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ASTM E 1943 : 1998 : R2010

Superseded

Superseded

A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.

View Superseded by

Standard Guide for Remediation of Ground Water by Natural Attenuation at Petroleum Release Sites

Available format(s)

Hardcopy , PDF

Superseded date

10-06-2024

Language(s)

English

Published date

01-09-2010

€104.99
Excluding VAT

CONTAINED IN VOL. 11.05, 2016 Describes the appropriateness of remediation by natural attenuation and implementing remediation by natural attenuation at a given petroleum release site, either as a stand alone remedial action or in combination with other remedial actions.

Committee
E 50
DocumentType
Guide
Pages
43
ProductNote
Reconfirmed 2010
PublisherName
American Society for Testing and Materials
Status
Superseded
SupersededBy
Supersedes

1.1 This is a guide for determining the appropriateness of remediation by natural attenuation and implementing remediation by natural attenuation at a given petroleum release site, either as a stand alone remedial action or in combination with other remedial actions.

1.2 Natural attenuation is a potential remediation alternative for containment and reduction of the mass and concentration of petroleum hydrocarbons in the environment to protect human health and the environment. Remediation by natural attenuation depends upon natural processes such as biodegradation, dispersion, dilution, volatilization, hydrolysis, and sorption to attenuate petroleum constituents of concern to achieve remedial goals.

Note 1—Remedial goals must be established through another process as determined by the appropriate regulatory agency.

1.3 In general, remediation by natural attenuation should not be considered a presumptive remedy. A determination of whether remediation by natural attenuation is appropriate for an individual petroleum release site, relative to site-specific remedial goals, requires site characterization, assessment of potential risks, evaluation of the need for source area control, and evaluation of potential effectiveness similar to other remedial action technologies. Application and implementation of remediation by natural attenuation requires demonstration of remedial progress and attainment of remedial goals by use of converging lines of evidence obtained through monitoring and evaluation of resulting data. When properly applied to a site, remediation by natural attenuation is a process for risk management and achieving remedial goals. Monitoring should be conducted until it has been demonstrated that natural attenuation will continue and eventually meet remedial goals.

1.3.1 The primary line of evidence for remediation by natural attenuation is provided by observed reductions in plume geometry and observed reductions in concentrations of the constituents of concern at the site.

1.3.2 Secondary lines of evidence for remediation by natural attenuation are provided by geochemical indicators of naturally occurring degradation and estimates of attenuation rates.

1.3.3 Additional optional lines of evidence can be provided by microbiological information and further analysis of primary and secondary lines of evidence such as through solute transport modeling or estimates of assimilative capacity.

1.4 The emphasis in this guide is on the use of remediation by natural attenuation for petroleum hydrocarbon constituents where ground water is impacted. Though soil and ground water impacts are often linked, this guide does not address natural attenuation in soils separate from ground water or in situations where soils containing constituents of concern exist without an associated ground water impact. Even if natural attenuation is selected as the remedial action for ground water, additional remedial action may be necessary to address other completed exposure pathways at the site.

ASTM E 2081 : 2000 : R2015 Standard Guide for Risk-Based Corrective Action
ASTM E 2616 : 2009 : R2014 Standard Guide for Remedy Selection Integrating Risk-Based Corrective Action and Non-Risk Considerations
ASTM E 2531 : 2006 : R2014 Standard Guide for Development of Conceptual Site Models and Remediation Strategies for Light Nonaqueous-Phase Liquids Released to the Subsurface

ASTM D 4106 : 2015 : REDLINE Standard Test Method for (Analytical Procedure) for Determining Transmissivity and Storage Coefficient of Nonleaky Confined Aquifers by the Theis Nonequilibrium Method
ASTM D 4372 : 1993 Standard Specification for Flame-Resistant Materials Used in Camping Tentage (Withdrawn 2002)
ASTM D 5269 : 2015 : REDLINE Standard Test Method for Determining Transmissivity of Nonleaky Confined Aquifers by the Theis Recovery Method
ASTM D 4043 : 2017 : REDLINE Standard Guide for Selection of Aquifer Test Method in Determining Hydraulic Properties by Well Techniques
ASTM D 4700 : 2015 : REDLINE Standard Guide for Soil Sampling from the Vadose Zone
ASTM D 4044 : 1996 Standard Test Method for (Field Procedure) for Instantaneous Change in Head (Slug) Tests for Determining Hydraulic Properties of Aquifiers
ASTM D 4104 : 1996 Standard Test Method (Analytical Procedure) for Determining Transmissivity of Nonleaky Confined Aquifers by Overdamped Well Response to Instantaneous Change in Head (Slug Tests)
ASTM D 5434 : 2012 Standard Guide for Field Logging of Subsurface Explorations of Soil and Rock (Withdrawn 2021)
ASTM D 1498 : 2014 : REDLINE Standard Test Method for Oxidation-Reduction Potential of Water
ASTM E 1599 : 1994 Standard Guide for Corrective Action for Petroleum Releases (Withdrawn 2002)
ASTM D 888 : 2012-05 TEST METHODS FOR DISSOLVED OXYGEN IN WATER
ASTM D 4658 : 2015 : REDLINE Standard Test Method for Sulfide Ion in Water
ASTM D 4050 : 2014 : REDLINE Standard Test Method for (Field Procedure) for Withdrawal and Injection Well Testing for Determining Hydraulic Properties of Aquifer Systems
ASTM D 1125 : 2014 : REDLINE Standard Test Methods for Electrical Conductivity and Resistivity of Water (Withdrawn 2023)

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