The environmental advantages of low viscosity odorless amine catalyst Z-130 in automotive interior parts manufacturing
Introduction
As the global environmental awareness increases, the automobile manufacturing industry is also constantly seeking more environmentally friendly materials and processes. As an important part of the car, the materials and technologies used in the manufacturing process have an important impact on environmental protection performance. As a new environmentally friendly catalyst, the low viscosity odorless amine catalyst Z-130 has shown significant advantages in the manufacturing of automotive interior parts. This article will introduce in detail the product parameters, environmental advantages and their applications in automotive interior parts manufacturing.
Product Parameters
1. Basic parameters
parameter name | parameter value |
---|---|
Chemical Name | Low viscosity odorless amine catalyst |
Model | Z-130 |
Appearance | Colorless transparent liquid |
Viscosity (25?) | 50-100 mPa·s |
Density (25?) | 0.95-1.05 g/cm³ |
Flashpoint | >100? |
Boiling point | >200? |
Solution | Easy soluble in water and organic solvents |
2. Environmental protection parameters
parameter name | parameter value |
---|---|
VOC content | <1% |
odor | odorless |
Toxicity | Low toxic |
Biodegradability | Biodegradable |
Environmental Impact | Low |
Environmental Advantages
1. Low VOC emissions
VOC (volatile organic compound) is one of the main pollutants in the manufacturing process of automotive interior parts. The Z-130 catalyst has an extremely low VOC content (<1%) and produces almost no harmful gases during the manufacturing process, which significantly reduces air pollution in the car and improves the air quality in the car.
2. Odorless properties
Traditional amine catalysts often produce irritating odors during use, affecting the working environment and the air quality in the car. The odorless properties of the Z-130 catalyst make it not produce any odor during the manufacturing process, improving the comfort of the working environment and the air quality in the car.
3. Low toxicity
Z-130 catalyst has low toxicity and has minimal impact on the human body and the environment. During manufacturing and use, it will not cause health hazards to workers and consumers, and it meets the high requirements of modern automobile manufacturing for environmental protection and health.
4. Biodegradability
Z-130 catalyst has good biodegradability and can decompose quickly in the natural environment without causing long-term pollution to the environment. This feature gives it a significant environmental advantage in the manufacturing of automotive interior parts.
5. Low environmental impact
Z-130 catalyst has a very small impact on the environment during production and use, and meets the requirements of modern automobile manufacturing for sustainable development. Its low environmental impact characteristics make it an ideal choice for automotive interior parts manufacturing.
Application Cases
1. Dashboard manufacturing
In the dashboard manufacturing process, Z-130 catalyst is widely used in the polyurethane foaming process. Its low viscosity and odorless properties make the foaming process more uniform and stable, while significantly reducing VOC emissions and odors, improving the environmental protection performance of the instrument panel.
2. Seat manufacturing
The comfort and environmental performance of car seats are the focus of consumers. The application of Z-130 catalyst in the seat foaming process not only improves the comfort of the seat, but also significantly reduces VOC emissions and odors during the seat manufacturing process, and improves the environmental protection performance of the seat.
3. Interior parts bonding
During the bonding process of automotive interior parts, the Z-130 catalyst is used as a catalyst for the adhesive. Its low toxicity and odorless properties make the bonding process safer and more environmentally friendly, while improving bonding strength and durability.
Conclusion
The low viscosity odorless amine catalyst Z-130 shows significant environmental advantages in the manufacturing of automotive interior parts. Its low VOC emissions, odorless properties, low toxicity, biodegradability and low environmental impact make it an ideal choice for the modern automotive manufacturing industry. Through the wide application of Z-130 catalyst, the environmental performance of automotive interior parts has been significantly improved, which is in line with the environmental protection and ability of modern automobile manufacturing industryRequirements for sustainable development.
Appendix
1. Comparison between Z-130 catalyst and other catalysts
parameter name | Z-130 Catalyst | Traditional amine catalyst | Environmental Catalyst |
---|---|---|---|
VOC content | <1% | 5-10% | 1-3% |
odor | odorless | Have a irritating odor | Slight smell |
Toxicity | Low toxic | Medium toxicity | Low toxic |
Biodegradability | Biodegradable | No biodegradable | Some degradable |
Environmental Impact | Low | Medium | Low |
2. Application fields of Z-130 catalyst
Application Fields | Specific application |
---|---|
Dashboard Manufacturing | Polyurethane foaming process |
Seat Manufacturing | Seat foaming technology |
Interior parts bonding | Binder Catalyst |
Other interior parts | Door panels, ceilings, etc. manufacturing |
Through the above detailed introduction and comparison, it can be seen that the low viscosity odorless amine catalyst Z-130 has significant environmental advantages in automotive interior parts manufacturing and is an important tool for modern automobile manufacturing to achieve environmental protection and sustainable development.
Extended reading:https://www.newtopchem.com/archives/45231
Extended reading:https://www.bdmaee.net/wp-content/uploads/2022/08/-NE300–foaming-catalyst-polyurethane-foaming-catalyst-NE300.pdf
Extended reading:https://www.bdmaee.net/wp-content/uploads/2020/10/149.jpg
Extended reading:https://www.bdmaee.net/fascat4100-catalyst-monobutyl-tin-oxide-fascat-4100/
Extended reading:https://www.newtopchem.com/archives/865
Extended reading:https://www.cyclohexylamine.net/cas-127-08-2-acetic-acid-potassium-salt/
Extended reading:https://www.bdmaee.net/wp-content/uploads/2022/08/62.jpg
Extended reading:https://www.newtopchem.com/archives/39826
Extended reading:https://www.newtopchem.com/archives/44272
Extended reading:https://www.newtopchem.com/archives/44258