Aqua regia is a mixture of nitric acid and hydrochloric acid that can dissolve platinum. It is commonly used in the refining and extraction of platinum and other precious metals due to its ability to break down their structure.
Aqua Regia (HCL+Nitirc acid) Pt+4HNO3+6HCl=H2PtCl6+4NO2+4H2O heat is necessary
because the atomic structure is so dense it breaks through the dimensions and calls upon the gods for dissolving powers. then it takes an epic journey and becomes enlightened and melts through reality
Aqua regia is a highly corrosive mixture of nitric acid and hydrochloric acid. Its purpose is to dissolve noble metals like gold, platinum, and palladium, which are resistant to other acids. Aqua regia is commonly used in the purification and extraction of these metals.
1. we dissolve a body fast with acid 2. Because acid is very strong
acid.
Platinum does not dissolve in nitric acid, which is why it is commonly used in jewelry and other applications that require resistance to corrosion.
Aqua regia is a mixture of nitric acid and hydrochloric acid that can dissolve platinum. It is commonly used in the refining and extraction of platinum and other precious metals due to its ability to break down their structure.
Nitric acid can dissolve iron but not gold, platinum, and palladium. Nitric acid is a powerful oxidizing agent that reacts with iron to form soluble iron nitrate, while it does not react with noble metals like gold, platinum, and palladium.
Sulfuric acid is a highly corrosive acid that can dissolve many substances, but it does not dissolve certain materials like Teflon (polytetrafluoroethylene), gold, platinum, and some types of ceramics.
Non-metals such as carbon and some plastics do not dissolve in sulfuric acid because they are not reactive with the acid. Additionally, certain noble metals like gold and platinum are resistant to sulfuric acid and do not dissolve in it.
Platinum can be extracted from catalytic converters by first crushing the converters to a fine powder. Then, the powder is mixed with a strong acid to dissolve the platinum. The platinum is then separated from the acid solution using chemical processes, such as precipitation or electrolysis.
"Platinum resists sulfuric acid in all concentrations and temperatures."Source: Handbook of Corrosion Data - 2nd Edition, p. 850, ASM International, Materials Park, Ohio, 1995, ISBN: 0-87170-518-4
Sulfuric acid is a strong acid and can dissolve many materials, but not everything. It is commonly used in industrial processes to dissolve minerals, metals, and certain organic compounds. However, there are materials that are resistant to sulfuric acid such as some plastics, certain metals like gold and platinum, and non-reactive minerals like diamond.
Sulfuric acid cannot dissolve certain non-metallic materials, such as Teflon (polytetrafluoroethylene) and some plastics like polyethylene and polypropylene. It also has limited ability to dissolve noble metals like gold and platinum. Additionally, sulfuric acid may not dissolve certain organic compounds with strong chemical bonds.
No, mylar is a type of polyester film that is resistant to most chemicals, including aqua regia. Aqua regia is a highly corrosive mixture of nitric acid and hydrochloric acid commonly used to dissolve noble metals like gold and platinum, but it will not dissolve mylar.
Acid is unable to dissolve substances such as certain plastics, glass, and metals like gold and platinum. These materials are resistant to the corrosive properties of acids and are often used in lab equipment to handle acidic solutions.