UOP 961-2012 Elemental Composition of Zeolites by ICP-OES.pdf
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1、 IT IS THE USERS RESPONSIBILITY TO ESTABLISH APPROPRIATE PRECAUTIONARY PRACTICES AND TO DETERMINE THE APPLICABILITY OF REGULATORY LIMITATIONS PRIOR TO USE. EFFECTIVE HEALTH AND SAFETY PRACTICES ARE TO BE FOLLOWED WHEN UTILIZING THIS PROCEDURE. FAILURE TO UTILIZE THIS PROCEDURE IN THE MANNER PRESCRIB
2、ED HEREIN CAN BE HAZARDOUS. MATERIAL SAFETY DATA SHEETS (MSDS) OR EXPERIMENTAL MATERIAL SAFETY DATA SHEETS (EMSDS) FOR ALL OF THE MATERIALS USED IN THIS PROCEDURE SHOULD BE REVIEWED FOR SELECTION OF THE APPROPRIATE PERSONAL PROTECTION EQUIPMENT (PPE). COPYRIGHT 1998, 2012 UOP LLC. All rights reserve
3、d. Nonconfidential UOP Methods are available from ASTM International, 100 Barr Harbor Drive, P.O. Box C700, West Conshohocken, PA 19428-2959, USA. The UOP Methods may be obtained through the ASTM website, www.astm.org, or by contacting Customer Service at serviceastm.org, 610.832.9555 FAX, or 610.83
4、2.9585 PHONE. Elemental Composition of Zeolites by ICP-OES UOP Method 961-12 Scope This method is for the determination of components in zeolites by Inductively Coupled Plasma-Optical Emission Spectroscopy (ICP-OES), following either a digestion or a fusion preparation. Ordinarily, the metals determ
5、ined include aluminum (Al), calcium (Ca), cobalt (Co), chromium (Cr), copper (Cu), iron (Fe), gallium (Ga), potassium (K), lithium (Li), magnesium (Mg), manganese (Mn), molybdenum (Mo), sodium (Na), nickel (Ni), phosphorus (P), antimony (Sb), silicon (Si), tin (Sn), strontium (Sr), titanium (Ti), va
6、nadium (V), zinc (Zn), and zirconium (Zr). Barium (Ba) and lead (Pb) cannot be determined in the digest due to the formation of insoluble sulfates. Barium can be determined from the fusion solution with a quantitation limit of approximately 0.01 mass-%. This method is suitable for samples containing
7、 less than 40 mass-% alumina (Al2O3) and less than 65 mass-% silica (SiO2); however, it can be readily expanded to samples with other silica/alumina ratios utilizing the same approach as described herein. Zirconium (Zr) at levels above about one mass-% can interfere with the analysis for aluminum wh
8、en using some instruments, unless an alternative wavelength is used. Precision is about 1 to 2% relative standard deviation for elements present at concentrations greater than 0.1 mass-%. Mass balances between 98.5 and 101.5 mass-% are reported on a volatile-free basis. Precision below 0.1 mass-% do
9、es not exceed 10% relative down to the quantitation limits listed in Table 1. References UOP Method 954, “Loss on Ignition (LOI) for Fresh, Regenerated, Used, and Spent Catalysts, Catalyst Supports, and Adsorbents,” www.astm.org UOP Method 999, “Precision Statements in UOP Methods,“ www.astm.org Out
10、line of Method The elements of interest are determined utilizing two dissolution techniques. For Si and Al, a portion of the zeolite sample is fused with lithium tetraborate and the resulting melt is dissolved in 5% hydrochloric acid. The resulting solution is analyzed by ICP and the concentrations
11、of Si and Al are determined by comparison to a NIST standard prepared in the same manner as the samples. The other components are determined following a digestion with sulfuric and hydrofluoric acids. The resulting solution is analyzed by ICP and the concentrations of metals are determined by compar
12、ison 2 of 12 961-12 to a standard solution of similar elemental and sulfuric acid concentrations. Results are reported on a volatile-free basis, with the loss on ignition (LOI) determined at 900C by UOP Method 954, “Loss on Ignition (LOI) for Fresh, Regenerated, Used, and Spent Catalysts, Catalyst S
