PREPARATION METHOD OF CATALYST WITH WHITE CARBON BLACK MODIFIED BY Zr-Nd-O
20200222892 ยท 2020-07-16
Inventors
- Kai Li (Kunming, CN)
- Yingwu Wang (Kunming, CN)
- Ping Ning (Kunming, CN)
- Qiang Lin (Kunming, CN)
- Xin Sun (Kunming, CN)
- Chi Wang (Kunming, CN)
- Xin Song (Kunming, CN)
- Xiao Chen (Kunming, CN)
Cpc classification
B01D53/8671
PERFORMING OPERATIONS; TRANSPORTING
B01D2257/553
PERFORMING OPERATIONS; TRANSPORTING
B01D53/865
PERFORMING OPERATIONS; TRANSPORTING
B01J37/088
PERFORMING OPERATIONS; TRANSPORTING
B01J21/066
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
The present invention discloses a preparation method of a catalyst with white carbon black modified by ZrNdO and use thereof, and belongs to the field of catalyst technologies. In the present invention, an organic solvent evaporation induced self-assembly method is used to load ZrNdO onto white carbon black to obtain a mesoporous ZrNdO/white carbon black catalyst. The mesoporous ZrNdO/white carbon black catalyst in the present invention has high catalytic activity, contains uniformly distributed mesopores with a relatively large average aperture, and has a simple preparation process, etc.
Claims
1. A preparation method of a catalyst with white carbon black modified by ZrNdO, comprising the following specific steps: (1) adding sodium chloride and ethanol to sodium silicate, uniformly mixing, and slowly adding water under stirring until sodium silicate colloidal particles are dissolved, to obtain an ethanol-sodium silicate solution mixture; (2) adding sulfuric acid to the ethanol-sodium silicate solution mixture in step (1) at 25-45 C. under stirring to adjust a pH value of the system to 7.5-9.5; and conducting aging at 70-110 C. for 10-20 h to obtain white carbon black; (3) adding the white carbon black in step (2) to ethanol under stirring, adding zirconium nitrate, neodymium nitrate, and a surfactant, and conducting reaction for 5-10 h to obtain a mixed white carbon black solution; (4) evaporating ethanol from the mixed white carbon black solution in step (3) at 50-70 C. to obtain a precursor; and (5) calcining the precursor in step (4) at 300-500 for 2-4 h to obtain a mesoporous ZrNdO/white carbon black catalyst.
2. The preparation method according to claim 1, wherein a solid-to-liquid ratio g:mL of the sodium chloride to the sodium silicate in step (1) is 1:(10-15), and a volume ratio of the ethanol to the sodium silicate is 1:(0.8-1.2).
3. The preparation method according to claim 1, wherein the surfactant in step (3) is a triblock copolymer P123, F127, or F108.
4. The preparation method according to claim 1, wherein in step (3), a mass ratio of the zirconium nitrate to the white carbon black is 1:(1-2); a mass ratio of the neodymium nitrate to the white carbon black is 1:(3.3-6.7); and a mass ratio of the surfactant to the white carbon black is 1:(1-2).
5. Use of a mesoporous ZrNdO/white carbon black catalyst prepared by using the preparation method of a catalyst with white carbon black modified by ZrNdO according to claim 1 in simultaneously removing PH.sub.3 and AsH.sub.3 through catalysis.
6. Use of a mesoporous ZrNdO/white carbon black catalyst prepared by using the preparation method of a catalyst with white carbon black modified by ZrNdO according to claim 2 in simultaneously removing PH.sub.3 and AsH.sub.3 through catalysis.
7. Use of a mesoporous ZrNdO/white carbon black catalyst prepared by using the preparation method of a catalyst with white carbon black modified by ZrNdO according to claim 3 in simultaneously removing PH.sub.3 and AsH.sub.3 through catalysis.
8. Use of a mesoporous ZrNdO/white carbon black catalyst prepared by using the preparation method of a catalyst with white carbon black modified by ZrNdO according to claim 4 in simultaneously removing PH.sub.3 and AsH.sub.3 through catalysis.
Description
BRIEF DESCRIPTION OF DRAWINGS
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DETAILED DESCRIPTION
[0026] The present invention will be further described in details below with reference to specific implementations, but the protection scope of the present invention is not limited thereto.
