a deterrent to predators. An aluminum salt of carminic acid is the coloring agent in carmine. Synonyms are C.I. 75470 and C.I. Natural Red 4. The chemical structure of carminic acid consists of a core anthraquinone structure linked to a glucose sugar unit. Carminic acid was first synthesized in the laboratory by organic chemists in 1991.
    Källa: Wikipedia (Engelska)
  • E160a - Karoten


    Carotene: The term carotene -also carotin, from the Latin carota, "carrot"- is used for many related unsaturated hydrocarbon substances having the formula C40Hx, which are synthesized by plants but in general cannot be made by animals -with the exception of some aphids and spider mites which acquired the synthesizing genes from fungi-. Carotenes are photosynthetic pigments important for photosynthesis. Carotenes contain no oxygen atoms. They absorb ultraviolet, violet, and blue light and scatter orange or red light, and -in low concentrations- yellow light. Carotenes are responsible for the orange colour of the carrot, for which this class of chemicals is named, and for the colours of many other fruits, vegetables and fungi -for example, sweet potatoes, chanterelle and orange cantaloupe melon-. Carotenes are also responsible for the orange -but not all of the yellow- colours in dry foliage. They also -in lower concentrations- impart the yellow coloration to milk-fat and butter. Omnivorous animal species which are relatively poor converters of coloured dietary carotenoids to colourless retinoids have yellowed-coloured body fat, as a result of the carotenoid retention from the vegetable portion of their diet. The typical yellow-coloured fat of humans and chickens is a result of fat storage of carotenes from their diets. Carotenes contribute to photosynthesis by transmitting the light energy they absorb to chlorophyll. They also protect plant tissues by helping to absorb the energy from singlet oxygen, an excited form of the oxygen molecule O2 which is formed during photosynthesis. β-Carotene is composed of two retinyl groups, and is broken down in the mucosa of the human small intestine by β-carotene 15‚15'-monooxygenase to retinal, a form of vitamin A. β-Carotene can be stored in the liver and body fat and converted to retinal as needed, thus making it a form of vitamin A for humans and some other mammals. The carotenes α-carotene and γ-carotene, due to their single retinyl group -β-ionone ring-, also have some vitamin A activity -though less than β-carotene-, as does the xanthophyll carotenoid β-cryptoxanthin. All other carotenoids, including lycopene, have no beta-ring and thus no vitamin A activity -although they may have antioxidant activity and thus biological activity in other ways-. Animal species differ greatly in their ability to convert retinyl -beta-ionone- containing carotenoids to retinals. Carnivores in general are poor converters of dietary ionone-containing carotenoids. Pure carnivores such as ferrets lack β-carotene 15‚15'-monooxygenase and cannot convert any carotenoids to retinals at all -resulting in carotenes not being a form of vitamin A for this species-; while cats can convert a trace of β-carotene to retinol, although the amount is totally insufficient for meeting their daily retinol needs.
    Källa: Wikipedia (Engelska)
  • E296 - Äppelsyra


    Malic acid: Malic acid is an organic compound with the molecular formula C4H6O5. It is a dicarboxylic acid that is made by all living organisms, contributes to the pleasantly sour taste of fruits, and is used as a food additive. Malic acid has two stereoisomeric forms -L- and D-enantiomers-, though only the L-isomer exists naturally. The salts and esters of malic acid are known as malates. The malate anion is an intermediate in the citric acid cycle.
    Källa: Wikipedia (Engelska)
  • E330 - Citronsyra


    Citric acid: Citric acid is a weak organic acid that has the chemical formula C6H8O7. It occurs naturally in citrus fruits. In biochemistry, it is an intermediate in the citric acid cycle, which occurs in the metabolism of all aerobic organisms. More than a million tons of citric acid are manufactured every year. It is used widely as an acidifier, as a flavoring and chelating agent.A citrate is a derivative of citric acid; that is, the salts, esters, and the polyatomic anion found in solution. An example of the former, a salt is trisodium citrate; an ester is triethyl citrate. When part of a salt, the formula of the citrate ion is written as C6H5O3−7 or C3H5O-COO-3−3.
    Källa: Wikipedia (Engelska)
  • E414 - Gummi arabicum


    Gum arabic: 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.
    Källa: Wikipedia (Engelska)
  • E420 - Sorbitol


