Ethanol 96.6 % - high purity (fully denatured)
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- Ethanol 96.6 % - high purity (fully denatured)
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- Isopropyl alcohol, min. 80 % (technical)
- Isopropyl alcohol, min. 99.8 % (technical)
- n-butanol (1-butanol, butyl alcohol)
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Ethanol 96.6 % - high purity (fully denatured) (1 litre)
Must not be denatured Application Ethanol is produced by means of alcoholic fermentation. In this process, glucose is converted into ethanol with the help of yeast fungi. It is used as a fuel substitute or additive in petrol engines for motor vehicles and in aircraft engines. It is also used in the chemical industry as a basis for solvent production or as a preservative and disinfectant. Due to its purity and environmentally friendly properties, it is very well suited as an alternative to fossil fuels, as carbon monoxide and carbon dioxide emissions are extremely low. In addition, no toxic exhaust gases are produced when the product is burnt. Due to its favourable production costs, bioethanol is also significantly cheaper than fossil fuels.
Ethanol 96.6 % - high purity (fully denatured) (1000 litres)
Application Ethanol is produced by means of alcoholic fermentation. In this process, glucose is converted into ethanol with the help of yeast fungi. It is used as a fuel substitute or additive in petrol engines for motor vehicles and in aircraft engines. It is also used in the chemical industry as a basis for solvent production or as a preservative and disinfectant. Due to its purity and environmentally friendly properties, it is very well suited as an alternative to fossil fuels, as carbon monoxide and carbon dioxide emissions are extremely low. In addition, no toxic exhaust gases are produced when the product is burnt. Due to its favourable production costs, bioethanol is also significantly cheaper than fossil fuels.
Ethanol 96.6 % - high purity (fully denatured) (10x1 litre)
Application Ethanol is produced by means of alcoholic fermentation. In this process, glucose is converted into ethanol with the help of yeast fungi. It is used as a fuel substitute or additive in petrol engines for motor vehicles and in aircraft engines. It is also used in the chemical industry as a basis for solvent production or as a preservative and disinfectant. Due to its purity and environmentally friendly properties, it is very well suited as an alternative to fossil fuels, as carbon monoxide and carbon dioxide emissions are extremely low. In addition, no toxic exhaust gases are produced when the product is burnt. Due to its favourable production costs, bioethanol is also significantly cheaper than fossil fuels.
Ethanol 96.6 % - high purity (fully denatured) (20 litres)
Application Ethanol is produced by means of alcoholic fermentation. In this process, glucose is converted into ethanol with the help of yeast fungi. It is used as a fuel substitute or additive in petrol engines for motor vehicles and in aircraft engines. It is also used in the chemical industry as a basis for solvent production or as a preservative and disinfectant. Due to its purity and environmentally friendly properties, it is very well suited as an alternative to fossil fuels, as carbon monoxide and carbon dioxide emissions are extremely low. In addition, no toxic exhaust gases are produced when the product is burnt. Due to its favourable production costs, bioethanol is also significantly cheaper than fossil fuels.
Ethanol 96.6 % - high purity (fully denatured) (200 litres)
Application Ethanol is produced by means of alcoholic fermentation. In this process, glucose is converted into ethanol with the help of yeast fungi. It is used as a fuel substitute or additive in petrol engines for motor vehicles and in aircraft engines. It is also used in the chemical industry as a basis for solvent production or as a preservative and disinfectant. Due to its purity and environmentally friendly properties, it is very well suited as an alternative to fossil fuels, as carbon monoxide and carbon dioxide emissions are extremely low. In addition, no toxic exhaust gases are produced when the product is burnt. Due to its favourable production costs, bioethanol is also significantly cheaper than fossil fuels.
Ethanol 96.6 % - high purity (fully denatured) (20x1 litre)
Application Ethanol is produced by means of alcoholic fermentation. In this process, glucose is converted into ethanol with the help of yeast fungi. It is used as a fuel substitute or additive in petrol engines for motor vehicles and in aircraft engines. It is also used in the chemical industry as a basis for solvent production or as a preservative and disinfectant. Due to its purity and environmentally friendly properties, it is very well suited as an alternative to fossil fuels, as carbon monoxide and carbon dioxide emissions are extremely low. In addition, no toxic exhaust gases are produced when the product is burnt. Due to its favourable production costs, bioethanol is also significantly cheaper than fossil fuels.
Ethanol 96.6 % - high purity (fully denatured) (5 litres)
Application Ethanol is produced by means of alcoholic fermentation. In this process, glucose is converted into ethanol with the help of yeast fungi. It is used as a fuel substitute or additive in petrol engines for motor vehicles and in aircraft engines. It is also used in the chemical industry as a basis for solvent production or as a preservative and disinfectant. Due to its purity and environmentally friendly properties, it is very well suited as an alternative to fossil fuels, as carbon monoxide and carbon dioxide emissions are extremely low. In addition, no toxic exhaust gases are produced when the product is burnt. Due to its favourable production costs, bioethanol is also significantly cheaper than fossil fuels.
Ethanol 96.6 % - high purity (fully denatured) (5x1 litre)
Application Ethanol is produced by means of alcoholic fermentation. In this process, glucose is converted into ethanol with the help of yeast fungi. It is used as a fuel substitute or additive in petrol engines for motor vehicles and in aircraft engines. It is also used in the chemical industry as a basis for solvent production or as a preservative and disinfectant. Due to its purity and environmentally friendly properties, it is very well suited as an alternative to fossil fuels, as carbon monoxide and carbon dioxide emissions are extremely low. In addition, no toxic exhaust gases are produced when the product is burnt. Due to its favourable production costs, bioethanol is also significantly cheaper than fossil fuels.
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