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exquisita - 540 g
exquisita - 540 g
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Codi de barres: 7790070410139 (EAN / EAN-13)
Quantitat: 540 g
Marques: Exquisita
Països on es va vendre: Espanya
Matching with your preferences
Salut
Ingredients
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28 ingredients
: enriched wheat flour law 25,630 (*), sugar, animal fat, starch, salt, chemical leudants: ins 500i, ins 541i, emulsifiers: ins 477, ins 475, anti binder, ins 551, flavouring/flavoring contains trigo derivatives, may contain soya, milk and egg derivatives, (,quot,lay enriched iharina n 25,630 (earthy sulfate: 30 mg/kg - as iron-, niacin: 13 mg/kg, vitamin b1, 6,3 mg/kg, tolic acid 2,2 mg/ke, vitamin b2, 13 mg/kg)Rastres: en:Milk, en:Soybeans
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: E475 - Èster poliglicèrid d'àcids grassos
- Additiu: E477 - Èster d'1‚2-propà-diol d'àcids grassos
- Additiu: E551 - Diòxid de silici
- Additiu: E630 - Àcid inosínic
- Ingredient: Emulsionant
- Ingredient: Aromes
Els productes alimentaris es classifiquen en 4 grups segons el seu grau de processament:
- Aliments no processats o mínimament processats
- Ingredients culinaris processats
- Aliments processats
- Aliments ultra processats
La determinació del grup es fa en funció de la categoria del producte i dels ingredients que conté.
Additius
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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)
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E500i - Carbonat 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)
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E541 - Fosfat de sodi i alumini
Sodium aluminium phosphate: Sodium aluminium phosphate -SAlP- describes the inorganic compounds consisting of sodium salts of aluminium phosphates. The most common SAlP has the formulas NaH14Al3-PO4-8·4H2O and Na3H15Al2-PO4-8. These materials are prepared by combining alumina, phosphoric acid, and sodium hydroxide.In addition to the usual hydrate, an anhydrous SAlP is also known, Na3H15Al2-PO4-8 -CAS#10279-59-1-, referred to as 8:2:3, reflecting the ratio of phosphate to aluminium to sodium. Additionally an SAlP of ill-defined stoichiometry is used -NaxAly-PO4-z -CAS# 7785-88-8-.The acidic sodium aluminium phosphates are used as acids for baking powders for the chemical leavening of baked goods. Upon heating, SAlP combines with the baking soda to give carbon dioxide. Most of its action occurs at baking temperatures, rather than when the dough or batter is mixed at room temperature. SAlPs are advantageous because they impart a neutral flavor. As a food additive, it has the E number E541. Basic sodium aluminium phosphates are also known, e.g., Na15Al3-PO4-8. These species are useful in cheese making.Origen: Wikipedia (Anglès)
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E541i - Fosfat àcid de sodi i alumini
Sodium aluminium phosphate: Sodium aluminium phosphate -SAlP- describes the inorganic compounds consisting of sodium salts of aluminium phosphates. The most common SAlP has the formulas NaH14Al3-PO4-8·4H2O and Na3H15Al2-PO4-8. These materials are prepared by combining alumina, phosphoric acid, and sodium hydroxide.In addition to the usual hydrate, an anhydrous SAlP is also known, Na3H15Al2-PO4-8 -CAS#10279-59-1-, referred to as 8:2:3, reflecting the ratio of phosphate to aluminium to sodium. Additionally an SAlP of ill-defined stoichiometry is used -NaxAly-PO4-z -CAS# 7785-88-8-.The acidic sodium aluminium phosphates are used as acids for baking powders for the chemical leavening of baked goods. Upon heating, SAlP combines with the baking soda to give carbon dioxide. Most of its action occurs at baking temperatures, rather than when the dough or batter is mixed at room temperature. SAlPs are advantageous because they impart a neutral flavor. As a food additive, it has the E number E541. Basic sodium aluminium phosphates are also known, e.g., Na15Al3-PO4-8. These species are useful in cheese making.Origen: Wikipedia (Anglès)
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E551 - Diòxid de silici
Silicon dioxide: Silicon dioxide, also known as silica, silicic acid or silicic acid anydride is an oxide of silicon with the chemical formula SiO2, most commonly found in nature as quartz and in various living organisms. In many parts of the world, silica is the major constituent of sand. Silica is one of the most complex and most abundant families of materials, existing as a compound of several minerals and as synthetic product. Notable examples include fused quartz, fumed silica, silica gel, and aerogels. It is used in structural materials, microelectronics -as an electrical insulator-, and as components in the food and pharmaceutical industries. Inhaling finely divided crystalline silica is toxic and can lead to severe inflammation of the lung tissue, silicosis, bronchitis, lung cancer, and systemic autoimmune diseases, such as lupus and rheumatoid arthritis. Uptake of amorphous silicon dioxide, in high doses, leads to non-permanent short-term inflammation, where all effects heal.Origen: Wikipedia (Anglès)
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E630 - Àcid inosínic
Inosinic acid: Inosinic acid or inosine monophosphate -IMP- is a nucleoside monophosphate. Widely used as a flavor enhancer, it is typically obtained from chicken byproducts or other meat industry waste. Inosinic acid is important in metabolism. It is the ribonucleotide of hypoxanthine and the first nucleotide formed during the synthesis of purine. It is formed by the deamination of adenosine monophosphate, and is hydrolysed to inosine. IMP is an intermediate ribonucleoside monophosphate in purine metabolism. The enzyme deoxyribonucleoside triphosphate pyrophosphohydrolase, encoded by YJR069C in Saccharomyces cerevisiae and containing -d-ITPase and -d-XTPase activities, hydrolyzes inosine triphosphate -ITP- releasing pyrophosphate and IMP.Important derivatives of inosinic acid include purine nucleotides found in nucleic acids and adenosine triphosphate, which is used to store chemical energy in muscle and other tissues. In the food industry, inosinic acid and its salts such as disodium inosinate are used as flavor enhancers.Origen: Wikipedia (Anglès)
Anàlisi dels ingredients
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Pot contenir oli de palma
Ingredients que poden contenir oli de palma: Sagí
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No és vegà
Ingredients no vegans: SagíAlguns ingredients no s'han pogut reconèixer.