13、upports, and Adsorbents.” Table 1 Lower Quantitation Limits for Elements Quantitation limits, Approximate mass-% Element g/mL in solution in solid as element Al 0.2 0.008 Ca 0.1 0.004 Co 0.1 0.004 Cr 0.1 0.004 Cu 0.1 0.004 Fe 0.1 0.004 Ga 0.2 0.008 K 0.2 0.008 Li 0.2 0.008 Mg 0.1 0.004 Mn 0.1 0.004
14、Mo 0.2 0.008 Na 0.2 0.008 Ni 0.1 0.004 P 0.4 0.016 Sb 0.2 0.008 Si 0.4 0.016 Sn 0.2 0.008 Sr 1.0 0.040 Ti 0.1 0.004 V 0.1 0.004 Zn 0.1 0.004 Zr 0.1 0.004 Apparatus References to catalog numbers and suppliers are included as a convenience to the method user. Other suppliers may be used. Balance, read
15、able to 0.0001 g Balance, top-loading, readable to 0.01 g Beaker, quartz, 250-mL, Ace Glass, Cat. No. 5334-14 Beaker, PTFE, 100- and 250-mL, Fisher Scientific, Cat. Nos. 02-586-1G and -1H, respectively Bottles, 500-mL, wide mouth, FEP, Fisher Scientific, Cat. No. 02-924-15E, several required Bottle,
16、 washing, one-liter, polypropylene, Fisher Scientific, Cat. No. 03-409-14C Burner, blast, VWR Scientific, Cat. No. 89038-548 Crucible, high form, platinum, 25-mL, Cole Parmer, Cat. No. EW-17830-45 Cylinder, graduated, polypropylene, 10-mL, Fisher Scientific, Cat. No. 03-007-38 3 of 12 961-12 Cylinde
17、rs, graduated, 50- and 100-mL, Fisher Scientific, Cat. Nos. 08-552-4B and -4C, respectively Flasks, volumetric, Class A, 500- and 2000-mL, Fisher Scientific, Cat. Nos. 10-210F, and -210H, respectively, several of each required Flasks, volumetric, 100- and 500-mL, PMP, Fisher Scientific, Cat. Nos. 10
18、-198-52C and -52F, respectively Flasks, volumetric, 100-mL, polypropylene, Fisher Scientific, Cat. No. 10-198-50B Funnel, 55-mm diameter, Fisher Scientific, Cat. No. 10-371H Fluxer, Claisse (optional), with necessary crucibles and other equipment, Claisse, Model Fluxy-30; replacement crucible, Cat.
19、No. P-130-00 Hot plate, stirring, variable heat, Fisher Scientific, Cat. No. 11-300-49SHP Hot plate, variable heat, Corning Model PC-600, Fisher Scientific, Cat. No. 11-100-49H Inductively Coupled Plasma-Optical Emission Spectrometer (ICP-OES), Perkin-Elmer Optima 8300DV Mortar and pestle, agate, Fi
20、sher Scientific, Cat. No.12-950B Muffle furnace (optional), capable of 1000C. The interior surface of the furnace must be of non-flaking material or sample contamination may result. Oven, drying, capable of 105C Pipets, total volume, Class A, 5-, 10-, 15-, 20-, and 25-mL, Fisher Scientific, Cat. Nos
21、. 13-650-2F, -2L, -2M, -2N, and -2P, respectively, several of each required Regulator, nitrogen, two-stage, high purity, delivery pressure range 30-700 kPa (4-100 psi), Matheson Tri-Gas, Model 3122-580 Stir bar, magnetic, PTFE coated, 3 x 13-mm, Fisher Scientific, Cat. No. 14-513-57 Tongs, crucible,
22、 stainless steel, lock joint, platinum shoes, Fisher Scientific, Cat. No. 15-205 Triangle, nickel-chromium, 2-inch (51-mm), Fisher Scientific, Cat. No. 15-260B Vacuum Desiccator, Corning No. 3118-160, Fisher Scientific, Cat. No. 08-632 Watch glass, borosilicate glass, 90-mm diameter, Fisher Scientif
23、ic, Cat. No. 02-612C Watch glass, PTFE, 100-mm, Fisher Scientific, Cat. No. 02-610-5E Reagents and Materials References to catalog numbers and suppliers are included as a convenience to the method user. Other suppliers may be used. References to water mean deionized water. Argon, 99.995% minimum pur
24、ity, plasma and nebulizer gas Gloves, nitrile, Fisher Scientific, Cat. No. 11-393-64A through -64E, corresponding to hand sizes 7 through 11 Hydrochloric acid, concentrated, trace metal grade, Fisher Scientific, Cat. No. A508SK212 4 of 12 961-12 Hydrochloric acid, 5% (vol/vol). Fill a 2000-mL flask
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