GA-EDX 9800 XRF Spectrometer Energy Dispersive X-Ray Fluorescence Analyzer Tester Device for Mineral Analysis
Simply the Best
• American AmpTek -SDD detector, high resolution and high count rate
• Element analysis range up to 42 elements
• Highest performance and lowest levels of detection
• Customize your testing solutions
• Advanced exploration and soil analysis
• Mud logging
• Specialty applications in oil/gas
• Ore deposit modeling/mapping
• Enhanced light element analysis
• Bauxite and penalty elements in coal and Fe ore
• Industrial minerals including limestone for cement production
• Optional sample holder/pellet for reducing sample heterogeneity issues
GA-EDX 9800 Energy Dispersive Fluorescence Spectrometer-Mineral Analysis Expert
GA-EDX 9800 provides exceptional accuracy at all concentration levels. It also offers rapid (typically 2 to 3 minutes) turnaround. Bringing unprecedented precision and speed to the field makes GA-EDX 9800 ideal for applications. Such as analyzing cores - e.g., to detect shale gas boundary layers - enabling fast direction changes that maximize drilling productivity.
GA-EDX 9800 analyzer's purchase price is highly competitive with other instruments in its class. In many cases, it is also half the price of larger laboratory instruments. Furthermore, with direct improvements in mining or exploration productivity due to rapid availability of accurate information, GA-EDX 9800 delivers an outstanding return on Investment
GA-EDX 9800 XRF Spectrometer Energy Dispersive X-Ray Fluorescence Analyzer Tester Device for Mineral Analysis
Production and Mineral Processing
Fast, laboratory-grade sample analysis is made simple: test your samples on site with little or no sample preparation. Achieve the accuracy needed to provide defensible data for process control, quality assurance, and other operational decisions.
• Grade control
• Delineate ore and waste boundaries
• Ore trading
• Concentrate measurement
Industrial Minerals
GA-EDX 9800 XRF analyzer is an emerging instrument of choice for in-quarry exploration and evaluating the composition of raw materials such as phosphate, potash, gypsum, and limestone for industrial use.
• Ideal for determining penalty elements in limestone, Fe ore, and bauxite
• Blending and sorting of raw materials
• Instantly flag grade, sub-grade, and waste, and prevent taking ore to the waste heap
EDXRF Introduction
EDXRF instrumentation separates the characteristic x-rays of different elements into a complete fluorescence energy spectrum which is then processed for qualitative or quantitative analysis.
EDXRF technology is a convenient way to screen all kinds of materials for quick identification and quantification of elements from Sodium (Na) to Uranium (U).
EDXRF instruments may be either handheld or portable depending on user preference, making them the perfect tool for in-field analysis, and providing instant feedback to the user without the long trip to the laboratory. Low cost of ownership and rapid elemental analysis of any sample type make EDXRF an attractive front-end analysis tool.
X-Ray Fluorescence (XRF) Analysis (or Spectrometry): an instrumental, comparative analytical method
Based on phenomenon of near-instantaneous emission (fluorescence) of quanta of characteristic energy by atoms of material irradiated by external X, or gamma radiation of appropriate energy (wavelength)
Radioisotopes or X-ray tubes are used as sources of external radiation to excite sample
GA-EDX 9800 XRF Spectrometer Energy Dispersive X-Ray Fluorescence Analyzer Tester Device for Mineral Analysis
Instrument Specifications
Size of Spectrometer: 560mm*380mm*410mm |
Size of sample chamber:460mm*310mm*95mm |
Size of Vacuum sample chamber:Φ150mm×75mm |
Weight: 45Kg |
Element Range:Na11-U92 |
Analysis content range:1ppm- 99.99% |
Detector:AmpTek high resolution SDD |
DPP Analyzer: 4096 Channel DPP analyzer |
Excitation Source:50W X-ray tube |
HV unit:0-50kV |
Power supply:220ACV 50/60HZ |
Environment:-10 °C to 35 °C |
Accessory
Standard |
Optional |
Ag- Calibration standard |
Mill machine |
Vacuum pump |
Sample pressing machine |
Sample cup |
Drying oven |
USB cable |
Fusing bead machine |
Power supply cable |
Balance |
Test Mylar |
Mineral Standard samples |
Calibration report |
Power stabilizer |
Warranty card |
|
Powerful and user-friendly testing software
Speed: Our XRF analyzer offers real-time analysis capabilities to enable quick decisions, including whether to drill or not to drill, equipment relocation considerations, where to focus on the grid, and when to take a proper sample for laboratory analysis.
Real-Time Reporting: Field analyses provide for faster delineation of drill targets for timely operational and financial reporting back to management and/or investors.
Increased Sample Density:Running more assays in the field allows for finer grid resolution and the ability to send prequalified samples to an off-site laboratory. With improved statistics, this high-density analysis produces a more comprehensive picture of the target than the exclusive use of the traditional bag and lab method.
