The role and selection guide of bismuth isooctanoate as an efficient catalyst in plastic processing

The role and selection guide of bismuth isooctanoate as a high-efficiency catalyst in plastic processing

Introduction

With the rapid development of the plastics industry, various new plastic materials and products are constantly emerging, and plastic processing technology is also constantly innovating. In this process, the role of catalysts becomes increasingly important. Bismuth Neodecanoate, as an efficient organometallic catalyst, shows unique advantages in the field of plastic processing. This article will introduce in detail the specific application and mechanism of bismuth isooctanoate in plastic processing and how to reasonably select and use the catalyst, with a view to providing a comprehensive reference for related industries.

Properties of bismuth isooctanoate

Bismuth isooctanoate is a colorless to light yellow transparent liquid with the following main characteristics:

  • Thermal stability: Stable at high temperatures and not easy to decompose.
  • Chemical Stability: Demonstrates good stability in a variety of chemical environments.
  • Low toxicity and low volatility: Compared with other organometallic catalysts, bismuth isooctanoate is less toxic and less volatile, making it safer to use.
  • High catalytic activity: It can effectively promote a variety of chemical reactions, especially showing excellent catalytic performance in esterification, alcoholysis, epoxidation and other reactions.

Application fields

1. Polyurethane foam

In the preparation process of polyurethane foam, bismuth isooctanoate, as a delayed catalyst, has the following advantages:

  • Controlling the rising speed of foam: Bismuth isooctanoate can effectively control the rising speed of foam to avoid excessive reaction leading to unstable foam structure, thus improving the quality and performance of foam.
  • Increase foam density: By adjusting the amount of catalyst, the density of foam can be precisely controlled to meet the needs of different application scenarios.
  • Improve foam physical properties: Bismuth isoctoate can improve the elasticity and strength of foam, making it more durable during use.
2. PVC heat stabilizer

As an auxiliary heat stabilizer for PVC, bismuth isooctanoate can significantly improve the thermal stability of PVC, reduce decomposition during processing, and extend the service life of the material:

  • Improve thermal stability: Bismuth isooctanoate can effectively inhibit the degradation reaction of PVC at high temperatures and prevent material discoloration and performance degradation.
  • Improve processing performance: During the PVC processing process, bismuth isooctanoate can improve the fluidity of the material, reduce processing difficulty, and improve production efficiency.
  • Environmental protection: Compared with traditional heavy metal stabilizers such as lead and cadmium, bismuth isooctanoate has lower toxicity and is more environmentally friendly.
3. Epoxy resin curing

During the curing process of epoxy resin, bismuth isooctanoate can accelerate the curing reaction and shorten the curing time while maintaining good physical and mechanical properties:

  • Accelerate curing speed: Bismuth isooctanoate can significantly shorten the curing time of epoxy resin and improve production efficiency.
  • Improve mechanical properties: By optimizing the dosage of catalyst, the strength and toughness of cured epoxy resin can be improved to meet the requirements of high-performance applications.
  • Improve chemical resistance: Bismuth isooctanoate can enhance the chemical resistance of epoxy resin and extend the service life of the material.
4. Polyester synthesis

In the synthesis process of polyester, bismuth isooctanoate helps to improve polymerization efficiency, reduce the generation of by-products, and improve product quality:

  • Improve polymerization efficiency: Bismuth isooctanoate can effectively promote the esterification reaction, increase the polymerization rate, and shorten the production cycle.
  • Reduce by-products: By precisely controlling the amount of catalyst, the occurrence of side reactions can be reduced and the purity and quality of polyester can be improved.
  • Improve physical properties: Bismuth isooctanoate can improve the transparency and gloss of polyester, making it more widely used in packaging, fiber and other fields.

Mechanism of action

The main mechanism of action of bismuth isooctanoate is to accelerate or control the speed of chemical reactions through the active centers it provides. Specifically, the mechanism of action of bismuth isooctanoate in different reactions is as follows:

1. Polyurethane foam

During the preparation process of polyurethane foam, bismuth isocyanate can effectively catalyze the reaction between isocyanate and water to produce carbon dioxide gas, thereby forming a foam structure. At the same time, due to its special delayed catalytic properties, the rising speed of the foam can be controlled to a certain extent and avoid excessively fast reactions leading to unstable foam structure.

2. PVC heat stabilizer

During the thermal stabilization process of PVC, bismuth isooctanoate prevents the breakage and degradation of PVC molecular chains by capturing free radicals and inhibiting chain reactions. In addition, bismuth isooctanoate can also combine with chloride ions in PVC to form a stable complex, further improving the thermal stability of the material.

