Method for degrading synthetic dye through compound system
A technology for synthesizing dyes and systems, applied in chemical instruments and methods, multi-stage water/sewage treatment, water/sludge/sewage treatment, etc. Concerned about the quickness of processing and other issues, to achieve the effect of not being prone to secondary pollution, reducing cost investment, and thorough decolorization
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Embodiment 1
[0022] (1) Comparative example: a separate decolorization experiment of dyes by zero-valent iron.
[0023] Zero-valent iron to malachite green 617nm, crystal violet 588nm, aniline blue 585nm, orange G 475nm, thymol blue 376nm, methylene blue 668nm, bromocresol green 618nm, methyl orange 505nm, methyl red 410nm Decolorization: Take 1g of zero-valent iron powder and add it to the Erlenmeyer flask containing 100ml of the above-mentioned dyes with a concentration of 100mg / L for decolorization, measure the absorbance value every 1 hour, and calculate the decolorization rate, decolorization rate (%)=[ (A 0 -A t ) / A 0 ]×100%.
[0024] Among them: A t is the absorbance value of the dye at time t, A 0 is the initial absorbance value before dye degradation.
[0025] The test results are shown in Table 1 below.
[0026] Table 1 Decolorization of nine dyes by zero-valent iron
[0027] Determination index malachite green purple crystal Aniline blue Orange G thym...
Embodiment 2
[0046] Get 100 kilograms of wastewater from the printing and dyeing factory, the chromaticity of the wastewater is 50000 times, the pH of the printing and dyeing wastewater to be treated has no special requirements, and there is no need to adjust the pH value of the wastewater. It is alkaline), and it is also applicable to acidic printing and dyeing wastewater. The cultivation method of acid-oxyntic bacteria and white-rot fungus is the same as that in Example 1. The white-rot fungus of this example is cultured with Racula albicans to form a bacterial film, and the acid-oxyntic bacteria is selected from Aspergillus niger XZ-127 Cultivated to form a biofilm, wherein the pH of Aspergillus niger XZ-127 was 3.5 after being shaken and cultivated in PDB medium for 5 days, and the treatment method was the same as in Example 1, that is, adding iron powder, white-rot fungus biofilm, and acid-secreting bacteria biofilm separately , Composite system. Among them, iron powder treatment: ad...
Embodiment 3
[0053] Take 100 kg of waste water from the printing and dyeing factory, the chromaticity of the waste water is 30,000 times, the cultivation method of the acid-secreting bacteria film and the white-rot fungus film is the same as that of Example 1, and the white-rot fungus film of this embodiment is selected from the white sac Rake tooth bacteria Cultivate to form a biofilm, and the acid-secreting bacteria biofilm is selected from Aspergillus niger XZ-127 to cultivate the biofilm, wherein the pH of Aspergillus niger XZ-127 after shaking and culturing in PDB medium for 5 days is 3.0, and the treatment method is the same as in Example 1, namely Separately add iron powder, white rot fungus pellicle, acid-oxyntic bacterium pellicle, compound system. Among them, iron powder treatment: add 1.5 kg of iron powder to 100 kg of wastewater; white rot fungal film treatment: directly add 7 kg of pre-cultivated white rot fungal film (dried bacteria content is 2.5%) and pour it into the wastew...
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