Catalytic ceramic filter tube and preparation method
A ceramic filter tube and filter tube technology, applied in the direction of chemical instruments and methods, separation methods, physical/chemical process catalysts, etc., can solve the problems of denitrification efficiency decline, etc., and achieve the effects of easy implementation, good high temperature resistance, and easy control
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preparation example Construction
[0047] The preparation method of catalytic ceramic filter tube of the present invention comprises the following steps:
[0048] 1. Preparation of ceramic filter tube matrix.
[0049] 1) Carry out pre-sintering and crushing of silicon carbide into particles and then sieve to obtain aggregates of different particle sizes, add high-temperature binder, and granulate through a mixer to obtain conventional powder;
[0050] 2) Put conventional powder into molds of different lengths, then put the molds into a cold isostatic press, form them by cold isostatic pressing, and finally dry them at 110-140°C in an air atmosphere, and then dry them The final ceramic core is sintered at 900-1200°C for 2-6 hours to obtain a ceramic matrix. The length of the prepared ceramic matrix is 1000, 1500, 3000mm, the outer diameter is 70mm, and the inner diameter is 50mm.
[0051] 2. Coating the catalytic active component layer on the ceramic filter tube substrate to obtain the catalytic ceramic filte...
example 1
[0063] The preparation method of catalytic ceramic filter tube of the present invention comprises the following steps:
[0064] 1. Preparation of ceramic filter tube matrix.
[0065] 1) Pre-sintering and crushing silicon carbide into particles and then sieving to obtain aggregates of different particle sizes, adding high-temperature binder polyvinyl alcohol, and granulating through a mixer to obtain conventional powder;
[0066] 2) Put conventional powder into molds of different lengths, then put the molds into cold isostatic presses, and dry them at 110°C under air atmosphere after cold isostatic pressing, and then dry the dried ceramic molds The core was sintered at 900°C for 2 hours to obtain a ceramic matrix.
[0067] 2. Coating the catalytic active component layer on the ceramic filter tube substrate to obtain the catalytic ceramic filter tube substrate.
[0068] 2.1 Preparation of boehmite sol; mix aluminum isopropoxide powder and water at a mass ratio of 3:20, and con...
example 2
[0078] The preparation method of catalytic ceramic filter tube of the present invention comprises the following steps:
[0079] 1. Preparation of ceramic filter tube matrix.
[0080] 1) Pre-sintering and crushing silicon carbide into granules and then sieving to obtain aggregates of different particle sizes, adding high-temperature binder JN-20 silica sol, and granulating through a mixer to obtain conventional powder;
[0081] 2) Put conventional powder into molds of different lengths, then put the molds into cold isostatic presses, and dry them at 120°C under air atmosphere after cold isostatic pressing, and then dry the dried ceramic molds The core was sintered at 1000°C for 4 hours to obtain a ceramic matrix.
[0082] 2. Coating the catalytic active component layer on the ceramic filter tube substrate to obtain the catalytic ceramic filter tube substrate.
[0083] 2.1 Preparation of boehmite sol; mix aluminum isopropoxide powder and water at a mass ratio of 3:20, and cont...
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