    Sorbitol: Sorbitol --, less commonly known as glucitol --, is a sugar alcohol with a sweet taste which the human body metabolizes slowly. It can be obtained by reduction of glucose, which changes the aldehyde group to a hydroxyl group. Most sorbitol is made from corn syrup, but it is also found in nature, for example in apples, pears, peaches, and prunes. It is converted to fructose by sorbitol-6-phosphate 2-dehydrogenase. Sorbitol is an isomer of mannitol, another sugar alcohol; the two differ only in the orientation of the hydroxyl group on carbon 2. While similar, the two sugar alcohols have very different sources in nature, melting points, and uses.
    Källa: Wikipedia (Engelska)
  • E901 - Bivax vitt och gult


    Beeswax: Beeswax -cera alba- is a natural wax produced by honey bees of the genus Apis. The wax is formed into "scales" by eight wax-producing glands in the abdominal segments of worker bees, which discard it in or at the hive. The hive workers collect and use it to form cells for honey storage and larval and pupal protection within the beehive. Chemically, beeswax consists mainly of esters of fatty acids and various long-chain alcohols. Beeswax has long-standing applications in human food and flavoring. For example, it is used as a glazing agent or as a light/heat source. It is edible, in the sense of having similar negligible toxicity to plant waxes, and is approved for food use in most countries and the European Union under the E number E901. However, the wax monoesters in beeswax are poorly hydrolysed in the guts of humans and other mammals, so they have insignificant nutritional value. Some birds, such as honeyguides, can digest beeswax. Beeswax is the main diet of wax moth larvae.
    Källa: Wikipedia (Engelska)
  • E960 - Steviolglykosider


    Steviol glycoside: Steviol glycosides are the chemical compounds responsible for the sweet taste of the leaves of the South American plant Stevia rebaudiana -Asteraceae- and the main ingredients -or precursors- of many sweeteners marketed under the generic name stevia and several trade names. They also occur in the related species Stevia phlebophylla -but in no other species of Stevia- and in the plant Rubus chingii -Rosaceae-.Steviol glycosides from Stevia rebaudiana have been reported to be between 30 and 320 times sweeter than sucrose, although there is some disagreement in the technical literature about these numbers. They are heat-stable, pH-stable, and do not ferment. Additionally, they do not induce a glycemic response when ingested, because humans can not metabolize stevia. This makes them attractive as natural sugar substitutes for diabetics and other people on carbohydrate-controlled diets. Steviol glycosides stimulate the insulin secretion through potentiation of the β-cell, preventing high blood glucose after a meal. The acceptable daily intake -ADI- for steviol glycosides, expressed as steviol equivalents, has been established to be 4 mg/kg body weight/day, and is based on no observed effects of a 100 fold higher dose in a rat study.
    Källa: Wikipedia (Engelska)
  • E965 - Maltitol


    Maltitol: Maltitol is a sugar alcohol -a polyol- used as a sugar substitute. It has 75–90% of the sweetness of sucrose -table sugar- and nearly identical properties, except for browning. It is used to replace table sugar because it is half as caloric, does not promote tooth decay, and has a somewhat lesser effect on blood glucose. In chemical terms, maltitol is known as 4-O-α-glucopyranosyl-D-sorbitol. It is used in commercial products under trade names such as Lesys, Maltisweet and SweetPearl.
    Källa: Wikipedia (Engelska)

Ingrediensanalys

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    Icke-vegan


    Non-vegan ingredients: E120, E901

    Vissa ingredienser kunde inte kännas igen.

    Vi behöver din hjälp!

    You can help us recognize more ingredients and better analyze the list of ingredients for this product and others:

    • Edit this product page to correct spelling mistakes in the ingredients list, and/or to remove ingredients in other languages and sentences that are not related to the ingredients.
    • Add new entries, synonyms or translations to our multilingual lists of ingredients, ingredient processing methods, and labels.

    If you would like to help, join the #ingredients channel on our Slack discussion space and/or learn about ingredients analysis on our wiki. Thank you!

  • icon

    Icke-vegetarisk


    Non-vegetarian ingredients: E120

    Vissa ingredienser kunde inte kännas igen.

    Vi behöver din hjälp!

