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It is a polyatomic anion with the chemical formula H C O − 3. Bicarbonate serves a crucial biochemical role in the physiological pH buffering system. [3] The term "bicarbonate" was coined in 1814 by the English chemist William Hyde Wollaston. [4] [5] The name lives on as a trivial name.
Basic beryllium carbonate is a mixed salt, which can be prepared by the reaction of beryllium sulfate and ammonium carbonate, and contains both carbonate and hydroxide ions, with formula Be 2 CO 3 (OH) 2. [6] It is believed that in the older literature this is probably what was referred to as beryllium carbonate. [6]
The following chart shows the solubility of various ionic compounds in water at 1 atm pressure and room temperature (approx. 25 °C, 298.15 K). "Soluble" means the ionic compound doesn't precipitate, while "slightly soluble" and "insoluble" mean that a solid will precipitate; "slightly soluble" compounds like calcium sulfate may require heat to precipitate.
C 10 H 10 N 2 O: edaravone: 89-25-8 C 10 H 10 N 3 NaO 5: Suosan: 140-46-5 C 10 H 10 O 2: safrole: C 10 H 10 O 4: ferulic acid: 1135-24-6 C 10 H 11 N 3 O 3 S: sulfamethoxazole: 723-46-6 C 10 H 12 N 2: tryptamine: 61-54-1 C 10 H 12 O: anethole: C 10 H 12 O: estragole: C 10 H 12 O 2: hinokitiol: C 10 H 12 O 2: eugenol: C 10 H 12 O 2: isoeugenol: C ...
Potassium bicarbonate (IUPAC name: potassium hydrogencarbonate, also known as potassium acid carbonate) is the inorganic compound with the chemical formula KHCO 3. It is a white solid. [1] A fire extinguisher containing potassium bicarbonate
Caesium bicarbonate or cesium bicarbonate is a chemical compound with the chemical formula CsHCO 3. It can be produced through the following reaction: Cs 2 CO 3 + CO 2 + H 2 O → 2 CsHCO 3. The compound can be used for synthesizing caesium salts, but less common than caesium carbonate.
This software calculate chemical equilibria for aquatic inorganic carbon species and parameters. Their core function is to use any two of the four central inorganic carbon system parameters ( pH , alkalinity , dissolved inorganic carbon , and partial pressure of carbon dioxide ) to calculate various chemical properties of the system.
Mg(CH 3 COO) 2 + 2 NaHCO 3 → Mg(HCO 3) 2 + 2 CH 3 COONa. Magnesium bicarbonate exists only in aqueous solution. Magnesium does not form solid bicarbonate as does lithium. To produce it, a suspension of magnesium hydroxide is treated with pressurized carbon dioxide, producing a solution of magnesium bicarbonate: [1] Mg(OH) 2 + 2 CO 2 → Mg ...