ASTM E1720-2001 Standard Test Method for Determining Ready Ultimate Biodegradability of Organic Chemicals in a Sealed Vessel CO2 Production Test《在密封容器二氧化碳的生产试验中测定有机化合物已有的、最终的生物降解能力.pdf
《ASTM E1720-2001 Standard Test Method for Determining Ready Ultimate Biodegradability of Organic Chemicals in a Sealed Vessel CO2 Production Test《在密封容器二氧化碳的生产试验中测定有机化合物已有的、最终的生物降解能力.pdf》由会员分享,可在线阅读,更多相关《ASTM E1720-2001 Standard Test Method for Determining Ready Ultimate Biodegradability of Organic Chemicals in a Sealed Vessel CO2 Production Test《在密封容器二氧化碳的生产试验中测定有机化合物已有的、最终的生物降解能力.pdf(6页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E 1720 01Standard Test Method forDetermining Ready, Ultimate, Biodegradability of OrganicChemicals in a Sealed Vessel CO2Production Test1This standard is issued under the fixed designation E 1720; the number immediately following the designation indicates the year oforiginal adoption or
2、, 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 covers procedures for determining theready, ultimate, aerobic
3、 biodegradability of organic chemicalsby monitoring CO2production in sealed vessels containing thetest compound and a dilute sewage inoculum. Because of thestringency of the test conditions, it can be assumed that achemical that is 60 % or better biodegraded in this test methodwill biodegrade in mos
4、t aerobic environmental compartments.1.2 This test method is derived from the sealed vesselprocedures of Birch (1),2Struijs (2), Boatman (3), and Peterson(4), which were developed as simpler, more economicalalternatives to the CO2production techniques reported byGledhill (5) and Sturm (6), the Sturm
5、 report being the basis ofthe Modified Sturm Test of the Organization for EconomicCooperation and Development (OECD) (7).1.3 The procedures are applicable to pure materials, includ-ing sparingly solubles, which can be dissolved or dispersedhomogeneously in aqueous stock solutions of at least 25 ppmo
6、f carbon, or which can be introduced reproducibly to testbottles as pure test material in 1 to 2-mg portions. The testchemical should be nontoxic to sewage microorganisms at 10ppm of carbon. The test may be applied to volatile materialswith Henrys Law Constants of up to approximately 102atm/m3/mole.
7、 The testing of mixtures, extracts, or fully formu-lated products can lead to serious problems in data interpreta-tion.1.4 The procedures involve incubation of the test chemicalwith a dilute inoculum of microbes from domestic wastewatersecondary sewage treatment effluent in small, sealed vesselsfor
8、up to 28 days. Biodegradability is determined by monitor-ing CO2production as dissolved inorganic carbon (DIC) in theliquid phase, and as gaseous CO2in the head space. Alterna-tively, analysis can be performed on just the liquid phase afterthe addition of alkali, or on just the headspace followingac
9、idification. The determinations are made using commercialcarbon analyzers based on the IR detection of CO2. Thedetermination of CO2production provides unequivocal proofof biodegradation, barring the unlikely event of abiotic pro-duction of CO2from the test material.1.5 For water-soluble materials th
10、at do not adsorb to glassor biological solids, biodegradation may be confirmed furtherby monitoring the disappearance of dissolved organic carbon(DOC) in the liquid phase.1.6 The simplicity of the sealed vessel method permitsample replicate sampling for rate determination or statisticalevaluation, o
11、r both.1.7 For a chemical that fails the test as written, the strin-gency of the test may be reduced by substituting an acclimatedinoculum in order to provide a measure of inherent biodegrad-ability.1.8 Materials that are toxic to the microbial inoculum at 10ppm of carbon may not be amenable to test
12、ing by this testmethod, or they may require special method modification suchas reducing the test concentration if instrumental sensitivitypermits. For some cationics, complexing the test material witha nondegradable anionic may reduce toxicity.1.9 The values stated in SI units are to be regarded as
13、thestandard.1.10 This standard does not purport 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. F
14、or specificprecautionary statements, see Section 6.2. Summary of Test Method2.1 Biodegradation testing of organic chemicals is per-formed by monitoring CO2production in small sealed vesselsinoculated with microbes from secondary sewage treatmenteffluent obtained from a local domestic sewage treatmen
15、t plant.The types of test chemicals for which the test is recommended,and those for which special considerations may be required, aresummarized in 1.3.2.2 Alternatively, smaller vessels (40-mL VOA vials or20-mL serum vials) containing 25 or 13 mL of medium,respectively may be used if headspace CO2is
16、 to be measuredusing a carbon analyzer equipped with an autosampler.2.3 Vessels (160-mL gas-tight bottles) are charged with thetest chemical and sewage inoculum in a dilute mineral salts1This test method is under the jurisdiction of ASTM Committee E47 onBiological Effects and Environmental Fateand i
17、s the direct responsibility ofSubcommittee E47.06on Environmental Fate of Chemical Substances.Current edition approved Oct. 10, 2001. Published November 2001. Originallypublished as E 1720-95. Last previous edition E 1720-95.2The boldface numbers in parentheses refer to the list of references at the
18、 end ofthis standard.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.solution to a volume of 100 mL. The vessels are sealed withbutyl rubber or neoprene septa and incubated on a gyrotoryshaker at 20C for up to 28 days.2.4 Test vessel
19、s are sacrificed periodically for analysis ofDIC in the liquid phase and analysis of gaseous CO2in theheadspace, using commercial carbon analyzers.2.5 The amount of CO2resulting from biodegradation of thetest chemical is determined by comparing the total CO2contentof the test vessels with that of bl
20、anks containing no testchemical. The extent of biodegradation is determined bycomparing the actual CO2produced with the theoreticalamount that would be produced by complete conversion of thetest chemical carbon to CO2.2.6 The duration of the sealed vessel test is typically fourweeks, with periodic s
21、acrifice of the vessels for analysis.Preadapted inoculum may be used in a subsequent test for testchemicals that fail to degrade within that time, but a positiveresult would classify the chemical only as “inherently” biode-gradable rather than “readily” biodegradable.3. Significance and Use3.1 As a
22、ready biodegradability test, when using non-adapted inoculum, the sealed vessel method provides only alimited opportunity for biodegradation and acclimatization tooccur. It may therefore be assumed that a chemical yielding apositive result in this stringent test will biodegrade rapidly andultimately
23、 in the environment. Generally, no further biodegrad-ability testing would be required for a chemical that passes thistest unequivocally.3.2 The sealed vessel test is applicable to the testing ofvolatile test chemicals because the biodegradative formation ofCO2occurs in a closed system.3.3 The seale
24、d vessel test is also appropriate for testingsparingly soluble chemicals and for chemicals that bind toinoculum, since biodegradability is based on the analysis of asoluble formation product rather than on the disappearance ofthe sparingly soluble substrate.3.4 Ample replicate sampling for rate dete
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