Loquat leaf pigment as well as extraction method and application thereof
A loquat leaf and pigment technology, applied in the textile field, can solve problems such as environmental pollution, poor market competitiveness, and increased labor costs, and achieve the effects of improving extraction efficiency and broadening application fields.
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Embodiment 1
[0025] (1) Wash the loquat leaves, dry them, and pack them in plastic bags. Take 5g of dried loquat leaves and put them into a 100mL beaker, add 50mL of deionized water and sodium bisulfite, raise the temperature to 97°C and stir for 2h, (replenish deionized water in time as the water evaporates during the boiling process). After cooling, filter the extract with a 300-mesh filter, and dilute to 50 mL with deionized water to obtain a 100 g / L loquat leaf pigment extract.
[0026] (2) Use acetic acid to adjust the pH value of the obtained extract to 6 to obtain a loquat leaf pigment solution.
[0027] Table 1 The maximum absorption wavelength and absorbance test results of loquat leaf pigment solution
[0028]
[0029]
[0030] It can be known from Table 1 that the extract obtained by extracting the loquat leaf pigment with sodium bisulfite, and then adjust the pH of the extract to 6 with acetic acid, and the maximum absorption wavelength is 270nm-300nm. With the increase...
Embodiment 2
[0032] The difference from Example 1 is that step (2) uses acetic acid to adjust the pH value of the obtained extract to 7 to obtain a loquat leaf pigment solution.
[0033] Table 2 The maximum absorption wavelength and absorbance test results of loquat leaf pigment solution
[0034]
[0035] It can be known from Table 2 that the extract obtained by extracting the loquat leaf pigment with sodium sulfite is then adjusted to pH 7 with acetic acid, and the maximum absorption wavelength is 270nm-300nm. The absorbance of loquat leaf pigment solution at pH 7 is slightly larger than that of loquat leaf pigment solution at pH 6.
Embodiment 3
[0037] The difference from Example 1 is that step (2) uses sodium carbonate solution to adjust the pH value of the obtained extract to 8 to obtain a loquat leaf pigment solution.
[0038] Table 3 The maximum absorption wavelength and absorbance test results of loquat leaf pigment solution
[0039]
[0040] It can be seen from Table 3 that the extract obtained by extracting the loquat leaf pigment with sodium sulfite is then adjusted to a pH of 8 with sodium carbonate solution, and the maximum absorption wavelength is 270nm-300nm. The absorbance of loquat leaf pigment solution pH 8 is slightly smaller than that of loquat leaf pigment solution pH 7.
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