乾式銅ナゲッ. リサイクルライン 銅およびアルミケーブル・電線・雑線の処理には、STOKKERMILLの乾式銅ナゲットが最適です。乾式ナゲットラインを設置することにより、大量の銅ケーブル雑線を処理して、簡単に銅やアルミを回収することができます。乾式ナゲットでありながら、銅の品質は高く、湿式に比べてメンテナンスが容易で使用しやすいのが利点です。破砕機・粉砕機・ 振動選別機などの技術を組み合わせて、銅線、アルミ線、雑線、ハーネスなど一度に容易に処理、純度 99.9%の銅が回収ができます

乾式銅ナゲッ. リサイクルライン 銅およびアルミケーブル・電線・雑線の処理には、STOKKERMILLの乾式銅ナゲットが最適です。乾式ナゲットラインを設置することにより、大量の銅ケーブル雑線を処理して、簡単に銅やアルミを回収することができます。乾式ナゲットでありながら、銅の品質は高く、湿式に比べてメンテナンスが容易で使用しやすいのが利点です。破砕機・粉砕機・ 振動選別機などの技術を組み合わせて、銅線、アルミ線、雑線、ハーネスなど一度に容易に処理、純度 99.9%の銅が回収ができます
Stokkermill solar panel recycling plant uses a combination of mechanical processes, such as crushing, shredding, and grinding, followed by air classification, vibrating screens, and magnetic separation to separate materials like silicon, glass, aluminum, and plastics. These processes ensure that each material is recovered with high purity and minimal contamination.
In Stokkermill solar panel recycling plant, silicon is typically recovered through a multi-step process. After the panels are shredded and crushed, the silicon is separated from the other materials using chemical processes or thermal treatment. This recovery process is designed to maximize the yield of high-quality silicon that can be reused in new solar panels or other industries.
Glass is one of the most significant components of a solar panel, and the Stokkermill solar panel recycling plant is designed to recover it efficiently. Glass is separated from the panel after the silicon and metal components are removed. The recovered glass is cleaned, processed, and repurposed for use in the production of new solar panels or as raw material for other industries such as construction or automotive.
Glass in solar panels is separated through an advanced mechanical process that includes crushing, vibration, and density-based separation. The Stokkermill solar panel recycling plant also uses high-frequency vibration technologies to optimize the recovery of pure glass, which is then cleaned and reused in the production of new solar panels or in other industrial applications.
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