欧美日韩一区二区在线视频,国产精品第一页在线,90分钟人性与欲望交织的惊悚片,90分钟人性与欲望交织的惊悚片,电影睫毛膏,国产成人99,九色视频网

News

Efficient catalytic ring opening hydrogenolysis of furfural to prepare 1,5-pentanediol

2025-02-20 16:24:40

At present, furfural has achieved industrial application, therefore, it is very important to enhance the utilization value of furfural through downstream conversion and utilization. 1,5-pentanediol (1,5-PeD) is an important pharmaceutical intermediate with broad application prospects in various fields such as plasticizers, cosmetics, and synthetic fragrances. However, the efficient catalytic ring opening hydrogenolysis of furfural to prepare 1,5-pentanediol is a complex chemical process that involves multiple aspects such as catalyst design and reaction condition optimization.


The key steps and points are as follows:


1. Reaction mechanism

The main steps for preparing 1,5-pentanediol by ring opening hydrogenation of furfural include:

Hydrogenation: Furfural is first hydrogenated to produce furfuryl alcohol.

Ring opening: Furfuryl alcohol undergoes ring opening under the action of a catalyst, resulting in the formation of an intermediate.

Further hydrogenation: The intermediate continues to be hydrogenated, ultimately producing 1,5-pentanediol.


2. Catalyst selection

The selection of catalysts is crucial for reaction efficiency and selectivity, and commonly used catalysts include:

Precious metal catalysts, such as Pt, Pd, Ru, etc., have high activity and selectivity, but are costly.

Non precious metal catalysts, such as Ni, Co, Cu, etc., have lower costs but may not be as active and selective as precious metals.

Bimetallic catalysts: Combining precious and non precious metals to balance activity and cost.


3. Optimization of reaction conditions

The reaction conditions have a significant impact on product selectivity and yield, with key parameters including:

Temperature: usually between 100-200 ° C, too high may cause side reactions.

Pressure: Hydrogen pressure is generally between 1-10 MPa, and high pressure is beneficial for hydrogenation reactions.

Solvent: Common solvents include water, ethanol, etc. Choosing a suitable solvent can improve reaction efficiency.

Reaction time: It needs to be optimized to avoid excessive hydrogenation or side reactions.


4. Catalyst carrier

The carrier affects the dispersibility and stability of the catalyst. Common carriers include:

Oxide carriers: such as Al ? O3, SiO ?, TiO ?, etc.

Carbon materials: such as activated carbon, carbon nanotubes, etc.

Molecular sieves, such as ZSM-5 and Beta, have specific pore structures that can enhance selectivity.


5. Reactor design

Reactor design affects mass and heat transfer efficiency, and commonly used types include:

Fixed bed reactor: simple structure, suitable for continuous production.

Slurry bed reactor: suitable for high viscosity reaction systems.

Microreactor: High mass and heat transfer efficiency, suitable for laboratory research.


6. Product separation and purification

After the reaction, 1,5-pentanediol needs to be separated and purified. Common methods include:

Distillation: Separation using boiling point differences.

Extraction: Use appropriate solvents to extract the target product.

Crystallization: Improve purity through crystallization.


7. Challenges and Prospects

Catalyst stability: It is necessary to improve the stability and lifespan of the catalyst.

Selective control: Conditions need to be optimized to improve the selectivity of 1,5-pentanediol.

Green chemistry: Developing more environmentally friendly processes to reduce waste and energy consumption.

 
0393-8293966
copyright ? 2024-2025. All rights reserved.    Lu ICP Registration No.10028885號-1
合江县| 乌兰浩特市| 雷山县| 滦平县| 和硕县| 临汾市| 安阳县| 监利县| 抚松县| 凤翔县| 耒阳市| 兴业县| 大足县| 西盟| 股票| 上犹县| 肥乡县| 刚察县| 乐至县| 无为县| 新宾| 靖宇县| 宣城市| 乐亭县| 五寨县| 江津市| 柘城县| 甘南县| 巴林右旗| 泸水县| 泰州市| 定州市| 江口县| 乐清市| 惠水县| 嵊泗县| 万年县| 兴文县| 常州市| 蒙城县| 阜阳市|