Xmile enhance fuel efficiency, reduces emissions and decreases maintenance costs

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XMILE : SMART ENZYME TARGET MOLECULES

Xmile is the world’s first proven enzyme-based fuel additive, designed to improve fuel efficiency and reduce emissions. Founded in the Netherlands in 1999, the company has expanded its reach to 32 countries across six continents. Xmile separates itself from conventional additives by targeting hydrocarbon molecules in the fuel through the utilization of a blend of enzymes. This improves combustion efficiency, resulting in less fuel consumption, less emissions and a cleaner engine and fuel system.

Enzyme-Based Additive
Xmile contains nano hydrocarbon enzymes that act as bio-catalysts. These enzymes are designed to interact with unsaturated molecules present in fuels due to the cracking process in refineries.

Biochemical Reactions
The enzymes initiate a series of biochemical reactions to target and modify the unsaturated molecules, making the fuel more stable and less prone to incomplete combustion.

Improved Combustion
By reducing the intermolecular forces between unsaturated molecules, Xmile ensures a more complete and efficient combustion process. This leads to enhanced fuel energy conversion, meaning more energy is derived from the same amount of fuel, resulting 7% Fuel savings.

Emission Reductions
Complete combustion results in fewer emissions. Xmile users and independent testing report a 7% reduction in CO2 and 6% in NOx emissions and a significant decrease in particulate matter (PM) by 35-50%.

Maintenance
The cleaner combustion process reduces carbon build-up in engines and boilers, leading to up to 30% lower maintenance costs and longer equipment life.

Versatility
Xmile’s benefits extend beyond internal combustion engines. It can be used in boilers, kilns, power plants, and other industrial equipment, making it a versatile solution for various sectors, including automotive, maritime, and industrial applications.

Overall, Xmile enhances fuel efficiency, reduces emissions, and decreases maintenance costs through its innovative enzyme-based technology.