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ASTM E 1193 : 1997 : R2012

Superseded

Superseded

A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.

View Superseded by

Daphnia magna

Available format(s)

Hardcopy , PDF

Superseded date

14-01-2021

Superseded by

ASTM E 1193 : 2020

Language(s)

English

Published date

28-12-2012

€74.48
Excluding VAT

CONTAINED IN VOL. 11.06, 2016 Defines procedures for obtaining laboratory data concerning the adverse effects of a test material (added to dilution water, but not to food) on Daphnia magna Straus, 1820, during continuous exposure throughout a life-cycle using the renewal or flow-through techniques.

Committee
E 50
DocumentType
Guide
Pages
19
ProductNote
Reconfirmed 2012
PublisherName
American Society for Testing and Materials
Status
Superseded
SupersededBy
Supersedes

1.1This guide covers procedures for obtaining laboratory data concerning the adverse effects of a test material (added to dilution water, but not to food) on Daphnia magna Straus, 1820, during continuous exposure throughout a life-cycle using the renewal or flow-through techniques. These procedures also should be useful for conducting life-cycle toxicity tests with other invertebrate species, although modifications might be necessary.

1.2These procedures are applicable to most chemicals, either individually or in formulations, commercial products, or known mixtures. With appropriate modifications, these procedures can be used to conduct tests on temperature, dissolved oxygen, pH, and on such materials as aqueous effluents (also see Guide E1192), leachates, oils, particulate matter, sediments, and surface waters. The technique, (renewal or flow-through), will be selected based on the chemical characteristics of the test material such as high oxygen demand, volatility, susceptibility to transformation (biologically or chemically), or sorption to glass.

1.3Modification of these procedures might be justified by special needs or circumstances. Although using appropriate procedures is more important than following prescribed procedures, results of tests conducted using unusual procedures are not likely to be comparable to results of standard test procedures. Comparison of results obtained using modified and unmodified versions of these procedures might provide useful information on new concepts and procedures for conducting life-cycle toxicity tests with D. magna.

1.4This guide is arranged as follows:

Section

Referenced Documents

2

Terminology

3

Summary of Guide

4

Significance and Use

5

Apparatus

6

 Facilities

6.1

 Construction Materials

6.2

 Test Chambers

6.3

 Cleaning

6.4

 Acceptability

6.5

Reagents

7

 Purity of Reagents

7.1

Hazards

8

Dilution Water

9

 Requirements

9.1

 Source

9.2

 Treatment

9.3

 Characterization

9.4

Test Material

10

 General

10.1

 Stock Solutions

10.2

 Test Concentrations(s)

10.3

Test Organisms

11

 Species

11.1

 Age

11.2

 Source

11.3

 Brood Stock

11.4

 Food

11.5

 Handling

11.6

 Harvesting Young

11.7

 Quality

11.8

Procedure

12

 Experimental Design

12.1

 Dissolved Oxygen

12.2

 Temperature

12.3

 Loading

12.4

 Selection of Test System

12.5

 Beginning the Test

12.6

 Care and Maintenance

12.7

 Feeding

12.8

 Duration

12.9

 Biological Data

12.10

 Other Measurements

12.11

Analytical Methodology

13

Acceptability of Test

14

Calculation of Results

15

Report

16

Keywords

17

Appendixes

Appendix X1Statistical Guidance

Appendix X2Food


1.5The values stated in SI units are to be regarded as standard. No other units of measurement are included in this standard.

1.6This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use. Specific hazard statements are given in Section 8.

ASTM E 1706 : 2019 Standard Test Method for Measuring the Toxicity of Sediment-Associated Contaminants with Freshwater Invertebrates
ASTM E 1295 : 2001 : R2013 Standard Guide for Conducting Three-Brood, Renewal Toxicity Tests with <emph type="ital">Ceriodaphnia dubia</emph><emph type="bold">
ASTM E 1850 : 2004 : R2019 Standard Guide for Selection of Resident Species as Test Organisms for Aquatic and Sediment Toxicity Tests
ASTM E 1366 : 2011 : R2016 Standard Practice for Standardized Aquatic Microcosms: Fresh Water
ASTM E 2552 : 2016 Standard Guide for Assessing the Environmental and Human Health Impacts of New Compounds for Military Use
ASTM E 1841 : 2004 : R2012 Standard Guide for Conducting Renewal Phytotoxicity Tests With Freshwater Emergent Macrophytes (Withdrawn 2021)
ASTM E 1022 : 1994 : R2013 Standard Guide for Conducting Bioconcentration Tests with Fishes and Saltwater Bivalve Mollusks (Withdrawn 2022)

ASTM E 1023 : 1984 : R2007 Standard Guide for Assessing the Hazard of a Material to Aquatic Organisms and Their Uses
ASTM E 1023 : 1984 : R2014 Standard Guide for Assessing the Hazard of a Material to Aquatic Organisms and Their Uses
ASTM E 1023 : 1984 : R2002 Standard Guide for Assessing the Hazard of a Material to Aquatic Organisms and Their Uses
ASTM E 1192 : 1997 : R2008 Standard Guide for Conducting Acute Toxicity Tests on Aqueous Ambient Samples and Effluents with Fishes, Macroinvertebrates, and Amphibians
IEEE/ASTM SI_10-2010 American National Standard for Metric Practice
ASTM E 1023 : 1984 : R1996 Standard Guide for Assessing the Hazard of a Material to Aquatic Organisms and Their Uses
ASTM E 1192 : 1997 Standard Guide for Conducting Acute Toxicity Tests on Aqueous Ambient Samples and Effluents with Fishes, Macroinvertebrates, and Amphibians
ASTM E 1192 : 1997 : R2003 Standard Guide for Conducting Acute Toxicity Tests on Aqueous Ambient Samples and Effluents with Fishes, Macroinvertebrates, and Amphibians
ASTM E 729 : 1996 Standard Guide for Conducting Acute Toxicity Tests on Test Materials with Fishes, Macroinvertebrates, and Amphibians
ASTM E 1192 : 1997 : R2014 Standard Guide for Conducting Acute Toxicity Tests on Aqueous Ambient Samples and Effluents with Fishes, Macroinvertebrates, and Amphibians

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