This is a very rare metal. 

Rhenium is a very rare metal. 

This metal can stand very high heat. It does not melt easily. Because it stays strong, it is used in jet engines. It helps the engine parts work well. 
People use it to make special metals. These metals are used in engine nozzles. Rhenium is also used to help make gasoline. It is a very useful metal.
Rhenium is a very rare metal. 

This metal can stand very high heat. It has one of the highest melting points of any element. It is also very heavy and dense. Because it stays strong in heat, we use it in jet engines. 
Rhenium also works as a catalyst. A catalyst is something that helps a chemical change happen faster. It is used to help make gasoline.
Scientists first found rhenium in 1908. A man named Masataka Ogawa found it. He thought it was a different element at first. Later, three scientists in Germany found it again in 1925. They gave it the name rhenium. They named it after the Rhine River in Europe.
Rhenium is a very rare and heavy metal. 

This metal is special because it can handle extreme heat. It has one of the highest melting points of all elements. Only tungsten has a higher melting point. It also has one of the highest boiling points. This makes it perfect for very hot machines. 
Scientists have a long history of studying this element. A Japanese chemist named Masataka Ogawa first found it in 1908. He mistakenly thought it was element 43. He named his discovery nipponium after Japan. Later, three scientists in Germany found it again in 1925. They were Walter Noddack, Ida Tacke, and Otto Berg. They gave it the name rhenium. They named it after the Rhine River in Europe. 
Aside from engines, rhenium works as a catalyst. A catalyst is something that helps a chemical change happen faster. Rhenium is great for processes like hydrogenation. It is also used in a process called rheniforming. This helps turn naphtha into gasoline for cars. 
Think about the powerful engines on a large airplane. Those engines rely on the strength of rhenium to fly safely. Without this metal, the parts might melt or break under pressure. It is also like a helper in a kitchen. Just as a catalyst helps a recipe work faster, rhenium helps make fuel. Even though it is rare, it plays a huge role in our modern world.
Rhenium is a heavy, silvery-gray transition metal with the chemical symbol Re. It is located in group 7 of the periodic table and has the atomic number 75. This element is exceptionally rare in the Earth's crust. Scientists estimate its average concentration is only 1 part per billion (ppb). Because it is so scarce, rhenium is quite expensive. In 2008 and 2009, its price reached an all-time high of US$10,600 per kilogram. 
Physically, rhenium is a remarkable substance with extreme properties. It possesses one of the highest melting points of all elements. Only tungsten has a higher melting point. It also has one of the highest boiling points among all elements. Among the stable elements, its boiling point is the highest. Rhenium is also one of the densest elements known. It is exceeded in density only by platinum, iridium, and osmium. 
Most rhenium is obtained as a by-product of mining other metals. It is primarily extracted during the refinement of molybdenum and copper ores. One major source is the mineral molybdenite, which is mostly molybdenum disulfide. In some ores, rhenium concentrations range from 0.001% to 0.2%. To extract it, the ore is roasted to volatilize rhenium oxides. These oxides, such as rhenium(VII) oxide, dissolve easily in water. They are then leached from flue dusts and purified into salts like ammonium perrhenate. 
The history of rhenium is a story of mistaken identity. In 1908, Japanese chemist Masataka Ogawa announced he found a new element. He named it nipponium and thought it was element 43. In reality, he had discovered element 75. Because he was searching for element 43, he did not realize his mistake. Later, in 1925, a team in Germany rediscovered the element. Walter Noddack, Ida Tacke, and Otto Berg identified it correctly. They named it rhenium after the Rhine River in Europe. 
Today, the most significant use for rhenium is in the aerospace industry. It is used to create nickel-based superalloys. These alloys can withstand incredible heat without losing strength. They are used for turbine blades, combustion chambers, and exhaust nozzles in jet engines. These alloys often contain up to 6% rhenium. This makes jet engine construction the largest single use for the metal. 
Another vital role for rhenium is as a chemical catalyst. A catalyst is a substance that speeds up a chemical reaction. Rhenium is an excellent catalyst for hydrogenation and isomerization. One specific use is the catalytic reforming of naphtha to make gasoline. This is known as the rheniforming process. While demand for these catalysts has dropped recently, the metal remains essential for fuel production.
In the laboratory, rhenium shows complex chemical behavior. It can exist in many oxidation states, ranging from −3 to +7. This means it can gain or lose different numbers of electrons when forming compounds. Common states include +7, +4, and +3. It also has a unique isotopic makeup. Naturally occurring rhenium consists of 37.4% rhenium-185 and 62.6% rhenium-187. The rhenium-187 isotope is unstable, but it has a very long half-life of 41.6 billion years. Scientists use the decay of this isotope for rhenium–osmium dating of ores. 
🖼️ Images & Media (6)
More to explore
✨ What else?
Related topics you might enjoy
🪜 Step back
Simpler topics to build understanding
What is Nepedia?
A free, ad-free encyclopedia for children. Every article is written at five reading levels, so the same page works for a five-year-old and a fifteen-year-old — use the level switcher above to see this one change. No account needed to read.