    You can help us recognize more ingredients and better analyze the list of ingredients for this product and others:

    • Edit this product page to correct spelling mistakes in the ingredients list, and/or to remove ingredients in other languages and sentences that are not related to the ingredients.
    • Add new entries, synonyms or translations to our multilingual lists of ingredients, ingredient processing methods, and labels.

    If you would like to help, join the #ingredients channel on our Slack discussion space and/or learn about ingredients analysis on our wiki. Thank you!

The analysis is based solely on the ingredients listed and does not take into account processing methods.
  • icon

    Details of the analysis of the ingredients

    Vi behöver din hjälp!

    Vissa ingredienser kunde inte kännas igen.

    Vi behöver din hjälp!

    You can help us recognize more ingredients and better analyze the list of ingredients for this product and others:

    • Edit this product page to correct spelling mistakes in the ingredients list, and/or to remove ingredients in other languages and sentences that are not related to the ingredients.
    • Add new entries, synonyms or translations to our multilingual lists of ingredients, ingredient processing methods, and labels.

    If you would like to help, join the #ingredients channel on our Slack discussion space and/or learn about ingredients analysis on our wiki. Thank you!

    : sötningsmedel (xylitol 39%, maltitol, sorbitol, steviolglykosider), stabiliseringsmedel (arabisk gummi), vann, surhetsregulerende midler (e330, e296), aroma, färgämnen (e120, e160a), ytbehandlingsmedel (kokosolje, glyserol, e901)
    1. sötningsmedel -> en:sweetener
      1. xylitol -> en:e967 - vegan: yes - vegetarian: yes - percent: 39
      2. maltitol -> en:e965 - vegan: yes - vegetarian: yes
      3. sorbitol -> en:e420 - vegan: yes - vegetarian: yes
      4. steviolglykosider -> en:e960 - vegan: yes - vegetarian: yes
    2. stabiliseringsmedel -> en:stabiliser
      1. arabisk gummi -> en:e414 - vegan: yes - vegetarian: yes
    3. vann -> sv:vann
    4. surhetsregulerende midler -> sv:surhetsregulerende-midler
      1. e330 -> en:e330 - vegan: yes - vegetarian: yes
      2. e296 -> en:e296 - vegan: yes - vegetarian: yes
    5. aroma -> sv:aroma
    6. färgämnen -> en:colour
      1. e120 -> en:e120 - vegan: no - vegetarian: no
      2. e160a -> en:e160a - vegan: maybe - vegetarian: maybe - from_palm_oil: maybe
    7. ytbehandlingsmedel -> en:glazing-agent
      1. kokosolje -> sv:kokosolje
      2. glyserol -> sv:glyserol
      3. e901 -> en:e901 - vegan: no - vegetarian: yes

Näring

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    Very good nutritional quality


    ⚠ ️Warning: the amount of fruits, vegetables and nuts is not specified on the label, it was estimated from the list of ingredients: 0

    This product is not considered a beverage for the calculation of the Nutri-Score.

    Positiva poäng: 5

    • Proteiner: 0 / 5 (värde: 1, avrundat värde: 1)
    • Fiber: 5 / 5 (värde: 25, avrundat värde: 25)
    • Frukt, grönsaker, nötter och raps- / valnöt- / olivoljor: 0 / 5 (värde: 0, avrundat värde: 0)

    Negativa poäng: 2

    • Energi: 2 / 10 (värde: 861, avrundat värde: 861)
    • Socker: 0 / 10 (värde: 0, avrundat värde: 0)
    • Mättat fett: 0 / 10 (värde: 0, avrundat värde: 0)
    • Natrium: 0 / 10 (värde: 0, avrundat värde: 0)

    The points for proteins are counted because the negative points are less than 11.

    Näringsvärde: (2 - 5)

    Nutri-Score:

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    Näringsfakta


    Näringsfakta Som såld
    för 100 g / 100 ml
    Compared to: Konfekt
    Energi 861 kj
    (208 kcal)
    −51 %
    Fett 0,1 g −99 %
    Mättat fett 0 g −100 %
    Kolhydrat 62 g −6 %
    Sockerarter 0 g −100 %
    Fiber 25 g +395 %
    Protein 1 g −76 %
    Salt 0 g −100 %
    Fruits‚ vegetables‚ nuts and rapeseed‚ walnut and olive oils (estimate from ingredients list analysis) 0 %

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