Production system and process method for preparing high-transparency and high-strength monoazo pigment
A monoazo pigment, high transparency technology, applied in the direction of monoazo dyes, azo dyes, chemical instruments and methods, etc., can solve the problem of high viscosity of pigment slurry blocking microchannels, decreased conversion rate of coupling components, diazo Problems such as poor mixing effect of chemical reaction
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Embodiment 1
[0047] Such as Figure 1-8 As shown, the production system of the present invention includes a continuous diazotization device and a continuous coupling reaction device, wherein such as figure 1 As shown, the continuous diazotization device includes a sodium nitrite solution storage tank 1, a water storage tank 2, a slurry storage tank 3, a high-pressure tank 7, a membrane dispersion microreactor 8, a first delay tube 9 and a diazonium salt solution Storage tank 10, wherein film dispersion microreactor 8 is provided with dispersed phase fluid inlet pipe 81, continuous phase fluid inlet pipe 82 and mixed solution outlet pipe 83, sodium nitrite solution storage tank 1 passes through the first nitriding pipeline 11 and The dispersed-phase fluid inlet pipe 81 is connected to each other, and the first nitriding input pump 4 is provided on the first nitriding pipeline 11, and an elastic sealing sheet 701 is provided in the high-pressure pipe 7, and the water storage tank 2 passes th...
Embodiment 2
[0057] The reaction was carried out using the above system:
[0058] (1) At room temperature (25°C), take 7.34g of red-based KD in a 500mL beaker, add 8.84g of concentrated hydrochloric acid (37%), 1000mL of deionized water, and stir to prepare a uniform red-based KD slurry;
[0059] (2) Take 2.20g of sodium nitrite solid in a 500mL beaker, add 500mL of deionized water, and stir until the sodium nitrite solid is completely dissolved to obtain a sodium nitrite solution;
[0060] (3) At normal temperature (25°C), use the third nitriding input pump 6 (peristaltic pump) to drive all the red-based KD slurry into the high-pressure tank, and then use the second nitriding input pump 5 (advection pump) and high pressure Tank 7 controls the flow rate of the red base KD slurry to be 15ml / min, uses the first nitriding input pump 4 (advection pump) to control the flow rate of the sodium nitrite solution to be 15ml / min, and the two solutions are respectively, simultaneously and continuously...
Embodiment 3
[0068] (1) At room temperature (25°C), take 7.34g of red-based KD in a 500mL beaker, add 8.84g of concentrated hydrochloric acid (37%), 1000mL of deionized water, and stir to prepare a uniform red-based KD slurry;
[0069] (2) Take 2.20g of sodium nitrite solid in a 500mL beaker, add 500mL of deionized water, and stir until the sodium nitrite solid is completely dissolved to obtain a sodium nitrite solution;
[0070] (3) At normal temperature (25°C), use the third nitriding input pump 6 (peristaltic pump) to drive all the red-based KD slurry into the high-pressure tank 7, and then use the second nitriding input pump 5 (advection pump) and High-pressure tank 7 controls the flow of red base KD slurry to be 30ml / min, and the sodium nitrite solution flow is controlled to be 30ml / min with the first nitriding input pump 4 (advection pump), and the two solutions are carried out in the membrane dispersion microreactor. Mix the reaction, carry out the homogeneous diazonium reaction (10...
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