Sodium alginate modified amphiphilic feather as well as preparation method and application thereof
A sodium alginate and amphiphilic technology, applied in the field of biologically derived photothermal materials, can solve the problems of difficult biodegradation, high cost, and large-scale application obstacles, and achieve good biodegradability, reduce heat loss, and fast water The effect of transmission capacity
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Embodiment 1
[0029] material preparation
[0030] 1) Disperse 20 mg of sodium alginate powder into 10 ml of water, oscillate and mix for 3 minutes, and ultrasonicate for 10 minutes to obtain a sodium alginate solution with a good dispersion and a concentration of 2 mg / ml;
[0031] 2) Disperse 10ml of absolute ethanol into 10ml of sodium alginate solution, oscillate and mix for 2 minutes, and ultrasonicate for 5 minutes to obtain a mixed solution with good dispersion and a sodium alginate concentration of 1mg / ml;
[0032] 3) After the mixed solution was sprayed on one side of the feather for 5 times, it was dried under vacuum at 40° C. for 12 hours to obtain an amphiphilic feather assembled with a layer of sodium alginate.
[0033] efficiency test
[0034] 1) Place the amphiphilic feather with the hydrophilic side facing down in a beaker filled with 3% NaCl solution;
[0035] 2) Place the beaker under a xenon lamp with a solar intensity (1kW / m2) for 8 hours, and obtain the real-time chang...
Embodiment 2
[0040] material preparation
[0041] 1) Disperse 40mg of sodium alginate powder into 10ml of water, oscillate and mix for 5 minutes, and ultrasonicate for 15 minutes to obtain a sodium alginate solution with a good dispersion and a concentration of 4mg / ml;
[0042] 2) Disperse 10ml of absolute ethanol into 10ml of sodium alginate solution, oscillate and mix for 3 minutes, and sonicate for 10 minutes to obtain a mixed solution with good dispersion and a sodium alginate concentration of 2mg / ml;
[0043] 3) After spraying the mixed solution on one side of the feather for 8 times, it was dried under vacuum at 40° C. for 12 hours to obtain an amphiphilic feather assembled with a layer of sodium alginate.
[0044] efficiency test
[0045] 1) Place the amphiphilic feather with the hydrophilic side down in a beaker filled with 5% NaCl solution;
[0046] 2) Place the beaker under a xenon lamp with a solar intensity (1kW / m2) for 8 hours, and obtain the real-time change curve of the ma...
Embodiment 3
[0050] material preparation
[0051] 1) Disperse 80mg of sodium alginate powder into 10ml of water, shake and mix for 7 minutes, and ultrasonicate for 20 minutes to obtain a sodium alginate solution with a good dispersion and a concentration of 8mg / ml;
[0052] 2) Disperse 10ml of absolute ethanol into 10ml of sodium alginate solution, oscillate and mix for 5 minutes, and sonicate for 15 minutes to obtain a mixed solution with good dispersion and a sodium alginate concentration of 4mg / ml;
[0053] 3) After spraying the mixed solution on one side of the feather 8 times, it was dried in vacuum at 40° C. for 16 hours to obtain an amphiphilic feather assembled with a layer of sodium alginate.
[0054] efficiency test
[0055] 1) Place the amphiphilic feather with the hydrophilic side down in a beaker filled with 8% NaCl solution;
[0056] 2) Place the beaker under a xenon lamp with a solar intensity (1kW / m2) for 8 hours, and obtain the real-time change curve of the mass of the d...
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