Method and catalyst for performing low-temperature catalytic combustion to eliminate chlorination aromatic hydrocarbon
A chlorinated aromatic hydrocarbon, low-temperature catalysis technology, applied in combustion methods, physical/chemical process catalysts, chemical instruments and methods, etc., can solve the problems of secondary pollution, many by-products, low activity, etc., and achieves low cost and catalyst. Long life and high catalytic activity
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Embodiment 1
[0020] Dissolve commercially available 2g of sodium hydroxide and 5.3g of sodium carbonate in 100ml of water to form a mixed solution as solution A; dissolve commercially available 3.7g of lanthanum nitrate hexahydrate in 150ml of water, add 3.58g of 50% manganese nitrate solution Form a mixed solution as solution B; at room temperature, under the condition of stirring, add solution A dropwise to solution B to form a precipitate, and stand in air at room temperature for 12 hours; filter to obtain a filter cake, wash the filter cake to PH=about 7, 110 o Dry in an oven at C for 12 hours, take it out and grind it into powder, then move it to a muffle furnace for roasting. Its roasting process is: 50 o C starts heating, with 4 o The heating rate of C / min is programmed to heat up to 650 o C, 650 o C was kept for 5h to obtain undoped perovskite LaMnO 3 Catalyst, denoted as LMO.
Embodiment 2
[0022] Dissolve 2g of commercially available sodium hydroxide and 5.3g of sodium carbonate in 100ml of water to form a mixed solution as solution A; dissolve 2.96g of commercially available lanthanum nitrate hexahydrate and 0.423g of strontium nitrate in 150ml of water, add 3.58g 50% of the manganese nitrate solution forms a mixed solution as solution B; other experimental processes are consistent with Example 1, and the LaMnO of the Sr-doped perovskite structure is obtained. 3 Catalyst, denoted as LSMO.
Embodiment 3
[0024] Dissolve commercially available 2g sodium hydroxide and 5.3g sodium carbonate in 100ml water to form a mixed solution as solution A; dissolve commercially available 2.96g hexahydrate lanthanum nitrate and 0.868g hexahydrate cerium nitrate in 150ml water, add The 50% manganese nitrate solution of 3.58g forms a mixed solution as solution B; other experimental processes are consistent with Example 1, and the LaMnO of the Ce-doped perovskite structure is obtained. 3 Catalyst, denoted as LCMO.
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