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  • Ruthenium carbon recovery

    Ruthenium carbon recovery_ Ruthenium carbon recovery_ Precious metal catalyst recycling manufacturer

    Ruthenium carbon is a novel material composed of ruthenium and carbon elements. Ruthenium carbon has excellent mechanical properties and chemical stability. Its hardness and strength are very high, even exceeding that of steel. Compared with traditional materials, ruthenium carbon is lighter, has lower density, and has excellent wear and corrosion resistance. In addition, ruthenium carbon also has good electrical and thermal conductivity, which makes it have a wide range of application potential in the fields of electronic devices and energy storage.

    Product Details

    Ruthenium carbon is a novel material composed of ruthenium and carbon elements. Ruthenium carbon has excellent mechanical properties and chemical stability. Its hardness and strength are very high, even surpassing that of steel. Compared with traditional materials, ruthenium carbon is lighter, has lower density, and has excellent wear and corrosion resistance. In addition, ruthenium carbon also has good conductivity and thermal conductivity, making it have broad application potential in the fields of electronic devices and energy storage.

    So, how is ruthenium carbon prepared? Here are several common preparation methods:

    1. Hydrothermal method: This is a simple and effective method for preparing ruthenium carbon. Firstly, dissolve ruthenium salts and carbon sources (such as glucose, sucrose, etc.) in water to form a mixed solution. Then, place the mixed solution in a high-temperature and high-pressure reactor and react for a period of time under certain temperature and pressure conditions. Through hydrothermal reactions, ruthenium ions are reduced to form nanoscale ruthenium particles, which interact with carbon sources to form ruthenium carbon composites. Finally, ruthenium carbon materials were obtained through steps such as separation and drying.

    2. Chemical vapor deposition method: This is a method of preparing ruthenium carbon under gas-phase conditions through chemical reactions. Firstly, the ruthenium precursor and carbon source (such as methane, acetylene, etc.) are mixed in a certain atmosphere to form a reaction gas. Then, the reaction gas is introduced into a high-temperature reactor, and the ruthenium precursor and carbon source are decomposed and recombined into ruthenium carbon through pyrolysis reaction. Finally, the product is collected from the reactor and subjected to subsequent processing to obtain pure ruthenium carbon material.

    3. Electrochemical deposition method: This is a technology that uses electrochemical methods to prepare ruthenium carbon. First, prepare the electrolyte containing ruthenium salt and carbon source, and then place it in the Electrolytic cell. Next, connect the Electrolytic cell to an external power source and pass the current through the electrolyte. Under the action of current, ruthenium ions are reduced to metal ruthenium and interact with the carbon source to form ruthenium carbon composite materials. Finally, the product is separated from the electrolyte and purified ruthenium carbon material is obtained through subsequent processing steps.

    Waste ruthenium carbon is one of the recycling sources of ruthenium containing noble metal catalyst waste. The recycling of ruthenium containing noble metal catalyst waste includes ruthenium oxide recovery, ruthenium acetate recovery, Ruthenium(III) chloride recovery, ruthenium zinc catalyst recovery, ruthenium iodide recovery, ruthenium alumina catalyst recovery, etc. If you have any demand for the recycling of ruthenium containing waste, please call our 24-hour service hotline. Dingfeng Precious Metal Recycling and Refining Factory has an independent recycling and refining factory without intermediaries to earn price differences. Our first-class technical team and customer service personnel provide one-on-one services to ensure customer privacy during the recycling process.

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