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Codi de barres: 5410687030521 (EAN / EAN-13)

Països on es va vendre: Espanya

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Salut

Ingredients

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    28 ingredients


    : Harina de trigo, grasa de palma, dextrosa, pier pie: emulgente (E 481, E 472e, E 471, E 322), sal, almidón, gluten piez de trigo, gasificante (E 500ii,E 450i), harina de malta entr [cebada], estabilizante (E 412, E 3411), colorante (E 160a), Surn Agu, aromas, antioxidante (E 300) y enzimas [trigo],
    Al·lèrgens: en:Gluten

Processament d'aliments

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    Aliments ultra processats


    Elements que indiquen que el producte està al grup 4 - Aliments i begudes ultraprocessats:

    • Additiu: E160a - Carotè
    • Additiu: E322 - Lecitines
    • Additiu: E412 - Goma de guar
    • Additiu: E450 - Difosfat
    • Additiu: E471 - Monoglicèrids i diglicèrids d'àcids grassos
    • Additiu: E472e - Èsters monoacetil i diacetil tartàrics de monoglicèrids i diglicèrids d'àcids grassos
    • Additiu: E481 - Estearoïl-2-lactilat de sodi
    • Ingredient: Color
    • Ingredient: Dextrosa
    • Ingredient: Emulsionant
    • Ingredient: Aromes
    • Ingredient: Glucosa

    Els productes alimentaris es classifiquen en 4 grups segons el seu grau de processament:

    1. Aliments no processats o mínimament processats
    2. Ingredients culinaris processats
    3. Aliments processats
    4. Aliments ultra processats

    La determinació del grup es fa en funció de la categoria del producte i dels ingredients que conté.

    Més informació sobre la classificació NOVA

Additius

  • E160a - Carotè


    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.
    Origen: Wikipedia (Anglès)
  • E322 - Lecitines


    Lecithin: Lecithin -UK: , US: , from the Greek lekithos, "egg yolk"- is a generic term to designate any group of yellow-brownish fatty substances occurring in animal and plant tissues, which are amphiphilic – they attract both water and fatty substances -and so are both hydrophilic and lipophilic-, and are used for smoothing food textures, dissolving powders -emulsifying-, homogenizing liquid mixtures, and repelling sticking materials.Lecithins are mixtures of glycerophospholipids including phosphatidylcholine, phosphatidylethanolamine, phosphatidylinositol, phosphatidylserine, and phosphatidic acid.Lecithin was first isolated in 1845 by the French chemist and pharmacist Theodore Gobley. In 1850, he named the phosphatidylcholine lécithine. Gobley originally isolated lecithin from egg yolk—λέκιθος lekithos is "egg yolk" in Ancient Greek—and established the complete chemical formula of phosphatidylcholine in 1874; in between, he had demonstrated the presence of lecithin in a variety of biological matters, including venous blood, in human lungs, bile, human brain tissue, fish eggs, fish roe, and chicken and sheep brain. Lecithin can easily be extracted chemically using solvents such as hexane, ethanol, acetone, petroleum ether, benzene, etc., or extraction can be done mechanically. It is usually available from sources such as soybeans, eggs, milk, marine sources, rapeseed, cottonseed, and sunflower. It has low solubility in water, but is an excellent emulsifier. In aqueous solution, its phospholipids can form either liposomes, bilayer sheets, micelles, or lamellar structures, depending on hydration and temperature. This results in a type of surfactant that usually is classified as amphipathic. Lecithin is sold as a food additive and dietary supplement. In cooking, it is sometimes used as an emulsifier and to prevent sticking, for example in nonstick cooking spray.
    Origen: Wikipedia (Anglès)
  • E412 - Goma de guar


    Guar gum: Guar gum, also called guaran, is a galactomannan polysaccharide extracted from guar beans that has thickening and stabilizing properties useful in the food, feed and industrial applications. The guar seeds are mechanically dehusked, hydrated, milled and screened according to application. It is typically produced as a free-flowing, off-white powder.
    Origen: Wikipedia (Anglès)
  • E481 - Estearoïl-2-lactilat de sodi


