Pensky-Martens Digital Flash Point Tester
Used to measure the flash and fire points of lubrificated oils and petroleum products.
Complete with brass cup, stirrer, Digital thermometer, electric heater with thermoregulatory, flame gas.
Power supply: 230V 1ph 50/60Hz 600W
Weight: 10 kg
Instrument capabilities:
Petrol breakdown time (oxidative stability). Complies with ASTM D 525.
SHATOX SX-150
New oil products grade analyzer is manufactured on the basis of advanced high precision microprocessor. The instrument can be used together with a PC a laptop through USB interface. Analyzer uses automatic computer-based calibration, saving measured data in the instrument memory with analysis date and time followed by their transfer to the PC (in Microsoft Excel or txt format). The instrument has easy of control attrition and aggressive environments resistive 8-key antiglare keyboard (made in Germany).
When determining petrol breakdown time, the petrol brand is selected in the instrument. The instrument switches to corresponding operating mode. Oxidative stability determination complies with GOST 4039-88 (ASTM D 525)
The instrument uses the timer microchip, which allows storing measurement results with analysis date and time. These data can also be transmitted to the computer.
New computer software is included into the set.
-Measurement results are reflected on computer screen in convenient form;
Parameter description |
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Measurement units |
Value |
Measured petrols octane numbers range |
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ON |
40–125 |
Acceptable limit of octane number measurement basic error, max |
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ON |
± 0.5 |
Limit of acceptable difference between parallel octane number measurements, max |
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ON |
± 0.2 |
Petrol oxidation breakdown time measurement range |
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min. |
50-2400 |
Acceptable basic error limit of petrol oxidation breakdown time |
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% |
5 |
Cetane numbers measurement range |
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CN |
20–100 |
Acceptable basic error limit of cetane numbers, max |
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CN |
±1.0 |
Acceptable difference limit between cetane numbers parallel measurements, max |
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CN |
± 0.5 |
Acceptable error limit when determining diesel-fuel pour point |
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C o |
± 2 |
Kerosine content determination range in diesel fuels |
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% |
0-95 |
Mode for pour point depressants content determination for diesel fuel |
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% |
3 |
Acceptable basic error limit when determining kerosene content in diesel fuels |
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% |
0.2-1 |
Acceptable basic error limit when determining of pour point depressants content |
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% |
0.01 |
Measurement time |
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s |
1–5 |
Insufficient power supply indication operation threshold |
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V |
5.4 |
Instrument useful life |
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years |
6 |
Overall dimensions of: |
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electronic module |
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mm |
100х210х40 |
sensor #1 and #2: |
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mm |
60х100 |
Instrument mass with one sensor/two sensors |
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gr |
850 |
Delivery package:
A modification of the universal fuel and oil quality analyzer Octane Tester SX-200 is intended for detection of type and measurement of octane number of gasoline, cetane number of diesel fuel, and also for estimation of diesel fuel freezing temperature, purity level, and quality of motor, industrial and transformer (dielectric puncture potential) oil.
Capability to make an individual measurement program (according to customer's requirements) allows to adjust the instrument to analyze the quality of any gasoline. New microprocessor is used for quick and accurate processing in analyzer. The device measures and displays octane number RON, MON and antiknock index AKI (RON+MON)/2 simultaneously. The instrument has additional 220V power supply, battery charge indicator, display backlight
The Octane Tester SX-200 is recommended for the use at filling stations, petroleum refineries, Custom-houses, environmental and supervisory organizations, electric power stations as a portable universal device to control fuel and oil quality.
Technical specifications of Octane Tester SHATOX SX-200
Parameter description |
Value |
Measurement range of octane numbers (ON), ON units |
40-120 |
Acceptable limit of octane number measurement basic error, ON units (max) |
0.5 |
Limit of acceptable difference between parallel octane number measurements, ON units (max) |
±0.2 |
Measurement range of cetane numbers (CN), CN units |
20-100 |
Acceptable limit of cetane number measurement error, CN units (max) |
±1.0 |
Limit of acceptable difference between parallel cetane number measurements, CN units (max) |
± 0.5 |
Motor oil purity level measurement range, % max |
95 |
Acceptable limit of motor oil purity level measurement error, % max |
0.1 |
Limit of acceptable difference between parallel motor oil purity level measurements, % max |
0.01 |
Fuel and oil dielectric conductivity measurement range, units |
1-5 |
Acceptable limit of dielectric conductivity measurement error, units (max) |
0.001 |
Limit of acceptable difference between parallel dielectric conductivity measurements, units (max) |
0.001 |
Transformer oil disruption voltage measurement range, kV |
5-100 |
Acceptable limit of transformer oil disruption voltage measurement error, kV (max) |
1 |
Limit of acceptable difference between parallel transformer oil disruption voltage measurements, V (max) |
0.2 |
Transformer oil dielectric dissipation measurement range, % |
0.01-5 |
Acceptable limit of transformer oil dielectric dissipation measurement error, % |
0.01 |
Limit of acceptable difference between parallel transformer oil dielectric dissipation measurements, units (max) |
0.001 |
Measurement time, s |
1-5 |
Threshold of low battery voltage indication, V |
5.4 |
overall dimensions
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60 х 100 |
Mass of octanemeter, gr |
680 |
Mean-time-between-failures, hour (min) |
1000 |
The delivery package of Octane Meter SX-200 consists of the following components:
New oil products grade analyzer is manufactured on the basis of advanced high precision microprocessor. the instrument can be used together with a PC a laptop through USB interface. Analyzer uses automatic computer-based calibration, saving measured data in the instrument memory with analysis date and time followed by their transfer to the PC (in Microsoft Excel or txt format). The instrument has easy of control attrition and aggressive environments resistive 8-key antiglare keyboard (made in Germany).
