Treatment method of organic wastewater
A technology of organic wastewater and treatment methods, applied in water/sewage treatment, multi-stage water/sewage treatment, oxidized water/sewage treatment, etc., can solve the problems of high COD removal capacity and metal loss, and achieve high COD removal effect , reduce emissions, reduce the loss of the effect
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[0020] Preparation of Catalyst A1 (Fe-Ce / AC)
[0021] The diameter is 2.0mm, the specific surface area is 704m 2 / g, pore volume 0.7cm 3 / g, commercial columnar activated carbon strips with an average pore size of 2.0 nm were dried at 120 °C for later use. Weigh 500g of dried activated carbon strips, and use Fe(NO 3 ) 3 9H 2 O and Ce(NO 3 ) 3 ·6H 2 O by Fe 2 o 3 and CeO 2 Accounting for 5% and 1.5% of the total weight of the catalyst respectively, they are formulated into solutions. Impregnate activated carbon strips with an equal volume of Fe-Ce solution for 2 hours, dry at 80°C, bake at 550°C for 4 hours in a nitrogen atmosphere, and take out after the temperature drops to room temperature to obtain catalyst A1.
[0022] Preparation of Catalyst A2 (Fe-Ce / Al 2 o 3 )
[0023] The macroporous alumina powder and peptizer are kneaded, rolled, and extruded to make a clover-shaped carrier with a diameter of 2.5 mm, and then calcined at 550 ° C in the air to obtain Al ...
Embodiment 1
[0034] The catalysts A1 and B1 are loaded into the cylindrical reactor according to the volume percentage of 60% and 40% respectively, and the total volume of the catalyst is 100cm 3 . Acid scarlet simulated dye wastewater (COD: 225.0 mg / L) enters the reactor from the bottom of the reactor at a rate of 200 mL / h, the residence time in the catalyst bed is 30 minutes, and the ozone concentration is 7.4 g / m 3 , at a rate of 400 mL / min, enters the bottom of the reactor together with the waste water. The reaction is carried out at normal temperature and pressure. After the reaction, the COD of the liquid is tested, and the catalyst activity is measured according to the removal rate of COD. After the reaction, the content of copper ions in the liquid was tested by inductively coupled plasma mass spectrometry (ICP-MS) to investigate the loss of metals. The results are listed in Table 1.
Embodiment 2
[0036] Catalysts A2 and B1 were loaded into the reactor according to volume percentages of 60% and 40% respectively, and the reaction conditions were the same as in Example 1. The results are listed in Table 1.
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