Catalyst used for lincomycin production wastewater electrolysis, preparation method and application thereof
A technology for lincomycin and production wastewater, applied in chemical instruments and methods, heterogeneous catalyst chemical elements, physical/chemical process catalysts, etc., can solve the problem of poor utilization of industrial solid waste and degradation of production wastewater Long time consumption, poor catalytic effect of the catalyst, etc., to achieve the effect of shortening the electrolysis time, low manufacturing cost, and reducing energy consumption
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Embodiment 1
[0046] Example 1 A Catalyst for the Electrolysis of Lincomycin Production Wastewater
[0047] The catalyst includes the following raw materials: alkali slag, red mud, iron compound, manganese, fly ash, clay;
[0048] The parts by weight of each raw material of catalyst are:
[0049] 1250 parts of alkali residue, 430 parts of fly ash, 500 parts of red mud, 125 parts of manganese, 320 parts of iron compound, and 350 parts of clay;
[0050] Described fly ash: carbon content is 30%;
[0051] The iron compound is: ferric oxide;
[0052] Described alkali slag:
[0053] The waste residue produced in the process of preparing soda ash Na2CO3 by Hou's soda production method, the composition of alkali residue includes: 40% CaCO 3 , 10% CaSO 3 , 15% CaO, 15% CaCl 2 , 10%Mg(OH) 2 , 10%SiO2 2 ;
[0054] The composition of the red mud includes: 12% SiO 2 , 24%CaO, 3%Fe 2 o 3 , 30%Al 2 o 3 , 6%MgO;
[0055] The clay composition includes: 30% SiO 2 , 16% CaCO 3 , 13%Al 2 o 3...
Embodiment 2
[0075] Example 2 A Catalyst for the Electrolysis of Lincomycin Production Wastewater
[0076] The catalyst includes the following raw materials: alkali slag, red mud, iron compound, fly ash, manganese, clay;
[0077] The parts by weight of each raw material of catalyst are:
[0078] 1300 parts of alkali residue, 340 parts of iron compound, 530 parts of red mud, 425 parts of fly ash, 325 parts of clay, and 120 parts of manganese;
[0079] Described fly ash: carbon content is 45%;
[0080] The iron compound is: ferric oxide;
[0081] Described alkali slag:
[0082] The waste residue produced in the process of preparing soda ash Na2CO3 by Hou's soda production method, the composition of alkali residue includes: 40% CaCO 3 , 10% CaSO 3 , 15% CaO, 15% CaCl 2 , 10%Mg(OH) 2 , 10%SiO2 2 ;
[0083] The composition of the red mud includes: 12% SiO 2 , 24%CaO, 3%Fe 2 o 3 , 30%Al 2 o 3 , 6%MgO;
[0084] The clay composition includes: 30% SiO 2 , 16% CaCO 3 , 13%Al 2 o 3...
Embodiment 3
[0095] Example 3 A Catalyst for the Electrolysis of Lincomycin Production Wastewater
[0096] The catalyst includes the following raw materials: alkali slag, iron compound, red mud, manganese, fly ash, clay;
[0097] The parts by weight of each raw material of catalyst are:
[0098] 1300 parts of alkali slag, 325 parts of iron compound, 450 parts of fly ash, 130 parts of manganese, 520 parts of red mud, 335 parts of clay;
[0099] The red mud can be used directly without dealkalization process;
[0100] Described fly ash: carbon content is 45%;
[0101] Described iron compound is ferric oxide;
[0102] Described alkali slag:
[0103] The waste residue produced in the process of preparing soda ash Na2CO3 by Hou's soda production method, the composition of alkali residue includes: 40% CaCO 3 , 10% CaSO 3 , 15% CaO, 15% CaCl 2 , 10%Mg(OH) 2 , 10%SiO2 2 ;
[0104] The composition of the red mud includes: 12% SiO 2 , 24%CaO, 3%Fe 2 o 3 , 30%Al 2 o 3 , 6%MgO;
[0105...
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