Analyzer SX-300 has a distinctive characteristic, an additional sensor, which measures oil products volume resistivity with high precision. Therefore, fuel analysis may be based on two values, which allows measuring octane number of petrols with ferriferous (ferrocene), nickel and manganese additives, and to determine other substances content.
By using this measurement principle the instrument allows to determine:
When determining petrol breakdown time, the petrol brand is selected in the instrument. The instrument switches to corresponding operating mode. Oxidative stability determination complies with GOST 4039-88 (ASTM D 525)
Motor oil brand identification is based on the permittivity determination principle. Genuine motor oils have certain value for this characteristic. Leading manufacturers’ oil brands are included into the instrument database (the database can be renewed or changed).
Water-in-oil percentage of oil and oil products is determined in compliance with GOST 14203-69 (Dielectric humidity measuring method). This allows using the instrument as a dielectric moisture indicator for oil products.
The instrument uses the timer microchip, which allows storing measurement results with analysis date and time. These data can also be transmitted to the computer.
New computer software is included into the set.
- measurement results are reflected on computer screen in convenient form;
Instrument capabilities:
Determining water-in-oil percentage of oil and oil products. Complies with GOST 14203-69 Oil and oil products. Dielectric humidity measuring method.
Technical characteristics
Parameter description |
Measurement units |
Value |
Measured petrols octane numbers range |
ON |
40–125 |
Acceptable limit of octane number measurement basic error, max |
ON |
± 0.5 |
Limit of acceptable difference between parallel octane number measurements, max |
ON |
± 0.2 |
The determination range of antiknock additives content in petrols |
% |
0.5-15 |
Acceptable basic error limit of antiknock additives content determination in petrols |
% |
0.1 |
Petrol oxidation breakdown time measurement range |
min. |
50-2400 |
Acceptable basic error limit of petrol oxidation breakdown time |
% |
5 |
Petrol quality determination mode basing on volume resistivity |
Om |
10 6-10 14 |
Acceptable basic error limit of volume resistivity measurements |
% |
3 |
Cetane numbers measurement range |
CN |
20–100 |
Acceptable basic error limit of cetane numbers, max |
CN |
±1.0 |
Acceptable difference limit between cetane numbers parallel measurements, max |
CN |
± 0.5 |
Acceptable error limit when determining diesel-fuel pour point |
C o |
± 2 |
Kerosine content determination range in diesel fuels |
% |
0-95 |
Mode for pour point depressants content determination for diesel fuel |
% |
3 |
Acceptable basic error limit when determining kerosene content in diesel fuels |
% |
0.2-1 |
Acceptable basic error limit when determining of pour point depressants content |
% |
0.01 |
Motor oils clarity level measurement range |
% |
95-100 |
Acceptable error limit of motor oils clarity level measurement |
% |
0.1 |
Acceptable difference limit between motor oils clarity parallel measurements |
% |
0.01 |
POL dielectric permeability measurement range |
Unit |
1–5 |
Acceptable error limit of dielectric permeability measurement, max |
Unit |
0.001 |
Acceptable difference limit between POL dielectric permeability parallel measurements, max |
Unit |
0.001 |
Oils base number determination range |
Unit |
0-24 |
Acceptable basic error limit when determining oils basic number |
BN unit |
1 |
Motor oils manufacturer and brand determination |
Manufacturer |
- |
Circuit-breaker oils (dielectrics) breakdown voltage measurement range |
kV |
5–100 |
Acceptable error limit of circuit-breaker oils breakdown voltage measurement, max |
kV |
1 |
Acceptable difference limit between circuit-breaker oils breakdown time parallel measurements, max |
kV |
0.2 |
Measurement range of circuit-breaker oils loss angle tangen |
% |
0.01–40 |
Acceptable error limit of circuit-breaker oils loss angle tangent, max |
