Catalyst for treating industrial waste water under normal temperature and normal pressure and preparation method thereof
A catalyst and atmospheric pressure technology, applied in the direction of catalyst activation/preparation, physical/chemical process catalysts, chemical instruments and methods, etc., can solve the problems of limited industrial application, metal ion dissolution, high removal rate, etc.
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[0035] The second and third aspects of the present invention mainly relate to the preparation method of the catalyst. The catalyst of the present invention is mainly prepared by an impregnation precipitation method, which mainly includes: first fully impregnating the carrier with an aqueous solution of a water-soluble salt of a certain metal, and then adding a precipitant to make each metal in a water-soluble form The salt form is precipitated on the support before some subsequent processing. In the practice of the impregnation-precipitation method, a certain metal can be impregnated and precipitated first, and then the rest of the metals can be impregnated or precipitated; Dip precipitation method.
[0036] According to a second aspect of the present invention, in step a of the method of the present invention, the activated carbon is pretreated with steps comprising washing, drying and heat treatment. Those skilled in the art can select the conditions of washing, drying and h...
Embodiment 1
[0056] Example 1 Catalyst loaded with 5% Fe-Cu-Ni ternary composite metal oxide on activated carbon
[0057] The components and content of the catalyst are: the mass percentage of the activated carbon carrier is 95%, and the mass percentage content of the active component Fe-Cu-Ni ternary composite metal oxide is 5%, wherein Fe 2 o 3 , CuO and NiO are respectively 4%, 0.5% and 0.5% by mass of the metal oxide.
[0058] The preparation method of this catalyst comprises the following steps:
[0059] a. Wash the activated carbon with deionized water, dry at 120°C and heat-treat at 150°C for 2 hours to complete the pretreatment, take 190g;
[0060] b. Weigh 27.1g FeCl 3 ·6H 2 O, 2.1g CuCl 2 2H 2 O and 3.2 g NiCl 2 ·6H 2 0. Three metal salts are prepared into solutions with deionized water respectively, and then mixed uniformly, the volume of the mixed solution is 230mL;
[0061] c. After heating the mixed solution to 70°C, add the activated carbon particles pretreated in s...
Embodiment 2
[0066] Example 2 Catalyst supporting 5% Fe-Ni-Mn ternary composite metal oxide on activated carbon
[0067] The components and content of the catalyst are: the mass percent content of the activated carbon carrier is 95%, and the mass percent content of the active component Fe-Ni-Mn ternary composite metal oxide is 5%, wherein Fe 2 o 3 , NiO, MnO 2 The calculated oxide mass percentage contents are respectively 4%, 0.5% and 0.5%.
[0068] The preparation method of this catalyst comprises the following steps:
[0069] A. the pretreatment of gac is with embodiment 1, gets 190g;
[0070] b. Weigh 27.1g FeCl 3 ·6H 2 O, 3.2g NiCl 2 ·6H 2 O and 2.8 g MnCl 2 4H 2 O three kinds of metal salts, be mixed with the mixed solution of 230mL with deionized water;
[0071] c-f. Then complete the preparation of activated carbon-loaded 5% Fe-Ni-Mn ternary composite metal oxide catalyst by impregnation, precipitation, aging, washing, drying and roasting. The experimental conditions are t...
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