Sulphite and iodinate can react, and the reaction equation is: $SO3 ^{2 - }+ I2 + H2O = SO4 ^{2 - }+2H ^++2I^-$. Iodine was toxic and corrosive, while the sulfuric acid ion itself was not toxic, but it could be potentially harmful in some reaction processes or compound forms. For example, it had a strong reducing property and was used as a bleacher or antiseptic. If used directly, it would cause a great burden on the liver and cause toxicity or even poisoning. However, there was no information about the special toxic substances produced by the reaction of sulfuric acid ions with iodines. Read more exciting novels for free
Sulphite and sulfuric acid will react, and the reaction equation is: when sulfuric acid is insufficient, SO32- + H+ = HSO3-; when sulfuric acid is excessive, SO32-+2H + = SO2 Qianqian + H2O. Sulphite ion was a kind of acid radical ion with the chemical formula of SO32-. It had a triangular cone structure, and the central sulfur atom adopted sp3 hybrids. It was a weak acid radical and had strong reducing properties. Sulfite will be converted into sulfuric acid ions in the acidic nitrates solution, which can form white sulfuric acid deposits that are not dissolved in strong acid with the formation of sulfuric acid. It cannot react with the solution of sulfuric acid (because sulfuric acid can be dissolved in strong acid). <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
Iodine is able to react with the presence of soda. Iodine (I <2>) and NaOx (Na <2> Ox) undergo an oxido-reduction reaction (disproportionate reaction) to produce NaI, NaIO4, and water (H <2> O). The reaction equation is 3I <2>+ 6 Na <2> Ox = 5NaI + NaIO4 + 3H <2> O. If it reacted with a hot concentrated solution of soda ash, it would also produce NaI, NaIO3, and water. If it reacted with a diluted solution of soda ash, the reaction equation was I <2>+2NaH <2> O = NaI+ NaIOO +H <2> O. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
Iodine and water could coexist, but there would be a reaction between them. The reaction equation was I2 + H2O = Hi + HIO2. However, this reaction was a irreversible reaction, which meant that the reaction would reach a dynamic equilibrium under certain conditions. Both the reagent and the product would be converted into the reagent. Therefore, it seemed that water and iodine could coexist. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
Iron did not react with Ferrous Chloride. Ferrous chloridewas toxic and had a certain degree of irritation and damage to the respiratory system, skin, eyes, etc. Long-term contact could even cause serious damage. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
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>
A chemical reaction would occur when hydrogen dioxide and alcohol were mixed. Under normal circumstances, there was no poison when the two were mixed, but it was not recommended to use them together. This was because mixing them would not only reduce the disinfection effect of both sides, but also produce irritating substances that could cause adverse effects on the skin and wounds. Moreover, mixing the two might produce a large amount of foam, which could cause an explosion. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
The reaction between hydrogen dioxide and thiols would occur. Disulfur compounds could mainly be synthesized by hydrogen dioxide oxidisation of thiols, but this reaction was often accompanied by over-oxidisation. The hydrogen peroxid is toxic to a certain extent, and its harmful invasion routes to the human body are inhaling and ingesting. However, it was not clear whether the product after reacting with thiols was toxic. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
Under normal circumstances, pure copper would not react with soda ash because copper was not active and could not react with soda ash. As for whether pure copper itself was toxic, pure copper was a heavy metal, but under normal circumstances, pure copper was stable and not easily toxic. However, copper ions (such as in copper salt) may have toxic effects on biological systems under certain conditions. For example, when ingesting excessive amounts of substances containing copper ions, it may interfere with the normal physiological functions of the human body. However, this had nothing to do with the reaction between pure copper and soda. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
Rust will react with sulfuric acid, and the reaction equation is: Fe2O3 + H2SO4 → Fe2 (SO4)3 + H2O. Sulfuric acid was corrosive and dangerous. However, as for whether the reaction between rust and sulfuric acid was toxic, the reaction products, iron sulfuric acid and water, were not toxic. However, if the sulfuric acid was not handled properly during the reaction process, it would bring danger. For example, sulfuric acid had corrosive effects on the skin and eyes. If inhaled, the volatile gas of sulfuric acid would also cause damage to the respiratory tract. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
Elemental aluminum was generally not dissolved in organic liquids, so there was no reaction. However, when cleaning aluminum parts, the use of organic solutions should be avoided because organic solutions can easily damage the surface of the aluminum parts. As for whether organic reagents were toxic or not, organic reagents had a variety of toxic effects. They could enter the body through the skin, respiratory tract, digestive tract and other routes. They had different degrees of irritation to the skin, respiratory tract mucus membrane and eyelid. They could cause non-specific inhibition of the central nervous system, peripheral nervous diseases and general anesthesia. Some of them even had cancerous or potential cancerous effects, such as chloride-induced hepatic hemomalacia, benz-induced leukemia, etc. Different organic liquids had different harms. For example, methvl alcohol could easily cause liver poisoning, and in severe cases, it could even cause blindness. Dichlorylene was highly flammable and penetrative, and when it touched the skin, it would have a strong burning sensation. Actone was highly volatile, and when it touched the skin, it would quickly evaporate and take away a lot of heat, causing frostbite. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>