UOP 967-2012 Automated Crush Strength of Spherical and Extruded Catalysts.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 2000, 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. Automated Crush Strength of Spherical and Extruded Catalysts UOP Method 967-12 Scope This method is for determining the piece crush strength (PCS) of spherical and extruded catalysts using the Lloyds LS1 motorized sample stand fitted with a load cell. The method applies primarily to pa
5、rticles having a nominal diameter of 1.6-mm (1/16-inch), but may also be used for particles up to 3.2-mm (1/8-inch) in diameter. The measurement range is from 1 N (Newtons) to 500 N. Test apparatus other than the Lloyds may be used provided comparable results are obtained. For statistical purposes,
6、the number of particles crushed is set at a minimum of 50, however, more may be analyzed to improve the precision of the PCS measurement. Data generated using this method can be made comparable to those generated using UOP Method 914, “Automated Crush Strength of Catalysts or Molecular Sieves,” and
7、UOP Method 973, “Automated Crush Strength of Extruded Catalysts,” if instrument parameters are set to specific values. General instrument settings that can be used for the Lloyd instrument are listed in Appendix A. References Lloyds LS1 Instrument Manual, included with instrument Nexygen Plus Softwa
8、re Manual, included with instrument UOP Method 914, “Automated Crush Strength of Catalysts or Molecular Sieves,” www.astm.org UOP Method 973, “Automated Crush Strength of Extruded Catalysts,” www.astm.org UOP Method 999, “Precision Statements in UOP Methods,” www.astm.org Outline of Method A represe
9、ntative sample of catalyst (spherical or extrudate) is riffled to obtain approximately, but not less than, 50 pieces. Moisture content affects crush strength. Therefore, by default, the catalyst is heated to bring the moisture content to a low, consistent level. The sample may also be non-heated per
10、 customer request. Each catalyst piece is placed between the measuring load cell and the flat base plate and subjected to a compressive load. The peak force required to crush the piece is recorded and the procedure is repeated until a minimum of 50 pieces in the riffled sample have been crushed. The
11、 average crush strength is calculated at the conclusion of the test. The percent of pieces which crush above or below a given value (product specification or customer driven) is reported. In addition, the 2 of 7 967-12 crush strength data can be graphically displayed as a histogram. Results are repo
12、rted in Newtons (N) but other units can be calculated. Apparatus References to catalog numbers and suppliers are included as a convenience to the method user. Other suppliers may be used. Brush, round, camels hair, Fisher Scientific, Cat. No. 03-670, or, VWR, Cat. No. 17216-048 Calibration weights,
13、Class 3, Fisher Scientific, Cat. No. 02-225-26P Computer, personal, for running Nexygen software, and capable of running ExcelTM, MinitabTM or similar software to develop a histogram and perform post-analysis calculations; see Nexygen software for minimum requirements and compatibility, JLW Instrume
14、nts Printer, any model compatible with the computer Crucible, porcelain, Coors 60230, Fisher Scientific, Cat. No. 08-693A, or, VWR, Cat. No. 25313-039 Forceps, blunt-pointed, straight, 127-mm length, Fisher Scientific, Cat. No. 08-890, or, VWR, Cat. No. 25720-043 Hot plate, capable of 200C, Fisher S
15、cientific, Cat. No. 11-600-16H, or, VWR, Cat. No. 12365-450 Muffle furnace, capable of 500C, VWR, Cat. No. 30604-158 Riffler, Fisher Scientific, Cat. No. 04-942D, or, VWR, Cat. No. 56720-083 Software (optional), Minitab or other equivalent for displaying histogram, and Excel or equivalent for post-a
16、nalysis calculations Software (required), Nexygen Plus, to control the LS1 and collect data from load cell, JLW Instruments Surface temperature disc, used to verify hotplate temperature, PTC Instruments Test stand and gauge, Lloyds, Cat. No. Machine Type LS1 Motorized Test Stand with Cat. No. 500N a
17、nd Cat. No. 20N Load Cells with Cat. No. 100N and Cat. No. 5N Futek sensors, respectively, JLW Instruments. The instrument includes flat and chisel tips. Use the flat tip for spheres and the chisel tip for extrudates. Reagents and Materials References to catalog numbers and suppliers are included as
18、 a convenience to the method user. Other suppliers may be used. Reference catalysts, spherical or extruded, the same type as samples Procedure The analyst is expected to be familiar with general laboratory practices and the equipment being used. Dispose of all used reagents, materials, and samples i
19、n an environmentally safe manner according to local regulations. Validation and Calibration The Lloyds instrument manual must be read and thoroughly understood before use. Validate 3 of 7 967-12 instrument performance as per the manufacturers instructions monthly when samples are being analyzed, or
20、when indicated by rule violations, trend shifts, or out of control SPC data. Detailed instructions for instrument calibration are supplied by the instrument manufacturer and are given in Appendix B. It is recommended that the user select suitable reference material for weekly quality control measure
21、ment. This material should be uniform and sufficient material should be obtained to last for at least six months, preferably one to five years. The reference should be well riffled and stored in sealed containers to reduce moisture absorption. Instrument Setup 1. Set the Lloyds reference point to 18
22、.5 mm for all materials sizes up to 3.2-mm diameter following the manufacturers instructions. 2. Select and run appropriate analysis program in the NexyGen Plus software. Table 1 lists general parameter settings for the available choices. Other instrument parameters may be used, based upon the sampl
23、e type. It is the laboratorys responsibility to show correlation with the general parameter settings. To avoid confusion, the parameters in Table 1 are listed as they appear on the instrument screen. Not all parameters are used. Test Code and Test Name designations may differ from site to site. Tabl
24、e 1 General Parameter Settings, Lloyds Instrument Test Direction: Compression Preload/Stress: NA Preload Speed: 120 mm/min Test Speed: Extension Rate: NA Automatically Zero at Start: Load at Extension Return to Zero Sample Height: No parameters checked Sample Area: No parameters checked Limits Stop
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