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... can be used as green land or square land. Therefore, the device covers no surface area. And there is no need for plant construction, neither heating and heat preservation. (2) The device use plug flow biolo...
...green land or square land. Therefore, the device covers no surface area. And there is no need for plant construction, neither heating and heat preservation. (2) The device use plug flow biological contact ox...
... Carbide Heating Rods is made of top quality green silicon carbide which is characterized by high-applied temperature, anti-oxidization, anti-corrosion , long service life, ltttle deformation and easy instal...
... Heating Rods is made of top quality green silicon carbide which is characterized by high-applied temperature, anti-oxidization, anti-corrosion , long service life, ltttle deformation and easy installation &...
... can be used as green land or square land. Therefore, the device covers no surface area. And there is no need for plant construction, neither heating and heat preservation. (2) The device use plug flow biolo...
...green land or square land. Therefore, the device covers no surface area. And there is no need for plant construction, neither heating and heat preservation. (2) The device use plug flow biological contact ox...
...silicon carbide as the main material, and is made into billets and silicon crystals at 2400ºC. In an oxidizing atmosphere, the service temperature can reach 1450°C, and the continuous service life can reach ...
... element. Ultra-pure green hexagonal silicon carbide is selected as the main material, and blank and silicon crystals are made at 2400ºC. In the oxidizing atmosphere, the service temperature can reach 1450℃,...
... into blanks, high-temperature silicification, and recrystallization. Compared with metal electric heating elements, this component has the characteristics of high operating temperature, oxidation resistance...
... high-purity green hexagonal silicon carbide, which is sintered by high-temperature silicification and recrystallization at 2200 ℃. It has high operating temperature, high temperature resistance, oxidation r...
...green hexagonal silicon carbide as the main raw material. After being processed into blanks according to a specific material ratio and sintered through high-temperature silicification and recrystallization a...
... as the primary raw material. Blanks are prepared according to a certain material ratio and then sintered by high-temperature silicification and recrystallization at 2200 °C. In an oxidizing atmosphere, it c...
...green hexagonal silicon carbide as the main material. After being processed into blanks in accordance with a specific material ratio and sintered through high-temperature silicification and recrystallization...
...the main raw material. Through processing into blanks according to a certain material ratio and sintering by high-temperature silicification and recrystallization at 2200 °C. In an oxidizing atmosphere, it c...
...green hexagonal silicon carbide as the main raw material. After being processed into blanks according to a specific material ratio and sintered by high-temperature silicification and recrystallization at 220...
... as the main raw material. After being processed into blanks following a certain material ratio and sintered through high-temperature silicification and recrystallization at 2200 °C. In an oxidizing environm...
...green hexagonal silicon carbide as the main raw material. After being processed into blanks according to a specific material ratio and sintered by high-temperature silicification and recrystallization at 220...
...the main raw material. Through processing into blanks according to a certain material ratio and sintering by high-temperature silicification and recrystallization at 2200 °C. In an oxidizing atmosphere, it c...
...green hexagonal silicon carbide as the main raw material, processed into blanks according to a certain material ratio, and sintered by high-temperature silicification and recrystallization at 2200 ° C. The n...
... is selected ultra pure green hexagonal silicon carbide, which is made into billets and silicon crystals at a high temperature of 2400 ℃. Under an oxidizing atmosphere, the operating temperature can reach 14...