Requirements and Development Trend of Magnetic Reactor in Chemical Production
1. Large volume magnetic reactor is an effective way and development trend to increase production, reduce quality errors between batch production, and reduce product costs. Magnetic reaction kettles for dye production are mostly below 6000L in China, and some in other industries reach 30m ³; In foreign countries, there are 20000 to 40000 liters in the dye industry, while other industries can reach 120 meters ³。 2. The agitator of magnetic reaction kettle has developed from a single agitator to a dual agitator or an external pump for forced circulation. In foreign countries, in addition to being equipped with an agitator, the magnetic reactor body is also rotated along a horizontal line, thereby improving the reaction speed. 3. Replacing cumbersome intermittent manual operations with production automation and continuity, such as adopting program control, can not only ensure stable production, improve product quality, increase revenue, reduce physical labor, but also eliminate environmental pollution. 4. The magnetic reactor utilizes heat energy reasonably, selects the best process operating conditions, strengthens thermal insulation measures, improves heat transfer efficiency, and minimizes heat loss. The residual heat or heat generated after the reaction is fully utilized. The application of heat pipe technology will be the direction of development in the future.
1. Large volume magnetic reactor is an effective way and development trend to increase production, reduce quality errors between batch production, and reduce product costs. Magnetic reaction kettles for dye production are mostly below 6000L in China, and some in other industries reach 30m ³; In foreign countries, there are 20000 to 40000 liters in the dye industry, while other industries can reach 120 meters ³。
2. The agitator of magnetic reaction kettle has developed from a single agitator to a dual agitator or an external pump for forced circulation. In foreign countries, in addition to being equipped with an agitator, the magnetic reactor body is also rotated along a horizontal line, thereby improving the reaction speed.
3. Replacing cumbersome intermittent manual operations with production automation and continuity, such as adopting program control, can not only ensure stable production, improve product quality, increase revenue, reduce physical labor, but also eliminate environmental pollution.
4. The magnetic reactor utilizes heat energy reasonably, selects the best process operating conditions, strengthens thermal insulation measures, improves heat transfer efficiency, and minimizes heat loss. The residual heat or heat generated after the reaction is fully utilized. The application of heat pipe technology will be the direction of development in the future.
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