Ultrasonic wet method for recycling old water glass sand
A technology of wet regeneration and water glass, which is applied in the cleaning/processing machinery of casting mold materials, casting molding equipment, metal processing equipment, etc., can solve the problems of large sewage discharge, reduce water consumption, and difficult treatment, and achieve Reduced water consumption, reduced difficulty, and simple overall process
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Embodiment 1
[0032] (1) Add the old water glass sand to a certain quality of water (sand water mass ratio 1:0.25) and mix it, treat it with an ultrasonic wave with a frequency of 15kHz for 30 minutes, dehydrate it by centrifugation until the moisture content of the wet sand is 3%, and measure its sodium oxide Content, higher than 0.05%, continue to process;
[0033] (2) Add the dehydrated wet sand (preliminary regenerated sand) into a certain quality of water (sand-water mass ratio 1:0.25), treat it with ultrasonic waves with a frequency of 15kHz for 30 minutes, and centrifugally dehydrate the wet sand until the moisture content of the wet sand is 3%. Measure its sodium oxide content, if it is higher than 0.05%, continue processing;
[0034] (3) Add the dehydrated wet sand (secondary regenerated sand) into a certain quality of water (sand-water mass ratio 1:0.2), treat it with ultrasonic waves with a frequency of 15kHz for 10 minutes, and centrifugally dehydrate the wet sand until the mois...
Embodiment 2
[0039] (1) Add the old water glass sand to a certain amount of waste lye (steps 3 and 4 of Example 1, sand-to-water mass ratio 1:0.4) and mix, and use a frequency of 20kHz for ultrasonic treatment for 30 minutes, then centrifuge and dehydrate to wet The moisture content of the sand is 3%, measure its sodium oxide content, if it is higher than 0.05%, continue to process;
[0040] (2) Add the dehydrated wet sand (preliminary regenerated sand) into a certain quality of water (sand-water mass ratio 1:0.35), treat it with ultrasonic waves with a frequency of 20kHz for 15 minutes, and centrifugally dehydrate the wet sand until the moisture content of the wet sand is 3%. Measure its sodium oxide content, if it is higher than 0.05%, continue processing;
[0041](3) Add the dehydrated wet sand (secondary regenerated sand) into a certain quality of water (sand-water mass ratio 1:0.3), treat it with ultrasonic waves with a frequency of 20kHz for 5 minutes, and centrifugally dehydrate the...
Embodiment 3
[0046] (1) Add the old sodium silicate sand to a certain quality of waste lye (step 4 of Example 2, the mass ratio of sand to water is 1:0.3) and mix them, and use an ultrasonic wave with a frequency of 28kHz for 25 minutes to dehydrate the wet sand until the wet sand contains water The rate is 3.5%, measure its sodium oxide content, if it is higher than 0.05%, continue to process;
[0047] (2) Add the dehydrated wet sand (preliminary regenerated sand) into a certain quality of water (sand-water mass ratio 1:0.25), treat it with ultrasonic waves with a frequency of 28kHz for 20 minutes, and dehydrate the wet sand until the moisture content of the wet sand is 3.5%. Measure its sodium oxide content, if it is higher than 0.05%, continue processing;
[0048] (3) Add the dehydrated wet sand (secondary regenerated sand) into a certain quality of water (sand-water mass ratio 1:0.25), treat it with ultrasonic waves with a frequency of 28kHz for 10 minutes, and dehydrate the wet sand u...
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