The equation Al2S3 + 18NH4OH -> 2(NH4)3Al(OH)6 + 3H2S

Detailed information about the equation Al2S3 + 18NH4OH -> 2(NH4)3Al(OH)6 + 3H2S: In the above chemical equation, ammonium hydroxide (NH4OH) reacts with aluminum sulfide (Al2S3) to produce aluminum ammonium (NH4)3Al(OH)6 and hydrogen sulfide (H2S). Reaction conditions: This reaction occurs when the reactants come into contact with each other, usually under normal temperature and pressure conditions. … Read more

The equation Al2S3 + 12KOH -> 2K3Al(OH)6 + 3H2S

The chemical equation above represents the reaction between the compound aluminium sulfide (Al2S3) and potassium hydroxide (KOH), resulting in the formation of potassium aluminate (K3Al(OH)6) and hydrogen sulfide (H2S). Reaction conditions: This reaction requires the presence of certain heat and pressure to occur. Reaction process: When the two substances Al2S3 and KOH come into contact … Read more

The equation Al2O3 + 6HNO3 -> 2Al(NO3)3 + 3H2O

Detailed information about the equation Al2O3 + 6HNO3 -> 2Al(NO3)3 + 3H2O: The above chemical equation illustrates the reaction process between aluminium oxide (Al2O3) and nitric acid (HNO3) to produce aluminium nitrate (Al(NO3)3) and water (H2O). Reaction conditions: This reaction takes place at room temperature with sunlight acting as a catalyst. Reaction process: At the … Read more

What is Al2Te8? Important knowledge about Al2Te8.

Definition of Al2Te8 Al2Te8, commonly referred to as Aluminum Telluride in English. It is a chemical compound made up of 2 atoms of aluminum (Al) and 8 atoms of tellurium (Te). The atomic mass of Al2Te8 is calculated as follows: 2(atomic mass of Al) + 8(atomic mass of Te). The molecular structure of Al2Te8 is … Read more

The chemical equation Al2O3 + 6HCl -> 2AlCl3 + 3H2O

Detailed information about the equation Al2O3 + 6HCl -> 2AlCl3 + 3H2O The equation above describes the chemical reaction between aluminum oxide (Al2O3) and hydrochloric acid (HCl) to form aluminum chloride (AlCl3) and water (H2O). According to the law of conservation of mass, each 102 grams of aluminum oxide (corresponding to 1 mol Al2O3) will … Read more

The chemical equation Al2O3 + 6H2SO4 -> 2Al2(SO4)3 + 6H2O

Detailed information about the equation Al2O3 + 6H2SO4 -> 2Al2(SO4)3 + 6H2O: The above chemical equation describes the reaction process between aluminum oxide (Al2O3) and sulfuric acid (H2SO4) to produce aluminum sulfate (Al2(SO4)3) and water (H2O). The equation is balanced, which means the number of aluminum, oxygen, hydrogen, and sulfur atoms on the left side … Read more

What is Al2Te7? Important knowledge about Al2Te7

Definition of Al2Te7 Al2Te7, commonly known as Aluminium Telluride, is a chemical compound with the formula Al2Te7. In English, it is called Aluminium telluride. It is a chemical compound of aluminium and tellurium, with a ratio of 2 aluminium to 7 tellurium. In the formula Al2Te7, the atomic mass of aluminum is 26.98 and that … Read more

The equation Al2O3 + 6H2O2 -> 2Al(OH)3 + 3O2

The chemical equation above describes the reaction between aluminum oxide (Al2O3) and hydrogen peroxide (H2O2), resulting in the formation of aluminum hydroxide (Al(OH)3) and oxygen (O2). Reaction conditions: The reaction occurs at room temperature and standard pressure. Reaction process: Step 1: Aluminum oxide and hydrogen peroxide react with each other to form aluminum hydroxide and … Read more

What is Al2Se7? Important knowledge about Al2Se7.

Definition of Al2Se7 Al2Se7 is a chemical compound belonging to the oxide group, commonly known as Aluminium Selenide. It consists of two aluminum atoms and seven selenium atoms, with atomic masses of 26.98 and 78.96 respectively. The specific atomic mass of Al2Se7 is approximately 587.44. The molecular structure of Al2Se7 comprises two positive aluminum ions … Read more

The equation Al2O3 + 6H2 -> 2Al + 6H2O

Detailed information about the equation Al2O3 + 6H2 -> 2Al + 6H2O: This is a chemical equation describing the reaction between aluminum oxide (Al2O3) and hydrogen (H2) to create aluminum (Al) and water (H2O). This reaction is a reduction reaction. Aluminum oxide is reduced by hydrogen to create aluminum. Reaction conditions: This reaction requires high … Read more