ASTM E2317-2004 Standard Guide for Conducting Renewal Microplate-Based Life-Cycle Toxicity Tests with a Marine Meiobenthic Copepod《用海洋Meiobenthic桡足类甲壳动物进行复原的基于微板的寿命周期毒性试验的标准指南》.pdf
《ASTM E2317-2004 Standard Guide for Conducting Renewal Microplate-Based Life-Cycle Toxicity Tests with a Marine Meiobenthic Copepod《用海洋Meiobenthic桡足类甲壳动物进行复原的基于微板的寿命周期毒性试验的标准指南》.pdf》由会员分享,可在线阅读,更多相关《ASTM E2317-2004 Standard Guide for Conducting Renewal Microplate-Based Life-Cycle Toxicity Tests with a Marine Meiobenthic Copepod《用海洋Meiobenthic桡足类甲壳动物进行复原的基于微板的寿命周期毒性试验的标准指南》.pdf(16页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E 2317 04Standard Guide forConducting Renewal Microplate-Based Life-Cycle ToxicityTests with a Marine Meiobenthic Copepod1This standard is issued under the fixed designation E 2317; the number immediately following the designation indicates the year oforiginal adoption or, in the case o
2、f 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 describes procedures for obtaining laboratorydata concerning the adverse effects o
3、f a test material added toseawater, but not to food, on the marine copepod Amphiascustenuiremis, during continuous exposures of individuals, fromimmediately after birth, until after the beginning of reproduc-tion using a 200 L renewal microplate-culturing technique.The following data are checked and
4、 recorded during the testperiod: stage-specific survival, number of days it takes fordevelopment from a first stage nauplius to a reproductivelymature copepod, gender ratios, number of days for a female toextrude first and subsequent broods, number of days betweenfirst (and subsequent) brood extrusi
5、on(s) and hatching offirst-generation nauplii, number of hatched and survivingnauplii, number of unhatched or necrotic eggs and abortedunhatching eggsacs, and the total number of females able toproduce viable offspring over the entire mating period. Thismicroplate-based full life-cycle toxicity test
6、 has a duration ofapproximately 17 days for toxicants that do not delay devel-opment. These procedures probably will be useful for conduct-ing life-cycle toxicity tests with other species of copepods,although modifications might be necessary.1.2 These procedures are applicable to most chemicals,eith
7、er individually, or in formulations, commercial products, orknown mixtures, that can be measured accurately at thenecessary concentration in water. With appropriate modifica-tions these procedures can be used to conduct tests ontemperature, dissolved oxygen, and pH and on such materialsas aqueous ef
8、fluents (see also Guide E 1192), sediment porewaters, and surface waters. Renewal microplate tests might notbe applicable to materials that have a high oxygen demand, arehighly volatile, are rapidly transformed (biologically or chemi-cally) in aqueous solutions, or are removed from test solutionsin
9、substantial quantities by the test chambers or organismsduring the test. If the concentration of dissolved oxygen fallsbelow 50 % of saturation, or the concentration of test materialin the test solution decreases by more than 20 % betweenrenewals, it might be desirable to renew the solutions moreoft
10、en.1.3 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 requirements prior to use.2. Referenc
11、ed Documents2.1 ASTM Standards:2E 380 Practice for Use of the International System of Units(SI) (the Modernized Metric System)E 729 Guide for Conducting Acute Toxicity Tests withFishes, Macroinvertebrates, and AmphibiansE 943 Terminology Relating to Biological Effects and En-vironmental FateE 1023 G
12、uide for Assessing the Hazard of a Material toAquatic Organisms and Their UsesE 1191 Guide for Conducting Life-Cycle Toxicity Testswith Saltwater MysidsE 1192 Guide for Conducting Acute Toxicity Tests onAqueous Effluents with Fishes, Macroinvertebrates, andAmphibiansE 1218 Guide for Conducting Stati
13、c 96-h Toxicity Testswith MicroalgaeE 1847 Practice for Statistical Analysis of Toxicity TestsConducted Under ASTM Guidelines3. Terminology3.1 The words “must,” “should,” “may,” “can,” and “might”have very specific meanings in this guide.3.1.1 “Must” is used to express an absolute requirement,that i
14、s, to state that the test ought to be designed to satisfy the1This guide is under the jurisdiction of ASTM Committee E47 on BiologicalEffects and Environmental Fate and is the direct responsibility of SubcommitteeE47.01 on Aquatic Assessment and Toxicology.Current edition approved April 1, 2004. Pub
15、lished July 2004.2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.1Copyright ASTM International, 100 Barr Harb
16、or Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.specified condition, unless the purpose of the test requires adifferent design. “Must” is used only in connection with factorsthat directly relate to the acceptability of the test (see Section13).3.1.2 “Should” is used to state t
17、hat the specified condition isrecommended and ought to be met if possible. Althoughviolation of one “should” is rarely a serious matter, violation ofseveral will often render the results questionable. Terms suchas “is desirable,” “is often desirable,” and “might be desirable”are used in connection w
18、ith less important factors.3.1.3 “May” is used to mean “is (are) allowed to,” “can,” isused to mean “is (are) able to,” and “might” is used to mean“could possibly.” Therefore, the classic distinction betweenmay and can is preserved, and might is never used as asynonym for either may or can.3.2 For d
19、efinitions of other terms in this guide, refer toGuide E 729, Terminology E 943, and Guide E 1023. For anexplanation of units and symbols, refer to Practice E 380.4. Summary of Guide4.1 In each of one or more treatments and a control(s),individually isolated A. tenuiremis are maintained and reared i
20、n144 or more individual microwell (300 L total volume) testchambers from immediately after birth (less than 24-h old)until sexual maturity and production of progeny. Microwells(test chambers) are dispersed among at least three replicate96-well microplates per treatment. Number of treatments, testcha
21、mbers and organisms per treatment should be based on thepurpose of the life-cycle test and the type of data analysis thatis to be used to calculate results. Normally, five sublethaltreatment concentrations that cause # 10 % acute naupliarmortality may be selected based on an acute 96-h range finding
22、test with 20 nauplii in duplicate microplates over a log-orderseries of test chemical concentrations spanning zero mortalityto 100 % mortality. Beginning with the maximum 10 % lethal-ity concentration, test concentrations normally should decreaseby 40 % with each successively lower treatment. In eac
23、h of oneor more control treatments, at least 144 individually isolatedcopepods are maintained in seawater containing the carriersolvent where appropriate but to which no test material hasbeen added in order to provide (a) a measure of the accept-ability of the test by giving an indication of the qua
24、lity of thecopepods and the suitability of the seawater, food, test condi-tions, handling procedures, etc.; and (b) the basis for interpret-ing data obtained from the other treatments. In each of one ormore other treatments, at least 144 individual copepods aremaintained in seawater to which a selec
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