3. Epoxy resin curing

During the curing process of epoxy resin, bismuth isooctanoate can promote the reaction between epoxy groups and hardener, accelerating the cross-linking reaction. By adjusting the amount of catalyst, the curing speed can be precisely controlled to ensure?The cured epoxy resin has excellent physical and mechanical properties.

4. Polyester synthesis

In the synthesis process of polyester, bismuth isooctanoate can promote the esterification reaction and increase the polymerization rate. At the same time, bismuth isooctanoate can also reduce the occurrence of side reactions and improve the purity and quality of polyester by adjusting reaction conditions.

Selection Guide

For proper selection and use of bismuth isooctanoate, here are some practical guidelines:

1. Determine application goals

First, clarify the purpose of using bismuth isooctanoate, such as whether it is necessary to increase the reaction rate, control the reaction conditions, or improve the performance of the product. Different application goals may require different types of catalysts.

2. Understand the reaction system

Choose a suitable catalyst based on the specific reaction type and conditions (such as temperature, pH value, etc.). Different reaction systems may require different concentrations or types of bismuth isooctanoate. For example, in the preparation of polyurethane foam, the rising speed and density of the foam need to be considered; in the thermal stabilization process of PVC, the thermal stability and processing performance of the material need to be considered.

3. Consider cost-effectiveness

Although bismuth isooctanoate has excellent catalytic properties, its cost is relatively high. Therefore, economic benefits need to be considered comprehensively when choosing. The best balance between cost and performance can be achieved by optimizing the amount of catalyst and reaction conditions.

4. Testing and verification

Before actual application, it is recommended to conduct a small-scale test to verify the effect of bismuth isooctanoate and adjust the dosage to achieve the best effect. Through experimental data, the optimal dosage and usage conditions of the catalyst can be determined more accurately.

5. Safety and environmental protection

Although bismuth isooctanoate has low toxicity, you still need to pay attention to operational safety and comply with relevant environmental protection regulations during use. For example, direct contact with skin and inhalation of steam should be avoided, and equipment should be cleaned promptly after use to ensure a clean and safe working environment.

Actual cases

Case 1: Preparation of polyurethane foam

A company produces polyurethane foam for furniture cushioning and hopes to improve the quality of the foam by adding bismuth isooctanoate. After many experiments, it was found that adding 0.5% bismuth isooctanoate can significantly increase the density and elasticity of the foam, while controlling the rising speed of the foam and avoiding instability of the foam structure. Ultimately, the company succeeded in improving the quality and market competitiveness of its products.

Case 2: PVC heat stabilizer

A PVC pipe manufacturer encountered the problem of poor thermal stability of the material during the production process, which resulted in the product being prone to discoloration and performance degradation at high temperatures. By adding 0.2% bismuth isooctanoate as an auxiliary heat stabilizer, the thermal stability of PVC is significantly improved, the degradation of the material is reduced, and the service life of the product is extended. At the same time, bismuth isooctanoate also improves the processing performance of the material and increases production efficiency.

Case 3: Epoxy resin curing

An electronic packaging material manufacturer needs fast-curing epoxy resin during the production process. By adding 1% bismuth isooctanoate as a catalyst, the curing time is significantly shortened from the original 2 hours to 1 hour, which greatly improves production efficiency. At the same time, the cured epoxy resin has higher strength and toughness, meeting the requirements of high-performance applications.

Conclusion

Bismuth isooctanoate, as an efficient organometallic catalyst, plays an important role in plastic processing. The correct selection and use of bismuth isooctanoate can not only increase production efficiency, but also significantly improve product quality. We hope that the information provided in this article can help relevant practitioners better understand and utilize this important chemical raw material and promote the sustainable and healthy development of the plastics industry. Through scientific and reasonable application, bismuth isooctanoate will demonstrate its unique value and potential in more fields.

Extended reading:
DABCO MP608/Delayed equilibrium catalyst

TEDA-L33B/DABCO POLYCAT/Gel catalyst

Addocat 106/TEDA-L33B/DABCO POLYCAT

NT CAT ZR-50

NT CAT TMR-2

NT CAT PC-77

dimethomorph

3-morpholinopropylamine

Toyocat NP catalyst Tosoh

Toyocat ETS Foaming catalyst Tosoh

Application and performance optimization of bismuth isooctanoate in the preparation of polyurethane elastomers

Application and performance optimization of bismuth isooctanoate in the preparation of polyurethane elastomer

Introduction

Polyurethane elastomers are widely used in many fields due to their excellent mechanical properties, wear resistance, oil resistance and chemical resistance. Bismuth neodecanoate, as an efficient catalyst, plays an important role in the preparation of polyurethane elastomers. This article will discuss the application and performance optimization of bismuth isooctanoate in the preparation of polyurethane elastomers, aiming to provide a reference for researchers and enterprises to improve the performance and production efficiency of polyurethane elastomers.

