PT-D4294-01
PT-D4294-01 X-ray Fluorescence Sulfur in Oil Analyzer instrument is specially designed to determine sulfur content in the petroleum products. Adopts energy-dispersive principle, and with integrated design, it is rapid and accurate. It meets requirements of ASTM D4294-03 on these indexes. It provides a measure to determine sulfur content during petroleum or petrochemical production process.
Description:
PT-D4294-01 X-ray Fluorescence Sulfur in Oil Analyzer instrument is specially designed to determine sulfur content in the petroleum products. Adopts energy-dispersive principle, and with integrated design, it is rapid and accurate. It can meet the requirements of National Standard GB/T 17040 and GB/T11140 on repeatability and reproducibility, and it can also meet requirements of ASTM D4294-03 on these indexes. It provides a measure to determine sulfur content during petroleum or petrochemical production process.
Environment pollution is attracting more and more governments and public concern. The cry for protection to ecological environment and atmospheric environment is increasingly louder. The key culprit to atmospheric destruction and pollution is discharge of CO2 and SO2, which are from combustion of power fuels. Lowering down the sulfur content in the gasoline, diesel oil, heavy oils used in vehicles, ships, and airplanes will highly reduce pollution to atmosphere. Europe and our government have promulgated a series of standards on sulfur content of petroleum products to restrict its production and discharge. SO2 may also cause catalyst poisoning in petrochemical industry and form acid rain in the atmosphere.
It can be used to determine
Characteristics
Main technical parameters:
Model | PT-D4294-01 |
Measurement range | 7 ppm to 6%; |
Precision | Repeatability: <0.02894 (X+0.1691); |
Sample quantity | 2 to 3 ml (it is equal to sample depth of 3 mm to 4 mm); |
Measurement time | 30, 60, 120, 150s at random; It can make determination automatically for single sample. Measurement times: can set 1, 2, 3, 5, 10, and 50 times at random; it will show average value and standard deviation at end of measurement. |
Calibration curve numbers | it can save 10 calibration curves. 5 pieces of them are linear equation in one unknown and 5 pieces of them are binomial parabola. |
Working condition | Temperature: 5 to 40 °C; |
Power supply | AC 220V±20V, 50 Hz; |
Rated power | 50 W; |
Size and weight | 260mm×460mm×260mm; |
NW/GW | 11/16 kg; |
Packing List
Item Name | Qty |
Main unit | 1 set |
Power supply wire | 1 piece |
Sample cell (three parts) | 200 pcs |
Sample cell film (6μm Mylar) | 200 pieces in two boxes |
Leakage protection device (two parts) | 1 set |
Multifunctional pressure shaping device (two parts) | 1 set |
Printing paper (57 mm in width; Φ30mm) | 3 roll |
Comparison between new type and old type
Model | PT-D4294-01 New | PT-D4294-01 Old |
Appearance |
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Dimension | L×W×H 430 ×260×260mm | L×W×H 468×368×136mm |
Weight | 11 Kg | 13Kg |
Display | 8-inch wide viewing angle capacitive touch screen | Monochromatic screen |
Keyboard | Capacitive touch screen | PVC panel keypad |
software interface | Smart, simple, easy to learn | —————————— |
Software | Customizable and upgradeable | —————————— |
Judgment of work curve | automatically choose | Operator selection |
Working Curve | 10 working curves | 9 working curves |
Unit | Selectable ppm | No choice |
Date Saving | Save 4096 content data | 1000 can be saved |
Data Counting | Save for one month, save even power off | Save for a few days, power off is not saved |
Calibration Result Data | 16, can be checked and upload | 10, can't upload |
Analysis Range | S % max—S % min≤ 6% | S % max—S % min≤5% |
Peak Drift | Software revision, intuitive, simple and convenient | The adjustment of potentiometers is difficult and cumbersome,not convenient. |
Heavy Oil Standard sample | Import Standard | Company confecting |
Light oil standard sample | Adopt Ampoule bottle | none |
Range of error | Comparable experiment | Comparable experime |
Repeatability | Comparable experiment | Comparable experiment |