    Sodium stearoyl lactylate: Sodium stearoyl-2-lactylate -sodium stearoyl lactylate or SSL- is a versatile, FDA approved food additive used to improve the mix tolerance and volume of processed foods. It is one type of a commercially available lactylate. SSL is non-toxic, biodegradable, and typically manufactured using biorenewable feedstocks. Because SSL is a safe and highly effective food additive, it is used in a wide variety of products ranging from baked goods and desserts to pet foods.As described by the Food Chemicals Codex 7th edition, SSL is a cream-colored powder or brittle solid. SSL is currently manufactured by the esterification of stearic acid with lactic acid and partially neutralized with either food-grade soda ash -sodium carbonate- or caustic soda -concentrated sodium hydroxide-. Commercial grade SSL is a mixture of sodium salts of stearoyl lactylic acids and minor proportions of other sodium salts of related acids. The HLB for SSL is 10-12. SSL is slightly hygroscopic, soluble in ethanol and in hot oil or fat, and dispersible in warm water. These properties are the reason that SSL is an excellent emulsifier for fat-in-water emulsions and can also function as a humectant.
    Origen: Wikipedia (Anglès)
  • E500 - Carbonats de sodi


    Sodium carbonate: Sodium carbonate, Na2CO3, -also known as washing soda, soda ash and soda crystals, and in the monohydrate form as crystal carbonate- is the water-soluble sodium salt of carbonic acid. It most commonly occurs as a crystalline decahydrate, which readily effloresces to form a white powder, the monohydrate. Pure sodium carbonate is a white, odorless powder that is hygroscopic -absorbs moisture from the air-. It has a strongly alkaline taste, and forms a moderately basic solution in water. Sodium carbonate is well known domestically for its everyday use as a water softener. Historically it was extracted from the ashes of plants growing in sodium-rich soils, such as vegetation from the Middle East, kelp from Scotland and seaweed from Spain. Because the ashes of these sodium-rich plants were noticeably different from ashes of timber -used to create potash-, they became known as "soda ash". It is synthetically produced in large quantities from salt -sodium chloride- and limestone by a method known as the Solvay process. The manufacture of glass is one of the most important uses of sodium carbonate. Sodium carbonate acts as a flux for silica, lowering the melting point of the mixture to something achievable without special materials. This "soda glass" is mildly water-soluble, so some calcium carbonate is added to the melt mixture to make the glass produced insoluble. This type of glass is known as soda lime glass: "soda" for the sodium carbonate and "lime" for the calcium carbonate. Soda lime glass has been the most common form of glass for centuries. Sodium carbonate is also used as a relatively strong base in various settings. For example, it is used as a pH regulator to maintain stable alkaline conditions necessary for the action of the majority of photographic film developing agents. It acts as an alkali because when dissolved in water, it dissociates into the weak acid: carbonic acid and the strong alkali: sodium hydroxide. This gives sodium carbonate in solution the ability to attack metals such as aluminium with the release of hydrogen gas.It is a common additive in swimming pools used to raise the pH which can be lowered by chlorine tablets and other additives which contain acids. In cooking, it is sometimes used in place of sodium hydroxide for lyeing, especially with German pretzels and lye rolls. These dishes are treated with a solution of an alkaline substance to change the pH of the surface of the food and improve browning. In taxidermy, sodium carbonate added to boiling water will remove flesh from the bones of animal carcasses for trophy mounting or educational display. In chemistry, it is often used as an electrolyte. Electrolytes are usually salt-based, and sodium carbonate acts as a very good conductor in the process of electrolysis. In addition, unlike chloride ions, which form chlorine gas, carbonate ions are not corrosive to the anodes. It is also used as a primary standard for acid-base titrations because it is solid and air-stable, making it easy to weigh accurately.
    Origen: Wikipedia (Anglès)
  • E500ii - Bicarbonat de sodi