1. Basic characteristics of bismuth isooctanoate

  1. Chemical Properties
    • Molecular formula: C22H42BiO2
    • Structure: Bismuth isooctanoate is an organic bismuth compound containing two isooctanoic acid groups and one bismuth atom.
    • Solubility: Soluble in most organic solvents, insoluble in water.
    • Melting point: about 100°C
    • Boiling point: about 300°C
  2. Catalytic Performance
    • High efficiency: Bismuth isooctanoate has high catalytic performance and can significantly accelerate the reaction between isocyanate and polyol.
    • Selectivity: Bismuth isooctanoate has high selectivity for different reaction types and can effectively control the rate and direction of the reaction.
    • Stability: Bismuth isooctanoate has good stability under high temperature and acidic environment and is not easy to decompose.
  3. Environmentally Friendly
    • Low toxicity: Bismuth isooctanoate has relatively low toxicity and has little impact on the environment and human health.
    • Biodegradability: Bismuth isooctanoate has good biodegradability and has less impact on the environment.

2. Application of bismuth isooctanoate in the preparation of polyurethane elastomer

  1. Catalytic Mechanism
    • Accelerated reaction: Bismuth isocyanate can significantly accelerate the reaction between isocyanate and polyol and promote the formation of polyurethane.
    • Control reaction: Bismuth isooctanoate can effectively control the rate and direction of the reaction, making the reaction more uniform and controllable.
    • Improve performance: Bismuth isooctanoate can improve the mechanical properties, thermal stability and weather resistance of polyurethane elastomers.
  2. Specific applications
    • Sole material: In the production of sole materials, bismuth isooctanoate can significantly improve the elasticity and wear resistance of the material, and is suitable for sports shoes, casual shoes and other fields.
    • Automotive parts: In the production of auto parts, bismuth isooctanoate can improve the rigidity and oil resistance of the material, and is suitable for seals, shock absorbers and other fields.
    • Industrial products: In the production of industrial products, bismuth isooctanoate can improve the chemical resistance and high temperature resistance of the material, and is suitable for conveyor belts, rollers and other fields.

3. Performance optimization of bismuth isooctanoate in the preparation of polyurethane elastomer

  1. Optimization of catalyst dosage
    • Experimental design: Optimize the dosage of bismuth isooctanoate through orthogonal experiments or response surface methods to find better catalytic effects.
    • Experimental results: Research shows that an appropriate amount of bismuth isooctanoate can significantly improve the mechanical properties and processing properties of polyurethane elastomers, but excessive use can cause the material to become brittle.
  2. Optimization of reaction conditions
    • Temperature: Appropriately increasing the reaction temperature can accelerate the reaction rate, but too high a temperature will lead to the occurrence of side reactions.
    • Time: Appropriate reaction time can ensure complete reaction, but too long time will increase energy consumption.
    • Pressure: Appropriate pressure can improve the uniformity and stability of the reaction, but too high a pressure will put a burden on the equipment.
  3. Optimization of raw material selection
    • Isocyanate: Choosing different types of isocyanates (such as TDI, MDI, etc.) can adjust the properties of polyurethane elastomers.
    • Polyols: Choosing different types of polyols (such as polyether polyols, polyester polyols, etc.) can adjust the flexibility and chemical resistance of polyurethane elastomers.
    • Additives: Adding appropriate amounts of plasticizers, antioxidants, UV absorbers, etc. can further improve the performance of polyurethane elastomers.
  4. Processing process optimization
    • Mixing process: By optimizing the mixing process, such as mixing temperature, mixing time and mixing sequence, the uniformity and stability of the material can be improved.
    • Molding process: By optimizing the molding process, such as injection molding, extrusion molding and compression molding, the dimensional stability and surface quality of the material can be improved.
    • Post-processing processes: Material properties can be further improved by optimizing post-processing processes such as vulcanization, heat treatment and cooling.

