ASTM D5588-1997(2008) Standard Test Method for Determination of the Microbial Condition of Paint Paint Raw Materials and Plant Areas《测定涂料 涂料原料和设备区微生物状态的标准试验方法》.pdf
《ASTM D5588-1997(2008) Standard Test Method for Determination of the Microbial Condition of Paint Paint Raw Materials and Plant Areas《测定涂料 涂料原料和设备区微生物状态的标准试验方法》.pdf》由会员分享,可在线阅读,更多相关《ASTM D5588-1997(2008) Standard Test Method for Determination of the Microbial Condition of Paint Paint Raw Materials and Plant Areas《测定涂料 涂料原料和设备区微生物状态的标准试验方法》.pdf(4页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D 5588 97 (Reapproved 2008)Standard Test Method forDetermination of the Microbial Condition of Paint, Paint RawMaterials, and Plant Areas1This standard is issued under the fixed designation D 5588; the number immediately following the designation indicates the year oforiginal adoption o
2、r, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope1.1 This test method covers a procedure for the determina-tion of the microbial co
3、ndition (contamination or sterility) ofraw materials used in the manufacture of paint, and themicrobial condition of paint and paint manufacturing areas.1.2 The values in SI units are to be regarded as the standard.The values given in parentheses are for information only.1.3 This standard does not p
4、urport to address all of thesafety concerns, 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. Summary of Test Method2.1 This test meth
5、od outlines procedures to (1) obtainsamples for sterility testing from wet or dry materials and plantsites, (2) conduct the sterility testing on those samples to see ifthey are contaminated, (3) evaluate the degree of contamina-tion, if any, and (4) provide a guide for some indication of thetype of
6、contamination present (bacterial, fungal, yeast, etc.).This test method is not designed to include all the necessaryprecautions to maintain the level of sterility required to providethe most accurate results. Some familiarity with microbiologi-cal techniques is recommended.3. Significance and Use3.1
7、 Spoilage of paint in the container is often related to theuse of contaminated raw materials, water (particularly recycledwashwater), vessels, piping, and equipment in the manufactur-ing plant. There is a need for a simple method to determine thepresence or absence of microorganisms in plants that m
8、anu-facture paints and coatings. Such a determination enables themanufacturer to establish the point of contamination (that is,raw materials or problem housekeeping areas in the plant) tohelp in solving the spoilage problem.NOTE 1Some contamination in plant areas is to be expected, sincemicroorganis
9、ms are ubiquitous and cannot generally be eliminated prac-tically (it is what an in-can preservative is supposed to control). Excessivelevels of contamination or contaminated raw materials can exceed thecapability of the preservative. If you have excessive contamination in theplant, there are method
10、s for decontamination including steam, preserva-tives, bleach, etc. These should be discussed with your biocide supplierand used with care. Recovery of spoiled or contaminated products is oftennot feasible, so an adequate level of the appropriate biocide in conjunctionwith good plant housekeeping pr
11、actices are essential. Your biocidesupplier can also help here.3.2 This test method may be used by persons without basicmicrobiological training, but some training on aseptic tech-niques would be recommended.NOTE 2The reliability of the results obtained from this test method isextremely dependent on
12、 the techniques employed. Improper techniquescan result in a sterile sample appearing to be contaminated, and evenworse, a contaminated sample appearing to be sterile (see also 5.1). It isrecommended that you consult with your biocide supplier, raw materialsupplier, or an independent testing laborat
13、ory to confirm questionableresults.4. Apparatus and Materials4.1 Balance, capable of weighing to 0.10 g.4.2 Incubator, or other device capable of maintaining aconstant temperature between 28 and 32C.4.3 Refrigerator.4.4 Tryptic Soy Agar (TSA) Plates,2pre-prepared.3(SeeNote 3).4.5 Potato Dextrose Aga
14、r (PDA) Plates,4or Malt AgarPlates,5acidified to pH 3.5 with lactic acid, pre-prepared.NOTE 3If preparing plates, Tryptic Soy Agar media with TTC(triphenyltetrazolium chloride) indicator dye may also be used. In general,the TTC helps visualize contamination, but it has been reported on1This test met
15、hod is under the jurisdiction of ASTM Committee D01 on Paintand Related Coatings, Materials, and Applications and is the direct responsibility ofSubcommittee D01.28 Biodeterioration.Current edition approved June 1, 2008. Published June 2008. Originallyapproved in 199494. Last previous edition approv
16、ed in 2002 as D 5588 97 (2002).2Please note that Tryptic Soy and Trypticase Soy are names used interchange-ably. Pre-prepared TSA plates, BBL# 21185, are available from various microbio-logical supply companies.3Agar plates (media) may be purchased pre-prepared using the indicated Difcoor BBL number
17、 from microbiological supply companies, or both. Media may alsobe prepared from the formulations given in the Difco Manual (Difco Laboratories,Detroit, MI) or from appropriate dehydrated media using standard microbiologicaltechniques.4Pre-prepared plates available are Difco # 4360-22-0, or BBL # 962
18、72. Thesepre-prepared plates are not acidified to pH 3.5, but may be used (see also Footnote3).5Pre-prepared plates available are Difco # 4265-22-6. These are not acidified,but may be used (see also Footnote 3).1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA
19、19428-2959, United States.occasion to inhibit the growth of some bacteria. Interferences frompigments in materials being tested may make the color change difficult tosee. If self-prepared plates are used with the TTC indicator, 0.01 % TTCindicator should be used and it must be added after autoclavin
20、g.4.6 Lactic Acid.4.7 Sterile Swabs in tubes, pre-prepared.4.8 Swab tubes, Culturette Tubes, or a similar system (swabin a test tube with a transport medium)6, all sterile, pre-prepared can be used if transport of collected samples to thelaboratory testing area is required.4.9 Sterile Diluent (9 mL)
21、 in tubes, pre-prepared (0.85 %saline or other suitable diluent). These can be prepared fromsterile tubes and sterile saline solution then stored in arefrigerator.4.10 Laminar Flow Hood, Sterile Room, or at least alaboratory testing area that is relatively clean, free of blowingdust and dirt, etc.,
22、which can be used for streaking plates.4.11 Antiseptic Solution, to help maintain sterility of testingarea surfaces (4.10) (For example, 70 % ethanol solution.).4.12 Plastic or Rubber Laboratory Gloves, optional, steril-ized.4.13 Facial Mask, optional.4.14 Sterile Spatulas or Sterile Tongue Depresso
23、rs, 150-mm, (6-in.) individually wrapped.4.15 Plastic Bag,7sterile.5. General Sampling Guidelines5.1 Take all reasonable precautions to avoid microbialcontamination while obtaining samples. You may choose towear a facial mask and sterilized gloves. (WarningDo nottouch the swab anywhere near the cott
24、on tip, or near parts ofthe swab which could be immersed in the test sample.Microorganisms from the skin, clothing, and even air ifexposed too long, can contaminate the sample. If the swab hasa cap, do not touch any part of the swab except that cap.Confirm suspicious results with additional testing.
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