ASTM D6954-2004 Standard Guide for Exposing and Testing Plastics that Degrade in the Environment by a Combination of Oxidation and Biodegradation《氧化和生物降解组合的环境中暴露和测试塑料降解的标准指南》.pdf
《ASTM D6954-2004 Standard Guide for Exposing and Testing Plastics that Degrade in the Environment by a Combination of Oxidation and Biodegradation《氧化和生物降解组合的环境中暴露和测试塑料降解的标准指南》.pdf》由会员分享,可在线阅读,更多相关《ASTM D6954-2004 Standard Guide for Exposing and Testing Plastics that Degrade in the Environment by a Combination of Oxidation and Biodegradation《氧化和生物降解组合的环境中暴露和测试塑料降解的标准指南》.pdf(6页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D 6954 04Standard Guide forExposing and Testing Plastics that Degrade in theEnvironment by a Combination of Oxidation andBiodegradation1This standard is issued under the fixed designation D 6954; 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 guide provides a framework or road map tocompare and rank the controlled l
3、aboratory rates of degrada-tion and degree of physical property losses of polymers bythermal and photooxidation processes as well as the biodegra-dation and ecological impacts in defined applications anddisposal environments after degradation. Disposal environ-ments range from exposure in soil, land
4、fill, and compost inwhich thermal oxidation may occur and land cover andagricultural use in which photooxidation may also occur.1.2 In this guide, established ASTM International standardsare used in three tiers for accelerating and measuring the lossin properties and molecular weight by both thermal
5、 andphotooxidation processes and other abiotic processes (Tier 1),measuring biodegradation (Tier 2), and assessing ecologicalimpact of the products from these processes (Tier 3).1.3 The Tier 1 conditions selected for thermal oxidation andphotooxidation accelerate the degradation likely to occur in a
6、chosen application and disposal environment. The conditionsshould include a range of humidity or water concentrationsbased on the application and disposal environment in mind.The measured rate of degradation at typical oxidation tempera-tures is required to compare and rank the polymers beingevaluat
7、ed in that chosen application to reach a molecularweight that constitutes a demonstrable biodegradable residue(using ASTM International biometer tests for CO2evolutionappropriate to the chosen environment). By way of example,accelerated oxidation data must be obtained at temperaturesand humidity ran
8、ges typical in that chosen application anddisposal environment, for example, in soil (20 to 30C), landfill(20 to 35C), and composting facilities (30 to 65C). Forapplications in soils, local temperatures and humidity rangesmust be considered as they vary widely with geography. Atleast one temperature
9、 must be reasonably close to the end useor disposal temperature, but under no circumstances shouldthis be more than 20C away from the removed that tempera-ture. It must also be established that the polymer does notundergo a phase change, such as glass transition temperature(Tg) within the temperatur
10、e range of testing.1.4 The residues resulting from the oxidations are thenexposed to appropriate disposal or use environments in stan-dard biometric test methods to measure the rate and degree ofbiodegradation (Tier 2).1.5 The data generated under Tier 1 evaluation and thedetermined time for the bio
11、degradation in the chosen environ-ment (Tier 2) allow ranking relative to other polymers evalu-ated under similar environmental conditions with this guide.The degree and time for biodegradation should be consistentwith ASTM International methods, and any residues from theintermediate oxidation stage
12、 and from biodegradation must beshown to be environmentally benign and not persistent (Tier 3).NOTE 1The intended use of this guide is for comparison and rankingof data to aid in the design and development and the reduction ofenvironmental impacts of polymers that require no more than 24 monthsto ox
13、idize and biodegrade in the intended use and disposal options andcreate no harmful or persistent residues under the appropriate disposalconditions (for example, two seasons of crop-growing conditions in soil).1.6 It is cautioned that the results of any laboratory exposurein this guide cannot be dire
14、ctly extrapolated to actual disposalenvironments; confirmation to real world exposure is ulti-mately required as with all ASTM International standards.1.7 The values stated in SI units are to be regarded asstandard.NOTE 2There is no ISO standard that is the equivalent of this standardguide. Note thi
15、s changed all subsequent Note numbers.1This guide is under the jurisdiction of ASTM Committee D20 on Plastics andis the direct responsibility of Subcommittee D20.96 on Biodegradable Plastics andBiobased Products.Current edition approved May 1, 2004. Published May 2004.1Copyright ASTM International,
16、100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.1.8 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
17、 determine the applica-bility of regulatory requirements prior to use.2. Referenced Documents2.1 ASTM Standards:2D 883 Terminology Relating to PlasticsD 3826 Practice for Determining Degradation End Point inDegradable Polyethylene and Polypropylene Using a Ten-sile TestD 3987 Test Method for Shake E
18、xtraction of Solid Wastewith WaterD 5071 Practice for Exposure of Photodegradable Plasticsin a Xenon Arc ApparatusD 5208 Practice for Fluorescent Ultraviolet (UV) Exposureof Photodegradable PlasticsD 5272 Practice for Outdoor Exposure Testing of Photode-gradable PlasticsD 5338 Test Method for Determ
19、ining Aerobic Biodegrada-tion of Plastic Materials Under Controlled CompostingConditionsD 5510 Practice for Heat Aging of Oxidatively DegradablePlasticsD 5526 Test Method for Determining Anaerobic Degrada-tion of Plastic Materials Under Accelerated Landfill Con-ditionsD 5951 Practice for Preparing R
20、esidual Solids Obtainedafter Biodegradability Standard Methods for Plastics inSolid Waste for Toxicity and Compost Quality TestingD 5988 Test Method for Determining Aerobic Biodegrada-tion in Soil of Plastic Materials or Residual PlasticMaterials after CompostingD 6002 Guide for Assessing the Compos
21、tability of Environ-mentally Degradable PlasticsD 6400 Specification for Compostable PlasticsE 1440 Guide for an Acute Toxicity Test with the RotiferBrachionus2.2 Other Standards:EPA TITLE 40 CFA 40CFR62, 40CFR50-189, 40CFR260-299, 40CFR300-399, 700-799, and 49CFR100-1803OECD Guideline 207 Earthworm
22、, Acute Toxicity Tests4OECD Guideline 208 Terrestrial Plants, Growth Test4ORCA Guidelines for the Evaluation of Feedstock forSource Separated Biowaste Composting and Biogasifica-tion53. Terminology3.1 Definitions:3.1.1 Definitions of most terms applicable to this guideappear in Terminology D 883 and
23、 Guide D 6002.3.2 Definitions of Terms Specific to This Standard:3.2.1 environmental degradation of a plastic, nabiotic orbiotic degradation process or both that occurs in a givenenvironment and includes photodegradation, oxidation, hy-drolysis, and biodegradation. Living organisms effect bioticdegr
24、adation processes and abiotic degradation processes arenonbiological in nature.3.2.1.1 DiscussionTerm not defined in TerminologyD 883.3.2.2 gels, ncross-linked polymer structures insoluble insolvents that do not break the primary or cross-linking bonds inthe polymer. Cross-links created during oxobi
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