Field high-efficiency self-driving water purification kettle and manufacturing method thereof
A high-efficiency, self-driving technology, applied in water/sewage treatment, general water supply saving, travel or camping equipment, etc., can solve the problems of high cost, high energy consumption and cost, complex structure, etc., and achieve easy portability and simple structure. , the effect of low cost
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Embodiment 1
[0027] A preparation method of a field high-efficiency self-driving water purification kettle is as follows:
[0028] First, the preparation of polyacrylamide aerogel hose: the radial ice template method is used to make the ice crystal grow radially; first, the copper tube is contacted with a low temperature bath to cool the copper tube; then add acrylamide, chemical crosslinking agent and light The precursor liquid of the initiator, the ice crystal squeezes the polymer chains into loose pore walls during the growth process; then cross-linking is carried out by ultraviolet low-temperature radiation method, so that the pore walls obtained in the previous step are chemically combined, and the light is continued for 5 hours. After that, a relatively stable pore wall is formed between the polymer chains; finally, freeze-drying is used to sublime the ice crystals, leaving a polyacrylamide aerogel hose with a porous radial structure.
[0029] Second, the production of the evaporatio...
Embodiment 2
[0035] A preparation method of a field high-efficiency self-driving water purification kettle is as follows:
[0036]First, the preparation of polyacrylamide aerogel hose: the radial ice template method is used to make the ice crystal grow radially. The copper tube is first exposed to a low-temperature bath to cool the copper tube; then a precursor solution containing acrylamide, a chemical cross-linking agent and a photoinitiator is added, and the ice crystals squeeze the polymer chains into loose pore walls during the growth process; Ultraviolet low-temperature radiation is used for cross-linking, so that the pore walls obtained in the previous step are chemically combined. After 5 hours of continuous illumination, a relatively stable pore wall is formed between the polymer chains. Finally, freeze-drying is used to sublime ice crystals, leaving Polyacrylamide aerogel hose with lower porous radial structure.
[0037] Second, the fabrication of the evaporation plate: the roun...
Embodiment 3
[0042] A preparation method of a field high-efficiency self-driving water purification kettle is as follows:
[0043] First, the preparation of polyacrylamide aerogel hose: the radial ice template method is used to make the ice crystal grow radially. The copper tube is first exposed to a low-temperature bath to cool the copper tube; then a precursor solution containing acrylamide, a chemical cross-linking agent and a photoinitiator is added, and the ice crystals squeeze the polymer chains into loose pore walls during the growth process; Ultraviolet low-temperature radiation is used for cross-linking, so that the pore walls obtained in the previous step are chemically combined. After 6 hours of continuous illumination, a relatively stable pore wall is formed between the polymer chains; finally freeze-drying is used to sublime the ice crystals, leaving Polyacrylamide aerogel hose with lower porous radial structure.
[0044] Second, the fabrication of the evaporation plate: the ...
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