High Level Material Electrolytic Manganese Flake
Products Description
The determination of manganese, silicon, phosphorus, and iron content in electrolytic manganese flake using fused sample X-ray fluorescence spectroscopy. A protective layer made of fused lithium tetraborate is used for the platinum crucible, with BaO2 as an oxidant. The electrolytic manganese is oxidized in a muffle furnace by gradually increasing the temperature, followed by the production of glass melts through fusion, and the manganese, silicon, phosphorus, and iron content in the electrolytic manganese is analyzed using X-ray fluorescence (XRF) spectroscopy. The relative standard deviations (RSD) for manganese, silicon, phosphorus, and iron are 0.23%, 2.82%, 0.31%, and 0.53%, respectively. Compared to other analytical methods, the results are more stable, effectively eliminating crucible corrosion issues during the melting process of electrolytic manganese.
Products parameters
| Electrolytic Manganese Metal Flakes | |||||
| Spec | Mn | C | S | P | Fe+Si+Se |
| ≥ | ≤ | ||||
| 99.70% | 0.04% | 0.05% | 0.005% | 0.205% | |
| Size | In flakes | ||||
| Packing | In big bags of 1000kgs net each | ||||
Products cooperation picture

1.An electrolytic manganese flake cleaning device, including a base and a cleaning mechanism; Base: its upper end has supporting columns at each of the four corners, the upper ends of the supporting columns are fixedly connected to the lower end of a protective plate, the upper end of the base is provided with mounting seats, sliding columns are slidably connected within the sliding holes at the upper ends of the mounting seats, the upper ends of the sliding columns are fixedly connected to the lower end of the cleaning box, and springs are arranged between the upper end of the base and the lower end of the cleaning box, with the springs fitted around the upper sides of the sliding columns. The upper end of the cleaning box is fixedly connected to a feed hopper at the feed inlet, and the upper end of the feed hopper is hinged to a feed door through hinges, while the lower end of the discharge outlet at the front side of the cleaning box is hinged to a discharge door. This electrolytic manganese sheet cleaning device is simple to operate and allows for a more comprehensive cleaning of the electrolytic manganese sheets, improving the cleaning effect and speed. During the cleaning process, the electrolytic manganese sheets inside the cleaning box are subjected to forces that make them tumble, further enhancing the cleaning effect.
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