Comparing E333III - Tricalcium citrate vs E515II - Potassium hydrogen sulphate

Synonyms
E333iii
Tricalcium citrate
E515ii
Potassium hydrogen sulphate
Potassium bisulphate
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Popular questions
  1. Is tricalcium phosphate the same as calcium citrate?

    No—tricalcium phosphate (E341iii) and tricalcium citrate (E333iii) are different calcium salts; citrate is more soluble and mainly used as a sequestrant/stabilizer and calcium fortificant, while phosphate is often an anti-caking agent and fortificant.

  2. Is tricalcium citrate bad for you?

    No—tricalcium citrate (E333iii) is approved in the EU and generally recognized as safe in the U.S. at typical food levels; excessive calcium from any source can cause GI discomfort or contribute to kidney stones in susceptible people.

  3. What is tricalcium citrate used for?

    It’s used as a sequestrant and stabilizer to control acidity and bind metal ions, helping preserve color and texture, and it’s also used to fortify foods and supplements with calcium.

  4. Which is better calcium citrate vs tricalcium phosphate?

    For calcium supplementation/absorption, calcium citrate is often preferred because it’s more soluble and can be taken with or without food; tricalcium phosphate is less soluble but useful in foods as an anti-caking agent and when added phosphorus is desired.

  5. Which is easier to absorb tricalcium pjosphatw or calcium citrate?

    Calcium citrate is generally easier to absorb than tricalcium phosphate, especially on an empty stomach; phosphate salts are better absorbed when taken with meals.

  1. What is the formula of potassium bisulphate?

    KHSO4 (potassium hydrogen sulphate).

  2. Why are there differences in the solubility of calcium chloride and of potassium bisulphate?

    Because their ions differ in charge, size and hydration: CaCl2 has very favorable hydration enthalpy (Ca2+ and Cl−), making it highly soluble and hygroscopic, while for KHSO4 the larger HSO4− anion and hydrogen-bonded crystal structure make the overall balance of lattice energy vs hydration less favorable, so it dissolves less readily (also varying with pH and temperature).