[0027] Embodiment 1: a preparation method of a catalyst with white carbon black modified by ZrNdO is provided, including the following specific steps:
[0028] (1) adding sodium chloride and ethanol to sodium silicate, uniformly mixing, and slowly adding water under stirring until sodium silicate colloidal particles are dissolved, to obtain an ethanol-sodium silicate solution mixture, where a solid-to-liquid ratio g:mL of the sodium chloride to the sodium silicate is 1:10, and a volume ratio of the ethanol to the sodium silicate is 1:0.8;
[0029] (2) adding sulfuric acid to the ethanol-sodium silicate solution mixture in step (1) at 40 C. under stirring to adjust a pH value of the system to 8.0; and conducting aging at 90 C. for 15 h to obtain white carbon black;
[0030] (3) adding the white carbon black in step (2) to ethanol under stirring, adding zirconium nitrate, neodymium nitrate, and a surfactant (P123), and conducting reaction for 8 h to obtain a mixed white carbon black solution, where a mass ratio of the zirconium nitrate to the white carbon black is 1:1; a mass ratio of the neodymium nitrate to the white carbon black is 1:3.3; and a mass ratio of the surfactant (P123) to the white carbon black is 1:1;
[0031] (4) evaporating ethanol from the mixed white carbon black solution in step (3) at 65 C. to obtain a precursor; and
[0032] (5) calcining the precursor in step (4) at 450 for 2.5 h to obtain a mesoporous ZrNdO/white carbon black catalyst.
[0033] The catalytic performance test of the mesoporous ZrNdO/white carbon black catalyst in this embodiment is conducted in a 16 mm10 cm quartz fixed bed reactor. Reaction conditions are as follows: An initial concentration of PH.sub.3 is 200 ppm, an initial concentration of AsH.sub.3 is 100 ppm, equilibrium gas is C.sub.2H.sub.2, a space velocity is 15000 and the reaction temperature is 70 C. A test result is shown in
[0034] Embodiment 2: a preparation method of a catalyst with white carbon black modified by ZrNdO is provided, including the following specific steps:
[0035] (1) adding sodium chloride and ethanol to sodium silicate, uniformly mixing, and slowly adding water under stirring until sodium silicate colloidal particles are dissolved, to obtain an ethanol-sodium silicate solution mixture, where a solid-to-liquid ratio g:mL of the sodium chloride to the sodium silicate is 1:12.5, and a volume ratio of the ethanol to the sodium silicate is 1:1;
[0036] (2) adding sulfuric acid to the ethanol-sodium silicate solution mixture in step (1) at 40 C. under stirring to adjust a pH value of the system to 8.0; and conducting aging at 90 C. for 15 h to obtain white carbon black;
[0037] (3) adding the white carbon black in step (2) to ethanol under stirring, adding zirconium nitrate, neodymium nitrate, and a surfactant (P123), and conducting reaction for 8 h to obtain a mixed white carbon black solution, where a mass ratio of the zirconium nitrate to the white carbon black is 1:1.5; a mass ratio of the neodymium nitrate to the white carbon black is 1:5; and a mass ratio of the surfactant (P123) to the white carbon black is 1:1.5;
[0038] (4) evaporating ethanol from the mixed white carbon black solution in step (3) at 65 C. to obtain a precursor; and
[0039] (5) calcining the precursor in step (4) at 450 for 2.5 h to obtain a mesoporous ZrNdO/white carbon black catalyst.
[0040] The catalytic performance test of the mesoporous ZrNdO/white carbon black catalyst in this embodiment is conducted in a 16 mm10 cm quartz fixed bed reactor. Reaction conditions are as follows: An initial concentration of PH.sub.3 is 200 ppm, an initial concentration of AsH.sub.3 is 100 ppm, equilibrium gas is C.sub.2H.sub.2, a space velocity is 15000 and the reaction temperature is 70 C. A test result is shown in
[0041] Embodiment 3: a preparation method of a catalyst with white carbon black modified by ZrNdO is provided, including the following specific steps:
[0042] (1) adding sodium chloride and ethanol to sodium silicate, uniformly mixing, and slowly adding water under stirring until sodium silicate colloidal particles are dissolved, to obtain an ethanol-sodium silicate solution mixture, where a solid-to-liquid ratio g:mL of the sodium chloride to the sodium silicate is 1:15, and a volume ratio of the ethanol to the sodium silicate is 1:1.2;
[0043] (2) adding sulfuric acid to the ethanol-sodium silicate solution mixture in step (1) at 40 C. under stirring to adjust a pH value of the system to 8.0; and conducting aging at 90 C. for 15 h to obtain white carbon black;
[0044] (3) adding the white carbon black in step (2) to ethanol under stirring, adding zirconium nitrate, neodymium nitrate, and a surfactant (P123), and conducting reaction for 8 h to obtain a mixed white carbon black solution, where a mass ratio of the zirconium nitrate to the white carbon black is 1:2; a mass ratio of the neodymium nitrate to the white carbon black is 1:6.7; and a mass ratio of the surfactant (P123) to the white carbon black is 1:2;
[0045] (4) evaporating ethanol from the mixed white carbon black solution in step (3) at 65 C. to obtain a precursor; and
[0046] (5) calcining the precursor in step (4) at 450 for 2.5 h to obtain a mesoporous ZrNdO/white carbon black catalyst.
