ASTM F1500-1998(2003) Standard Test Method for Quantitating Non-UV-Absorbing Nonvolatile Extractables from Microwave Susceptors Utilizing Solvents as Food Simulants《利用溶剂作为食品模拟物定性测定.pdf
《ASTM F1500-1998(2003) Standard Test Method for Quantitating Non-UV-Absorbing Nonvolatile Extractables from Microwave Susceptors Utilizing Solvents as Food Simulants《利用溶剂作为食品模拟物定性测定.pdf》由会员分享,可在线阅读,更多相关《ASTM F1500-1998(2003) Standard Test Method for Quantitating Non-UV-Absorbing Nonvolatile Extractables from Microwave Susceptors Utilizing Solvents as Food Simulants《利用溶剂作为食品模拟物定性测定.pdf(3页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: F 1500 98 (Reapproved 2003)Standard Test Method forQuantitating Non-UV-Absorbing Nonvolatile Extractablesfrom Microwave Susceptors Utilizing Solvents as FoodSimulants1This standard is issued under the fixed designation F 1500; the number immediately following the designation indicates t
2、he year oforiginal adoption or, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon (e) indicates an editorial change since the last revision or reapproval.1. Scope1.1 This test method is applicable to complete micro
3、wavesusceptors.1.2 This test method covers a procedure for quantitatingnon-UV-absorbing nonvolatile compounds which are extract-able when the microwave susceptor is tested under simulateduse conditions for a particular food product.1.3 This standard does not purport to address all of thesafety conce
4、rns, if any, associated with its use. It is theresponsibility of the user of this standard to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:2E 260 Practice for Packed Column Gas Chr
5、omatographyE 682 Practice for Liquid Chromatography Terms and Re-lationshipsE 685 Practice for Testing Fixed-Wavelength PhotometricDetectors Used in Liquid ChromatographyF 874 Test Method for Temperature Measurement and Pro-filing for Microwave SusceptorsF 1317 Test Method for Calibration of Microwa
6、ve OvensF 1349 Test Method for Nonvolatile Ultraviolet (UV) Ab-sorbing Extractables from Microwave Susceptors3. Terminology3.1 Definitions of Terms Specific to This Standard:3.1.1 microwave susceptorpackaging materials that,when placed in a microwave field, are designed to interact withthe field and
7、 provide substantial heat to the package contents.3.1.2 nonvolatile extractablesthose chemical specieswhich released from microwave food packaging under simu-lated use conditions and are detected using an applicablenonvolatile extractables method.4. Summary of Test Method4.1 Nonvolatile extractables
8、 are determined by subjecting asample of the susceptor material to microwave heating undersimulated use conditions. The sample is washed with solventscovering a range of polarities. The solvent washes are com-bined and the solvents evaporated just to dryness. The residueis redissolved in a measured
9、quantity of chloroform and thesample split for gravimetric or other analyses, such as HPLC orIR. For the gravimetric determination, a measured portion ofthe sample is filtered and evaporated and the residue weighed.For other analyses, the remainder of the sample is evaporatedand may be reconstituted
10、 in dimethylacetamide prior to injec-tion (see Test Method F 1349 for quantitation of UV-absorbingnonvolatiles by HPLC), or treated appropriately prior toexamination by other chromatographic or spectroscopic meth-ods.5. Significance and Use5.1 This test method was developed to measure non-UV-absorbi
11、ng nonvolatile extractables that may be present andmigrate from a microwave susceptor material during use. Itmay be a useful procedure to assist in minimizing the amountof non-UV-absorbing nonvolatile extractables either throughsusceptor design or manufacturing processes.5.2 Supplementation of this
12、procedure with other analyticaltechnologies such as high-pressure liquid chromatography,supercritical fluid chromatography, or infrared or other formsof spectroscopy may provide the analyst with additionalinformation regarding the identification of the components ofthe non-UV-absorbing nonvolatile e
13、xtractables in the suscep-tor.6. Apparatus and Reagents6.1 Microwave Oven, 700 6 35 W, no turntable, calibratedin accordance with Test Method F 1317.1This test method is under the jurisdiction of ASTM Committee F02 on FlexibleBarrier Materials and is the direct responsibility of Subcommittee F02.15
14、onChemical/Safety Properties.Current edition approved Oct. 10, 1998. Published January 1999. Originallypublished as F 1500 - 94. Last previous edition F 1500 94.2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book o
15、f ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.6.2 Extraction Cell, Waldorf, described in Test MethodF 1349.36.3 Microwave Temperatu
16、re Measurement System.46.4 Temperature Probe, high temperature.56.5 Beaker, 400-mL borosilicate glass.6.6 Hexane, analytical reagent grade or better.6.7 Acetonitrile, analytical reagent grade or better.6.8 Methylene Chloride, analytical reagent grade or better.6.9 Chloroform, analytical reagent grad
17、e or better.6.10 Dimethylacetamide, HPLC grade or better.6.11 Methanol, analytical reagent grade or better, dried overanhydrous sodium sulfate.6.12 Distilled Water.6.13 Nitrogen, grade suitable for solvent evaporation pur-poses.6.14 Rotary Evaporator, or equivalent.6.15 Weighing Boat, aluminum, form
18、ed by shaping alumi-num foil into a round boat approximately 1.5 cm in diameter.6.16 Filter, 0.45 m,6compatible with chloroform.6.17 Round-Bottom Flask, 250 mL, with neck to fit rotaryevaporator.6.18 Vial,20mL.6.19 Heat Lamp, 125 W, or equivalent.6.20 Boiling Stones.6.21 Watchglass, 8.5 or 9.0-cm di
19、ameter.7. Sampling7.1 The sample of microwave susceptor selected for extrac-tion should be representative of the entire susceptor.7.2 The sample should be undamaged, that is, laminationintact, uncreased (unless this is the normal configuration) andunaltered.7.3 Carefully cut a circular portion of th
20、e susceptor largeenough to fit the Waldorf cell with the top threaded sleeveremoved. Be sure the sample is cut large enough to fill theentire bottom of the cell. Carefully trim away any frayed edgesbefore testing.7.4 Preclean the susceptor to remove dust and fibers byblowing a stream of nitrogen ove
21、r the surface for a fewseconds, or by gently brushing the surface with a camel hairbrush.8. Procedure8.1 Calibrate the microwave oven in accordance with TestMethod F 1317 to ensure that it is 700 6 35 W.8.2 Determine the sample test conditions by using themethod for temperature profiling of microwav
22、e susceptors inuse in accordance with Test Method F 874.8.3 Place the precut susceptor sample into the bottomsection of the Waldorf cell. Carefully place the polytetrafluo-roethylene polymer (PTFE) gasket on top of the susceptor toprevent tearing when the cell sleeve is threaded in. Thread thetop sl
23、eeve of the cell into the bottom section of the cell,trapping the susceptor sample securely between the gasket andthe bottom of the cell.8.4 Carefully insert a temperature probe (6.4) through thesmall temperature probe port opening of the cell and ensurethat it maintains good contact with the suscep
24、tor surface. Inserta second probe onto a different area of the susceptor in thesame way.8.5 Place 50 mL of distilled water and a boiling chip into a400-mL beaker and place the beaker in the center rear of theoven. Place a watchglass over the opening of the Waldorf cell.8.6 Place the Waldorf cell in
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