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ASTM E 2435 : 2005 : R2015

Superseded

Superseded

A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.

View Superseded by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 Application of Engineering Controls to Facilitate Use or Redevelopment of Chemical-Affected Properties

Available format(s)

Hardcopy , PDF

Superseded date

19-11-2020

Language(s)

English

Published date

29-04-2015

$176.78
Including GST where applicable

CONTAINED IN VOL. 11.05, 2015 Defines general considerations for application of engineering controls to facilitate continued use or redevelopment of properties containing chemical-affected soil, groundwater, or other environmental media, due either to chemical releases or naturally-occurring conditions.

Committee
E 50
DocumentType
Guide
Pages
34
ProductNote
Reconfirmed 2015
PublisherName
American Society for Testing and Materials
Status
Superseded
SupersededBy
Supersedes

1.1This guide presents general considerations for application of engineering controls to facilitate continued use or redevelopment of properties containing chemical-affected soil, groundwater, or other environmental media, due either to chemical releases or naturally-occurring conditions. This guide is not meant to be prescriptive but rather to present considerations for evaluating technologies capable of addressing potential human exposures associated with chemical-affected environmental media.

1.2Table 1 lists the considerations that should be taken into account when developing an engineering control in accordance with this guide.

(A)Table presents design issues to be considered to demonstrate that the design of an engineering control for chemical-affected property has been developed in accordance with this guide. Consideration of the issues should be documented in accordance with the identified regulatory framework for the site.
(B)References indicate sections of this guide.

1.3This guide is intended for use by real estate developers, civil/structural designers, environmental regulators, industrial parties, environmental consultants, and other persons concerned with residential, commercial, or industrial development of real properties where chemical-affected environmental media are present. The design process should involve the individuals and firms working on various aspects of the specifications for construction, operation, and maintenance. If the site is located on public property, then public participation should be considered during the design process.

1.4This guide is directed toward properties where chemical-affected environmental media, associated with either human-influenced activities or naturally-occurring conditions, will remain in place and where active or passive engineering controls will be used to reduce or eliminate exposures that may otherwise pose an unacceptable risk to property users.

1.5This guide identifies the exposure concerns associated with chemical-affected properties that may affect the property development plan, both in the construction phase and during the proposed use of the property; defines performance standards for control of applicable exposure pathways; and, for each exposure pathway, provides examples of engineering controls that may be applied for new or existing construction.

1.6This guide will assist in identification of the optimal property development plan for a property with chemical-affected environmental media. Such a plan will address both short-term construction issues and long-term exposures of property users.

1.7This guide does not address the broader range of environmental concerns that are not directly affected by construction measures and engineering controls (e.g., protection of water resources or ecological receptors).

1.8Detailed specifications for site-specific application of engineering controls are not addressed in this guide. The user is referred to other related ASTM standards and technical guidelines regarding the implementation of the site evaluation and corrective action process, as well as the detailed design, installation, operation, and maintenance of these engineering controls.

1.9The overall strategy for addressing unacceptable risks may employ either remedial actions or activity and use limitations, or both. Engineering controls are a subset of remedial actions given that (1) remedial actions involve cutting off the exposure pathway or reducing the concentration of COCs, or both and (2) that engineering controls only involve cutting off the exposure pathway. Engineering controls are briefly described in Guide E2091, which describes a broad range of options for managing risk. This guide covers implementation of engineering controls in a detailed manner, thereby providing a needed complement to the information provided in Guide E2091.

1.10The values stated in SI units are to be regarded as standard. No other units of measurement are included in this standard.

1.11This 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 to determine the applicability of regulatory limitations prior to use.

ASTM E 2091 : 2017 Standard Guide for Use of Activity and Use Limitations, Including Institutional and Engineering Controls
ASTM E 2790 : 2011 Standard Guide for Identifying and Complying With Continuing Obligations
ASTM E 2616 : 2009 : R2014 Standard Guide for Remedy Selection Integrating Risk-Based Corrective Action and Non-Risk Considerations