[0047] The catalytic performance test of the mesoporous ZrNdO/white carbon black catalyst in this embodiment is conducted in a 16 mm10 cm quartz fixed bed reactor. Reaction conditions are as follows: An initial concentration of PH.sub.3 is 200 ppm, an initial concentration of AsH.sub.3 is 100 ppm, equilibrium gas is C.sub.2H.sub.2, a space velocity is 15000 and the reaction temperature is 70 C. A test result is shown in
[0048] Embodiment 4: a preparation method of a catalyst with white carbon black modified by ZrNdO is provided, including the following specific steps:
[0049] (1) adding sodium chloride and ethanol to sodium silicate, uniformly mixing, and slowly adding water under stirring until sodium silicate colloidal particles are dissolved, to obtain an ethanol-sodium silicate solution mixture, where a solid-to-liquid ratio g:mL of the sodium chloride to the sodium silicate is 1:10, and a volume ratio of the ethanol to the sodium silicate is 1:0.8;
[0050] (2) adding sulfuric acid to the ethanol-sodium silicate solution mixture in step (1) at 40 C. under stirring to adjust a pH value of the system to 8.0; and conducting aging at 90 C. for 15 h to obtain white carbon black;
[0051] (3) adding the white carbon black in step (2) to ethanol under stirring, adding zirconium nitrate, neodymium nitrate, and a surfactant (F127), and conducting reaction for 8 h to obtain a mixed white carbon black solution, where a mass ratio of the zirconium nitrate to the white carbon black is 1:1; a mass ratio of the neodymium nitrate to the white carbon black is 1:3.3; and a mass ratio of the surfactant (F127) to the white carbon black is 1:1;
[0052] (4) evaporating ethanol from the mixed white carbon black solution in step (3) at 65 C. to obtain a precursor; and
[0053] (5) calcining the precursor in step (4) at 450 for 2.5 h to obtain a mesoporous ZrNdO/white carbon black catalyst.
[0054] The catalytic performance test of the mesoporous ZrNdO/white carbon black catalyst in this embodiment is conducted in a 6 mm10 cm quartz fixed bed reactor. Reaction conditions are as follows: An initial concentration of PH.sub.3 is 200 ppm, an initial concentration of AsH.sub.3 is 100 ppm, equilibrium gas is C.sub.2H.sub.2, a space velocity is 15000 and the reaction temperature is 70 C. A test result is shown in
[0055] Embodiment 5: a preparation method of a catalyst with white carbon black modified by ZrNdO is provided, including the following specific steps:
[0056] (1) adding sodium chloride and ethanol to sodium silicate, uniformly mixing, and slowly adding water under stirring until sodium silicate colloidal particles are dissolved, to obtain an ethanol-sodium silicate solution mixture, where a solid-to-liquid ratio g:mL of the sodium chloride to the sodium silicate is 1:12.5, and a volume ratio of the ethanol to the sodium silicate is 1:1;
[0057] (2) adding sulfuric acid to the ethanol-sodium silicate solution mixture in step (1) at 40 C. under stirring to adjust a pH value of the system to 8.0; and conducting aging at 90 C. for 15 h to obtain white carbon black;
[0058] (3) adding the white carbon black in step (2) to ethanol under stirring, adding zirconium nitrate, neodymium nitrate, and a surfactant (F127), and conducting reaction for 8 h to obtain a mixed white carbon black solution, where a mass ratio of the zirconium nitrate to the white carbon black is 1:1.5; a mass ratio of the neodymium nitrate to the white carbon black is 1:5; and a mass ratio of the surfactant (F127) to the white carbon black is 1:1.5;
[0059] (4) evaporating ethanol from the mixed white carbon black solution in step (3) at 65 C. to obtain a precursor; and
[0060] (5) calcining the precursor in step (4) at 450 for 2.5 h to obtain a mesoporous ZrNdO/white carbon black catalyst.