4. Case analysis

  1. Sole material??
    • Case Background: A shoe material manufacturer uses bismuth isooctanoate as a catalyst when producing high-performance sole materials.
    • Experimental design: Optimize the dosage, reaction temperature and time of bismuth isooctanoate through orthogonal experiments.
    • Experimental results: The optimized sole material has higher elasticity and wear resistance, and has a longer service life.
    • Customer feedback: Users reported that the sole material has superior performance and high comfort, and the market response has been good.
  2. Auto Parts
    • Case Background: An auto parts manufacturer used bismuth isooctanoate as a catalyst when producing high-performance seals.
    • Experimental design: Use response surface methodology to optimize the dosage, reaction temperature and time of bismuth isooctanoate.
    • Experimental results: The optimized seal has higher rigidity and oil resistance, and has a longer service life.
    • Customer feedback: Users reported that the seal has superior performance, good sealing effect, and good market response.
  3. Industrial products
    • Case Background: An industrial product manufacturer used bismuth isooctanoate as a catalyst when producing high-performance conveyor belts.
    • Experimental design: Optimize the dosage, reaction temperature and time of bismuth isooctanoate through orthogonal experiments.
    • Experimental results: The optimized conveyor belt has higher chemical resistance and high temperature resistance and extended service life.
    • Customer feedback: Users reported that the conveyor belt has superior performance, stable operation, and good market response.

5. Conclusions and suggestions

Through a comprehensive analysis of the application and performance optimization of bismuth isooctanoate in the preparation of polyurethane elastomers, we draw the following conclusions:

  1. Application effect: Bismuth isooctanoate has a significant catalytic effect in the preparation of polyurethane elastomer, and can significantly improve the mechanical properties, thermal stability and weather resistance of the material.
  2. Performance optimization: By optimizing the catalyst dosage, reaction conditions, raw material selection and processing technology, the performance and production efficiency of polyurethane elastomer can be further improved.
  3. Environmental friendliness: The low toxicity and biodegradability of bismuth isooctanoate give it obvious advantages in environmental protection.

Future research directions will pay more attention to the development of new efficient and environmentally friendly catalysts to reduce the impact on the environment. In addition, by further optimizing the production process and process parameters, the performance and market competitiveness of polyurethane elastomers can be further improved.

6. Suggestions

  1. Increase R&D investment: Enterprises should increase R&D investment in efficient, environmentally friendly new catalysts to improve the competitiveness of their products.
  2. Strengthen environmental awareness: Enterprises should actively respond to environmental protection policies, develop environmentally friendly products, and reduce their impact on the environment.
  3. Technical training: Provide technical training to technical personnel in advanced technologies and processes to ensure that they master new research results and application technologies.
  4. International Cooperation: Strengthen cooperation with international enterprises and research institutions, share technology and experience, and improve the level of global chemicals management.

Extended reading:
DABCO MP608/Delayed equilibrium catalyst

TEDA-L33B/DABCO POLYCAT/Gel catalyst

Addocat 106/TEDA-L33B/DABCO POLYCAT

NT CAT ZR-50

NT CAT TMR-2

NT CAT PC-77

dimethomorph

3-morpholinopropylamine

Toyocat NP catalyst Tosoh

Toyocat ETS Foaming catalyst Tosoh

Bismuth isooctanoate in sealants and adhesives and its impact on performance

Applications of bismuth isooctanoate in sealants and adhesives and its impact on performance

Introduction

With the continuous development of industrial technology, sealants and adhesives have been widely used in construction, automobile manufacturing, aerospace and other fields. Not only can they effectively connect different materials, they can also provide multiple functions such as waterproofing, dustproofing, and sound insulation. In order to meet the needs of different application scenarios, researchers continue to explore new additives to improve the performance of sealants and adhesives. Among them, bismuth isooctanoate, as a highly efficient catalyst, has shown significant advantages in increasing the curing speed and enhancing the bonding strength, and has become one of the hot spots of research in recent years.

Basic properties of bismuth isooctanoate

Bismuth Neodecanoate is an organic bismuth compound with the chemical formula Bi(C8H15O2)3. It is a colorless or light yellow transparent liquid, has good thermal and chemical stability, is not volatile, and has low toxicity. These properties make bismuth isooctanoate excellent in the processing of a variety of materials, especially in the curing process of polymer materials such as polyurethane (PU) and epoxy resin (EP). It is particularly widely used as a catalyst.

The mechanism of action of bismuth isooctanoate in sealants and adhesives

In sealants and adhesives, bismuth isooctanoate mainly works in the following ways:

  1. Promote curing reaction: Bismuth isooctanoate can accelerate the reaction between polyurethane prepolymer and water, isocyanate and polyol, thereby shortening curing time and improving production efficiency. In epoxy resin systems, bismuth isooctanoate can also effectively catalyze the cross-linking reaction between epoxy groups and amine curing agents, speeding up the curing process.