ASTM C 1193 : 2011 : REV A Standard Guide for Use of Joint Sealants
ASTM E 2121 : 2009 Standard Practice for Installing Radon Mitigation Systems in Existing Low-Rise Residential Buildings
ASTM E 1689 : 1995 : R2008 Standard Guide for Developing Conceptual Site Models for Contaminated Sites
ASTM C 1193 : 2016 Standard Guide for Use of Joint Sealants
ASTM E 2091 : 2011 Standard Guide for Use of Activity and Use Limitations, Including Institutional and Engineering Controls
ASTM E 2091 : 2017 Standard Guide for Use of Activity and Use Limitations, Including Institutional and Engineering Controls
ASTM E 2121 : 2002 : REV A Standard Practice for Installing Radon Mitigation Systems in Existing Low-Rise Residential Buildings
ASTM C 1193 : 2005 : REV A Standard Guide for Use of Joint Sealants
ASTM E 2081 : 2000 : R2015 Standard Guide for Risk-Based Corrective Action
ASTM E 1745 : 2011 Standard Specification for Plastic Water Vapor Retarders Used in Contact with Soil or Granular Fill under Concrete Slabs
ASTM E 1745 : 2017 : REDLINE Standard Specification for Plastic Water Vapor Retarders Used in Contact with Soil or Granular Fill under Concrete Slabs
ASTM E 1689 : 1995 : R2003 : EDT 1 Standard Guide for Developing Conceptual Site Models for Contaminated Sites
ASTM C 1193 : 2016 : REDLINE Standard Guide for Use of Joint Sealants
ASTM E 2121 : 2003 Standard Practice for Installing Radon Mitigation Systems in Existing Low-Rise Residential Buildings
ASTM E 2121 : 2013 : REDLINE Standard Practice for Installing Radon Mitigation Systems in Existing Low-Rise Residential Buildings
ASTM E 2121 : 2008 Standard Practice for Installing Radon Mitigation Systems in Existing Low-Rise Residential Buildings
ASTM E 2121 : 2012 Standard Practice for Installing Radon Mitigation Systems in Existing Low-Rise Residential Buildings
ASTM E 2121 : 2011 Standard Practice for Installing Radon Mitigation Systems in Existing Low-Rise Residential Buildings
ASTM C 1193 : 2012 Standard Guide for Use of Joint Sealants
ASTM E 1689 : 1995 Standard Guide for Developing Conceptual Site Models for Contaminated Sites
ASTM E 1745 : 2009 Standard Specification for Water Vapor Retarders Used in Contact with Soil or Granular Fill under Concrete Slabs
ASTM C 1299 : 1999 Standard Guide for Use in Selection of Liquid-Applied Sealants
ASTM E 2091 : 2005 Standard Guide for Use of Activity and Use Limitations, Including Institutional and Engineering Controls
ASTM E 2091 : 2019 Standard Guide for Use of Activity and Use Limitations, Including Institutional and Engineering Controls
ASTM C 1193 : 2005 Standard Guide for Use of Joint Sealants
ASTM E 1745 : 2017 Standard Specification for Plastic Water Vapor Retarders Used in Contact with Soil or Granular Fill under Concrete Slabs
ASTM E 1745 : 1997 Standard Specification for Water Vapor Retarders Used in Contact with Soil or Granular Fill under Concrete Slabs
ASTM E 1984 : 1998 Standard Guide for Process of Sustainable Brownfields Redevelopment
ASTM C 1193 : 2000 Standard Guide for Use of Joint Sealants
ASTM E 2121 : 2013 Standard Practice for Installing Radon Mitigation Systems in Existing Low-Rise Residential Buildings
ASTM E 2081 : 2000 Standard Guide for Risk-Based Corrective Action
ASTM E 2121 : 2001 Standard Practice for Installing Radon Mitigation Systems in Existing Low-Rise Residential Buildings
ASTM C 1299 : 2003 Standard Guide for Use in Selection of Liquid-Applied Sealants (Withdrawn 2012)
ASTM C 1193 : 2011 Standard Guide for Use of Joint Sealants
ASTM E 2081 : 2000 : R2004 : EDT 1 Standard Guide for Risk-Based Corrective Action
ASTM E 2091 : 2000 Standard Guide for Use of Activity and Use Limitations, Including Institutional and Engineering Controls
ASTM C 1193 : 2013 Standard Guide for Use of Joint Sealants
ASTM E 1689 : 1995 : R2014 Standard Guide for Developing Conceptual Site Models for Contaminated Sites
ASTM E 2081 : 2000 : R2010 : EDT 1 Standard Guide for Risk-Based Corrective Action
ASTM E 1984 : 2003 Standard Guide for Process of Sustainable Brownfields Redevelopment (Withdrawn 2012)
ASTM C 1193 : 2009 Standard Guide for Use of Joint Sealants

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