Repeatability Test performance of Iron ore sample
Test Times /Element |
Fe(%) |
SiO2(%) |
TiO2(%) |
MnO(%) |
Zn(%) |
S(%) |
P(%) |
Pb(%) |
K2O(%) |
1_1 |
65.4014 |
6.6936 |
0.1123 |
0.0489 |
0.0090 |
0.8309 |
0.0118 |
0.0076 |
0.0684 |
1_2 |
65.4336 |
6.6575 |
0.1038 |
0.0465 |
0.0095 |
0.9092 |
0.0121 |
0.0075 |
0.0667 |
1_3 |
65.3603 |
6.7127 |
0.1132 |
0.0495 |
0.0093 |
0.8903 |
0.0119 |
0.0071 |
0.0677 |
1_4 |
65.3935 |
6.7233 |
0.1278 |
0.0483 |
0.0097 |
0.8303 |
0.0117 |
0.0068 |
0.0684 |
1_5 |
65.3812 |
6.7145 |
0.1058 |
0.0493 |
0.0097 |
0.8303 |
0.0117 |
0.0066 |
0.0684 |
1_6 |
65.3905 |
6.7421 |
0.1021 |
0.0503 |
0.0097 |
0.8303 |
0.0117 |
0.0065 |
0.0684 |
1_7 |
65.3603 |
6.7041 |
0.1075 |
0.0495 |
0.0093 |
0.8903 |
0.0119 |
0.0071 |
0.0677 |
1_8 |
65.4161 |
6.7280 |
0.1086 |
0.0461 |
0.0093 |
0.8938 |
0.0115 |
0.0074 |
0.0668 |
1_9 |
65.4320 |
6.7036 |
0.1182 |
0.0512 |
0.0096 |
0.9005 |
0.0120 |
0.0079 |
0.0669 |
1_10 |
65.4546 |
6.7707 |
0.1072 |
0.0502 |
0.0097 |
0.8868 |
0.0121 |
0.0067 |
0.0677 |
Average |
65.4024 |
6.7150 |
0.1107 |
0.0490 |
0.0095 |
0.8693 |
0.0118 |
0.0071 |
0.0677 |
SD |
0.0316 |
0.0300 |
0.0077 |
0.0016 |
0.0002 |
0.0340 |
0.0002 |
0.0005 |
0.0007 |
RSD |
0.0483% |
0.4466% |
6.9348% |
3.3142% |
2.5743% |
3.9090% |
1.6512% |
6.6142% |
1.0337% |
Test Times /Element |
Na2O (%) |
MgO (%) |
Al2O3 (%) |
As (%) |
Cr (%) |
Ni (%) |
Cu (%) |
Sn (%) |
CaO (%) |
1_1 |
0.0203 |
0.7523 |
0.5222 |
0.0065 |
0.1636 |
0.0760 |
0.0476 |
0.0131 |
0.6359 |
1_2 |
0.0232 |
0.8134 |
0.5230 |
0.0061 |
0.1584 |
0.0787 |
0.0488 |
0.0114 |
0.6336 |
1_3 |
0.0213 |
0.8059 |
0.5407 |
0.0071 |
0.1667 |
0.0796 |
0.0494 |
0.0144 |
0.6345 |
1_4 |
0.0216 |
0.7635 |
0.5234 |
0.0072 |
0.1640 |
0.0761 |
0.0485 |
0.0131 |
0.6267 |
1_5 |
0.0223 |
0.7815 |
0.5334 |
0.0072 |
0.1640 |
0.0751 |
0.0485 |
0.0131 |
0.6267 |
1_6 |
0.0222 |
0.7311 |
0.5512 |
0.0072 |
0.1640 |
0.0741 |
0.0485 |
0.0131 |
0.6267 |
1_7 |
0.0212 |
0.7559 |
0.5407 |
0.0071 |
0.1667 |
0.0756 |
0.0494 |
0.0144 |
0.6345 |
1_8 |
0.0249 |
0.7737 |
0.5233 |
0.0068 |
0.1576 |
0.0760 |
0.0471 |
0.0131 |
0.6324 |
1_9 |
0.0204 |
0.7712 |
0.5123 |
0.0064 |
0.1659 |
0.0750 |
0.0475 |
0.0140 |
0.6241 |
1_10 |
0.0236 |
0.8017 |
0.5435 |
0.0071 |
0.1663 |
0.0730 |
0.0489 |
0.0130 |
0.6414 |
Average |
0.0221 |
0.7750 |
0.5314 |
0.0069 |
0.1637 |
0.0759 |
0.0484 |
0.0133 |
0.6317 |
SD |
0.0015 |
0.0261 |
0.0123 |
0.0004 |
0.0033 |
0.0020 |
0.0008 |
0.0009 |
0.0054 |
RSD |
6.6056% |
3.3702% |
2.3177% |
5.8244% |
1.9863% |
2.5892% |
1.6256% |
6.5508% |
0.8578% |