[0061] The catalytic performance test of the mesoporous ZrNdO/white carbon black catalyst in this embodiment is conducted in a 6 mm10 cm quartz fixed bed reactor. Reaction conditions are as follows: An initial concentration of PH.sub.3 is 200 ppm, an initial concentration of AsH.sub.3 is 100 ppm, equilibrium gas is C.sub.2H.sub.2, a space velocity is 15000 and the reaction temperature is 70 C. A test result is shown in
[0062] Embodiment 6: a preparation method of a catalyst with white carbon black modified by ZrNdO is provided, including the following specific steps:
[0063] (1) adding sodium chloride and ethanol to sodium silicate, uniformly mixing, and slowly adding water under stirring until sodium silicate colloidal particles are dissolved, to obtain an ethanol-sodium silicate solution mixture, where a solid-to-liquid ratio g:mL of the sodium chloride to the sodium silicate is 1:15, and a volume ratio of the ethanol to the sodium silicate is 1:1.2;
[0064] (2) adding sulfuric acid to the ethanol-sodium silicate solution mixture in step (1) at 40 C. under stirring to adjust a pH value of the system to 8.0; and conducting aging at 90 C. for 15 h to obtain white carbon black;
[0065] (3) adding the white carbon black in step (2) to ethanol under stirring, adding zirconium nitrate, neodymium nitrate, and a surfactant (F127), and conducting reaction for 8 h to obtain a mixed white carbon black solution, where a mass ratio of the zirconium nitrate to the white carbon black is 1:2; a mass ratio of the neodymium nitrate to the white carbon black is 1:6.7; and a mass ratio of the surfactant (F127) to the white carbon black is 1:2;
[0066] (4) evaporating ethanol from the mixed white carbon black solution in step (3) at 65 C. to obtain a precursor; and
[0067] (5) calcining the precursor in step (4) at 450 for 2.5 h to obtain a mesoporous ZrNdO/white carbon black catalyst.
[0068] The catalytic performance test of the mesoporous ZrNdO/white carbon black catalyst in this embodiment is conducted in a 16 mm10 cm quartz fixed bed reactor. Reaction conditions are as follows: An initial concentration of PH.sub.3 is 200 ppm, an initial concentration of AsH.sub.3 is 100 ppm, equilibrium gas is C.sub.2H.sub.2, a space velocity is 15000 and the reaction temperature is 70 C. A test result is shown in
[0069] Embodiment 7: a preparation method of a catalyst with white carbon black modified by ZrNdO is provided, including the following specific steps:
[0070] (1) adding sodium chloride and ethanol to sodium silicate, uniformly mixing, and slowly adding water under stirring until sodium silicate colloidal particles are dissolved, to obtain an ethanol-sodium silicate solution mixture, where a solid-to-liquid ratio g:mL of the sodium chloride to the sodium silicate is 1:10, and a volume ratio of the ethanol to the sodium silicate is 1:0.8;
[0071] (2) adding sulfuric acid to the ethanol-sodium silicate solution mixture in step (1) at 40 C. under stirring to adjust a pH value of the system to 8.0; and conducting aging at 90 C. for 15 h to obtain white carbon black;
[0072] (3) adding the white carbon black in step (2) to ethanol under stirring, adding zirconium nitrate, neodymium nitrate, and a surfactant (F108), and conducting reaction for 8 h to obtain a mixed white carbon black solution, where a mass ratio of the zirconium nitrate to the white carbon black is 1:1; a mass ratio of the neodymium nitrate to the white carbon black is 1:3.3; and a mass ratio of the surfactant (F108) to the white carbon black is 1:1;
[0073] (4) evaporating ethanol from the mixed white carbon black solution in step (3) at 65 C. to obtain a precursor; and
[0074] (5) calcining the precursor in step (4) at 450 for 2.5 h to obtain a mesoporous ZrNdO/white carbon black catalyst.
