Technology for producing active magnesium oxide
A technology of active magnesium oxide and production process, applied in magnesium oxide and other directions, can solve the problem of high energy consumption of light magnesium carbonate, achieve obvious energy saving effect, reduce energy consumption and cost, and reduce thermal energy consumption.
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Embodiment 1
[0033] The prepyrolyzer adopts a tower reactor with an effective volume of 15L. The flow of heavy magnesium water from the carbonization process is 11.8kg / h, the concentration of heavy magnesium water is 8.5g / L in terms of magnesium oxide, and the temperature is 24.0℃, sprayed from the top of the pre-pyrolyzer; the heavy magnesium that has passed through the pre-pyrolyzer The water is put into the pyrolyzer, and saturated steam is passed into it for heating, so that the temperature of the heavy magnesium water is increased to 97.5℃, and the magnesium bicarbonate in the heavy magnesium water is fully decomposed into light magnesium carbonate and precipitated. The resulting suspension is filtered The light magnesium carbonate filter cake with 76.5% water content is separated; the light magnesium carbonate filter cake is sent to a dryer for drying to obtain a light magnesium carbonate product of 224.4g / h; the dried light magnesium carbonate product is sent to the calciner, Calcine...
Embodiment 2
[0035] A bubbling reactor was used as a pre-pyrolyzer to conduct batch operation experiments. The effective volume of the bubble reactor is 10L, and the ratio of height to diameter is 5:1. Take 10.0L heavy magnesium water and place it in a bubbling reactor. The heavy magnesium water has a concentration of 7.9g / L based on magnesium oxide and a temperature of 18.9°C. Saturated steam is introduced into the bubbling reactor for heating to increase the temperature to 62.8°C, and then vacuum equipment is used to continuously evacuate the bubbling reactor to keep the absolute pressure inside the bubbling reactor at 21.00 kPa for 20-40 minutes. The magnesium bicarbonate in the heavy magnesium water is fully decomposed into light magnesium carbonate and precipitated out. The resulting suspension is separated by filtration to obtain a light magnesium carbonate filter cake with water content of 77.8%; the light magnesium carbonate filter cake is sent to a dryer for drying to obtain a ligh...
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