System treating organic matter containing waste water by using adsorption method and for preparing carbon nanomaterial, and method thereof
A carbon nanomaterial and organic matter technology, which is applied in the field of waste water and carbon nanomaterial preparation systems, can solve the problems of high cost, difficult separation, high cost of carbon nanomaterials, etc., and achieves the effect of saving consumption and reducing costs.
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Embodiment 1
[0032] Such as figure 1 As shown, the jacketed wastewater adsorption / desorption device 1, the concentrated waste liquid separation device 2 (rectification tower), the carbon nanomaterial production device 3 and the tail gas oxidation device 4 are connected in sequence, and the tail gas oxidation device 4 produces The flue gas is connected with the carbon nanomaterial production device 3 through the first heat exchanger 5 through the pipeline, and then connected with the concentrated waste liquid separation device 2 through the second heat exchanger 6 through the pipeline, and then adsorbed / adsorbed with the jacketed waste water through the pipeline The jacket of the desorption device 1 is connected.
[0033]Fill the carbon adsorbent in the wastewater adsorption / desorption device 1 with a jacket, and the wastewater containing organic matter (500ppm, chlorododecane, No. 0 diesel oil, picoline, linoleic acid) is transferred from the wastewater with a jacket The top of the adsorp...
Embodiment 2
[0039] Such as figure 2 As shown, the jacketed wastewater adsorption / desorption device 1, the concentrated waste liquid separation device 2 (rectification tower), the carbon nanomaterial production device 3 and the tail gas oxidation device 4 are connected in sequence, and the tail gas oxidation device 4 produces The flue gas is connected with the carbon nanomaterial production device 3 through the first heat exchanger 5 through the pipeline, and then connected with the concentrated waste liquid separation device 2 through the second heat exchanger 6 through the pipeline, and then adsorbed / adsorbed with the jacketed waste water through the pipeline The jacket of the desorption device 1 is connected.
[0040] Fill the carbon adsorbent in the jacketed waste water adsorption / desorption device 1 . Wastewater containing organic matter (20000ppm, epichlorohydrin, amantadine, o-nitrophenol, phthalic acid, mixture of any ratio of N-methylpyrrolidone) from the jacketed wastewater ads...
Embodiment 3
[0046] Such as image 3 As shown, the jacketed wastewater adsorption / desorption device 1, the concentrated waste liquid separation device 2 (rectification tower), the carbon nanomaterial production device 3 and the tail gas oxidation device 4 are connected in sequence, and the tail gas oxidation device 4 produces The flue gas is connected to the carbon nanomaterial production device 3 through the first heat exchanger 5 through the pipe, and then connected to the jacket of the jacketed wastewater adsorption / desorption device 1 through the pipe.
[0047] Fill the carbon adsorbent in the waste water adsorption / desorption device 1 with a jacket, and the porosity is 50%. The wastewater containing organic matter (10000ppm, dichloroacetophenone, benzothiophene, β-alanine in any proportion mixture) is introduced from the top of the jacketed wastewater adsorption / desorption device 1, and the adsorption temperature is 50°C , after passing through the adsorbent layer inside, the organic...
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