[0075] The catalytic performance test of the mesoporous ZrNdO/white carbon black catalyst in this embodiment is conducted in a 16 mm10 cm quartz fixed bed reactor. Reaction conditions are as follows: An initial concentration of PH.sub.3 is 200 ppm, an initial concentration of AsH.sub.3 is 100 ppm, equilibrium gas is C.sub.2H.sub.2, a space velocity is 15000 and the reaction temperature is 70 C. A test result is shown in
[0076] Embodiment 8: a preparation method of a catalyst with white carbon black modified by ZrNdO is provided, including the following specific steps:
[0077] (1) adding sodium chloride and ethanol to sodium silicate, uniformly mixing, and slowly adding water under stirring until sodium silicate colloidal particles are dissolved, to obtain an ethanol-sodium silicate solution mixture, where a solid-to-liquid ratio g:mL of the sodium chloride to the sodium silicate is 1:12.5, and a volume ratio of the ethanol to the sodium silicate is 1:1;
[0078] (2) adding sulfuric acid to the ethanol-sodium silicate solution mixture in step (1) at 40 C. under stirring to adjust a pH value of the system to 8.0; and conducting aging at 90 C. for 15 h to obtain white carbon black;
[0079] (3) adding the white carbon black in step (2) to ethanol under stirring, adding zirconium nitrate, neodymium nitrate, and a surfactant (F108), and conducting reaction for 8 h to obtain a mixed white carbon black solution, where a mass ratio of the zirconium nitrate to the white carbon black is 1:1.5; a mass ratio of the neodymium nitrate to the white carbon black is 1:5; and a mass ratio of the surfactant (F108) to the white carbon black is 1:1.5;
[0080] (4) evaporating ethanol from the mixed white carbon black solution in step (3) at 65 C. to obtain a precursor; and
[0081] (5) calcining the precursor in step (4) at 450 for 2.5 h to obtain a mesoporous ZrNdO/white carbon black catalyst.
[0082] The catalytic performance test of the mesoporous ZrNdO/white carbon black catalyst in this embodiment is conducted in a 16 mm10 cm quartz fixed bed reactor. Reaction conditions are as follows: An initial concentration of PH.sub.3 is 200 ppm, an initial concentration of AsH.sub.3 is 100 ppm, equilibrium gas is C.sub.2H.sub.2, a space velocity is 15000 and the reaction temperature is 70 C. A test result is shown in
[0083] Embodiment 9: a preparation method of a catalyst with white carbon black modified by ZrNdO is provided, including the following specific steps:
[0084] (1) adding sodium chloride and ethanol to sodium silicate, uniformly mixing, and slowly adding water under stirring until sodium silicate colloidal particles are dissolved, to obtain an ethanol-sodium silicate solution mixture, where a solid-to-liquid ratio g:mL of the sodium chloride to the sodium silicate is 1:15, and a volume ratio of the ethanol to the sodium silicate is 1:1.2;
[0085] (2) adding sulfuric acid to the ethanol-sodium silicate solution mixture in step (1) at 40 C. under stirring to adjust a pH value of the system to 8.0; and conducting aging at 90 C. for 15 h to obtain white carbon black;
[0086] (3) adding the white carbon black in step (2) to ethanol under stirring, adding zirconium nitrate, neodymium nitrate, and a surfactant (F108), and conducting reaction for 8 h to obtain a mixed white carbon black solution, where a mass ratio of the zirconium nitrate to the white carbon black is 1:2; a mass ratio of the neodymium nitrate to the white carbon black is 1:6.7; and a mass ratio of the surfactant (F108) to the white carbon black is 1:2;
[0087] (4) evaporating ethanol from the mixed white carbon black solution in step (3) at 65 C. to obtain a precursor; and
[0088] (5) calcining the precursor in step (4) at 450 for 2.5 h to obtain a mesoporous ZrNdO/white carbon black catalyst.
[0089] The catalytic performance test of the mesoporous ZrNdO/white carbon black catalyst in this embodiment is conducted in a 16 mm10 cm quartz fixed bed reactor. Reaction conditions are as follows: An initial concentration of PH.sub.3 is 200 ppm, an initial concentration of AsH.sub.3 is 100 ppm, equilibrium gas is C.sub.2H.sub.2, a space velocity is 15000 h.sup.1, and the reaction temperature is 70 C. A test result is shown in