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No és vegetarià
Ingredients no vegetarians: SagíAlguns 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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Detalls de l'anàlisi dels ingredients
Necessitem la teva ajuda!
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.
Uniu-vos al canal #ingredients del nostre espai de discussió a Slack i/o apreneu sobre l'anàlisi dels ingredients en la nostra wiki, si voleu ajudar. Gràcies!
: enriched wheat flour law 25‚630 (), sugar, animal fat, starch, salt, chemical leudants (e500i), e541i, emulsifiers (e477), e475, anti binder, e551, flavouring, flavoring contains trigo derivatives, derivatives, quot, lay enriched iharina n 25‚630 (earthy sulfate, as iron, niacin, vitamin b1, 6‚3 mg, kg, tolic acid 2‚2 mg, ke, vitamin b2, kg)- enriched wheat flour law 25‚630 -> en:enriched-wheat-flour-law-25-630
- sugar -> en:sugar - vegan: yes - vegetarian: yes
- animal fat -> en:animal-fat - vegan: no - vegetarian: no - from_palm_oil: maybe
- starch -> en:starch - vegan: yes - vegetarian: yes
- salt -> en:salt - vegan: yes - vegetarian: yes
- chemical leudants -> en:chemical-leudants
- e500i -> en:e500i - vegan: yes - vegetarian: yes
- e541i -> en:e541i - vegan: yes - vegetarian: yes
- emulsifiers -> en:emulsifier
- e477 -> en:e477 - vegan: maybe - vegetarian: maybe
- e475 -> en:e475 - vegan: maybe - vegetarian: maybe
- anti binder -> en:anti-binder
- e551 -> en:e551 - vegan: yes - vegetarian: yes
- flavouring -> en:flavouring - vegan: maybe - vegetarian: maybe
- flavoring contains trigo derivatives -> en:flavoring-contains-trigo-derivatives
- derivatives -> en:derivatives
- quot -> en:quot
- lay enriched iharina n 25‚630 -> en:lay-enriched-iharina-n-25-630
- earthy sulfate -> en:earthy-sulfate
- as iron -> en:iron
- niacin -> en:e375 - vegan: maybe - vegetarian: maybe
- vitamin b1 -> en:thiamin
- 6‚3 mg -> en:6-3-mg
- kg -> en:kg
- tolic acid 2‚2 mg -> en:tolic-acid-2-2-mg
- ke -> en:ke
- vitamin b2 -> en:e101 - vegan: maybe - vegetarian: yes
- kg -> en:kg
Nutrició
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Falten dades per calcular la Nutri-Score
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Informació nutricional
Informació nutricional Com es ven
per 100 g/100 mlEnergia 653 kj
(156 kcal)Greix 7 g Àcid gras saturat 7 g Hidrats de carboni 10 g Sucre 5 g Fiber ? Proteïna 2 g Sal comuna 0 g Fruits‚ vegetables‚ nuts and rapeseed‚ walnut and olive oils (estimate from ingredients list analysis) 0 %
Entorn
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Puntuació ecològica no calculada - Impacte ambiental desconegut
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Empaquetament
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Falta informació sobre l'embalatge d'aquest producte
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Transport
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Orígens dels ingredients
Orígens dels ingredients amb impacte alt
Origen del producte i / o dels seus ingredients % d'ingredients Impacte Desconegut Alt Kirguizistan Alt
Fonts de dades
Producte afegit per elcoco
Última modificació de la pàgina del producte per roboto-app.
La pàgina del producte, també editada per elcoco.0f27b3c40c5ba722598cd18ad7617dd9, foodless, inf, kiliweb, org-app-elcoco, thaialagata, yuka.YTU4YUg1bGYvTWsyaC9ZeDlUTFQ2OWhzM1ovMldHS1dON3NXSVE9PQ.