A method for preparing hydrophobically modified nanocellulose using a microchannel reaction system
A technology of nanocellulose and microchannel reaction, applied in chemical instruments and methods, chemical/physical/physicochemical reactors, chemical/physical/physicochemical processes, etc., can solve the adverse effects of alkoxy silicon group stability , The production route is not environmentally friendly, the storage stability is affected, etc., to achieve the effect of high commercial promotion value, excellent hydrophobic effect, and high product reliability
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Embodiment 1
[0051] (1) 320g nanocellulose and 1000g butanone were mixed and ultrasonically dispersed to form a uniform dispersion, then 1.6g of catalyst dibutyltin dilaurate was added, and stirred to obtain dispersion a;
[0052] (2) 46.88g of single-ended isocyanate group-containing fluoride A was dissolved in 100g of butanone to form solution b;
[0053] (3) 33.15g single-end isocyanate group-containing alkane-based compounds C were dissolved in 40g butanone to form solution c;
[0054] (4) The dispersion liquid a, solution b and solution c are simultaneously pumped into the micro-mixer of the micro-channel reaction system to mix evenly, and then enter the micro-channel reactor of the micro-channel reaction system to carry out the reaction. The reaction temperature is 80 °C, and the reaction The time is 15min;
[0055](5) centrifuging and drying the reaction product in step (4) to obtain hydrophobically modified nanocellulose.
[0056] Fourier transform infrared spectrometer was used ...
Embodiment 2
[0063] (1) 320g nanocellulose and 1000g butanone were mixed and ultrasonically dispersed to form a uniform dispersion, then 1.6g of catalyst dibutyltin dilaurate was added, and stirred to obtain dispersion a;
[0064] (2) 46.88g of single-ended isocyanate group-containing fluoride A was dissolved in 100g of butanone to form solution b;
[0065] (3) 33.15g single-end isocyanate group-containing alkane-based compounds C were dissolved in 40g butanone to form solution c;
[0066] (4) The dispersion liquid a and the solution b are simultaneously pumped into the first micro-mixer of the micro-channel reaction system to mix evenly, and then enter the first micro-channel reactor of the micro-channel reaction system to carry out the reaction. The reaction product and the solution c are simultaneously They are respectively pumped into the second micro-mixer of the micro-channel reaction system to mix evenly, and then enter the second micro-channel reactor of the micro-channel reaction ...
Embodiment 3
[0070] The rest is the same as in Example 4, except that the dispersion liquid a is first reacted with the solution c, and then the reactant is reacted with the solution b.
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