Epsilon 1 - Malvern Panalytical XRF Spectrometer

Flexible and accurate Elemental analysis

Looking for a flexible, yet simple-to-use, analytical instrument for accurate elemental analysis?

Epsilon 1 allows screening and quantification by XRF for a wide variety of applications for many types of samples. With little to no sample preparation, bulk samples can be quantified, analyzing elements from sodium to americium across the periodic table. Since XRF is a non-destructive technique, the sample can also be measured subsequently by other analytical techniques, if required. Epsilon 1’s software has the flexibility to perform basic to more sophisticated analyses. It contains all features needed to obtain accurate results and it can also be augmented to meet advanced analytical requirements while keeping the usability for routine operators simple. Designed for the most stringent analytical protocols, the software also includes a wealth of expandable optional modules. PANalytical has a strong reputation for safe and high-end X-ray instrumentation. Epsilon 1 is built using PANalytical’s market-leading technology with superior quality, worldwide service and application support. Application training courses and expertise are available upon request.

The Epsilon 1 X-ray fluorescence (XRF) spectrometer is an ideal analytical solution. It is capable of simple element identification and quantification up to more sophisticated analysis. It is an easy-to-operate, compact and X-ray safe instrument without the need for additional chemicals or operating gasses. Considerable savings in time and cost are two of the many benefits XRF can bring compared to alternative analytical techniques. Epsilon 1 can be used for method development in the R&D laboratories and quality control and process control in the production facilities. The small footprint and self-contained design makes the Epsilon 1 an ideal analytical solution for process control to be placed close to the production line.

H 1 1.008 Li 3 6.941

He 2 4.003 Ne 10 20.180 Ar 18 39.948 Kr 36 83.80 Xe 54 131.29 Rn 86 (222)

Z

Possible to analyze with Epsilon 1

Ra 88 226.02 Ba 56 137.33 Be 4 9.012 Mg 12 24.31 Ca 20 40.08 Sr 38 87.62

B 5 10.81

C 6

N 7

O 8

F 9

Z

Not possible to analyze with Epsilon 1

12.011

14.007

15.999

18.998

Na 11 22.990 K 19 39.098 Rb 37 85.47 Cs 55 132.905 Fr 87 (223)

Ga 31 69.72 Al 13 26.98 In 49 114.82 Tl 81 204.38

Ge 32 72.61 Si 14 28.09 Sn 50 118.71 Pb 82 207.21

P 15

S 16

Br 35 79.904 Cl 17 35.453

30.974

32.066

Sc 21 44.96 Y 39 88.906

Ti 22 47.88 Zr 40 91.22 Hf 72 178.49

V 23 50.94 Nb 41 92.91 Ta 73 180.95

Cr 24 52.00 Mo 42 95.94 W 74 183.85

Mn 25 54.94 Tc 43 (98) Re 75 186.2

Fe 26 55.85 Ru 44 101.1 Os 76 190.2

Co 27 58.93 Rh 45 102.95 Ir 77 192.2

Ni 28 58.69 Pd 46 106.4 Pt 78 195.08

Cu 29 63.55 Ag 47 107.87 Au 79 196.97

Zn 30 65.39 Cd 48 112.41 Hg 80 200.59

As 33 74.92 Sb 51 121.75 Bi 83 208.98

Te 52 127.60 Se 34 78.96 Po 84 (209)

I 53

126.90

At 85 (210)

L A

La 57 138.91 Ac 89 (227)

Ce 58 140.12 Th 90 232.04

Pr 59 140.91 Pa 91 231.04

Nd 60 144.24

Pm 61 (145) Np 93 237.05

Sm 62 150.36 Pu 94 (244)

Eu 63 151.97 Am 95 (243)

Gd 64 157.25 Cm 96 (247)

Tb 65 158.93 Bk 97 (247)

Dy 66 162.50 Cf 98 (251)

Ho 67 164.93 Es 99 (252)

Er 68 167.26 Fm 100 (257)

Tm 69 168.96 Md 101 (258)

Yb 70 173.04 No 102 (259)

Lu 71 174.97 Lr 103 (260)

L A

U 92

238.03

Epsilon 1 spectrometer

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