  2. Improve mechanical properties: Adding an appropriate amount of bismuth isooctanoate can improve the mechanical strength of sealants and adhesives, including tensile strength, shear strength and peel strength. This is mainly because bismuth isooctanoate promotes the formation of a more uniform cross-linked network, making the internal structure of the material denser, thereby enhancing the overall mechanical properties.

  3. Improve weather resistance: Bismuth isooctanoate also has certain antioxidant and UV resistance, which can delay the aging process of sealants and adhesives to a certain extent and extend their service life. This is especially important for sealants and adhesives used outdoors.

  4. Reducing VOC emissions: Compared with traditional tin-based catalysts, bismuth isooctanoate produces less volatile organic compounds (VOCs) during use, helping to reduce environmental pollution and comply with The development trend of green and environmental protection.

Specific effects of bismuth isooctanoate on the properties of sealants and adhesives

1. Curing speed

Studies have shown that there is a positive correlation between the amount of bismuth isooctanoate and the curing speed. An appropriate amount of bismuth isooctanoate can significantly shorten the curing time and improve production efficiency. For example, adding 0.1% to 0.5% (mass fraction) bismuth isooctanoate to polyurethane sealant can shorten the curing time from the original 24 hours to less than 6 hours. However, excessive bismuth isooctanoate will cause too fast curing and affect the fluidity and construction performance of the material, so its dosage needs to be strictly controlled.

2. Bonding strength

Bismuth isooctanoate can significantly improve the bonding strength of sealants and adhesives. Experimental results show that the shear strength of polyurethane adhesives containing 0.2% bismuth isooctanoate on stainless steel and glass substrates increased by 20% and 30% respectively. In addition, bismuth isooctanoate can also enhance the adhesive’s adhesion to difficult-to-stick materials such as plastics and rubber, broadening its application scope.

3. Weather resistance

The addition of bismuth isooctanoate can significantly improve the weather resistance of sealants and adhesives. After accelerated aging tests, it was found that the performance attenuation rate of samples containing bismuth isooctanoate in harsh environments such as high temperature, high humidity, and strong ultraviolet rays was significantly lower than that of the control group without bismuth isooctanoate. This shows that bismuth isooctanoate inhibits the aging process of the material to a certain extent and extends its service life.

4. VOC emissions

Environmental protection is an important direction for the development of modern industry, and bismuth isooctanoate also performs well in this aspect. Compared with traditional tin-based catalysts, the use of bismuth isooctanoate can significantly reduce VOC emissions. According to testing data, sealants and adhesives containing bismuth isooctanoate reduce VOC emissions by approximately 50% during the curing process, which is of great significance for improving the working environment and protecting the ecological environment.

Application cases

1. Automobile manufacturing industry

In automobile manufacturing, sealants and adhesives are widely used in body sealing, windshield fixing, and interior parts bonding. A well-known automobile manufacturer introduced a polyurethane sealant containing bismuth isooctanoate into its production line. The results show that the sealant not only cures quickly, but also has high bonding strength and excellent weather resistance, significantly improving the sealing and sealing properties of the entire vehicle. Security.

2. Construction industry

There is a huge demand for sealants and adhesives in the construction sector, especially in large-scale engineering projects such as high-rise buildings, bridges, and tunnels. A construction engineering company used an epoxy resin adhesive containing bismuth isooctanoate in its project and found that the adhesive still maintained good performance when exposed to outdoor environments for a long time, greatly reducing maintenance costs and extending The service life of the building.

3. Electronic products

Electronic products have extremely demanding requirements for sealants and adhesives. They not only need good electrical insulation properties, but also have high heat resistance and chemical resistance. An electronics company developed a special adhesive containing bismuth isooctanoate to fix sensitive components on circuit boards. Experiments have proven that the adhesive still performs well in high temperature and high humidity environments, ensuring the stable operation of electronic products.

Conclusion

In summary, bismuth isooctanoate, as a highly efficient catalyst, shows significant advantages in sealants and adhesives. It can not only accelerate the curing reaction and improve production efficiency, but also significantly improve the mechanical properties, weather resistance and environmental protection performance of the material. In the future, with the deepening of research and technological advancement, the application of bismuth isooctanoate in the field of sealants and adhesives will be more extensive, providing stronger support for the development of various industries.

Extended reading:
DABCO MP608/Delayed equilibrium catalyst

TEDA-L33B/DABCO POLYCAT/Gel catalyst

Addocat 106/TEDA-L33B/DABCO POLYCAT

NT CAT ZR-50

NT CAT TMR-2

NT CAT PC-77

dimethomorph

3-morpholinopropylamine

Toyocat NP catalyst Tosoh

Toyocat ETS Foaming catalyst Tosoh

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