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This sub-category includes cerium carbonate, lanthanum carbonate, rubidium carbonate, plus special-grade cerium carbonate variants: high-purity, low-chloride, fine-crystalline spherical and large-particle-size grades. Carbonates are widely utilised in rare-earth separation, oxide manufacturing, catalysts, ceramics and polishing-material production. Particle size, crystal morphology and impurity levels directly influence filtration, calcination, dispersion and subsequent reaction performance. Clear data on purity, particle size, chloride concentration, elemental ratios and packaging are provided for rapid specification matching against process requirements.
  • Lanthanum Carbonate

    Lanthanum Carbonate

    Lanthanum Carbonate is a salt formed by lanthanum(III) cations and carbonate anions with the chemical formula La2(CO3)3. Lanthanum carbonate is used as a starting material in lanthanum chemistry, particularly in forming mixed oxides.

  • Cerium(III) Carbonate

    Cerium(III) Carbonate

    Cerium(III) Carbonate Ce2(CO3)3, is the salt formed by cerium(III) cations and carbonate anions. It is a water insoluble Cerium source that can easily be converted to other Cerium compounds, such as the oxide by heating (calcin0ation).Carbonate compounds also give off carbon dioxide when treated with dilute acids.

  • Rubidium Carbonate

    Rubidium Carbonate

    Rubidium Carbonate, an inorganic compound with formula Rb2CO3, is a convenient compound of rubidium. Rb2CO3 is stable, not particularly reactive, and readily soluble in water, and is the form in which rubidium is usually sold. Rubidium carbonate is a white crystalline powder that is soluble in water and has various applications in medical, environmental, and industrial research.