Reforming protective agent and preparation method thereof

A technology of reforming protective agent and extrusion aid, which is applied in the direction of reforming naphtha, chemical instruments and methods, molecular sieve catalysts, etc., and can solve the problem of small catalyst pore size and specific surface area, uneven distribution of active components, and long service life of catalysts. Short and other problems, to avoid side reactions, long service life, improve the effect of mechanical strength

Active Publication Date: 2015-05-06
SHENYANG SANJUKAITE CATALYST
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0006] The technical problem to be solved by the present invention is that the active components such as CuO, NiO, ZnO in the structure of the prior art reforming protective agent are distributed unevenly, the pore diameter and specific surface area of ​​the catalyst are small, the pores are easily blocked, the mechanical strength is low, and the desulfurization The reaction activity is low, the desulfurization efficiency is low, and the service life of the catalyst is short, thereby providing a reforming protective agent with a long service life and high desulfurization efficiency and its preparation method

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0039] This embodiment provides a reforming protective agent whose raw material composition includes:

[0040] Acidified pseudo-boehmite, 15 parts by weight;

[0041] Acidified Y type molecular sieve, 25 parts by weight;

[0042] Manganese carbonate, 25 parts by weight;

[0043] Ferric hydroxide, 33 parts by weight;

[0044] Synthetic methanol catalyst waste agent, 38 parts by weight;

[0045] Squeezing aid silica sol, 50 parts by weight.

[0046] Wherein, the acidified pseudo-boehmite is prepared by the following method:

[0047] 100 parts by weight of pseudo-boehmite and 120 parts by weight of 10 wt% nitric acid solution were formed into a gel at 55° C. and mixed uniformly.

[0048] The acidified molecular sieve is prepared by the following method:

[0049] Mix 100 parts by weight of molecular sieve with 95 parts by weight of 5 wt% acetic acid solution, add 100 parts by weight of 25% aluminum sol to make it colloidal, and dry at 100°C.

[0050] Described synthetic metha...

Embodiment 2

[0058] This embodiment provides a reforming protective agent whose raw material composition includes:

[0059] Acidified pseudo-boehmite, 10 parts by weight;

[0060] Acidified β-type molecular sieve, 45 parts by weight;

[0061] Manganese oxide, 15 parts by weight;

[0062] Iron oxide red, 40 parts by weight;

[0063] Synthetic methanol catalyst waste agent, 15 parts by weight;

[0064] Extrusion aid aluminum sol, 50 parts by weight.

[0065] Wherein, the acidified pseudo-boehmite is prepared by the following method:

[0066] 100 parts by weight of pseudo-boehmite and 80 parts by weight of 20 wt% nitric acid solution were formed into a gel at 55° C. and mixed uniformly.

[0067] The acidified molecular sieve is prepared by the following method:

[0068] Mix 100 parts by weight of molecular sieve with 120 parts by weight of 15 wt% acetic acid solution, add 100 parts by weight of 22% aluminum sol to make it colloidal, and dry at 100°C.

[0069] Described synthetic methan...

Embodiment 3

[0077] This embodiment provides a reforming protective agent whose raw material composition includes:

[0078] Acidified pseudo-boehmite, 25 parts by weight;

[0079] Acidified MCM type molecular sieve, 20 parts by weight;

[0080] The mixture of manganese oxide and manganese carbonate with a mass ratio of 1:1, 30 parts by weight;

[0081] Red mud, 20 parts by weight;

[0082] Synthetic methanol catalyst waste agent, 40 parts by weight;

[0083] Extrusion aid carboxymethyl cellulose, 30 parts by weight.

[0084] Wherein, the acidified pseudo-boehmite is prepared by the following method:

[0085] 100 parts by weight of pseudo-boehmite and 135 parts by weight of 12 wt% nitric acid solution were formed into a gel at 55° C. and mixed uniformly.

[0086] The acidified molecular sieve is prepared by the following method:

[0087] Mix 100 parts by weight of molecular sieve with 140 parts by weight of 10 wt% acetic acid solution, add 100 parts by weight of 29% aluminum sol to ma...

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PUM

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Abstract

The invention provides a reforming protective agent. Acidified pseudoboehmite and an acidified molecular sieve are taken as a common carrier under the synergistic effect, uniform dispersion of active ingredients such as manganese oxide and ferric oxide is promoted, the pore channel structure of the carrier can be optimized, the pore size, pore volume and specific surface area are increased, more vacant orbits and active centers are formed in the space structure of the carrier, the components further comprise catalyst wastes, and the mechanical strength of the carrier can be improved. Meanwhile, the vacant orbits and active centers in the structures of the acidified pseudoboehmite and an acidified molecular sieve can be coordinated with the catalyst wastes and active ingredients in the manganese oxide, the active center sites of the catalyst are improved, and the reaction is promoted. Therefore, according to the reforming protective agent disclosed by the invention, the mechanical strength is improved, and the protective agent has the advantages that the desulfurization reaction activity is high, the desulfurization efficiency is high, the service life of the catalyst is long, and side reactions can be effectively avoided.

Description

technical field [0001] The invention relates to a reforming protective agent and a preparation method thereof, belonging to the technical field of catalysts. Background technique [0002] Catalytic reforming technology is the main process for producing aromatics and high-octane gasoline components from naphtha, and the by-product hydrogen is an important source of hydrogen for hydrogenation units. Since the reforming catalyst is a noble metal catalyst, higher requirements are put forward for the feed naphtha, that is, the content of sulfur and nitrogen is less than 0.5 μg / g, and the content of arsenic is less than 1 μg / g. Especially in recent years, when the reforming catalyst has transitioned from a single-metal component to a multi-metal component, and the platinum content has been greatly reduced, the reforming catalyst has stricter requirements on the impurity content of refined naphtha. [0003] Reforming protection means that under the action of hydrogen and reforming...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C10G29/16B01J29/16B01J29/78B01J29/85
CPCB01J21/04B01J23/34B01J23/745B01J27/232B01J29/166B01J29/48B01J29/7815B01J29/85B01J35/0006C10G35/095C10G2300/1044
Inventor 陈玲玲
Owner SHENYANG SANJUKAITE CATALYST
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