UOP 578-2011 Automated Pore Volume and Pore Size Distribution of Porous Substances by Mercury Porosimetry.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 1984, 2002, 2011 UOP LLC. All rights r
3、eserved. 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
4、610.832.9585 PHONE. Automated Pore Volume and Pore Size Distribution of Porous Substances by Mercury Porosimetry UOP Method 578-11 Scope This method is for determining the pore size distribution and pore area of materials by mercury intrusion. Total pore volume (intrusion volume), total pore area, b
5、ulk (piece) density and apparent (skeletal) density are also determined. At the maximum pressure of 413,700 kPa (60,000 psia), pores as small as 0.003 m are filled. This method is applicable to materials which are essentially non-compressible at the pressures attained during analysis. The sample mus
6、t also be non-wetting and non-reactive with mercury, and not larger than a right circular cylinder having 25-mm diameter with a length of 25 mm. References Instruction Manual, supplied with instrument UOP Method 999, “Precision Statements in UOP Methods,” www.astm.org Outline of Method Previously ou
7、tgassed samples are weighed into penetrometers and placed in the low-pressure ports where they are evacuated and automatically filled with mercury. Due to the unique non-wetting property of mercury, it will not enter pores or capillaries except under pressure. Filling pressures between 3.4 kPa (0.5
8、psia) and atmospheric pressure can be used depending on whether larger pores are of interest. The samples are then removed from the low-pressure ports and placed in the high pressure chambers. Using high-pressure fluid, the mercury is forced into the pores at incrementally increasing pressure to mea
9、sure the intrusion data. Pressure is increased to a maximum of 413,700 kPa (60,000 psia). Pore volume readings are taken at predetermined pressures. If extrusion data, a measure of the mercury coming out of the pores as the pressure is reduced, is desired, pore volume readings are also taken as the
10、pressure is reduced to atmospheric. A maximum of 2,500 pressure points can be chosen for the intrusion/extrusion curve. The standard pressure points and their corresponding pore diameters are listed in Table 1. Other pressure tables are available for use based on the submitters needs or the specific
11、 pore ranges needed to be highlighted. Apparatus References to catalog numbers and suppliers are included as a convenience to the method user. Other suppliers may be used. 2 of 12 578-11 Balance, readability 0.0001 g, chamber accessible from both top and sides, OhausTM Analytical Plus Series, Model
12、AP 310, Fisher Scientific, Cat. No. 01-920-80 Desiccator, with porcelain plate, 250-mm ID, Fisher Scientific, Cat. No. 08-615B Dishes, Coors, shallow form porcelain, 80-mm diameter, 50-ml capacity, Fisher Scientific, Cat. No. 08-693B Gauge, vacuum, range 0-0.001 kPa (0-250 mm Hg), Fisher Scientific,
13、 Cat. No. 11-282A, used with vacuum oven Gloves, Kelkave Autoclave, temperature resistant up to 288C (550F), length 11 inches, size large, Fisher Scientific, Cat. No. 19-013-586 Hood, laboratory Mercury intrusion porosimeter, supplied with data terminal and printer, Micromeritics, Autopore IV. This
14、method is written assuming the use of the specified porosimeter. If other equipment is used, adapt the method accordingly. Oven, vacuum, maximum temperature 200C, maximum vacuum 0.01 kPa, chamber 20 x 20 x 30 cm, PrecisionTM, Model 19, Fisher Scientific, Cat. No. 13-264A Penetrometers, powder sample
15、s, 3-mL sample volume, 0.39-mL intrusion volume, Micromeritics, Cat. No. 942-61714-00, several required. Other penetrometers, with larger sample volumes and intrusion volumes are also available. Penetrometers, solid samples, 3-mL sample volume, 0.39-mL intrusion volume, Micromeritics, Cat. No. 942-6
16、1713-00, several required. Other penetrometers, with larger sample volumes and intrusion volumes are also available. Pump, vacuum, 91-L/min, WelchTM Duo SealTM, Model 1405, Fisher Scientific, Cat. No. 01-099 Regulator, nitrogen, single-stage, Matheson Gas Products, Model 1-580 Software, Autopore IV
17、9500, Version 1.09, Micromeritics Thermometer, for measuring ambient temperature, Fisher Scientific, Cat. No. 15-060-274 Tongs, stainless steel, 23-cm, Fisher Scientific, Cat. No. 15-186 Reagents and Materials References to catalog numbers and suppliers are included as a convenience to the method us
18、er. Other suppliers may be used. Dessicant, Drierite, Fisher Scientific, Cat. No. 07-578-3A Detergent, Alconox, Fisher Scientific, Cat. No. 50821294 Fluid, high pressure, Micromeritics, Cat. No. 920-16001-00 Gas, dry, air or nitrogen Gloves, BestTM NitriSolveTM Nitrile, Fisher Scientific, Cat. No. 1
19、1-395 series Grease, stopcock, ApiezonTM H, Micromeritics, Cat. No. 004-16007-00 Grease, Dow CorningTM, high vacuum, Fisher Scientific, Cat. No. 14-635-5D Mercury, quadruple distilled, Bethlehem Apparatus. Caution: see Precaution. 3 of 12 578-11 Nitrogen, gas, 99.98% minimum purity Procedure The ana
20、lyst is expected to be familiar with general laboratory practices, the technique of mercury porosimetry, and the equipment being used. Calibrate the instrument as outlined in the Instruction Manual. Instrument operation must be thoroughly understood before any attempt is made to analyze samples. Ent
21、er the standard pressure points from Table 1. This Procedure is written assuming the use of the equipment specified under Apparatus. If other equipment is used, adapt the procedure accordingly. Although the use of metric units is preferred, the pressure units used by the listed porosimeter are psia,
22、 and thus, are listed in Table 1. Table 1 Standard Pressure Points and Corresponding Pore Diameters (Contact Angle = 130, Surface Tension , = 485 dynes/cm) Pressure, psia Pore Diameter, m Pressure, psia Pore Diameter, m 8.9 20.0000 4486.0 0.0400 18.0 10.0000 5127.0 0.0350 31.0 5.8333 5981.0 0.0300 4
23、5.0 4.0000 6188.0 0.0290 103.0 1.7500 6409.0 0.0280 150.0 1.2000 6646.0 0.0270 199.0 0.9000 6902.0 0.0260 239.0 0.7500 7178.0 0.0250 299.0 0.6000 7477.0 0.0240 359.0 0.5000 7802.0 0.0230 513.0 0.3500 8156.0 0.0220 598.0 0.3000 8545.0 0.0210 665.0 0.2700 8972.0 0.0200 748.0 0.2400 9444.0 0.0190 854.0
24、 0.2100 9969.0 0.0180 1025.0 0.1750 10555.0 0.0170 1196.0 0.1500 11215.0 0.0160 1495.0 0.1200 11963.0 0.0150 1794.0 0.1000 12817.0 0.0140 1889.0 0.0950 13803.0 0.0130 1994.0 0.0900 15337.0 0.0117 2111.0 0.0850 16313.0 0.0110 2243.0 0.0800 17944.0 0.0100 2393.0 0.0750 19938.0 0.0090 2563.0 0.0700 224
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