    Sodium carbonate: Sodium carbonate, Na2CO3, -also known as washing soda, soda ash and soda crystals, and in the monohydrate form as crystal carbonate- is the water-soluble sodium salt of carbonic acid. It most commonly occurs as a crystalline decahydrate, which readily effloresces to form a white powder, the monohydrate. Pure sodium carbonate is a white, odorless powder that is hygroscopic -absorbs moisture from the air-. It has a strongly alkaline taste, and forms a moderately basic solution in water. Sodium carbonate is well known domestically for its everyday use as a water softener. Historically it was extracted from the ashes of plants growing in sodium-rich soils, such as vegetation from the Middle East, kelp from Scotland and seaweed from Spain. Because the ashes of these sodium-rich plants were noticeably different from ashes of timber -used to create potash-, they became known as "soda ash". It is synthetically produced in large quantities from salt -sodium chloride- and limestone by a method known as the Solvay process. The manufacture of glass is one of the most important uses of sodium carbonate. Sodium carbonate acts as a flux for silica, lowering the melting point of the mixture to something achievable without special materials. This "soda glass" is mildly water-soluble, so some calcium carbonate is added to the melt mixture to make the glass produced insoluble. This type of glass is known as soda lime glass: "soda" for the sodium carbonate and "lime" for the calcium carbonate. Soda lime glass has been the most common form of glass for centuries. Sodium carbonate is also used as a relatively strong base in various settings. For example, it is used as a pH regulator to maintain stable alkaline conditions necessary for the action of the majority of photographic film developing agents. It acts as an alkali because when dissolved in water, it dissociates into the weak acid: carbonic acid and the strong alkali: sodium hydroxide. This gives sodium carbonate in solution the ability to attack metals such as aluminium with the release of hydrogen gas.It is a common additive in swimming pools used to raise the pH which can be lowered by chlorine tablets and other additives which contain acids. In cooking, it is sometimes used in place of sodium hydroxide for lyeing, especially with German pretzels and lye rolls. These dishes are treated with a solution of an alkaline substance to change the pH of the surface of the food and improve browning. In taxidermy, sodium carbonate added to boiling water will remove flesh from the bones of animal carcasses for trophy mounting or educational display. In chemistry, it is often used as an electrolyte. Electrolytes are usually salt-based, and sodium carbonate acts as a very good conductor in the process of electrolysis. In addition, unlike chloride ions, which form chlorine gas, carbonate ions are not corrosive to the anodes. It is also used as a primary standard for acid-base titrations because it is solid and air-stable, making it easy to weigh accurately.
    Origen: Wikipedia (Anglès)

Anàlisi dels ingredients

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    Es desconeix si és vegà


    Ingredients no reconeguts: es:pier-pie, es:gluten-piez-de-trigo, es:harina-de-malta-entr, es:e3411, es:surn-agu

    Alguns ingredients no s'han pogut reconèixer.

    Necessitem la teva ajuda!

    Podeu ajudar-nos a reconèixer més ingredients i analitzar millor la llista d'ingredients d'aquest producte i d'altres mitjançant:

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    Es desconeix si és vegetarià


    Ingredients no reconeguts: es:pier-pie, es:gluten-piez-de-trigo, es:harina-de-malta-entr, es:e3411, es:surn-agu

    Alguns ingredients no s'han pogut reconèixer.

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    Podeu ajudar-nos a reconèixer més ingredients i analitzar millor la llista d'ingredients d'aquest producte i d'altres mitjançant:

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    • Afegiu entrades, sinònims o traduccions noves a les nostres llistes multilingües d’ingredients, mètodes de processament d’ingredients i etiquetes.

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L'anàlisi es basa únicament en els ingredients enumerats i no té en compte els mètodes de processament.
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    Detalls de l'anàlisi dels ingredients

    Necessitem la teva ajuda!

    Alguns ingredients no s'han pogut reconèixer.

    Necessitem la teva ajuda!

    Podeu ajudar-nos a reconèixer més ingredients i analitzar millor la llista d'ingredients d'aquest producte i d'altres mitjançant:

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    • Afegiu entrades, sinònims o traduccions noves a les nostres llistes multilingües d’ingredients, mètodes de processament d’ingredients i etiquetes.