% |
0.01 |
Acceptable difference limit between circuit-breaker oils loss angle tangent parallel measurements, max |
Unit |
0.001 |
Determination range for mechanical impurities content in oil products |
% |
97-100 |
Acceptable basic error limit when determining mechanical impurities content in oil products |
% |
0.01 |
Water-in-oil content determination range for oil products |
% |
0-30 |
Acceptable basic error limit when determining water-in-oil content of oil products |
% |
1 |
Measurement time |
s |
1–5 |
Insufficient power supply indication operation threshold |
V |
5.4 |
Instrument useful life |
years |
6 |
Overall dimensions of: |
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electronic module |
mm |
100х210х40 |
sensor #1 and #2: |
mm |
60х100 |
Instrument mass with one sensor/two sensors |
gr |
850 |
Delivery package:
Portable laboratory for sample taking and on-line acceptance analysis of fuel with standard and express methods. The analysis results allow to estimate with great accuracy the fuel quality in conditions when analysis in stationary labs is not possible. The laboratory set allows to measure up 19 basic parameters of fuel quality. The test methods are as follows: Institute of Petroleum Chemistry, GOST, 25 GosNII Himmotologiyi MP RF, Joint stock company Sorbpolimer.
№ |
Description of quality metrics |
Method of testing |
1. |
Determination of gas octane number by motor and research methods |
method of the Institute of petroleum chemistry |
2. |
Determination of diesel fuel cetane number |
method of the Institute |
3. |
Determination of lead content in gas |
M 32.137-9625 GosNII MO RF method |
4. |
Oil product density detection |
GOST 3900-85 |
5. |
Determination of mechanical impurities and water |
GOST 2084-77 Paragraph 4.4 |
6. |
Car gas color detection |
Visual |
7. |
Content determination of heavy hydrocarbon |
GOST 2084-77 Paragraph 4.7 |
8. |
Resin content determination in gasoline |
method 25 of GosNII MO RF |
9. |
Determination of liquid coolant content and freezing temperature by its density. |
User's manual for cooling liquid handling |
10. |
Sampling of oil product |
GOST 2517-85 |
11. |
Quantitative determination of water in tank (tank-truck, tank wagon) |
GOST 2517-85 |
12. |
Oil product bottom sampling from tanks, and determination of settling water, and mechanical impurities. |
GOST 2517-85 |
13. |
Determination of water content in anti-crystallization additives. |
GOST 8313-88 |
14. |
Determination of anti-crystallization liquids in jet engine fuels. |
Method of JSC Sorbpolimer |
15. |
Determination of undissolved water content |
Method of JSC Sorbpolimer |
16. |
Determination of total water content (quantitative method) |
Method of JSC Sorbpolimer |
17. |
Determination of acid electrolyte density |
GOST 3900-85 |
18. |
Determination of cleaning additives content in gasoline |
Method 25 of GosNII MO RF |
19. |
Determination of ferrocene content in gasoline |
Method of JSC Sorbpolimer |
№ |
Element |
measure |
quantity |
1. |
Octane tester |
set |
1 |
2. |
Sample collecting device |
set |
1 |
3. |
Areometer ANT-2 0.670-0.750 |
pcs. |
1 |
4. |
Areometer ANT-2 0.750-0.830 |
pcs. |
1 |
5. |
Areometer ANT-2 0.830-0.910 |
pcs. |
1 |
6. |
Spare batteries |
pcs. |
4 |
7. |
Graduated cylinder 100 ml |
pcs. |
1 |
8. |
Graduated cylinder 250 ml |
pcs. |
1 |
9. |
Areometer AON-1 1.060-1.120 |
pcs. |
1 |
10. |
Areometer AON-1 1.240-1.300 |
pcs. |
1 |
11. |
Areometer AON-1 1.360-1.420 |
pcs. |
1 |
12. |
Measuring beaker 100 ml |
pcs. |
1 |
13. |
Water indicator paste |
g. |
40 |
14. |
Evaporation bowl |
pcs. |
1 |
15. |
Indicator tubes CF (yellow stripe) for detection of ferrocenes in gasoline |
pcs. |
10 |
16. |
Indicator tubes TEL (red stripe) for detection of lead (tetraethyl lead) in gasoline |
pcs. |
10 |
17. |
Indicator tubes WAA (no marking) for detection of fuel detergents in gasoline, water-soluble acids and alkali in light oil products |
pcs. |
10 |
18. |
Indicator tubes ACL (black stripe) for detection of anticrystallizing agents in fuel for jet engines |
pcs. |
10 |
19. |
