Green and environment-friendly agricultural and sideline product cleaner
A green and environmentally friendly technology for agricultural and sideline products, applied in food processing, application, food science, etc., can solve problems such as poor health risks, unsatisfactory cleaning of agricultural and sideline products, secondary residues of chemical substances, etc., and achieve free radical scavenging Good ability, reduce household expenses, and save water resources
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preparation example Construction
[0025] In the embodiment provided by the present invention, figure 2 It is a process flow chart of the preparation method of the antibacterial material used in the green, environment-friendly and healthy agricultural by-product cleaner proposed by the present invention. refer to figure 2 , the preparation method of the antibacterial material comprises the following steps:
[0026] An antibacterial material with antibacterial and antioxidative properties. The antibacterial material is composed of polygalactose glucomannose, chitosan oligosaccharide, aluminum ion and gumite.
[0027] Preferably, the polygalactose-glucomannose is xylosaccharide, polyglucomannose or polygalactose-glucomannose; the degree of polymerization of the chitooligosaccharide is between 2 and 20, and the molecular weight is ≤5000Da.
[0028] Furthermore, the polygalactose-glucomannose is polyglucomannose or polygalactose-glucomannose, the degree of polymerization of the chitooligosaccharide is between 7...
experiment example
[0037] Experimental example to test the free radical scavenging ability of the antibacterial material
[0038] In order to measure the antibacterial and antioxidant properties of the antibacterial material of the present invention, this experimental example is by testing the free radical scavenging ability of this antibacterial material, and then evaluates its antibacterial and antioxidative, simultaneously polygalactose glucomannose, chitosan and commonly used antibacterial oxidant for comparison. Each treatment was repeated 3 times, and the average value was calculated after the experiment. The experimental results are shown in Table 1.
[0039] Experimental procedure
[0040] S1. Add 3.5mL 0.2mmol / L DPPH ethanol solution and 1.0mL 75% ethanol (DPPH, 1,1-diphenyl-2-trinitrophenylhydrazine) successively to the quartz colorimetric tube, after the mixing reaction is stable , with 75% ethanol as a reference, measure the absorbance A0 at 520nm;
[0041] S2. Add 3.5mL of 0.1mmo...
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