ASTM G160-2003 Standard Practice for Evaluating Microbial Susceptibility of Nonmetallic Materials by Laboratory Soil Burial《用实验室土壤埋入法评价非金属材料微生物敏感性的标准操作规程》.pdf
《ASTM G160-2003 Standard Practice for Evaluating Microbial Susceptibility of Nonmetallic Materials by Laboratory Soil Burial《用实验室土壤埋入法评价非金属材料微生物敏感性的标准操作规程》.pdf》由会员分享,可在线阅读,更多相关《ASTM G160-2003 Standard Practice for Evaluating Microbial Susceptibility of Nonmetallic Materials by Laboratory Soil Burial《用实验室土壤埋入法评价非金属材料微生物敏感性的标准操作规程》.pdf(3页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: G 160 03Standard Practice forEvaluating Microbial Susceptibility of Nonmetallic MaterialsBy Laboratory Soil Burial1This standard is issued under the fixed designation G 160; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revisi
2、on, 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 practice is limited to the method of conducting anevaluation of a nonmetallic materials microbio
3、logical suscep-tibility when in contact with the natural environment of thesoil. This practice is intended for use on solid material testspecimens that are no larger than approximately 2 cm (34 in.)thick and 100 cm2(20 in.2) or on film forming materials suchas coatings which may be tested in the for
4、m of films at least 50by 50 mm (2 by 2 in.) in size. This practice may be applied toarticles that do not spend the majority of their service life insoil.1.2 A wide variety of properties may be affected by micro-bial attack depending on material or item characteristics.Standard methods (where availab
5、le) should be used for eachdifferent property to be evaluated. This practice does notattempt to enumerate all of the possible properties of interestnor specify the most appropriate test for those properties. Testmethods must, however, be appropriate to the material beingtested.1.3 It is recommended
6、that this practice be combined withappropriate environmental exposures (for example, sunlightsimulating weathering devices, the hydrolytic effects of ex-tended aqueous contact, or extraneous nutrients) or fabricationinto articles (for example, adhesive bonding of seams) whichmay promote microbiologi
7、cal susceptibility during the servicelife of the material.1.4 The values given in parentheses are provided for infor-mation purposes only.2. Significance and Use2.1 These results may be used to compare the susceptibilityof materials when exposed to this test procedure.2.2 Microbiological susceptibil
8、ity may be reflected by anumber of changes including staining, weight loss, or reductionin tensile or flexural strength.2.3 This practice may be considered an inoculation with amixed culture of fungi and bacteria.3. Soil3.1 Composition Soil shall be composed of equal parts offertile topsoil (soil wi
9、th a high clay content should not beused), well-rotted and shredded horse manure, and coarse sand(10 to 40 mesh).3.2 MixingThe soil composition of 3.1 should be pre-pared by simple mixing and sifting through14-in. mesh screen.3.3 AgingThe mixture is aged for three months andresifted twice at four-we
10、ek intervals during the three months.After three months, a viability control of untreated cotton cloth,400 to 475 g/m2(12 to 14 oz/yd2), buried in the soil shall havea tensile strength loss of at least 50 % after five days.NOTE 1The soil mixture may be used for sequential tests as long asthe cotton
11、cloth control degrades within the specified time period.3.4 pHThe soil shall have a pH between 6.5 to 7.5,checked periodically, and maintained by the addition of groundlimestone to raise the pH or flowers of sulfur to lower the pH.The soil pH may be taken by dispersing 1 weight part soil in 20parts
12、of water, shaking or stirring, then allowing the mix tosettle for 1 h. The pH is measured with indicator paper,electrodes, or by titration.3.5 MoistureThe soil shall be maintained at between 20and 30 % moisture, based on the dry weight of the soil. (Thepercent moisture is calculated by weighing appr
13、oximately 50mL of a representative portion and taking the portion toconstant weight by placing the soil in an oven at a temperatureof 101 to 106C.) Water lost during use as a result ofevaporation shall be replaced without deforming the soil bed. Ifthe surrounding atmosphere is maintained at 85 to 95
14、 %relative humidity, this loss is negligible, however, the moisturelevel should be periodically measured.1This practice is under the jurisdiction of Committee G3 on Weathering andDurability and is the direct responsibility of Subcommittee G03.04 on BiologicalDeterioration.Current edition approved De
15、c. 10, 2003. Published January 2004. Originallyapproved in 1998. Last previous edition approved in 1998 as G 16098.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.4. Apparatus4.1 Soil Container The container shall be any material ofs
16、uitable mechanical strength and chemical/microbial resistanceand, if porous, shall be lined with impermeable material. Itshall be of any size that is convenient to handle and having adepth of at least 12.7 cm (5 in.).4.2 External EnvironmentAn apparatus capable of main-taining a temperature of 30 6
17、2C (86 6 3.6F) and a relativehumidity to 85 to 95 %, into which the assembled container isinserted, is necessary. An incubator or controlled tropicalchamber is adequate.5. Test Specimens5.1 Completely fabricated parts or sections cut from fabri-cated parts may be used as test specimens. The simplest
18、specimen may be a 50- by 50-mm (2- by 2-in.) piece, a 50-mm(2-in.) diameter piece, or a piece (rod or tubing) at least 76 mm(3 in.) long cut from the material to be tested.5.2 Film-forming materials such as coatings may be testedin the form of films at least 50 by 50 mm (2 by 2 in.) in size.Such fil
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