Antibacterial botanic liquid detergent and preparing method thereof
A technology for detergents and plants, applied in chemical instruments and methods, detergent compositions, non-surface-active detergent compositions, etc., can solve the problems of great skin damage, waste of water resources, pollution of the environment, etc., and achieve nutritional value. and skin protection, small investment in equipment, high specific surface area
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Embodiment 1
[0021] Example 1 Preparation of nano-carbon crystals
[0022] Its process flow diagram is as follows figure 1 As shown, the steps are:
[0023] (1) Preliminary crushing: firstly, the diamond raw material is sent into the crushing cavity of the mechanical crusher, and is crushed by the high-speed rotating hammer head inside the crusher. The material stays in the crusher for re-crushing, and the granular material filtered through the finest sieve in the lower layer of the crusher is collected by the sieve plate (the mesh number of the sieve is not less than 32 mesh), while the material filtered by other mesh sieves can be used as Coarse materials are sold or used to prepare materials with other particle sizes; particles above 32 mesh are used for primary particle size separation by a multi-layer vibrating sieve machine. The coarse material selected by the 40-mesh sieve is returned to the mechanical crusher for re-crushing, the material collected by the 40-mesh to 500-mesh sie...
Embodiment 2
[0029] An antibacterial plant detergent, made of the following raw materials in parts by weight: 1.5 parts of nano-carbon crystals, 29 parts of saponin, 28 parts of Sapindus fruit peel, 20 parts of tea seed, 24 parts of mugwort oil, and 20 parts of orange peel , 5 parts of egg white powder, 80 parts of deionized water.
[0030] The nanocarbon crystals were surface functionalized as follows: adding nanocarbon crystals to concentrated HNO 3 and concentrated H 2 SO 4 in the mixed solution, heated to reflux and centrifuged, the precipitate was washed with deionized water until the pH was 5.0-6.0, and the molar concentration was 0.5mol L - 1 Na 2 SiO 3 9H 2 Wash with O solution, ultrasonically disperse for 2 hours, and then use a molar concentration of 0.1mol L -1Washed with HCl, ultrasonically dispersed for 1 h, washed with deionized water, and dried; the concentrated HNO 3 and concentrated H 2 SO 4 The mass ratio is 1:2.
Embodiment 3
[0036] An antibacterial plant detergent, made of the following raw materials in parts by weight: 0.5 parts of nano-carbon crystals, 28 parts of saponins, 30 parts of Sapindus fruit peels, 23 parts of tea seeds, 20 parts of mugwort oil, and 25 parts of orange peels , 1 part of egg white powder, 75 parts of deionized water.
[0037] The nano-carbon crystals are subjected to the following surface functionalization treatment: the nano-carbon crystals are added to concentrated HNO 3 and concentrated H 2 SO 4 in the mixed solution, heated to reflux and centrifuged, the precipitate was washed with deionized water until the pH was 5.0-6.0, and the molar concentration was 0.1mol L - 1 Na 2 SiO 3 9H 2 Wash with O solution, ultrasonically disperse for 1 h, and then use a molar concentration of 0.5 mol L -1 Washed with HCl, ultrasonically dispersed for 2 hours, washed with deionized water, and dried; the concentrated HNO 3 and concentrated H 2 SO 4 The mass ratio is 1:5.
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