ASTM E1913-2004 Standard Guide for Conducting Static Axenic 14-Day Phytotoxicity Tests in Test Tubes with the Submersed Aquatic Macrophyte Myriophyllum sibiricum Komarov《在装有浸入式水生大型.pdf
《ASTM E1913-2004 Standard Guide for Conducting Static Axenic 14-Day Phytotoxicity Tests in Test Tubes with the Submersed Aquatic Macrophyte Myriophyllum sibiricum Komarov《在装有浸入式水生大型.pdf》由会员分享,可在线阅读,更多相关《ASTM E1913-2004 Standard Guide for Conducting Static Axenic 14-Day Phytotoxicity Tests in Test Tubes with the Submersed Aquatic Macrophyte Myriophyllum sibiricum Komarov《在装有浸入式水生大型.pdf(15页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E 1913 04Standard Guide forConducting Static, Axenic, 14-Day Phytotoxicity Tests inTest Tubes with the Submersed Aquatic Macrophyte,Myriophyllum sibiricum Komarov1This standard is issued under the fixed designation E 1913; the number immediately following the designation indicates the y
2、ear oforiginal adoption or, 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 Submersed rooted aquatic macrophytes are importantco
3、mponents of aquatic systems. They contribute to primaryproductivity, improve water quality, cycle nutrients, generateoxygen, affect flow patterns, provide habitat and food for otherorganisms, and stabilize the sediment. These plants can beadversely affected when pesticides are sprayed to controlaqua
4、tic weeds and algal blooms or when phytotoxic chemicalsenter the waterway through atmospheric fallout, soil erosion,industrial effluent, sewage discharge, spills or drift from aerialor ground applications.1.2 This guide is designed to give guidance for assessing thepotential phytotoxicity of a test
5、material added to a sterileliquid growth medium on a species of freshwater submersedmacrophyte (Myriophyllum sibiricum Komarov) during a 14-day static exposure. A sterile system is recommended todetermine the direct effect of the test chemical upon individualparameters of the submersed macrophyte be
6、cause there is nodegradation of the test item by micro-organisms. For similarreasons, other aquatic plant testing, such as those of, Lemnaand algae, is commonly conducted in an axenic fashion.Overall environmental impact can not be directly determined.The main other disadvantage of the axenic test s
7、ystem is thedifficulty in preventing accidental contamination. These proce-dures could possibly be useful for conducting toxicity testswith other species of submersed macrophytes, although modi-fications might be necessary (1-8)2.1.3 The procedures in this guide are applicable to mostchemicals, eith
8、er individually or in formulations, commercialproducts, or known mixtures. These procedures might be usedto conduct tests for dependency on temperature, light, nutrientsand pH. With appropriate modification, these procedures mightbe used to conduct tests for contaminated surface waters andaqueous ef
9、fluents (see Guide E 1192). This static, axenictoxicity test might not be applicable to materials that containmicroorganisms unless the sample can be filter sterilizedwithout removing the toxicant. If the test materials are highlyvolatile, care should be taken to ensure that the test chambersare iso
10、lated. It might be necessary to replace the test materialon a regular basis if the test material is rapidly biologically orchemically transformed in aqueous solution, or is removedfrom the test solutions in substantial quantities by the testchambers or organisms during the test. This toxicity test i
11、s notsuitable for testing interactions between aquatic plants andother organisms, such as plant pathogens.1.4 Results from the toxicity test outlined in this guide canbe reported in terms of a 14-day IC25, IC50, or NOEC. Thisparameter may be based on several endpoints including inhi-bition of plant
12、growth during the 14-day period, inhibition ofshoot length, inhibition of root number and length, inhibition offresh or dry weight (see Guide E 1415), inhibition of oxygenproduction, change in membrane permeability, and change inchlorophyll a, chlorophyll b and carotenoid content extractedfrom secti
13、ons of the plants (see Practice D 3731 and GuideE 1218) (9-18). All or some of these endpoint parameters maybe examined depending upon the mode of phytotoxic action orresearcher preference. It might be necessary to conduct thetoxicity test at only one concentration to determine whether ornot that sp
14、ecific concentration is inhibitory to plant growth anddevelopment.1.5 This guide is arranged as follows:SectionReferenced Documents 2Terminology 3Definitions 3.1Definitions of Terms Specific to this Standard 3.2Summary of Guide 4Significance and Use 5Interferences 6Apparatus 7Facilities 7.1Test Cham
15、bers 7.2Equipment 7.3Cleaning 7.4Acceptability 7.5Reagents 8Hazards 9Nutrient Solution 10Test Material 111This 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
16、.Current edition approved April 1, 2004. Published May 2004. Originallyapproved in 1997. Last previous edition approved in 1997 as E 1913 97.2The boldface numbers given in parentheses refer to a list of references at theend of the text.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C70
17、0, West Conshohocken, PA 19428-2959, United States.SectionGeneral 11.1Test Concentrations 11.2Stock Solutions 11.3Controls 11.4Test Organism 12Recommended Species 12.1Alternate Species 12.2Culturing 12.3Procedure 13Experimental Design 13.1Temperature 13.2Illumination 13.3Beginning the Test 13.4Durat
18、ion of Test 13.5Evaluation of Test 13.6Analytical Methodology 14Calculations 15Acceptability of Test 16Report 17Precision and Bias 18Keywords 19Appendixes X1, X2References1.6 The values stated in SI units are to be regarded as thestandard.1.7 This standard does not purport to address all of thesafet
19、y 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. This standard mayinvolve hazardous materials, operations, and equipment. Se
20、eSection 9 for specific hazard statements.2. Referenced Documents2.1 ASTM Standards:3D 1129 Terminology Relating to WaterD 1193 Specification for Reagent WaterD 3731 Practices for Measurement of Chlorophyll Contentof Algae in Surface WatersD 3978 Practice for Algal Growth Potential Testing withSelen
21、astrum capricornutumE 729 Guide for Conducting Acute Toxicity Tests withFishes, Macroinvertebrates, and AmphibiansE 943 Terminology Relating to Biological Effects and En-vironmental FateE 1023 Guide for Assessing the Hazard of a Material toAquatic Organisms and Their UsesE 1192 Guide for Conducting
22、Acute Toxicity Tests onAqueous Effluents with Fishes, Macroinvertebrates, andAmphibiansE 1218 Guide for Conducting Static 96-h Toxicity Testswith MicroalgaeE 1415 Guide for Conducting Static Toxicity Tests WithLemna gibba G3E 1598 Practice for Conducting Early Seedling GrowthTestsE 1733 Guide for th
23、e Use of Lighting in Laboratory TestingE 1841 Guide for Conducting Renewal Phytotoxicity TestsWith Freshwater Emergent MacrophytesE 1847 Practice for Statistical Analysis of Toxicity TestsConducted under ASTM Guidelines3. Terminology3.1 Definitions:3.1.1 The words must, should, may, can, and might h
24、avevery specific meanings in this guide. Must is used to express anabsolute requirement, that is, to state that the test ought to bedesigned to satisfy the specified conditions, unless the purposeof the test requires a different design. Must is only used inconnection with factors that directly relat
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