Preparation method and application of a catalyst for preparing olefins

A catalyst and olefin technology, applied in chemical instruments and methods, physical/chemical process catalysts, chemical elements of heterogeneous catalysts, etc., can solve the problems of poor high temperature resistance, low conversion rate, loss of isopentene, etc. wide range of effects

Active Publication Date: 2019-11-01
EAST CHINA UNIV OF SCI & TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, when the cracking temperature is high, the side reactions increase, such as the oligomerization of isopentene leads to the loss of isopentene; the dehydration of methanol obtained by cracking produces dimethyl ether, and the production of dimethyl ether will reduce the recovery rate of methanol, resulting in the need to add a large amount methanol into the initial etherification reaction system; the hydration of water and isopentene produced during the formation of dimethyl ether also causes the product to be lost, and the generation of by-products increases the cost of separation and purification of the product, etc.
The disadvantage of ion exchange resin catalysts is poor high temperature resistance. When the reaction temperature is too high, the active components in it are easy to decompose and fall off. Due to the limitation of the reaction temperature, the conversion rate of the reaction is low.

Method used

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  • Preparation method and application of a catalyst for preparing olefins
  • Preparation method and application of a catalyst for preparing olefins
  • Preparation method and application of a catalyst for preparing olefins

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0044] 40g γ-Al 2 o 3 Add to 50ml 15% nickel nitrate solution and let stand at room temperature for 6h, then filter, dry at 120°C for 2h, and roast at 400°C for 6h to obtain NiO / Al 2 o 3 .

[0045] Then the product was immersed in 40ml of 5% sodium silicate solution and 20% ammonium fluoride for 4h, filtered, dried at 160°C for 6h, and calcined at 400°C for 4h to obtain NiO / SiO 2 / F - / Al 2 o 3 .

[0046] NiO / SiO 2 / F - / Al 2 o 3 Add it to 50ml of 20% sulfuric acid solution, filter, dry at 100°C for 4h, and roast at 600°C for 5h. Promptly obtain the NiO / SiO of the present invention 2 / F - SO 4 2- / Al 2 o 3 .

[0047] Put 9g of catalyst into a micro-fixed bed reactor with a diameter of φ16mm, feed methyl tert-amyl ether with a liquid micro-sampling pump, control the liquid space velocity to 1h-1, the reaction temperature is 120°C, and the conversion rate of TAME is 95.5% , Isoamyl selectivity 96.8%, methanol selectivity 97.8%. The proportion of 2-methyl...

Embodiment 2

[0049] 40g γ-Al 2 o 3 Add it to 50ml 20% nickel nitrate solution and let stand at room temperature for 4h, then filter, dry at 100°C for 2h, and roast at 600°C for 6h to obtain NiO / Al 2 o 3 .

[0050] Then the product was immersed in 40ml of potassium silicate solution with a concentration of 3% and hydrofluoric acid with a concentration of 4% for 5h, filtered, dried at 120°C for 8h, and calcined at 300°C for 4h to obtain NiO / SiO 2 / F - / Al 2 o 3 .

[0051] NiO / SiO 2 / F - / Al 2 o 3 Add it to 30ml of 20% ammonium sulfate solution, filter, dry at 160°C for 3h, and roast at 500°C for 5h. Promptly obtain the NiO / SiO of the present invention 2 / F - / SO 4 2- / Al 2 o 3 .

[0052] Put 9g of catalyst into a micro-fixed bed reactor with a diameter of φ16mm, feed methyl tert-butyl ether with a liquid micro-sampling pump, control the liquid space velocity to 2h-1, the reaction temperature is 140°C, and the MTBE conversion rate is 97.6% , Isobutene selectivity 97.8%,...

Embodiment 3

[0054] 40g γ-Al 2 o 3 Add it to 50ml 30% nickel sulfate solution and let stand at room temperature for 6h, then filter, dry at 100°C for 2h, and roast at 700°C for 6h to obtain NiO / Al 2 o 3 .

[0055] Then the product was immersed in 40ml of 10% ammonium fluorosilicate solution for 6h, filtered, dried at 120°C for 2h, and calcined at 400°C for 6h to obtain NiO / SiO 2 / F - / Al 2 o 3 .

[0056] NiO / SiO 2 / F - / Al 2 o 3 Add it to 50ml of 20% ammonium bisulfate solution, filter, dry at 100°C for 6h, and roast at 500°C for 5h. Promptly obtain the NiO / SiO of the present invention 2 / F - / SO 4 2- / Al 2 o 3 .

[0057] Put 9g of catalyst into a micro-fixed bed reactor with a diameter of φ16mm, feed methyl tert-amyl ether with a liquid micro-sampling pump, control the liquid space velocity to 3h-1, the reaction temperature is 160°C, and the conversion rate of TAME is 97.5% , The selectivity of isopentene is 97.6%, and the selectivity of methanol is 98.7%. The pro...

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Abstract

The invention discloses a multi-component NiO / SiO2 / F<-> / SO4<2-> / Al2O3 catalyst for preparing high-purity olefins by ether cracking and a preparation method thereof. According to the method, the catalyst comprises the following components in percentage by weight: 20-95% of Al2O3, 1-50% of NiO, 0.1-20% of SiO2, 0.1-10% of F<-> and 0.5-35% of SO4<2->. The catalyst is prepared by using an impregnation method, the operation is simple, the price is low, the catalyst can be used for preparing olefins by ether cracking at a lower temperature over present congeneric catalysts, the ether cracking is close to complete conversion while high olefin and methanol selectivity is guaranteed, and the air speed ratio of the reaction liquid is improved by 2-10 times over congeneric industrial catalysts.

Description

technical field [0001] The invention relates to the preparation and application of a catalyst for preparing olefins by cracking ether. It mainly involves multi-component NiO / SiO supported on aluminum oxide by metal oxide, silicon oxide, halogen and sulfate 2 / F - / SO 4 2- / Al 2 o 3 type catalyst. Background technique [0002] Isoamyl is a mixture of 2-methyl-2-butene and 2-methyl-1-butene, and 2-methyl-2-butene is the active ingredient in most reactions, so 2-methyl-2 - The higher the butene content, the higher the value contained. As an important chemical raw material, isobutene is widely used in the production of isoprene, pinacolone, tert-amyl alcohol, spices and pesticides, of which the production of pesticides and spices accounts for the vast majority. Especially with the prohibition of phosphorus-containing pesticides in China, isopentene has been widely used as a basic raw material for the synthesis of triazole fungicides, plant growth regulators and herbicid...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B01J21/12B01J23/755B01J27/12B01J27/02C07C4/10C07C11/10
CPCB01J21/12B01J23/002B01J23/755B01J27/02B01J27/12B01J2523/00C07C4/10B01J2523/31B01J2523/41B01J2523/847C07C11/10
Inventor 王筠松金玉松卢冠忠孙苏郭杨龙郭耘王丽詹望成
Owner EAST CHINA UNIV OF SCI & TECH
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