A method of degrading trichloroethylene with hydrogen peroxide under catalysis of a growth ring in a water supply network and applications of the method in an urban water supply system
A technology of trichlorethylene and water supply pipe network, applied in chemical instruments and methods, oxidized water/sewage treatment, water/sewage treatment, etc., can solve the problems of high equipment requirements, poor safety, high cost, etc., and achieve simple equipment requirements, The effect of enhancing safety assurance, saving input and operating costs
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specific Embodiment approach 1
[0014] Specific embodiment one: In this embodiment, the method of using the growth ring in the water supply pipe network to catalyze the degradation of trichlorethylene by hydrogen peroxide is to add the growth ring and H2O with a mass concentration of 1% to 5% in the raw water containing trichlorethylene. 2 o 2 , generate Fenton-like reagents in the process of water treatment, and react fully to remove trichlorethylene in water.
[0015] The reaction mechanism of the Fenton-like reaction described in the present embodiment is as follows:
[0016] Fe 2+ +H 2 o 2 → Fe 3+ +OH - +OH - (1)
[0017] Fe 3+ +H 2 o 2 →HO 2 - +Fe 2+ +H + (2)
[0018] Oh - +Fe 2+ → Fe 3+ +OH - (3)
[0019] Fe 3+ +HO 2 - → Fe 2+ +O 2 +H + (4)
[0020] Oh - +H 2 o 2 →H 2 O+HO 2 - (5)
[0021] It can be seen from formula (5) that divalent iron ions catalyze hydrogen peroxide to form hydroxyl radicals, and divalent iron is oxidized to ferric iron. Ferric ions react wi...
specific Embodiment approach 2
[0022] Specific embodiment two: the difference between this embodiment and specific embodiment one is that H 2 o 2 The mass concentration is 3% to 5%.
specific Embodiment approach 3
[0023] Specific embodiment three: the difference between this embodiment and specific embodiment two is that H 2 o 2 The mass concentration is 5%.
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