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    : Harina de trigo, grasa de palma, dextrosa, pier pie (emulgente, e481), e472e, e471, e322, sal, almidón, gluten piez de trigo, gasificante (e500ii, e450i), harina de malta entr (cebada), estabilizante (e412, e3411), colorante (e160a), Surn Agu, aromas, antioxidante (e300), enzimas (trigo)
    1. Harina de trigo -> en:wheat-flour - vegan: yes - vegetarian: yes - ciqual_proxy_food_code: 9410 - percent_min: 5.55555555555556 - percent_max: 100
    2. grasa de palma -> en:palm-fat - vegan: yes - vegetarian: yes - from_palm_oil: yes - ciqual_proxy_food_code: 16129 - percent_min: 0 - percent_max: 50
    3. dextrosa -> en:dextrose - vegan: yes - vegetarian: yes - ciqual_proxy_food_code: 31016 - percent_min: 0 - percent_max: 33.3333333333333
    4. pier pie -> es:pier-pie - percent_min: 0 - percent_max: 25
      1. emulgente -> en:emulsifier - percent_min: 0 - percent_max: 25
      2. e481 -> en:e481 - vegan: maybe - vegetarian: maybe - from_palm_oil: maybe - percent_min: 0 - percent_max: 12.5
    5. e472e -> en:e472e - vegan: maybe - vegetarian: maybe - from_palm_oil: maybe - percent_min: 0 - percent_max: 20
    6. e471 -> en:e471 - vegan: maybe - vegetarian: maybe - from_palm_oil: maybe - percent_min: 0 - percent_max: 16.6666666666667
    7. e322 -> en:e322 - vegan: maybe - vegetarian: maybe - percent_min: 0 - percent_max: 14.2857142857143
    8. sal -> en:salt - vegan: yes - vegetarian: yes - ciqual_food_code: 11058 - percent_min: 0 - percent_max: 12.5
    9. almidón -> en:starch - vegan: yes - vegetarian: yes - ciqual_proxy_food_code: 9510 - percent_min: 0 - percent_max: 11.1111111111111
    10. gluten piez de trigo -> es:gluten-piez-de-trigo - percent_min: 0 - percent_max: 10
    11. gasificante -> en:raising-agent - percent_min: 0 - percent_max: 9.09090909090909
      1. e500ii -> en:e500ii - vegan: yes - vegetarian: yes - percent_min: 0 - percent_max: 9.09090909090909
      2. e450i -> en:e450i - vegan: yes - vegetarian: yes - percent_min: 0 - percent_max: 4.54545454545455
    12. harina de malta entr -> es:harina-de-malta-entr - percent_min: 0 - percent_max: 8.33333333333333
      1. cebada -> en:barley - vegan: yes - vegetarian: yes - percent_min: 0 - percent_max: 8.33333333333333
    13. estabilizante -> en:stabiliser - percent_min: 0 - percent_max: 7.69230769230769
      1. e412 -> en:e412 - vegan: yes - vegetarian: yes - percent_min: 0 - percent_max: 7.69230769230769
      2. e3411 -> es:e3411 - percent_min: 0 - percent_max: 3.84615384615385
    14. colorante -> en:colour - percent_min: 0 - percent_max: 7.14285714285714
      1. e160a -> en:e160a - vegan: maybe - vegetarian: maybe - from_palm_oil: maybe - percent_min: 0 - percent_max: 7.14285714285714
    15. Surn Agu -> es:surn-agu - percent_min: 0 - percent_max: 6.66666666666667
    16. aromas -> en:flavouring - vegan: maybe - vegetarian: maybe - percent_min: 0 - percent_max: 5
    17. antioxidante -> en:antioxidant - percent_min: 0 - percent_max: 5
      1. e300 -> en:e300 - vegan: yes - vegetarian: yes - percent_min: 0 - percent_max: 5
    18. enzimas -> en:enzyme - vegan: maybe - vegetarian: maybe - percent_min: 0 - percent_max: 5
      1. trigo -> en:wheat - vegan: yes - vegetarian: yes - ciqual_proxy_food_code: 9410 - percent_min: 0 - percent_max: 5

Nutrició

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    Informació nutricional


    Informació nutricional Com es ven
    per 100 g/100 ml
    Greix ?
    Àcid gras saturat ?
    Hidrats de carboni ?
    Sucre ?
    Fiber ?
    Proteïna ?
    Sal comuna ?
    Fruits‚ vegetables‚ nuts and rapeseed‚ walnut and olive oils (estimate from ingredients list analysis) 0 %

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