|
ATOMIC ABSORPTION SPECTROPHOTOMETRY COOKBOOK
Section 3-1
Measuring Conditions by Element of Flame Atomic
Absorption Spectrophotometry
Atomic Absorption Spectrophotometry Cookbook
Section 3
CONTENTS
6. Measuring Conditions by Element of
Flame Atomic Absorption Spectrophotometry 1
6.1 Measuring concentration 1
6.2 Measuring conditions 1
6.3 Background correction method and interference 1
6.4 Measuring conditions by element 1
1) Silver (Ag) 2
2) Aluminum (Al) 3
3) Arsenic (As) 4
4) Gold (Au) 5
5) Boron (B) 6
6) Barium (Ba) 7
7) Beryllium (Be) 8
8) Bismuth (Bi) 9
9) Calcium (Ca) I 10
10) Calcium (Ca) II 11
11) Cadmium (Cd) 12
12) Cobalt (Co) 13
13) Chromium (Cr) 14
14) Cesium (Cs) 15
15) Copper (Cu) 16
16) Iron (Fe) 17
17) Gallium (Ga) 18
18) Germanium (Ge) 19
19) Potassium (K) 20
20) Lithium (Li) 21
21) Magnesium (Mg) 22
22) Manganese (Mn) 23
23) Molybdenum (Mo) 24
24) Sodium (Na) 25
25) Nickel (Ni) 26
26) Lead (Pb) I 27
27) Lead (Pb) II 28
28) Palladium (Pd) 29
29) Platinum (Pt) 30
30) Rubidium (Rb) 31
31) Rhodium (Rh) 32
32) Antimony (Sb) 33
33) Selenium (Se) 34
34) Silicon (Si) 35
35) Tin (Sn) I 36
36) Tin (Sn) II 37
37) Tin (Sn) III 38
38) Tin (Sn) IV 39
39) Strontium (Sr) 40
40) Tellurium (Te) 41
41) Titanium (Ti) 42
42) Thallium (Tl) 43
43) Vanadium (V) 44
44) Zinc (Zn) 45
6. Measuring Conditions by Element of
Flame Atomic Absorption Spectrophotometry
6.1 Measuring concentration
The solution prepared on the basis of the standard sample preparation method in the cookbook section 2 - 3 is used to make the calibration curve in the standard concentration range. Because absorbance is 0.044 to 0.3 in the cookbook section 2 - 4, the upper and lower limits of the calibration line are obtained from the above data to determine the practical measuring concentration range. |