Iron dioxide would react with acid, while silica could only react with potassium acid and not with any other acid. Read more exciting novels for free
There was no reaction between the hydrogen peroxid and the acid. It has a pungent smell, which can cause coughing, eye pain, skin irritation and other symptoms. High concentration of hydrogen dioxide can cause symptoms such as breathlessness, difficulty in breathing, rapid heartbeat, etc. Eating or inhaling hydrogen dioxide by mistake can cause serious damage to the human body. In addition, hydrogen dioxide was a strong oxidiser that was highly corrosive and could cause damage to the skin, eyes, and respiratory tract. In particular, high concentration of hydrogen dioxide could cause chemical burns on the skin, lungs, and digestive system. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
The nitrogen dioxide did not react with the dilute sulfuric acid, nor did it react to form carbon dioxide. The chemical formula of nitrogen dioxide was NO. It usually did not react with dilute sulfuric acid, and the reaction would not produce carbon dioxide. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
The chemical equation for the reaction of iron and sulfuric acid to produce iron dioxide and hydrogen is: FeCl2 + H2. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
Acid does not react with carbon dioxide. This was because sulfuric acid was acidic, and carbon dioxide was an acidic dioxide. The acidic dioxide could not react with the acid, and carbon dioxide dissolved in water would be carbolic acid, so the two types of acid could not react. When carbon dioxide met water, it would form carbolic acid. When carbon dioxide was added to the sulfuric acid, carbon dioxide would form carbolic acid with the water in the sulfuric acid, but this was not the reaction between carbon dioxide and sulfuric acid. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
Copper and diluted sulfuric acid will react with hydrogen dioxide, and the chemical equation is [Cu + H_{2} NO_{4}+ H_{2} O_{2}= CuNO_{4}+2H_2} O]. This was because hydrogen dioxide was a strong oxidiser that could turn copper into copper dioxide, which would then lead to a subsequent reaction. During the reaction process, in addition to this reaction, the solution turned blue (it would turn emerald green if it was used with sulfuric acid) and bubbles were produced. This was because the three elements of CuO, CuO, and Cu^{2 +} were similar to the elements of SnO_{2}. They could catalyze the decomposition of hydrogen peroxideto produce oxygen. When acid was not added, the gas formation was already very obvious. After acid was added, a large number of bubbles would continue to be produced. Copper and diluted sulfuric acid did not react because the H ion in diluted sulfuric acid was weak and could not react with copper. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
CO2 can react with water to form carbolic acid, and the reaction equation is CO2 + H2 O = H2 CO2. This was because the carbon-oxygen double bond in carbon dioxide molecules had a certain degree of polar nature. The oxygen atoms had a partial negative charge, and the carbon atoms had a partial positive charge. When carbon dioxide was dissolved in water, the oxygen atoms in the water molecules (with partial negative charges) would approach the carbon atoms in the carbon dioxide molecules (with partial positive charges), which would interact with each other, causing the chemical bonds between them to recombine and eventually form the carbon dioxide molecules. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
There were two main reasons why sulfuric acid and carbon dioxide could not react: On the one hand, from the perspective of the oxidoreduction reaction, the sulfur element in sulfuric acid and the carbon element in carbon dioxide were both in the highest valency state. There was no increase or decrease in the valency of the elements, so the oxidoreduction reaction could not occur between the two. On the other hand, from the perspective of the nature of the acid, sulfuric acid and carbon dioxide were both acidic, so the two did not react. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
Theoretically, iron and carbolic acid would react, and the reaction would produce iron carbonate and hydrogen. However, since carbolic acid was a weak acid, the number of hydrogen ions that were produced was small, so the reaction was not very intense, and the phenomenon was not obvious. Moreover, the iron dioxide was unstable and would decompose into iron dioxide (FeO) and carbon dioxide. Iron dioxide would also react with oxygen in the air to form iron dioxide (iron dioxide). <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
Iron can react with sulfuric acid. At room temperature, iron reacted with diluted sulfuric acid to form iron dioxide and hydrogen. The reaction equation was: When iron reacted with concentrated sulfuric acid, there were two situations: if the iron was in a small amount, the reaction product would be iron sulfuric acid, sulfur dioxide, and water under heating conditions. The reaction equation was 2Fe2 + 6H2SO2 = heating = Fe2 (SO2)+3SO2 (g)+6H2O; If the iron was sufficient or excessive, the final product would be iron sulfuric acid. The reason was that when the concentration of sulfuric acid was reduced to a certain level, it would become diluted sulfuric acid. At this time, the iron ions in the solution would react with iron to form iron ions. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
Sulfur dioxide (<anno data-annotation-id ="00000100 - 4c00 - 4c00 - 4c00-a000 - 5c0000b00000"> SO2 </anno>) and hydrogen dioxide (<anno data-annotation-id ="0000000 - 4c00 - 4c000000000"> H2O2 </anno>) will react with the reaction equation of <anno data-annotation-id ="0000000 - 4000 - 4c0000000000000"> SO2 + H2O2 = H2SO4 </anno>. The reaction principle was based on the strong reducing properties of sulfur dioxide and the strong oxidisation properties of hydrogen dioxide. At room temperature, the two would undergo an oxido-reduction reaction and eventually combine to form sulfuric acid. In the experiment, the required materials were sulfur dioxide, hydrogen dioxide, iron frame, test tube, rubber head dropper, etc. However, due to the slow reaction rate and the acidic solution after the reaction, the oxidization ability of hydrogen dioxide was weakened under acidic conditions. It was not recommended to use this reaction method to absorb sulfur dioxide when dealing with sulfur dioxide.(For example, in the laboratory, sulfur dioxide is generally absorbed with a solution of soda. In the industry, sulfur dioxide in the tail gas is generally absorbed with lime water. Sulfur dioxide with higher purity is produced by oxygen in the presence of a catalyst, and then absorbed with concentrated sulfuric acid.) <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>