Indicator tubes CW-10 (blue stripe) for detection of accumulated water in motor fuel |
pcs. |
10 |
20. |
Indicator tubes CW-50 (orange stripe) for detection of dissolved water in anticrystallizing agents, alcohols, aldehydes and ketones |
pcs. |
10 |
21. |
Indicator tubes UW-15 (green stripe) for detection of undissolved water in motor fuel |
pcs. |
10 |
22. |
Plastic dropping pipette |
pcs. |
1 |
23. |
Syringe |
pcs. |
5 |
24. |
Hard Eminent case |
pcs. |
1 |
25. |
Lab set documentation |
set |
1 |
26. |
Ruler |
pcs. |
1 |
27. |
A4 paper |
set |
1 |
28. |
Pencil |
pcs. |
1 |
29. |
Modeling clay |
g |
10 |
30. |
Filter paper |
set |
1 |
31. |
Pusher for indicator tubes |
pcs. |
1 |
32. |
Bulb rubber syringe |
pcs |
1 |
33. |
CITIZEN calculator |
pcs |
1 |
№ |
Document |
1. |
The compound and freezing temperature test of the refrigerating fluid by its density |
2. |
Express method for determination of gum content in motor petrol |
3. |
Methods for express determination of heavy hydrocarbons content in petrol |
4. |
Practical recommendations for fuel density determination by areometer in accordance with GOST 3900-85 |
5. |
Practical recommendations for fuel density determination by diagram method |
6. |
Practical recommendations for electrolyte density determination |
7. |
GOST 3900-85 Methods for determination of density |
8. |
Methods for express determination of detergent additive content in petrol |
9. |
D 1298 – 99e2 Standard Test Method for Density, Relative Density (Specific Gravity), or API Gravity of Crude Petroleum and Liquid Petroleum Products by Hydrometer Method |
10. |
ASTM D4057 Standard Practice for Manual Sampling of Petroleum and Petroleum Products |
11. |
Express determination of lead content in petrol |
12. |
Method for determination of ferrocene content in gasoline (IT-CF). Certificate for IT-CF |
13. |
Method for tetraethyl-lead determination in motor gasoline using the indicator-adsorption method (IT-TEL). Certificate for IT-TEL |
14. |
Method for determination of qualitative definition of water-soluble acids and alkalis in light mineral oil ( IT-WAA ). Certificate for IT-WAA |
15. |
Method for determination of anti-crystallization liquids (ACL) in jet aircraft fuels using the indicator-adsorption method (IT-ACL). Certificate for IT-ACL |
16. |
Method for determination of water content in anti-crystallization liquids using the indicator-adsorption method (IT-CW-50). Certificate for IT-CW-50 |
17. |
Method for determination of total water in motor fuels using the indicator-adsorption method (IT-CW-10). Certificate for IT-CW-10 |
18. |
Method for determination of undissolved water in motor fuels using the indicator-adsorption method (IT-UW-15). Certificate for IT-UW-15 |
19. |
Certificate for sampling unit PPN-150 |
20. |
User manual for Octane meter |
21. |
Technical capabilities of laboratory set 2M7 |
22. |
Laboratory set elements lay-out |
This is aimed for sampling and carrying out commissioning tests of all kinds of fuels outside of laboratory. This laboratory set comprising octanemeter SX-100M, SX-100K, SX-200 or SX-300 analyzer.
All the necessary devices are packed in a special case. We offer you one of the most complete measuring sets for express-control over fuel quality in field conditions. Due to its small dimensions (case) as well as constant availability for service, the laboratory set provides the possibility of express-analysis of quality index for incoming fuel in any place and at the earliest possible date. The laboratory set is used for oil products sampling and seabed sampling of oil products from reservoirs. It also serves to determine the presence of sewage and mechanical impurities.
جهت تعیین اکتان بنزین ، ستان دیزل ، دمای انجماد و نوع سوخت دیزلی و اندازه گیری رسانایی
مشخصات فنی :
محدوده اندازه گیری میزان اکتان: ۴۰ الی ۱۲۰
خطای اندازه گیری: ۰/۵
محدوده اندازه گیری میزان ستان: ۲۰ الی ۱۰۰
محدوده اندازه گیری میزان خلوص روغن: ۹۵ درصد
محدوده اندازه گیری رسانایی روغن و سوخت ۱ الی ۵
مدت زمان اندازه گیری : ۱ الی ۵ ثانیه
ابعاد : ۲۵*۲۱۰*۱۰۰ میلی متر
وزن: ۶۸۰ گرم
ساخت کمپانی Shatox روسیه