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Boiling Point Distribution AC 8612

The AC Analytical Controls® AC8612 application delivers ASTM D86 correlated data for naphtha and gasoline samples within ASTM D86 groups 0, 1, and 2 in 15 minutes. It is based on fast detailed hydrocarbon analysis (DHA), and uses the PAC proprietary Fugacity Film Calculation Model for reporting accurate D86 correlated data.

The application resides on an easy-to-use, compact Agilent Technologies 6850 gas chromatograph, configured with:

A flame ionization detector (FID)
A split/splitless inlet
An automatic liquid sampler

Extremely accurate reporting
> Offers operator-independent results that are in line with good laboratory practice
> Exceeds repeatability requirements of D86 method, resulting in less product giveaway
> Uses dedicated AC quality control samples to assist operators in calibrating and validating the system, ensuring maximum analysis accuracy
> Incorporates True Boiling Point (TBP) reporting

High throughput
> Features a sample throughput that is twice as high as classical D86
> Cycles in 10 – 15 minutes

Fully automated
> Saves up to 75% in labor cost compared to traditional D86 labor costs
> Reduces operator involvement through software automation of analysis, data handling, and calibration
> Allows unattended, continuous analysis through a high level of automation

High levels of safety
> Eliminates potential fire hazards associated with D86 physical distillation and ensures high safety standards

GOST 2177

 

application delivers D86 correlated data for naphtha and gasoline samples within D86 groups 0, 1, and 2 in 15 minutes.

AC 8612

Extremely accurate reporting
> Offers operator-independent results that are in line with good laboratory practice
> Exceeds repeatability requirements of D86 method, resulting in less product giveaway
> Uses dedicated AC quality control samples to assist operators in calibrating and validating the system, ensuring maximum analysis accuracy
> Incorporates True Boiling Point (TBP) reporting

High throughput
> Features a sample throughput that is twice as high as classical D86
> Cycles in 10 – 15 minutes

Fully automated
> Saves up to 75% in labor cost compared to traditional D86 labor costs
> Reduces operator involvement through software automation of analysis, data handling, and calibration
> Allows unattended, continuous analysis through a high level of automation

High levels of safety
> Eliminates potential fire hazards associated with D86 physical distillation and ensures high safety standards

GOST 2177

 

application delivers D86 correlated data for naphtha and gasoline samples within D86 groups 0, 1, and 2 in 15 minutes.

AC 8612

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